Sunday, June 29, 2008

Is Dark Matter and Dark Energy the Result of Incorrect Gravitational Theory?

Is Dark Matter and Dark Energy the Result of Incorrect Gravitational Theory?
Immersed in preposterous theories, PHD's could never admit to the simplicity of the Universe's Grand Design and Unified Field Theory encompassing the radius of curvature of all natural law

StarSteps: Excerpt from the chapter on Gravity
http://www.fuel2000.net/starsteps.htm

"Through the concept of the curvature of physical law, however, we see that the addition of mass to an existing body does not, necessarily, increase the force of attraction between its parts, but may, under certain conditions, cause the field to become negative, and the attraction to become a repulsion. We can explain the observed actions of the present universe by postulating that an attraction exists between the individual bodies within a galaxy, because their total mass and distance is such that they are within the positive portion of the
gravitation curve with respect to each other. In the vast spaces between the galaxies however, the curve dips below the zero line with the result that a repulsion exists between the galaxies themselves. This also explains why matter, although rather evenly distributed
throughout the known universe, is not distributed uniformly, but found in quite similar concentrations at comparatively regular distances."

Is Dark Matter And Dark Energy The Result Of Incorrect Gravitational Theory?

Is Dark Matter and Dark Energy the Result of Incorrect Gravitational Theory?
Posted Sep 12, 2006 at 07:14AM by Mabie A. Listed in: Astrophysics Tags: Dark Matter


Dark matter is believed to be matter which does not emit or reflect enough electromagnetic radiation to be detected directly, but whose presence may be inferred from its gravitational effects on visible matter. Its composition being unknown, it is speculated to include new elementary particles such as WIMPS and axions, dwarf stars and planets collectively called MACHOs, and clouds of nonluminous gas.Dark energy, on the other hand, is a hypothetical form of energy that permeates all of space and has strong negative pressure. The effect of the said negative pressure is invoked as the most popular method for explaining recent observations on the expansion of the universe at an accelerating rate.These scientific concepts are but two of the most controversial and mysterious of them all. Said to make up as much as 95% of all the energy and matter in the universe, it is no wonder why scientists struggle to find out more about these concepts. And yet, here comes three Italian physicists who are attempting to break the glass ceiling with the challenge that scientists were merely forced to propose the existence of dark energy and dark matter because they were, and still are, working with incorrect gravitational theory. Do they mean to say that because scientists didn't have the proper answer to all those queries before, they had to come up with an alternative explanation that would, for the meantime, put a halt to the assault?Perhaps it's something like that. What is clear is that they are suggesting an alternative theory of gravity in which dark energy and dark matter are effects - illusions in a sense - that are created by the curvature of space time. This theory disposes of the need for the actual existence of dark energy and matter.Says lead author Salvatore Capozziello, "Our proposal implies that the 'correct' theory of gravity may be based solely on directly observed astronomical data." Interesting. But what's more interesting is how this theory abolishes the foundation of the said concepts. Let's just hope that it's not another ploy to divert the attention of the people just because they can't determine the composition of dark matter and energy, because otherwise, it will only become a repeat of the mistakes involving gravitational theory... that is, if we are to believe that the original theory was actually wrong.The paper is published online in the August 3 edition of the Institute of Physics' peer-reviewed Journal of Cosmology and Astroparticle Physics.

Dark, Perhaps Forever

Is Dark Matter and Dark Energy the Result of Incorrect Gravitational Theory?
Immersed in preposterous theories, PHD's could never admit to the simplicity of the Universe's Grand Design and Unified Field Theory encompassing the radius of curvature of all natural law

StarSteps: Excerpt from the chapter on Gravity
http://www.fuel2000.net/starsteps.htm

"Through the concept of the curvature of physical law, however, we see that the addition of mass to an existing body does not, necessarily, increase the force of attraction between its parts, but may, under certain conditions, cause the field to become negative, and the attraction to become a repulsion. We can explain the observed actions of the present universe by postulating that an attraction exists between the individual bodies within a galaxy, because their total mass and distance is such that they are within the positive portion of the
gravitation curve with respect to each other. In the vast spaces between the galaxies however, the curve dips below the zero line with the result that a repulsion exists between the galaxies themselves. This also explains why matter, although rather evenly distributed
throughout the known universe, is not distributed uniformly, but found in quite similar concentrations at comparatively regular distances."

