Science Frontiers
The Unusual & Unexplained

Strange Science * Bizarre Biophysics * Anomalous astronomy
From the pages of the World's Scientific Journals

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About Science Frontiers

Science Frontiers is the bimonthly newsletter providing digests of reports that describe scientific anomalies; that is, those observations and facts that challenge prevailing scientific paradigms. Over 2000 Science Frontiers digests have been published since 1976.

These 2,000+ digests represent only the tip of the proverbial iceberg. The Sourcebook Project, which publishes Science Frontiers, also publishes the Catalog of Anomalies, which delves far more deeply into anomalistics and now extends to sixteen volumes, and covers dozens of disciplines.

Over 14,000 volumes of science journals, including all issues of Nature and Science have been examined for reports on anomalies. In this context, the newsletter Science Frontiers is the appetizer and the Catalog of Anomalies is the main course.


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Compilations of back issues can be found in Science Frontiers: The Book, and original and more detailed reports in the The Sourcebook Project series of books.


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... the canals in Venice, and up from the bottom of the channel, on either side, would be these slime towers. The channels would be bringing in oxygen and nutrients. and removing waste. And within each building, so to speak, some of the bacteria would be cooperating with each other, making one compound and passing it along to the next. It's at least as complicated as a tissue. and possibly as a city. (Chicurel, Marina; "Slimebusters." Nature, 408:284, 2000.) Comment. Since bacteria have no brains, where do the building plans of this "city" reside? Nanocrystal aggregates. Even lifeless nanocrystals spontaneously form long, oriented chains. Self-organization is common in inorganic nature. Nanocrystals are clumps of atoms numbering in the hundreds, often thousands. Typically, nanocrystals are only 1-10 nano-meters long. Even so, they have a colonial spirit, and, like the tunicates and amoebas, they aggregate and self-organize. (( Alivisatos, A.P .; "Naturally Aligned Nanocrystals," Science, 289:736, 2000.) Comment. Sometimes that vaunted chasm separating life from non-life seems pretty narrow! From Science Frontiers #133, JAN-FEB 2001 . 2001 William R. Corliss Other Sites of Interest SIS . Catastrophism, archaeoastronomy, ancient history, mythology and astronomy. Lobster . The journal of intelligence and political conspiracy (CIA, FBI, JFK, MI5, NSA, etc) Homeworking.com . Free resource for people thinking ...
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... ' hippocampus where memories are processed. The patterns were the same when the rats were dreaming and when running the maze during waking hours. From the patterns, it was even possible to tell exactly where a rat dreamed it was in the mazes. Whether the rats worked out better maze solutions in their dreams and thereby made their dreaming worthwhile could not be determined from the article. Simple memory-review does not seem to have much survival value. (Anonymous; "Lab Rats Found to Dream of Mazes, Researchers Say," Baltimore Sun, January 25, 2001.) Humans conceptualize and create while dreaming. A few anecdotes suggest that human dreaming may be innovative. The following three oft-told tales are truthfully no more convincing to a scientist than many UFO anecdotes. When carbon atoms danced through the dreaming brain of A. Kekule, they led the waking Kekule to conceive the structure of the benzene molecule. I. Lowe awoke from a dream one night, jotted down a few notes, and fell back to sleep. On waking, he could not decipher his scrawl. Happily, the next night the dream recurred. Lowe raced to his lab, performed the experiment outlined in his dream, and thereby developed a new theory of brain activity. In 1869, D. Mendeleyev was puzzling over the disparate properties of the 63 elements then known. Was there any pattern? One night he fell asleep and in a dream the elements fell into their proper places in the Periodic Table. (Mazzarello, Paolo; "What Dreams May Come?" Nature, 408 ...
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... Science Frontiers ONLINE No. 25: Jan-Feb 1983 Issue Contents Other pages Home Page Science Frontiers Online All Issues This Issue Sourcebook Project Sourcebook Subjects Anomalons Are Lazy Or Fat No, an "anomalon" is not an animal unknown to science. "Anomalon" is the name that has been given to unusual fragments that are created in high-energy collisions of atomic nuclei. The fragments are peculiar because they appear not to travel as far as expected in the special "nuclear" emulsion used to study the interactions of high-energy nuclei from heavy-ion accelerators or in cosmic rays. This suggests that the anomalons are either much larger than conventional nuclei, and are more likely to interact in the emulsion and therefore do not travel so far, or are some unusually long-lived form of matter, lasting for around 1011 seconds or more." One thought is that anomalons may be constructed of two triplets of quarks. These sextets are called "demon deuterons." Another hypothesis has small nuclei bound loosely together -- they don't say by what. The whole thing is up in the air, or should we say in the emulsion? (Sutton, Christine; "Anomalon Data Continue to Baffle Physicists," New Scientist, 96:160, 1982.) Comment. One thing is sure, nuclear physicists have a lot of fun naming their newly found particles. From Science Frontiers #25, JAN-FEB 1983 . 1983-2000 William R. Corliss ...
