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Physics 1301 – Introduction to Electromagnetic Waves (photos on
Physics 1301 – Introduction to Electromagnetic Waves (photos on

... Now before you pick those pencils up, let me tell you a little more about these waves. Maxwell did some complex math and calculated the speed that these electromagnetic waves would have to move through empty space so that the fields would not gain or lose energy. In other words, they would obey the ...
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... stars, too! • We can see the stars move in space over time… • but they don’t move much! ...
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... of Led . As if, a leaking and contracting balloon stops contraction as its self gravity fixes the leakage by forcing the molecules to move in (almost) closed circular orbits. Also, simultaneously, the attendant heat and pressure become large enough to resist further contraction. In a very strict sen ...
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... Black Holes What Is A Black Hole? One definition of a black hole is an object whose escape velocity equals or exceeds the speed of light. The idea was first proposed in the 1700s, when scientists hypothesized that Newton’s law of universal gravitation allowed for the possibility of stars that were s ...
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... period of 20 years. The orbital plane is inclined with respect to the plane of the sky by 30◦ . Observations of various lines in the stellar spectrum show that the maximum line-of-sight velocity exhibited by the star in the course of its orbital motion is 1200 km s−1 . The angular distance between t ...
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... Put the average ground gravitational potential associated with the rest mass of the earth U E  6.24  107 (m / s)2 into formula (4.37) to get a constant speed: VE  20376 m / s which will be interpreted as the speed of a flux associated with the cosmic gravitational field in section 5. If the grav ...
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Exploration of the Kuiper Belt by High-Precision Photometric

... the occulter and the antisolar direction. In our observations, ! ¼ 36 , 7 , and 35 for fields 1, 2, and 3, respectively, and DAU is the distance of the occulter from the Sun in AU. The diameter of the diffraction shadow of a small object is 3 times the Fresnel scale when the star is small with re ...
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... The strong gravito-electric is the strong force. The above principles establish several things which include the concept that the strong force only exists within the charge radius roughly. Also it establishes that the strong force would be contradicted by the gravito-magnetic portion of the force, t ...
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... The piecewise polytropic equation of state takes into account the different envelopes of nuclear matter, and does a fairly good job with relatively few layers. One layer is simply not realistic enough because there are points where a harder or softer EOS are necessary. Realistic models may use a doz ...
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... the signal is small enough, the information can be extracted in a time period much smaller than the wave propagation time. This would therefore result in information speeds only slightly less than the group speed which has been shown to be superluminal in the nearfield of the source. It has also bee ...
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... consequence of the equivalent principle. Of course, if we can take the equivalent principle as hypothesis nature principle as a consequence of this principle we have that mi = mg . As the gravitation can be understood in geometrical terms, Einstein thought that the inertial mass could also be unders ...
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First observation of gravitational waves

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