June 3, 2008
Dark, Perhaps Forever
By DENNIS OVERBYE
BALTIMORE — Mario Livio tossed his car keys in the air.
They rose ever more slowly, paused, shining, at the top of their arc, and then in accordance with everything our Galilean ape brains have ever learned to expect, crashed back down into his hand.
That was the whole problem, explained Dr. Livio, a theorist at the Space Telescope Science Institute here on the Johns Hopkins campus.
A decade ago, astronomers discovered that what is true for your car keys is not true for the galaxies. Having been impelled apart by the force of the Big Bang, the galaxies, in defiance of cosmic gravity, are picking up speed on a dash toward eternity. If they were keys, they would be shooting for the ceiling.
“That is how shocking this was,” Dr. Livio said.
It is still shocking. Although cosmologists have adopted a cute name, dark energy, for whatever is driving this apparently antigravitational behavior on the part of the universe, nobody claims to understand why it is happening, or its implications for the future of the universe and of the life within it, despite thousands of learned papers, scores of conferences and millions of dollars’ worth of telescope time. It has led some cosmologists to the verge of abandoning their fondest dream: a theory that can account for the universe and everything about it in a single breath.
“The discovery of dark energy has greatly changed how we think about the laws of nature,” said Edward Witten, a theorist at the Institute for Advanced Study in Princeton, N.J.
This fall, NASA and the Department of Energy plan to invite proposals for a $600 million satellite mission devoted to dark energy. But some scientists fear that might not be enough. When astronomers and physicists gathered at the Space Telescope Science Institute recently to take stock of the revolution, their despair of getting to the bottom of the dark energy mystery anytime soon, if ever, was palpable, even as they anticipate a flood of new data from the sky in coming years. When it came time for one physicist to discuss new ideas about dark energy, he showed a blank screen.
The institute’s director, Matt Mountain, said that dark energy had given this generation of astronomers a rare opportunity, and he admonished them to use it wisely.
“We are placing a large bet,” Dr. Mountain said, “using our credibility as collateral, that we as a community know what we are doing.”
But many stressed that it was going to be a long march with no clear end in sight. Lawrence Krauss of Case Western Reserve University told them, “In spite of the fact that you are liable to spend the rest of your lives measuring stuff that won’t tell us what we want to know, you should keep doing it.”
Scuffling in the Dark
Through myriad techniques and observations, cosmologists have recently arrived, after decades of strife, at a robust but dark consensus regarding a cosmos in which stars and galaxies, as well as the humans who gawk at them, amount to barely more than a disputatious froth. It was born 13.7 billion years ago in the Big Bang. By weight it is 4 percent atoms and 22 percent so-called dark matter of unknown identity — perhaps elementary particles that will be discovered at the Large Hadron Collider starting up outside Geneva this year. That leaves 74 percent for the weight of whatever began causing the cosmos to accelerate about five billion years ago.
As far as astronomers can tell, there is no relation between dark matter, the particles, and dark energy other than the name, but you never know. Some physicists are even willing to burn down their old sainted Einstein and revise his theory of gravity, general relativity, to make the cosmic discrepancies go away. There is in fact a simple explanation for the dark energy, Dr. Witten pointed out, one whose tangled history goes all the way back to Einstein, but it is also the most troubling.
“Dark energy has the somewhat unusual property that it was embarrassing before it was discovered,” he said.
In 1917, Einstein invented a fudge factor known as the cosmological constant, a sort of cosmic repulsion to balance gravity and keep the universe in balance. He abandoned his constant when the universe was discovered to be expanding, but quantum physics resurrected it by showing that empty space should be foaming with energy that had the properties of Einstein’s constant.
Alas, all attempts to calculate the amount of this energy come up with an unrealistically huge number, enough energy to blow away the contents of the cosmos like leaves in a storm before stars or galaxies could form. Nothing could live there.
Dr. Witten and other physicists used to think this conundrum “would somehow go away.” Something was missing in physicists’ understanding of physics, the logic went. The constant was really zero for deep reasons that, when revealed, would lead physicists closer to an understanding of what they call “the vacuum,” that is to say, the structure of reality.
“It seems now that the answer is not really zero,” Dr. Witten said.
Requiem for a Dream
Einstein’s constant is the most economical explanation for dark energy, Dr. Witten said. The others, involving new force fields or tinkering with Einstein’s gravity, are hard to make work and raise more questions than they answer. But if dark energy is the cosmological constant, it is smaller than predicted by a shocking factor of 1060. No fundamental principles can explain why Einstein’s constant, or any physical parameter, could be so small without being zero, Dr. Witten said. Zero can be a fundamental number, he said, but not a 1 with 59 zeroes between it and the decimal point.
As a result, he said, maybe physicists should give up trying to explain that number and look instead for a theory that generates all kinds of universes, a so-called multiverse.
That idea has been given mathematical form by string theory, which portrays the constituents of nature as tiny wriggling strings, an elegant idea that in principle explains all the forces of nature but in practice leads to at least 10500 potential universes.
This maze was an embarrassment for string theory. As Dr. Witten, one of the leaders of the field, said, “I am tempted to say this was an embarrassment of my youth.”
“Who needs that mess?” he recalled thinking. “There is just one world we live in.”
Now, Dr. Witten allowed, dark energy might have transformed this fecundity from a vice into a virtue, a way to generate universes where you can find any cosmological constant you want. We just live in one where life is possible, just as fish only live in water.
“This interpretation of string theory might be close to the truth,” Dr. Witten said. But that truth comes at a cost.
“Before the discovery of the dark energy, quantum physicists tended to assume that the ‘vacuum’ we live in has some deep meaning that reflects nature’s deepest secrets,” Dr. Witten said. But if ours is only one of a zillion in a haystack, there is nothing special about it, no secret to be found.
It could still turn out that dark energy is some as-yet-undiscovered “fifth force,” say, or the result of not understanding gravity. In that case, Dr. Witten said, “All the old viewpoints would be correct,” and physicists could go back to dreaming of a final theory.
“I’d be happy if that happened,” he said. “Our reward would be to go back to where we were, not understanding the cosmological constant.”
The notion that there are a zillion universes, whose individual properties are just a cosmic dice throw, is a story that has been told before and “raises the blood pressure of many physicists seriously,” as Dr. Livio put it. But the idea has rarely been mentioned by Dr. Witten, who is seen in the community as a symbol of the old Einsteinian ideal.
Dr. Witten said he was just doing his duty to explain what dark energy meant to physics.
“As for how I feel personally, I am not sure what to say,” he said in an e-mail message. “I wasn’t terribly enthusiastic the first, or even second, time I heard the proposal of a multiverse. But none of us were consulted when the universe was created.”
Astronomy of the Invisible
The trouble started in 1998 when two competing teams of astronomers, one led by Saul Perlmutter of the Lawrence Berkeley National Laboratory in California and the other by Brian Schmidt of the Australian National University, discovered that the expansion of the universe was inexplicably accelerating.
Both teams were using a kind of exploding star known as a Type 1a supernova as standard candles — objects whose distance can be inferred from their apparent brightness and a few other tricks of the trade — to investigate the history and fate of the universe. They found, on the basis of a few dozen of these stars, that the more distant ones were dimmer than expected, meaning that they had been carried farther away by the cosmic expansion than expected, meaning that the universe was speeding up. The car keys were streaking for the ceiling.
The groups quibble about who saw and said what first, but they have shared in a cavalcade of awards and prizes, among them the $1 million Shaw Prize in 2006 and the $500,000 Gruber Cosmology Prize, awarded last fall at Cambridge University in England, where Dr. Perlmutter and Dr. Schmidt lectured jointly, trading sentences.
Since then myriad collaborations have joined in the hunt for these exploding stars. In Baltimore, Dr. Perlmutter reported on a new analysis of “the world’s data set,” more than 300 supernovas observed by various groups, which he said would provide the tightest constraints on the nature of dark energy “for at least the next 15 minutes.”
Dr. Perlmutter’s results, along with all the others that were presented over the next four days, were consistent with Einstein’s cosmological constant, plus or minus 10 percent, but with just about everything else the theorists can throw into the pot, as well.
Nor is there any solid evidence yet that dark energy is or is not varying with time — if it is not constant, it cannot be Einstein’s constant. Adam Riess of the Johns Hopkins space telescope institute, a key member of Dr. Schmidt’s team, said, “The biggest thing we could learn is by ruling that out.”
He added, “We have a suspect, but we’re not ready to convict anyone yet.”
Dr. Perlmutter said, “The challenge is to make dramatic improvements in the quality of the data,” adding, “The next decade should be a very fertile time.”
Astronomers have developed a smorgasbord of other ways of tracking the effect of dark energy. They have learned how to map the growth of clusters of galaxies, by analyzing how their gravity distorts the light from galaxies far behind them. Gravity makes the clusters grow; dark energy holds them back.
“We can see dark matter, and in principle even invisible clusters,” said Henk Hoekstra of the University of Victoria in Canada.
Another technique is to simply count the clusters at different times in the cosmic past, the way one might count trees to gauge the growth of a forest. Yet another method is to use sound waves from the hot, early days of the universe, which have left an imprint on the distribution of galaxies today — a 500-million-light-year “bump” — as a cosmic yardstick for measuring the universe as it grew.
Each of these methods has its own strengths and weaknesses, and experts agree that it will be necessary to marry the results from many methods to zoom in on the properties of dark energy. They also agree that the best place to do that is in space.
The Big Bake-Off
Last year a committee from the National Academy of Sciences recommended that a dark energy observatory be the next mission in an astrophysics program called Beyond Einstein.
There are now three competitors angling for the job: Dr. Perlmutter’s SNAP, for Supernova Acceleration Probe; Adept, or Advanced Dark Energy Telescope, led by Charles Bennett of Johns Hopkins; and Destiny, for Dark Energy Space Telescope, led by Tod Lauer of the National Optical Astronomy Observatory in Tucson.
Also in the works, just to add spice, is a European mission known as Euclid, which could fly in 2017, if it is approved by the European Space Agency. NASA and the Department of Energy, working together, expect to make a final selection for the dark energy mission — known colloquially as J-dem for Joint Dark Energy Mission — next spring and launch it in the middle of the next decade.
That sounds like progress, but some astronomers, including the former members of the academy committee itself, have complained that $600 million is less than half of the $1.2 billion to $1.5 billion the academy committee estimated was necessary to do the job. In a recent letter to Michael Salamon, NASA scientist in charge of the project, 11 of the committee members, including both of its chairmen, urged NASA to raise the cost cap on the mission, writing, “Cutting the budget in half would probably make the attainment of these goals impossible.”
NASA’s $600 million does not include the cost of launching the satellite, so the discrepancy is not as big as it looks. But in Baltimore, Jon Morse, director of astrophysics at NASA headquarters, warned that if the astronomers wanted to spend a billion dollars, some other astronomy mission would have to come off the table.
NASA has to live within its means, Dr. Morse said in an interview.
“Otherwise,” he said, “Beyond Einstein becomes beyond reality.”
A Hole in the Future?
Whatever proposal is eventually selected, the dark energy satellite will return a tidal wave of data about the universe and its weird denizens, both visible and invisible. This data is likely to transform astronomy in unpredictable ways, but there is no guarantee that it will nail the mystery of dark energy.
Both alternatives to the constant — some weird energy field in space, or a modification to Einstein’s theory of gravity — could vary wildly over the course of history. But Paul Steinhardt, a theorist from Princeton University, argued that they would tend to mimic the cosmological constant so closely that the different models cannot be distinguished within the projected error limits, of a few percent.. He called this blur of ignorance “the J-dem hole.” The specter of the J-dem hole dominated a panel discussion later in the week devoted to the question, “How well do we have to do?”
The answer, said Dr. Krauss of Case Western, was “better than you will be able to do.”
The only real job, he said, is to distinguish dark energy from the cosmological constant. “If we don’t answer that question, we won’t have learned a thing,” Dr. Krauss said.
He compared the present situation with the development of quantum mechanics, the paradoxical sounding rules that govern inside the atom, which overturned science in the 1920s.
That revolution, he pointed out, stemmed from theorists’ inability to explain the so-called black body radiation emitted from a hot glowing object. The solution did not come from more and more precise measurements of the black body spectrum, but rather from the heads of people like Niels Bohr and Werner Heisenberg, who envisioned new ways that atoms could work and weird new laws of nature.
“We really need new theory, and we have none,” Dr. Krauss said.
In the meantime, astronomers could get lucky. Despite Dr. Steinhardt’s analysis, measurements of dark energy’s strength could converge on a value not quite the same as Einstein’s constant. Or it could turn out that it has changed over cosmic time and is not constant. Einstein and Dr. Witten would be off the hook.
Michael Turner, a University of Chicago cosmologist who coined the term “dark energy,” said you could measure the health of a field by the big questions it takes on, and addressing Dr. Morse of NASA, who was moderating the discussion, as well as his colleagues, he said, “You have a job, to go knock on everyone’s door and say this is the opportunity of a lifetime.”
Dr. Krauss said, “It would be crazy to talk ourselves out of this.”
He added: “You have to do what you can. You would be crazy not to look.”