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... his previous thesis, which in essence declared that from statistical considerations life could not have arisen and evolved on earth. Rather, life had to come from outer space, probably in the form of bacteria and viruses. Evolution was and is dependent upon new information arriving from outer space on tiny bits of life. Hoyle now greatly extends his theory: "But where did a knowledge of amino acid chains of enzymes come from? To use a geological analogy, the knowledge came from the cosmological equivalent of a previous era, from a previously existing creature if you like, a creature that was not carbon-based, one that was permitted by an environment that existed long ago. So information is handed on in a Universe where the lower symmetries of physics -- and characteristics of particles and atoms -- are slowly changing, forcing the manner of storage of the information to change also in such a way as to match the physics. It is this process that is responsible for our present existence, and it is the one which our descendants would be fated to continue." To continue his search for the ultimate, Hoyle recognizes that, contrary to what transpires in the inorganic world, life as-a -whole is actually gaining order and information. He sees life leading the universe forward to a remarkable future: "That biological systems are able in some way to utilise the opposite time-sense in which radiation propagates from future to past. Biology works backwards in time. Living matter responds to quantum signals from the future, instead of the Universe being committed to increasing ...
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... Science Frontiers ONLINE No. 29: Sep-Oct 1993 Issue Contents Other pages Home Page Science Frontiers Online All Issues This Issue Sourcebook Project Sourcebook Subjects Temptations Of Numerology "Too much innocent energy is being spent on the search for numerical coincidences with physical quantities. Would that this Pythagorean energy were spent more profitably." Following this admonition, John Maddox conceded that numerology, on rare occasions, has provided useful insights. Musings about Bode's Law are not complete wastes of time; and Prout's hypothesis that the masses of the elements would be found to be integral multiples of the mass of the hydrogen atom was not far off the mark. Certainly an entertainment factor exists, too, for Maddox cannot resist printing a curious little contribution by Peter Stanbury, entitled "The Alleged Ubiquity of pi." Stanbury has discovered a large number of relations between the masses of the fundamental particles that are closely related to pi. Four representative examples follow: The proton-to-electron mass ratio is almost exactly 6pi5 ; The sum of the masses of the basic octet pio, pi +, k +, k-, ko, k-baro is 3.14006 times the proton mass; The sum of the masses of the baryon octet is very close to pi2 times the proton mass; and The reciprocal of the fine structure constant, 137.03604 is close to 4-pi3 + pi 2+ pi , or 137.03630. There are many more such relationships. Further, the ratios 1.0345 and 1.1115 keep popping up more frequently ...
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... Science Frontiers ONLINE No. 54: Nov-Dec 1987 Other pages Home Page Science Frontiers Online All Issues Last Issue Next Issue Sourcebook Project Sourcebook Subjects Contents Archaeology 300,000-YEAR-OLD SITE IN BRAZIL Egyptian pyramids actually made of synthetic stone? Astronomy Icebergs and crouching giants Big-bang bashers Fractals, fractals everywhere Biology Instances of observed speciation Plants are not color blind! Electric-power plants! Honest, this is the last "plant" item! The insects' revenge Geology Now, it's comet showers that did it The changing magnetic climate: does it affect civilizations? Huge underground electrical circuit What heats the earth Geophysics Toads fall to squashy fate Ball lightning in bavaria Psychology A HOAX ADMITTED Esp of atoms? Chemistry and physics Through a peephole tantalizingly Unclassified The uncertainty of knowledge ...