Saturday, March 15, 2008

Black Hole Look Alikes

Black Hole Similarities & Look Alikes:
Illusions Delusions and Real

In StarSteps
, even a fourth grader could explain the vast differences in measurement of a flat plane and a curved ball; neglecting the curve disfigures reality with a flat earth belief when the curve on the ball's surface is not considered in measurement. The extended concept of E=MC2 throws the same curve ball measurement across the micro to macro realities, with a unified integration of space/time/mass/matter/energy/gravity through the radius of curvature concept of all natural law – a recognition permitting simple 4th grade understanding of PhD level science to filter down to the people, carrying with it the capacity to overcome any known problem today with highly advanced energy systems and greatly expanded comprehension of energy space time relationships

Galaxy Birth Processes

"....If we were to direct a large telescope on earth towards this gas cloud, we would not be able to see it at all. Since all of the light coming from the galaxies behind it is now being absorbed, we would see only that there was an unusually large dark area in space. We would probably refer to it as a 'dark nebula,' a tremendous body of gas, still somewhat rarefied according to our usual concept of gas; which emits no light, but which does absorb, and convert to lower frequencies, almost all of the light, and other forms of radiant energy which reach it from the countless radiating stars throughout the universe."


"......We must recall at this point, that it is the central spheroid of the galaxy which is formed first. It is in the central portion, that planets would first reach conditions suitable for life, and it is upon these planets that life would first achieve a high degree of development. Intelligent life might therefore be said to radiate from the center of a galaxy outward toward the periphery. A process which might take place over a period of several millions of years after the first race had achieved space travel. It is with this thought, and in a very humble frame of mind that we begin our return journey to our tiny planet earth; located almost on the extreme outer edge of our own galaxy."


NEW GALAXIES:



At this point in our progress of understanding, we shall embark upon a most ambitious journey. We are going out into space. Into the remotest depths of inter galactic space, so that we may observe, at close range, the birth processes of a new star cluster or 'Galaxy.' We will take along our consciousness, our ability to observe, and our understanding. We must, of course, leave our bodies behind, since they would not fare well in space, and also because their mass would create a gravitational field which would tend to alter the natural conditions at our point of observation. We will seek a spot which is at least a few million light years distant from any other galaxy or accumulation of matter; for it is only within these remote areas that we may observe the birth process of a new galaxy.
In the first part of this book, we discussed the almost inconceivably large number of particles which are found in each cubic inch of our atmosphere at sea level. As we move outward from the earth's surface we find that the number of particles diminishes rapidly, but still remains surprisingly large. When we have reached a height of one hundred miles we find that there are only about one millionth as many particles per cubic inch as we found at the surface, this is a density of matter so minute that we require very sensitive instruments, even to detect its existence. Yet, if we count the individual particles, we will find that there are still about 400 million, million particles in each cubic inch of space. At a few hundred miles elevation the density has diminished another million times, and we say that we have entered 'space', yet there are still many millions of particles per cubic inch.
We come to the startling realization that there simply is no such thing as 'empty space.' Astronomers have estimated that even in the remotest depths of intergalactic space, (which is our destination on this trip) there will still be found from twenty five to seventy five or more nuclear or atomic particles per cubic inch. Most of these particles are protons, or simple atoms which have attained escape velocity from the surfaces of some star, and which may have been wandering aimlessly about, perhaps for billions of years, coming into occasional collision with ocher particles, but usually with sufficient relative velocity so that mutual capture could not take place.
In the vicinity of existing galaxies, the gravitational fields created by the innumerable stars within those galaxies, tend to draw in the random particles, many of which eventually fall into one or another of the stars, and thereby assist somewhat in replenishing the mass which each star is constantly converting into energy.
We must, therefore, seek a spot which is remote from any of the existing galaxies, and approximately equidistant from the nearer ones. Even in this remote area of space we will find countless numbers of particles of matter, anti units of charge; electrons, protons or simple atoms, which have achieved escape velocity from some star, or which have been formed in space by random approach and capture. In short, we have all of the building blocks of nature, present in an exceedingly tenuous and diffuse state.
Since each of the particles of matter has mass, each has a force of attraction existing between it and ever other particle of matter in the area.
If we accept the concept of the non linearity of natural law as previously outlined in this text, we find that each of these particles is also being repelled slightly by the surrounding galaxies or galactic clusters.
These forces are almost inconceivably small, yet the net result of their action is to create a tendency upon the part of each randomly moving particle to move ever closer to the center of the area of attraction, which is also approximately but not exactly the center or 'null balance' point of the repulsion of the surrounding galaxies.
We will assume that we have now reached the point from which we will observe the birth of our new galaxy. This point is at the center of a sphere of space, perhaps thirty thousand light years in diameter, within which the final concentration of matter will take place.
We must be prepared to exercise a great deal of patience, because the forces involved, and the resulting accelerations are so minute that many millions of years will probably elapse before we can detect any significant increase in the number of particles per unit of volume. Nevertheless, all of the particles within several hundreds of thousands of light years are slowly but surely acquiring a velocity in our direction.
As the concentration of matter at the center of our system increases, the intensity of its field will also increase and will add, not only to the velocity, but also to the acceleration of the inward moving particles. We are observing the condensation of a tremendously large volume of exceedingly ratified gas into a relatively small volume.
Let us assume that one hundred million years have passed since we first occupied our point of observation at the center of the newly forming galaxy. All of the particles within some thousands of light years have now acquired a very respectable velocity in our direction, and the density of the gas surrounding us is increasing with comparative rapidity. We observe however, that the particles are not falling directly toward the central point of the condensation.
We can understand this if we realize that the center or null point of the force of repulsion is determined only by the distribution and the distance of the surrounding galaxies, while the center of the force of attraction is determined by the distribution of matter within the area of condensation. Since the center of 'push' is not at the same point as the center of 'pull', there is a tendency toward the creation of an angular velocity. That is: the particles, instead of falling directly toward the center, will tend to spiral inward. Eventually this rotational motion will become general throughout the mass.
The plane in which this spin begins is determined by the location of the existing galaxies and the relative density of particles in different parts of the condensing mass, but once begun, the motion tends constantly to increase as the condensation proceeds.
The particles which are upon either side of the central plane of spin tend to fall toward the plane as well as toward the center, while those particles which are nearly perpendicular to the center of the plane of spin rend to fall inward more rapidly because of their smaller rotational velocities. Our gas cloud now begins to take on the shape of a disk with a somewhat oblate sphere at the center. The galaxy has begun to assume its final shape, though as yet, there are no stars within it nor does it emir any light.
If we were to direct a large telescope on earth towards this gas cloud, we would not be able to see it at all. Since all of the light coming from the galaxies behind it is now being absorbed, we would see only that there was an unusually large dark area in space. We would probably refer to it as a 'dark nebula,' a tremendous body of gas, still somewhat rarefied according to our usual concept of gas; which emits no light, but which does absorb, and convert to lower frequencies, almost all of the light, and other forms of radiant energy which reach it from the countless radiating stars throughout the universe.
As the nebula continues to contract, areas of comparatively high density will develop in many parts of the mass. Each of these points will become a local center of gravity, and accelerated condensation will occur towards these points.
The gas cloud now becomes broken up into a multitude of individual spheres, each of which continues to condense upon its own center, just as a cloud condenses into myriads of tiny water droplets.
Let us now direct our attention to one of these 'droplets' which is eventually to become a star in our new galaxy. It is still several millions of miles in diameter, but shrinking rapidly.
As the gas cloud condenses, the energy which it contains, becomes concentrated. The particles which while they were drifting about in space, had almost infinitely long 'mean free paths’, now come into more and more frequent and more and more violent collisions.
The temperature of the mass constantly rises. The kinetic energy which the particles have been building up during the millions of years while they were accelerating toward the common center, is now being converted into thermal energy. Eventually the mass begins to emit photons having frequencies in the visible portion
...........Full Text

Black Hole Measurements and Delusions

Black Hole Measurements and Delusions
Where is that cotton pickin curve?
(i.e.: Radius of Curvature of all Natural Law)

In StarSteps, even a fourth grader could explain the vast differences in measurement of a flat plane and a curved ball; neglecting the curve disfigures reality with a flat earth belief when the curve on the ball's surface is not considered in measurement. The extended concept of E=MC2 throws the same curve ball measurement across the micro to macro realities, with a unified integration of space/time/mass/matter/energy/gravity through the radius of curvature concept of all natural law – a recognition permitting simple 4th grade understanding of PhD level science to filter down to the people, carrying with it the capacity to overcome any known problem today with highly advanced energy systems and greatly expanded comprehension of energy space time relationships









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Circumference speed of black hole ....................Light Speed
20,000 miles per sec ....................................... 186,282.40 miles per sec
1,200,000 miles per min ................................ 11,176,944 miles per min
72,000,000 miles per hr ................................. 670,616,629 miles per hr


A line showing the speed of light on a scale model of Earth and the Moon, about 1.2 seconds.



The approximate value of 3×108 m/s is commonly used in rough estimates. In imperial units, the speed of light is about 670,616,629.2 miles per hour or 983,571,056 feet per second, which is about 186,282.397 miles per second, or roughly one foot per nanosecond.
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A Race Round a Black Hole
So you think rockets are fast? Scientists have spotted something going much faster. Like state troopers on a highway, these scientists used a "speed gun" to clock clumps of hot iron gas whipping around a black hole at 20,000 miles per second. That's over 10 percent of light speed.At this speed, you could get to the moon in about 10 seconds. The black hole's extreme pull of gravity is causing the gas to move so quickly. Image to left: This animation depicts three hot blobs of matter orbiting a black hole. If placed in our Solar System, this black hole would appear like a dark abyss spread out nearly as wide as Mercury's orbit. And the three blobs (each as large as the Sun) would be as far out as Jupiter. They orbit the black hole in a lightning-quick 20,000 miles per second, over a tenth of the speed of light. Click on image to view animation. Click here for a high resolution still from the animation (9.8 MB) Credit: NASA/Dana Berry, SkyWorks DigitalDr. Jane Turner of NASA Goddard Space Flight Center led the observation. She used a satellite launched by the European Space Agency called XMM-Newton. She said that this kind of measurement has never been done before."For years we have seen only the general commotion caused by massive black holes, that is, a terrific outpouring of light," Dr. Turner said. "We could not track the specifics. Now we can filter through all that light and find patterns that reveal information about black holes never seen before in such clarity."This is big news for black hole hunters because the observation marks the first time scientists could trace individual blobs of shredded matter on a complete journey around a black hole. This provides a crucial measurement that has long been missing from black hole studies: an orbital period. Knowing this, scientists can measure black hole mass and other characteristics that have long eluded them.Black holes are regions in space so dense that gravity prevents all matter and light from escaping. What scientists see is not the black hole itself but rather the light emitted close to it as matter falls towards the black hole and heats to high temperatures.Image to right: This is a simplified illustration of two hot blobs orbiting a black hole, showing how scientists tracked the blobs by observing their Doppler shift. First, we see one blob. Note how the energy emitted from this orbiting material rises to about 6.5 kilo-electron volts (an energy unit) as it moves towards us, and then falls to about 5.8 kilo-electron volts as it moves away. This is the Doppler effect, the same phenomenon that law officers exploit to nab speeders on a highway. Matter goes round and round; energy goes up and down. About 14 seconds into the animation, the artist adds a second blob which also displays a rise and fall in energy during its orbit. Click on image to view animation. Click here for high resolution still from animation (3.0 MB). Credit: NASA/Dana Berry, SkyWorks DigitalIf this black hole were placed in our Solar System, it would appear like a dark abyss spread out nearly as wide as Mercury's orbit. And the clumps of matter detected would be as far out as Jupiter. The clumps orbit the black hole in a lightning-quick 27 hours (compared to the 12 years it takes Jupiter to orbit the Sun).But this black hole is far, far away. Dr. Turner's team observed it in a well-known galaxy named Markarian 766, about 170 million light years away in the constellation Coma Berenices (Bernice's Hair). The black hole in Markarian 766 is relatively small although highly active. Its mass is a few million times that of the Sun. Other central black hole systems are over 100 million solar masses.Matter funnels into this black hole like water swirling down a drain, forming what scientists call an accretion disk. Flares erupt on this disk most likely when magnetic field lines emanating from the central black hole interact with regions on the disk. Zap! ....Zap, Zap, Zaparoo Full Text

Crisis in Measurement - An Evolutionary Survival Criterion

Crisis in Measurement - An Evolutionary Survival Criterion
In StarSteps, even a fourth grader could explain the vast differences in measurement of a flat plane and a curved ball; neglecting the curve disfigures reality with a flat earth belief when the curve on the ball's surface is not considered in measurement. The extended concept of E=MC2 throws the same curve ball measurement across the micro to macro realities, with a unified integration of space/time/mass/matter/energy/gravity through the radius of curvature concept of all natural law – a recognition permitting simple 4th grade understanding of PhD level science to filter down to the people, carrying with it the capacity to overcome any known problem today with highly advanced energy systems and greatly expanded comprehension of energy space time relationships

THE NONLINEARITY OF PHYSICAL LAW:

Illusions Delusions and Real



The series of mathematical formula which Albert Einstein gave to the world in 1905, he called "A Theory of Special Relativity". Einstein brought to our attention that the factors of Gravity, Space, Time and Energy were not absolute and independent entities, but that they were variable factors, each having a value which depended upon the value of others. Thus the first faint light of understanding began to filter through the dense screen of absolute determinism which had been erected about the physical science.

Unfortunately, science, instead of pursuing this bright gleam of truth, attempted, from force of habit, to mold it into the common pattern of knowledge, by reducing it to a mathematical formula, which could be used without the necessity of understanding it.

Special Relativity was made into a "universal law of absolutes".

We have ignored the forward with which Einstein prefaced the mathematics, and so have created the very thought blocks which he hoped to prevent. We will refer to this problem later on, but it might be wise first, to devote a little time to the consideration of what we will call "the non linearity of physical law".

A few decades ago, our physical laws were considered to be linear. That is: we had, by trial and
error, by observation and test, developed a set of laws which apparently held true for all of the small segment of nature, which we were able to observe at the time. We assumed, therefore, that these laws would hold true in any segment of nature, no matter how far removed from our point of observation.

green or pink balls (look to center)


When, however, the study of physics moved into the microcosm, that is, when we began to examine the interior of the atom, we found there a set of laws which did not agree with those to which we had been accustomed. They too appeared to be linear, but operated at an angle to our established laws.

The same disturbing situation was discovered in the macrocosm. When our astronomers developed the giant telescope capable of peering many millions of light years into space, they found there, still another set of laws operating apparently at an angle to both of the others.

For a time, we attempted to accustom ourselves to the existence of three sets of physical laws, each set linear within its own range of observation, but each set operating angularly with respect to the others. Then, with the development of the principles of relativity, we began to realize, or at least we should have realized, that these different sets of linear laws were not actually linear, nor were they different sets of laws. They were simply three widely separated segments of the one great curve of natural law.

StarSteps http://www.fuel2000.net/starsteps.htm

As long as we were dealing with quantities which could be observed with the unaided eye or with simple instruments, we were unable to detect the curvature, because the segment we were observing constituted such a tiny portion of the curve that its deviation from linearity was too slight to be detected .... Full Text

Saturday, March 01, 2008

Swami Beyondananda’s 2008 State of the Universe Address

Comical Yet Sobering Predictions Derived From Lethal Evolutionary Choices

Science, with it’s by-product, Technology, represent humanity’s extended senses to our expanding grasp of Universal Reality. Science and Technology promote an increasing capacity toward sustainable, thriving, and prosperous survival, through the extension of our senses: to see/hear/touch/move - further, closer, smaller, faster, heavier, etc.; to boundless creation of - new products, health advancement, and new realities previously unimaginable with just our physical bodies and senses alone.