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... " that is, instead of a series of single "tones" we detect a series of closely paired frequencies. This is symptomatic of a core that is anisotropic; that is, its properties are different in different directions. J. Tromp, of Harvard, may have de-anomalized both sets of observations with a single theory: "For the shape of the core alone to explain the observations, he says, the shape of the inner core would have to be very unrealistic. Instead, he claims that the inner core behaves like a giant asymmetric crystal, aligned with the Earth's axis so that seismic waves travel faster in that direction. Tromp's analysis fits neatly with suggestions that the inner core is made of a high-pressure phase of iron in which the atoms are close-packed in hexagons, because such a 'sigma' phase is anisotropic." But, asks Tromp, how and why did the core material assume this crystalline character? (Hecht, Jeff; "The Giant Crystal at the Heart of the Earth," New Scientist, p. 17, January 22, 1994.) Comment. How does this big iron crystal jibe with the dynamo theory of the earth's magnetic field? Could Tromp's "giant asymmetric crystal" produce a permanent magnetic field, thereby forcing the supposed dynamo to play second magnetic fiddle? From Science Frontiers #93, MAY-JUN 1994 . 1994-2000 William R. Corliss ...
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... this aspect of Relativity. Such experiments by Ives and other key scientists suggested that an ether actually did exist and that it could serve as an absolute reference frame. Another implication was that time was an independent entity unaffected by motion and that the infamous Twin Paradox was a fiction. Ives himself believed his work proved that so-called relativistic effects could be easily explained by phenomena appealing more to the common sense, such as the change of a light source's frequency with motion (over and above the Doppler Effect), rather than revamping space-time concepts. In short, Ives thought he had proved Special Relativity untenable experimentally and an un-necessary distortion of science's worldview. (Barnes, Thomas G., and Ramirez, Francisco S.; "Velocity Effects on Atomic Clocks and the Time Question," Creation Research Society Quarterly, 18:198, 1982.) Comment. Why do the textbooks neglect to mention the Ives experiments and why should a review of Ives' work appear in a creationist publication? The answers are easy: Special Relativity now has the status of scientific dogma, which one questions at his own peril. The creationists, on the other hand, vehemently reject relativitism in favor of absolute standards in space-time as well as other features of human existence. It would be amusing if the real world conformed to neither model, both of which are defended so passionately. From Science Frontiers #22, JUL-AUG 1982 . 1982-2000 William R. Corliss ...
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... Science Frontiers ONLINE No. 19: Jan-Feb 1982 Issue Contents Other pages Home Page Science Frontiers Online All Issues This Issue Sourcebook Project Sourcebook Subjects Magical Communication In The Subatomic World How do physically separated subatomic particles (and devices based on them) communicate with one another? Somehow one subatomic particle knows what a distant compatriot is doing and reacts accordingly. Physical experiments have confirmed this seemingly impossible situation. No fields, wires, or any other sort of communication line connects the two particles; yet they behave as though there were. Quantum mechanics has an explanation of sorts but it still leaves the situation with an aura of mystery. (Mermin, N.D .; "Bringing Home the Atomic World: Quantum Mysteries for Anybody," American Journal of Physics, 49:940, 1981.) Comment. This digest is greatly oversimplified, and readers are encouraged to read the whole article. It is an important type of physical experiment because some have suggested it may help explain ESP, assuming ESP exists. From Science Frontiers #19, JAN-FEB 1982 . 1982-2000 William R. Corliss ...
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... "expression." Emphasis is always on maximizing the "fitness" of the organism (phenotype). Perhaps this seemingly excess genetic material actually maximizes the fitness (survivability) of the DNA itself. Evolution thus occurs at DNA and gene (genome) levels, despite what transpires at the organism (phenotype) level. (Doolittle, W. Ford, and Sapienza, Carmen; "Selfish Genes, the Phenotype Paradigm and Genome Evolution," Nature, 284:601, 1980.) Comment. We know that mitochondria and chloroplasts have their own genetic material; evolution may be occurring at this level, too, independent of pressures for change on the organisms. Waxing speculative, may there not be other hierarchies where systems are trying to maximize their own survivability, even at molecular, atomic, and subatomic levels? Don't laugh! Is not all life implicitly encoded in the properties of the most fundamental particles? If not, reductionism is a lie. From Science Frontiers #11, Summer 1980 . 1980-2000 William R. Corliss ...