Any obstruction to filtering Simple Understanding of the sciences to the masses, any obstruction to the sciences themselves, will result in a spectacular, and heretofore unheard of, calamity to humanity, overshadowing all historical events, surpassing even the fables and legends.

The pending lethal evidence stands clearly before all eyes, even those without scientific training:

* The coming nuclear resource wars – byproducts of the dumber than dumb scientific energy concepts promoting the beliefs in “there is not enough to go around” & “what little there is, it’s all mine” – the 2% corporate golden greedy guts who own 98% of the world)


* Global Warming/Pollution/Ecological Imbalance threat - caused by the successful Obstruction to Energy Evolution since the late 1940’s. Energy Evolution, the highest priority in humanity’s sustainable and prosperous evolution, has broken all records in stagnation; stifled to such an extent, that more and more highly respected scientists today exemplify “The Trouble With Physics” foundational problems with preposterous models and theories, including the outlandish belief in eventual physical "time" travel.


In
StarSteps, even a fourth grader could explain the vast differences in measurement of a flat plane and a curved ball; neglecting the curve disfigures reality with a flat earth belief when the curve on the ball's surface is not considered in measurement. The extended concept of E=MC2 throws the same curve ball measurement across the micro to macro realities, through the radius of curvature concept of all natural law – a recognition permitting simple 4th grade understanding of PhD level science to filter down to the people, carrying with it the capacity to overcome any known problem today with highly advanced energy systems and greatly expanded comprehension of energy space time relationships.

Monthy Aspectarian: http://www.lightworks.com/MonthlyAspectarian/2008/February/Swami.html

Beyonda News
Swami Beyondananda’s 2008 State of the Universe Address

Swami Predicts Heart Times Ahead
Every year at this time, I am asked to make predictions, and each time I politely refuse because I don’t want to jeopardize my nonprophet status. But this year is different. With 2012 just one quantum leap year away, we humans might finally be ready for a quantum leap of our own. The message is coming in loud and clear. Time to shift or get off the pot.In order to upshift our karma into surpassing gear, however, we must shift our awareness downward from the static of the head to the ecstatic of the heart. If we are to have an awakening instead of a wake, I predict heart times ahead.

Disheartenment in the Heartland
Heartenment, after all, is just the thing to counteract the disheartenment in the heartland. Take the economy -- please! After years of untreated Deficit Inattention Disorder, the U.S. dollar is now worth less than a dollar of Monopoly money. As the most recent Greenspan report tells us, the average American family barely has enough green to span the average month. Meanwhile, trickle down economics has proved true to its name, leaving a growing class of pee-ons at the bottom.


Then there’s electile dysfunction. Instead of transparency around how votes are cast and counted, we have an apparent trance. The secret ballot has been taken to the next level, and now voting machines with secret software count the votes in secret. This is called “faith-based” vote counting. Hey, some of those new “smart” voting machines are so smart, that they don’t even need voters! This makes perfect sense because government of, by and for the people has now been efficiently transformed to government of, by and for the very, very few people. Talk about minority representation. We are now governed by a smaller minority than ever in our history!


Even when we do manage to get an election, the body politic still suffers from impotence. As we learned after the 2006 election, just because we vote for someone doesn’t mean they are going to vote for us. Instead of canceling the Iraqi Horror Picture Show, the Democratic misleadership has gone along with the same basic neocon con, only with a cosmetic makeover – sort of a wolfawitz in sheepawitz’s clothing.Though the upwising continues, irony deficiency and truth decay still plague the body politic. Instead of forums that shine light on political issues, the media has encouraged againstums where incendiary phrases spark heated arguments. So, while red tribe Republicans and blue tribe Democrats argue whether it’s wronger to kill the born or the unborn, the born keep dying while the not-yet-born are stuck with the bill. No wonder our moral compass has gone south. As if global warring isn’t enough to worry about, now there’s global warming. It would be sad indeed to have come this far, only to see the headline: “Human Race Ends In a Dead Heat.”No wonder so many people are scared shiftless. The good news is, this is the State of the Universe Address and I am happy to report that the state of the Universe is copasetic – ever changing, same as always. This is particularly heartening when we realize that that universal state is also our own.

Universe Knows Best
When it comes to universal wisdom, you can’t beat the Universe. First of all, the Universe is everywhere all at once. Talk about being on top of things. Even as it keeps expanding, the Universe has it together -- which means, as part of the universe, a part of us has it all together too. We are inextricably connected to the Universe. It is inescapable. Without the Universe, we’d be nowhere.Here is more amazing news. We are all descended from the same Big Bang! When the Big Bang went boom, all of the Universe’s parts departed from one particle. And that includes us. So, we might as well proclaim it proudly. “The Big Bang is my pop. Well, I’ll be a son of a gun!”


The Big Bang is everybody’s pop, which means we are all related. If we are indeed a fractal chip off the old block, Universe-wise ... then somewhere we must be as wise as the Universe. For millennia, spiritual teachers have told us to look inside for this universal wisdom. It turns out, they were right. The real spiritual pilgrimage is actually a journey of about twenty-four inches, roughly the distance from the head to the heart.

The Heart of the Matter is the Matter of the Heart
Yes, everyone is equipped to attune to universal wisdom because everyone has been given a heart. And yet, the heart seems to be the last gift we open. The most underdeveloped resource on the planet is the treasure inside our own treasured chest! Given all the craziness in the world, maybe if we invested in expanding our hearts, we’d have less need to shrink our heads. And less of a need to be so all-consumed by consumerism. We have learned to spend so much energy pursuing happiness that we never stop to think what would happen if we actually caught it -- or rather, if it caught us. With all this hot pursuit, we have left real happiness in the dust. It is sad indeed that we end up jealous that someone else’s happiness might be bigger than our own. Freud called this “happiness envy.” As the saying goes, money can’t buy happiness, although it can buy anti-depressants. But if you are seeking more out of life than not being depressed, the key to happiness is to grow your own. Every one of us should be asking, “What good am I?” What good can I add to the greater goodness? Maybe if we had greater goodness, we’d need fewer goods. As human beings, our biggest asset is love, so now is the time to get up off our big fat assets, and practice supply-side spirituality. Because we aren’t here to earn God’s love, we are here to spend it. We are here to re-grow the Garden from the grassroots up, and have a heaven of a time doing it!

Heartland Security
Now while the solution is simple, no one said it was going to be easy. Just as the human potential movement has made great gains over the past 25 years, the inhuman potential movement has more than kept up. Everywhere I go, the little David’s I meet all ask the same question: How can we get Goliath to go lieth down? I have good news and I have other news, and they are both the same: It’s up to us. We must lead ourselves out of the bewilderness.


Yes, we’ve been politically abused, so the first step is to disabuse ourselves. We must start overseeing instead of overlooking. By overlooking what we should have been overseeing, we have become enablers for the lowest common dominator. Whether it’s called globalization or gobble-ization, it’s the same old mining operation -- that’s mine, that’s mine, that’s mine. Because we’ve allowed ourselves to imagine that someday that “mine” will be ours, we have agreed to a “don’t ask, don’t tell” policy with our government. We promise not to ask them what they are doing, and they promise not to tell us. That way, we can pretend to believe we are invading a country to keep the peace, when we are really there to keep the pieces.


Meanwhile, back at home, they’ve given last rites to the Bill of Rights, and newspeak has become the new spoken language of the mainstream media. Now before we just shrug and say, “Orwell, what can we do about it?” we need to see the only way to overgrow Big Brother is with bigger brotherhood -- and even bigger sisterhood. Time to heal our spiritual dyslexia, and realize our natural state is sacred, not scared. The scared masculine and the scared feminine have given us the dysfunctional dance of abusers and enablers. Now we must empower the sacred masculine and sacred feminine to come together and conceive what has been inconceivable – the truly evolved human.


We need to amplify the love and light to counterbalance the darkness and fear, and that is why we need a nongovernmental Department of Heartland Security to secure the heartland and let the powers in power know in no uncertain terms, “Bigger brotherhood is watching you.”To do that, we must migrate en masse --regardless of political or spiritual affiliation -- to the land of the heart. Instead of squabbling over the differences that separate us, we must cohere around the heart-core values we share in common. That is the only way we can trade our insecurity for inner security. No matter where we stand on climate change, one thing is clear. Global heartwarming is bound to change the political climate for the better.


Whatever the problems, we have the wherewithal to address them. Now all we need is the aware-with-all. Whether you call yourself a creationist or an evolutionist, or take the simplest approach of all to the Great Unknown -- not knowing -- one thing is undeniable: We are all one with the same One. The story of separation, survival of the fittest, and lowest common dominator --that is the old story. Only we have the power to close the book on the old story once and for all, by declaring: And they all lived happily ever after.


And happily ever after begins now. © Copyright 2008 by Steve Bhaerman. All rights reserved. To find our Swami’s schedule and get a free catalogue, call toll free (800) SWAMI-BE or visit him online at http://www.wakeuplaughing.com/ .

Sunday, November 25, 2007

Evolution, International Conflict, Understanding & Survival


When Science is lamed by greed in the Energy sector, the resultant revelations and understanding extending into the social and spiritual realms necessary for evolutionary survival are denied. The result in this broken, repeating, Unlearned, record of the 'rise and fall' of civilizations will be the source of another future legend and myth.
Understanding the Area of Mutual Agreement and International Conflict:
A Project of Understanding Inc. in the 1960's - A practical approach to civilization's most urgent problem

The Area of Mutual Agreement

It is only necessary to read the front page of any metropolitan daily newspaper, to realize that our society is undergoing basic changes at a rate that can only be described as revolutionary. Social concepts and postulates which, for centuries, have been considered indisputable, are now being questioned, ignored or openly defied. Respect for all forms of authority is rapidly diminishing.
Many philosophers and statesmen have begun to fear that the entire fabric of society may break down, plunging the world into unimaginable chaos, and greatly increasing the probability of ultimate nuclear extermination. Whether this fear is a valid one, is itself a subject of controversy, yet thousands of highly educated and experienced men, in positions of leadership, are working, sometimes almost desperately, to stem the tide of change and to bolster in one way or another, our apparently sagging social structure. Unfortunately, most of these men are specialists in relatively narrow fields, and their efforts are devoted primarily to coping with the symptoms of change rather than determining the nature of the problem which brings it about. Federal Reserve Board Chairman Arthur Burns admitted, a few months ago, that, "The rules of economics are not working quite the way they used to." The full truth is that few, if any of the rules of society are likely, ever again, to work exactly as they used to, and the present danger is that, unless the reasons become better understood, the rules may never work at all. It is not only desirable therefore, but imperative, to consider first, the great basic deficiency of society from which most of its problems arise.
The Social Science has been defined as, "The study of the relationship of man to his fellowman, and of the means by which that relationship may be made more successful, more productive and more enduring. Colleges and Universities list courses in social science, and governments spend billions of dollars and hours of effort upon it. The fact remains however that, as yet, no genuine scientific foundation has ever been established for this study. It has developed only as an art, rather than the science which it is called, and which it must become if it is to furnish practical solutions to the present and future problems of mankind.
Most leaders, and many would-be leaders of men, formulate their own doctrines concerning the proper attitude and actions of man towards his fellow-man. Each of these doctrines, if published will attract followers. In some cases the followers may be few, while in other cases entire nations or races may become eager and devout followers. Yet those who follow each leader do so primarily because of the esthetic or the emotional appeal of the doctrine, rather than because of any tested and proven merit. Thus, throughout the ages, an ever changing series of more-or-less random social experiments have been conducted by those whose public position or political power has enabled them to influence the thoughts and actions of their neighbors, their nation or their race. Some of these social experiments have been partly or wholly successful, others have been total failures, and some, for example, Nazism, Fascism, have brought terrible tragedy and destruction to whole races of people. Yet none of them, successful or otherwise, have contributed significantly to the science of human relationship, because none of them were designed from, or built upon, any foundation of universally accepted fact, or even belief. Unfortunately, no such foundation has ever existed for the social arts, and they can never become a science until a foundation of mutual agreement, however small it may be in the beginning, has been established and documented.
If we consider the branch of knowledge and inquiry usually known as the Physical Science, we find it to be a true science in that the area of mutual agreement has long since been determined and documented. The process through which the documentation was achieved was not a natural or automatic one, it required planning and dedication on the part of those who carried it out. The beliefs of scientist in the field were compared with the beliefs of others. If a given postulate was accepted by all, that fact was documented, and where differences of opinion existed, specific tests were devised, and are still being devised to determine the relative merits of the differing theories. Since the postulates upon which such tests are based have been accepted in advance by all concerned, all are equally bound by the results of the tests and have accepted them, at least until some still better theory, or better tests have been formulated. Consequently, there has never been a war, or even a major feud which resulted from any difference of belief in the physical science. It stands upon a foundation of mutual agreement, and has a built-in, method of settling disputes and resolving differences.
In the social arts, as we have pointed out, the area of mutual agreement, while it is certainly large and general, since there are far more similarities between all men than differences, has never been specifically defined or documented. Therefore, there is no foundation from which mutually acceptable tests or means of determination can be formulated.
When large numbers of people, and sometimes whole nations or races, are led to adopt basic suppositions and beliefs that differ substantially from those of others, a constantly increasing friction is likely to develop between the groups. Since there are no adequate or accepted means of testing the relative merits of the opposing concepts, the heat of emotion generated by the continuing friction may, and frequently does, lead to open warfare.
The tragedy and the futility of warfare lie in the fact that it cannot determine the relative merits of the conflicting ideologies it can only demonstrate the relative fighting abilities of the participants! No matter how violent or how prolonged the war, and no matter who may be the victor, there will still have been no approach to a solution of the problems or the differences that brought about the fighting. In a few months or a few years, when the contenders have recovered somewhat from their wounds, they will be ready to fight again! The winner usually learns nothing from such encounters, and if the loser learns anything, it will only be how to avoid the worst of his military errors! In every war, both sides suffer far more loss and damage than would have been incurred by either in accepting the principles of the other.
So long as a civilization possesses only simple weapons of limited destructive power, it can tolerate, and it may survive these periodic acts of tragic nonsense. Millions of innocent persons may meet violent and untimely death, and hundreds of years of patient human effort may be wiped out by the passing whim of one leader. Still the race, and at least some part of its culture, will survive, to begin again the seemingly endless struggle toward peace and security.
When weapons of total destruction come into being however, the situation changes, for no civilization and no race can survive the holocaust of the weapons now being created. It is clear that the only choice now left to mankind is Hamlet's choice-"To be, or not to be."