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... ,000 craters 50 meters in diameter and splashes of debris 150 meters in diameter must occur each. There is no evidence that the moon is thus afflicted. Comets also carry the noble gases argon, krypton, and xenon. These gases should accumulate in the atmosphere as the comets disintegrate. The amounts of these gases actually measured are 10,000 times less than those the postulated bombardment would produce. The icy comets should break up near the earth and produce clouds of ice crystals. Sunlight reflected from such 30-ton clouds would be brighter than Venus and easily visible before they disperse. Such objects are rarely seen, implying that small icy comets do not exist in the numbers claimed. Preceding this series of five papers is one by Frank and Sigwarth in which they describe their detection of atomic oxygen trails near earth. These they attribute to small icy comets. (Various; "Looking for Small Comets -- None Found," Geophysical Research Letters, 24:2429 ++, 1997.) From Science Frontiers #118, JUL-AUG 1998 . 1998-2000 William R. Corliss ...
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... out in the cosmos sucking in stars and unwary spaceships? It's all true; an arti cle bearing the above title appeared in the January 1988 number of Sky and Telescope. Doubts do surface once in a while, despite all the TV documentaries, all the textbooks, and all the newspaper jottings, where black holes are described in the hushed tones used only with profound truths of nature. To set the stage, we quote a paragraph from said article: "There is, however, a serious problem with black holes, one that leaves some scientists skeptical about their existence. The overarching mystery lies hidden at a hole's center. Einstein's general theory of relativity predicts that we will find there an object more massive than a million Earths and yet smaller than an atom -- so small, in fact, that its density approches infinity. The idea of any physical quantity becoming infinite flies in the face of everything we know about how nature behaves. So there is good reason to be skeptical that such a nasty thing could happen anywhere at all." Among the observations that hint at the reality of black holes are the X-ray binaries. In a typical X-ray binary, prodigious, flickering fluxes of X-rays reveal the presence of an ultradense star and an orbiting companion. The rapid orbital motion of the companion star tells us that the central X-ray star has a mass of more than three suns. General Relativity assures us that such a star can only collapse further to form a black hole. Therefore, black holes ...
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... Science Frontiers ONLINE No. 10: Spring 1980 Issue Contents Other pages Home Page Science Frontiers Online All Issues This Issue Sourcebook Project Sourcebook Subjects Io's electrical volcanos Thomas Gold, of Cornell, long known for his provocative theories, has not disappointed us in this paper. Jupiter's moon, Io, exhibits an anomaly that seems to call for a radical explanation. Io's volcanos erupt with such violence that molten material is flung to heights of 250 kilometers. These outbursts proceed from caldera, and one is led to assume that normal volcanic action is to blame. Unfortunately for this simplistic idea, Io does not seem to possess low-molecular-weight substances, such as water, that could serve as a good propellant at reasonable temperatures. Sulphur is common, but its atomic weight is so high that temperatures exceeding 6000 K would be required to shoot matter out to 250 kilometers. Gold suggests that Io's volcanos get their firepower from electrical sources. He points out that Io short-circuits Jupiter's ring current periodically. Gold estimates that 5 million amperes flow through Io when it passes through the ring current. The energetic eruptions and caldera might therefore be electric-arc phenomena. The electrical energies available are sufficient to account for the observed outbursts. (Gold, Thomas; "Electrical Origin of the Outbursts on Io," Science, 206:1071, 1979.) Comment. Several scientists and non-scientists have proposed in the past that the sunspots and even some planetary craters result from large-scale electrical arcing within the solar system. ...
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... of the realms even smaller than that of the flower is the quantization typical of the subatomic world -- that is, microscopic nature. At the human locus in the dimensional scheme of things, quantization is difficult to detect outside the physics laboratory. Daniel M. Greenberger, perhaps with the above title in mind, asked whether quantization might not also exist in astronomy and cosmology -- that is, macroscopic nature. He has applied the principles of quantum mechanics to nature in-the-large where gravitational forces are dominant. (Gravitational forces are negligible in the subatomic world.) His math cannot be reproduced here. Suffice it to say that Greenberger has applied his findings to the absorption lines of quasars and the elliptical rings surrounding normal galaxies. Now, quasars and galaxies are far from atomic nuclei, being vast assemblages of diverse matter. Somewhat surprisingly, his equations are successful in predicting some features of these two macroscopic entities. (Greenberger, Daniel M.; "Quantization in the Large," Foundations of Physics, 13:903, 1983.) Comment. At the very least it is mindstretching to find that complex systems with millions of stars may exhibit quantum effects. With some relief, we note that like microscopic quantization effects, the consequences of macroscopic quantization will be hard to discern in our comfortable "smooth" world. From Science Frontiers #32, MAR-APR 1984 . 1984-2000 William R. Corliss ...