Every reasoning individual, every parent and every leader of men, must now ask himself this question, "Will I leave to my children, and to the children of those who look to me for guidance, a world filled with beauty and opportunity, as is their rightful heritage? Or will their their charred and broken bodies be strewn about a burned out planet, orbiting the sun as a perpetual memorial to the ultimate failure of logic and reason?" Let no man make the tragic mistake of thinking that the problems of mankind may somehow solve themselves, if only we can manage to ignore them long enough, or that we can safely delegate to others, the responsibility of their solution.
For untold centuries man has cried "Peace Peace!" and there has been no peace. Thousands of intelligent and dedicated men have devoted their lives to the search for peace, and uncounted millions have fought to the death for it. It is time we faced the fact that peace can never be reached through any direct approach. It is not as gold, which can be obtained by continued digging, nor is it a treasure which can be had at once, if only one knows where to look! Peace is simply the automatically resulting by-product of complete understanding between man and man, between state and state, and between all men and God. When such understanding exists, there is no need to search or to work for peace, it exists automatically, but until understanding has been achieved, no amount of effort for peace can ever be successful. Let us therefore, direct our thoughts and our efforts toward the goal of complete understanding. While this goal may, as yet, be somewhat beyond the reach of man, it is only to the degree in which it is approached that we can find peace.
As a first step in the achievement of world understanding, we must begin, for the first time in the history of this planet, to create the only foundation upon which a true social science, or any other true science can be built. There are no obstacles except the magnitude of the task, and its great success in its application to the physical science, should demonstrate to everyone how well it works! Let us consider therefore, the following proposal.
Some presently existing international organization should be enlisted, or a new one created if necessary, for the purpose of sponsoring a world wide congress, composed of representatives of every major and, insofar as may be practicable, every minor nation, race, ideology and philosophy. In the ideal case there would a representation of every group of people whose members have any thought patterns which are common to the group. The delegates from each nation, race or ethnic group shall be chosen only by the group which they are to represent, and shall be persons who are fully aware of the basic thinking of the group. The congress shall have one purpose only.. To determine and to document, through the minutes of the meeting, all of those principles, postulates and rules or methods of procedure which are found by all of the delegates, to be generally accepted as valid principles of the social relationship of mankind. No attempt shall be made by any individual or group to influence the thinking, or to mould the opinion of any other individual or group, since the purpose of the congress is not to determine what the people or the world should think, but only to discover what they do think! Any suggestion or postulate which; after brief discussion, is found to be unacceptable by any delegate; shall immediately be dropped from consideration, and the next suggestion shall be taken up.
(If, however, the majority of the delegates find the item to be acceptable and it is rejected by a minority, a note will be made describing the discarded principle, and the reasons given, if any, by those who rejected it. Although no reasons need be given for the rejection, the notes may prove helpful to any subsequent congress which may be held for the purpose of enlarging, updating or amending the original document. In any event, they should prove helpful in the understanding of the thought patterns of the various groups.)
A number of sample postulates should be prepared in advance of the first formal meeting, but after these have been considered, each delegate, in turn, shall have the right, and the duty, to pro pose additional items for consideration by the assembly. Each suggestion shall have a direct bearing upon the relationship of man to his fellowman and/or upon the means by which that relationship may be made more successful, more productive or more enduring. They shall be stated in the simplest possible terms so that they may readily be understood by all. Each suggestion shall be individually considered, and accepted or rejected by a vote of the delegates. Those postulates or suggestions which are accepted shall be recorded as documented and recognized factors in the social science. For convenience and order in making the suggestions, they should be grouped into specific areas of human needs, human desires, human relationship, ecological requirements etc. They should begin, in each of the fields, with the simplest proposals or postulates that can be conceived and expressed, since a foundation must be built upon the ground, and not at some distance above it, (as has heretofore been our habit in any approach to the social science.)
In the area of human needs, for example, the following postulate might be offered, "Resolved that it is more desirable that all persons should have available to them, a sufficient amount of nourishing food, than that most of them should suffer constantly from hunger and malnutrition." (Note that this is purely an academic question, and its acceptance would not bind the delegates to any course of action whatever, but would only establish the validity of the principle. At first, such a proposal might seem to be so obvious as to be ridiculous, yet the fact remains that its universal acceptance has never been tested or documented. If it were accepted, (and it probably would be if the proposal were made at a time when the assembly had been without food for some hours) it would then become a recognized and documented principle, and the way would be opened for other equally simple and basic suggestions as to possible means for the implementation of the first. It should always be remembered however, that the purpose of the congress is not to solve the problems of society, but only to create a tool with which those problems might successfully be approached.
At first, progress would be slow as the delegates struggled with the unfamiliar task of breaking down their ideas and beliefs into the simplest possible expressions, but would soon be discovered that the more simply the concept was expressed, the more probable its acceptance by the assembly. (A fact which has long been forgotten by our politicians, diplomats, and even most of our statesmen.) As the number of building blocks in the foundation grew, one by one, and as the delegates began to realize, most of them for the first time, the remarkable similarity in each other's thinking, when reduced to fundamentals, the confidence, the enthusiasm and the rate of progress would steadily increase.
In the area of human relationship, the beginning postulate might be, "Resolved, that it is better that man should live in peace and cooperation with his neighbor, than that his works and his goods should be destroyed, and he should be maimed or killed in battle with his fellowman." Such a postulate might, or might not be accepted, but if it were, then other simple concepts leading to implementation might be considered.
Such an approach to the social science may seem to be childishly over-simplified, and indeed it is, but if we are ever to succeed in building a true science, we must begin at the beginning, and we have never yet done so. A similar process was employed in the development of the physical science, and its success speaks for itself.
When the congress has completed it's deliberations, when all principles, rules and methods of procedure that can be by the delegates have been considered and voted upon, the resulting document shall be translated into all of the principal languages of the world, and made available to all people as the foundation document and reference work of the social science.
The preliminary study which has led to this proposal, has indicated that the minimum number of delegates required for an acceptable congress, (provided that each delegate was in fact chosen by those whom he is to represent) would be of the order of 1,000, and that the time required for the completion of the primary document world be about one year. The overall cost of the congress, (Aside from the cost of selecting delegates, which would cheerfully be borne by the groups making the selection) would be about $20 million, a sum which, to the individual may seem large, but which, if distributed among the population of even a single country such as the United States, would amount to less than ten cents per person (Not a very large investment when one considers that the welfare of everyone, and the continued existence of civilization, almost certainly depends upon our ability to develop some from of social format capable of easing tensions and lessening friction between nations, and between the various ethnic groups.)
The organization which sponsors this proposal should conduct additional studies for the purpose of formulating more specific figures as to the largest practical number of delegates, the time required, and the cost. The study should also include the most desirable location for the convention, the logistics of travel and the maintenance of the delegates, the linguistic problems etc. Before any action is taken to implement the proposal, the plan should be publicised throughout the world, through the medium of newspapers, radio, television etc. It should be discussed in the United Nations Assembly and in other international forums. Such wide publicity would be neither difficult to obtain, if the proper approach were made. There are many persons in key positions in the communications systems of the world, who are well aware of the critical position of this civilization, and who are willing to do whatever may be done to ease the tension, or to find solutions to the problems.
Suggestions for the successful implementation of the proposal should be solicited from all parts of the world, by the agency which is chosen to coordinate the preliminary phases. There should be constant emphasis upon the simple fact that this proposal is not an attempt to change the thinking or the actions of anyone in any way, but only a mutual attempt to discover and to chart the areas in which everyone's thinking is already the same!
During the past few decades, there has been so much stress placed upon the points of disagreement among the various nations, races and ethnic groups, that the illusion has been created that all is disagreement, and that common grounds, if they exist at all, must be so small as to furnish no basis for understanding or for negotiation. If this were actually true, then obviously, there could never be a social science, and there would be no point in wasting time and effort in the attempt to create one! Actually, of course, the opposite is true. Any person who has travelled widely throughout the world, meeting and becoming truly acquainted with people of all nations and races, inevitably becomes aware of the great similarity in the thought patterns, the aspirations, the needs, the hopes and the fears of all peoples of the earth. It soon becomes obvious that the area of mutual agreement is so much greater than the points of disagreement, that is the former were known and documented, the latter would shrink into insignificance by comparison.
The proposal would, by its very discussion and implementation, tend to bring all classes of people closer together because, for the first time in history, they would all be engaged in a mutual enter prize which would open new avenues of understanding, but which would not pose any threat to their present thought patterns, their present habits or their present way of life.
(This proposal is the result of more than six years of deep study and careful analysis. While it is not presented as a magic panacea for the world's ills, we feel that it could serve as an excellent tool or instrument through which many of those ills might successfully be treated. The concept has proven its merits for may years in the progress of the physical science. It should serve equally well in the progress of the social science.)