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... time but not unraveling; on the contrary, it is becoming constantly more complex and richer in formation." (Tucker, Wallace, and Tucker, Karen; "Against All Odds: Matter and Evolution in the Universe," Astronomy, September 1984.) Comment. Now Layzer's statement seems a clear denial of the Second Law. It says, rather, that there is something intrinsic in the universe that creates order (spiral galaxies, amino acids, humans). We don't explain this tendency (assuming it really exists) just by identifying Belousov-Zhabotinsky reactions and saying, "That's the way things are." We can go one step further and say that the fundamental particles of physics have just the right properties so that they fall together into atoms, molecules, galaxies, and life forms. Can science go any further? From Science Frontiers #36, NOV-DEC 1984 . 1984-2000 William R. Corliss ...
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... Issues This Issue Sourcebook Project Sourcebook Subjects I Hiss Therefore I Am E.R . Moliner, a neurologist, has written a curious yet provocative article for New Scientist. It is really a not-too-subtle attack on the Anthropic Principle, Darwinism, and science's insistence that the universe must be purposeless. He notes first that most proponents of the Anthropic Principle postulate that, in the beginning (whatever that was!), many different universes may have been created. The only one we observe is the one offering just the right combination of properties for evolving life and, especially, humankind. If this or that physical constant had been a tad different, humans would not have evolved. Even though humans obviously did evolve, it was all purposeless -- just the way atoms and molecules happened to combine. This outlook fits right in with Darwinism, for almost all Darwinists also see evolution as purposeless. It was blind chance that gave us the capabilities to build aircraft and tunnel into opposite sides of a mountain and meet in the middle. Moliner is highly skeptical that such amazing, "cooperative, adaptive" talents could have come about in an unbiased, purposeless universe. Suppose, he asks, vipers were philosophically minded. They might look at their marvelously complex fangs with the canals inside, a nearby poison gland, a poison storage reservoir with special ducts leading to the fangs, a fang-erection mechanism, a set of muscles to squeeze the poison reservoir, and a nervous system to control the whole system, and conclude that there must be an Ophidian ...
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... the motions of the planets, may be not only chaotic but indeterminate. Since Sommerer and Ott found their indeterminate system easily, we must face the possibility that the future behavior of just about everything is beyond our capability to predict, even with our best instruments and computers. Apparently the universe is built in such a way that exact science is impossible. (Sommerer, John C., and Ott, Edward; "A Physical System with Qualitatively Uncertain Dynamics," Nature, 365:138, 1993. Also: Peterson, I.; "Finding Riddles of Physical Uncertainty," Science News, 144:180, 1993.) Comment. This discovery is even more profound than Heisenberg's Uncertainty Principle, which is merely quantitative in character and for practical purposes rules only the atomic world. From the above we see that the entire cosmos is uncertain quantitatively and qualitatively. A heck of a way to construct a universe! From Science Frontiers #90, NOV-DEC 1993 . 1993-2000 William R. Corliss ...
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... 's interior rather than that of the sun that is at risk. There is simply not enough helium escaping from earth's crust to account for the heat flowing outwards from our planet's core. You see, most of the earth's internal fires are fueled by the radioactive decay of uranium and thorium. The heat produced by these disintegrations eventually makes its way to the surface where we can measure it. but the helium (4He) created by the radioactive decay of the uranium and thorium is mostly missing. The discrepancy is large, and scien tists are confronted with the possibility that we are wrong about either the source of the earth's heat or the facts of nuclear physics. You can bet it will not be the latter. We are confident that helium atoms cannot change their type like those solar neutrinos! Neither can we blame chemical sequestration because helium is a noble gas. Perhaps the missing helium is physically trapped and stored somewhere in the earth's mantle. No one knows the answer; nor does any one pay much attention to this clearcut anomaly. (Chin, Gilbert, ed. ; "A Scarcity of Gas," Science, 292:2219, 2001.) From Science Frontiers #137, SEP-OCT 2001 . 2001 William R. Corliss Other Sites of Interest SIS . Catastrophism, archaeoastronomy, ancient history, mythology and astronomy. Lobster . The journal of intelligence and political conspiracy (CIA, FBI, JFK, MI5, NSA, etc) Homeworking.com . Free resource for people thinking about working at home ...
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