Understanding International Conflict
by Joseph S. Nye, Jr.
Addison Wesley Longman, Inc., New York, 1997
ISBN 0-321-01101-5
Review Copyright © 1998 Garret Wilson
September 29, 1998, 6:00pm; September 30, 1998, 3:30pm

How do you decide which book serves as a good introduction of a particular subject, if that subject is completely unfamiliar to you to begin with? I personally use several criteria. First, if I am taking a formal academic course on the subject, I check the syllabus to see which book(s) are mentioned most frequently. Then, examining the book itself, I am impressed with those books that cover a wide range of aspects, make generalizations while at the same time presenting objections and alternatives to the ideas given, are understandable, short, and assume nothing is known by the reader about the subject. In the field of international relations, I find Understanding International Conflicts by Joseph S. Nye, Jr. meets almost all of these criteria.
Although the "conflicts" part of the title may lead you to assume that the book covers only one aspect of relations between states, namely disagreements, wars, and other conflicts, Nye’s work covers a broad range of topics dealing with international relations in general. Indeed, history seems to bear out (see Guns, Germs, and Steel for more information on the pre-state aspects of human conflicts) that the relationships between states largely consist of conflicts and their resolutions; by enumerating and dissecting international conflicts and their reasons, one can start to form a broader framework, or theory about how states interact and how conflicts begin. In this aspect, I found Nye’s assertion that his work is a "dialog between theory and history" (ix) to be quite accurate, which is in my opinion one of the book’s strengths which makes it accessible to those with limited knowledge both of world history and international relations theory.
Nye begins with a quick explanation of three forms of international compositions which in itself may come as a surprise to the many who have just assumed that there have always been countries similar to those of recent times and that they all interacted as they do today. In reality, the world imperial system illustrated by such examples as the Roman Empire is quite different than the feudal system of the middle ages (think Robin Hood) where peasants had certain obligations to certain lords or religious leaders (compare the economic situations in Economics Explained) that were had a separate existence from the political interactions of political rulers such as monarchs.
The system most important in contemporary times is the anarchic system of states where there are many independent political entities when have boundaries marking a specific geographical region. Moreover, these states have more or less complete control (in theory) of what happens within their borders and do not have to answer to a higher political organization – hence the "anarchy." Modern international relations theory seeks to describe how the elements of this anarchical system "live" with each other, if there is no higher authority than that held by each state over its territory.
There are several approaches to describing how states interact; the two general positions covered by Nye are the realist and liberal approaches (4). Basically, realists see all interaction as being performed by and among the states themselves, with war being the dominant theme. Liberals, on the other hand, stress the fact that there are various other factors, such as international institutions (the United Nations, and Non-Government Organizations, for example), that influence relations between countries. The important point that Nye makes here and throughout the book is that neither position is completely accurate; the actual situation that exists encompasses aspects of both realist and liberal world views.
After starting with that fundamental bit of theory, Nye begins analyzing historical conflicts by examining the Peloponnesian War, a conflict between the city-states of fifth-century Greece. Nye tries to use this as a jumping-off point to more recent conflicts and furthermore refers back to the situation throughout the book. The situation itself, despite Nye’s "short version of a long story" (9), is a bit complicated, so I didn’t read it closely enough to be able to give a summary. I found that the details can be ignored without anything being lost from the majority of Understanding International Conflicts.
In analyzing international conflicts, the concept of morality inevitably comes up. Nye explains three major views concerning ethics in international relations. Skeptics say that what we normally consider "morals" on an individual basis has no meaning at the state level. In other words, "might makes right" as the hackneyed expression has it. This outlook seems quite bleak; in fact, Nye dismisses it completely in its pure form. He presents other options: state moralists believe that the actions of a state represent the composite morals of that state’s population, and cosmopolitans tend to give less attention to the state overall and instead look at world policies as being justified or not by whether the actions fit individual moralities – in other words, individual moralities are elevated directly to international actions (19-24). Nye here sometimes reverts to such terms as "realist" and "liberal" which, although they do not refer to views on morality specifically, realists tend to be more on the skeptic side of the scale, while liberals lean towards the other.
Having covered these basic terms and concepts (and attempted to set the tone with a specific albeit remote event in history), Nye turns towards the twentieth century. Before analyzing any events, however, he sets forth three levels on which an event can be analyzed: Kenneth Waltz’s the individual, the state, and the international system (29). I personally found these levels of analysis one of the most interesting and potentially the most useful parts of the book; these concepts are later used to examine World War I, World War II, and several other conflicts.
Starting from the top, the international system level looks at causation based upon the situations of different countries (geographic location, foreign alliances) as a whole. The state (or domestic) level, on the other hand, analyzes events by looking inside countries on a state-by-state basis: whether a certain country’s economic was doing well, for example. Lastly, the individual level takes into consideration the effects of the actual people involved, including the personalities of rulers. In discussing the international system level, Nye brings up the difference between structure and process (30). Structure refers to the distribution of power (e.g. the structure of the Cold War was bipolar, with two superpowers existing). Process refers to how these units interact (e.g. nuclear threats between superpowers during the Cold War). These two concepts are not discussed as such at length in the book, but their use in analysis is implied and important during the discussions.
Having dispensed with a potpourri of theoretical terms, Nye applies them to three major events in recent history: World War I, World War II, and the Cold War. In general, Nye does not assume you have an extensive knowledge of history – as long as you can put those three events in order, and know more or less when they occurred, you shouldn’t get lost during his recounting. Nye does an excellent job of explaining the actions and conditions that led to each of these major events, interspersing them with appropriate dates (but not too many), all the while applying the theoretical concepts already covered.
Even thought the first two chapters are mostly theory, while the rest of the book is mostly history, Nye stays true to his commitment of weaving a mixture of the two. In discussing World War I, Nye explains the concept of balance of power (50), which can confusingly be used to mean the status quo, the action of keeping other countries from gaining power over others, or especially when referring to the Cold War, a multipolar system in which two or more superpowers take actions and positions that those of the other(s).
Of course, power itself can be ambiguous. In short, power is the ability to do things and to control others" or, according to Robert Dahl, the ability to get others to do what they otherwise would not do (51). Since knowing exactly what the other would do without your "power" is sometimes difficult, if not impossible, countries may measure their power in technology, resources, or military.
Getting to the thick of historical analysis, Nye uses the three levels of analysis to determine the causes of World War I. At the system structural level, Nye sees World War I resulting from the rise of German power and the increased rigidity in the alliances between European countries. The processes he recognizes includes rising nationalistic tendencies that overrode normal international interactions.
At the domestic level, Nye analyzes events occurring inside countries. It is at this level which Lenin’s argument (which Nye rejects, with sound reasoning) that the war was caused by financial capitalists. Nye prefers instead to look at social problems in German society. At the individual level, many of the leaders were incompetent.
Both of these latter levels of analysis, the individual and the domestic levels, seem much less useful for World War I than they do for World War II. In the most recent World War, it is quite easy to see the influence of one individual, Adolf Hitler, the cause of many calling World War II, "Hitler’s War" (83). It is also to read domestic-level economic collapses and internal US isolationism. When analyzing on the system level, it is tempting to see World War II conditions as simply extensions of those present in World War I – in other words, "World War I did not solve the German problem" (88). In short, it is in the Nye’s analysis of World War II that I personally find the three levels of analysis, including structure/process analyses, most interesting and relevant.
In both of these conflicts, Nye asks the question, "was war inevitable?" It doesn’t take long to see that Nye’s answer to this will always be, "no, but it was extremely likely." He makes the distinction between inevitable and overdetermined, the latter of which means that there are several causes, each of which could be significant (65). To illustrate how war becomes more or less likely as time passes, with new alternatives coming or going away, Nye presents a "funnel of choices," which shows that, at any certain time, war could have been avoided but that option was more or less likely by the available choices at any particular time.
Nye then turns to an analysis of the Cold War, considering, for example, such questions as who caused the Cold War conditions to occur? While traditionalists see the Soviets as causing the Cold War, revisionists see US actions as bringing those conditions about, and postrevisionists claim that no one was to blame, Nye predictably explains that the actual conditions (like most of international relations analysis and economy, it seems) are a product of all of these theories (100-101). He does, however, describe Roosevelt’s and Stalin’s policies, which shed some light on the situation, and the levels of analysis used before are again useful in the study of this era of history.
In the last chapters, Nye examines various smaller events in recent history, explaining such terms as sovereignty and discussing instances in which intervention is necessary. (As usual, there are different schools of thoughts on each of these subjects.) Nye also explains changes that have come about since the end of the Cold War. His historical explanations are, as usual, quite good and accessible to those with limited knowledge.
The last part of the book, however, does not seem to have the punch that the earlier parts do. On a system level, this could be because more recent conflicts have not been as widespread and all-encompassing as the earlier events – indeed, they have been more regional in scope. On a domestic level, this could be because theorists have not had enough time to fully analyze the events to such an extent as those of previous decades. Finally, on an individual, maybe Nye was just getting a bit tired during writing – or maybe I was getting a bit tired during reading. Most likely, as Nye would point out, it’s probably a mixture of all of these.
Is it inevitable that you will find this book useful in your education of international relations? No. But highly likely. Nye has produced a good introductory text that is short, clear, and reasonably complete for even those without a strong knowledge of international relations – you could say that your finding Understanding International Conflicts useful is not inevitable, but surely overdetermined.