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generalrelativity

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  1. What kind of energy. Potential energy, kinetic energy, Russian energy, Judo energy or kitten energy. What? My cat https://www.google.com/imgres?imgurl=https://upload.wikimedia.org/wikipedia/en/e/ee/Russian_blue_head_sm.jpg&imgrefurl=https://en.wikipedia.org/wiki/Russian_Blue&h=225&w=270&tbnid=4Obo1wPQmy-RzM:&tbnh=166&tbnw=200&usg=__vwb2Jll-UKj5RGyhZV9qV5t548k%3D&vet=10ahUKEwiYu_-05e7XAhVQ8GMKHU5VBVoQ_B0IqAEwEw..i&docid=Pllmyu1FsaEFdM&itg=1&sa=X&ved=0ahUKEwiYu_-05e7XAhVQ8GMKHU5VBVoQ_B0IqAEwEw Nastastia she have lots of energy too. She like to jump on the chair and tear the covering to pieces when she gets mad or she pee on the carpet and I cry and cry and she do more bad. She very Russian. https://www.google.com/search?q=cat+got+your+tongue&tbm=isch&tbs=rimg:CRo4naz7LYxwIjhsmbAKBQaBgCQGlyq7BY6yIJk6O8nRBjfb1uW9e_1GQBWu_1Zi62CEmoQOGdIYQK6P2wDj6nP-JvfioSCWyZsAoFBoGAEeRhgR4mP52gKhIJJAaXKrsFjrIR41ZN7tRPKJUqEgkgmTo7ydEGNxFHapYdmgGFiCoSCdvW5b178ZAFEd_1bVVSRKgWzKhIJa79mLrYISagRCEGWjzyeA10qEglA4Z0hhAro_1RHcepIkwDy6NCoSCbAOPqc_14m9-EXM2yLZHR0yX&tbo=u&sa=X&ved=0ahUKEwjrx8H6sOzXAhUJ6WMKHZYlBxQQ9C8IHw&biw=1600&bih=769&dpr=1#imgrc=SGMWJwXJptD8XM https://www.google.com/search?q=einstein+sticking+tongue+out&rlz=1C1GCEA_enUS773US773&source=lnms&tbm=isch&sa=X&ved=0ahUKEwixgNfEsezXAhVD4WMKHcJdBzQQ_AUICigB&biw=1600&bih=769#imgrc=UPc9rpwqQYux-M: Thank you for all you help. All of my people will love you so for me to help you, thank you berry many and my kitty love you. ____________________________________________________________________________________________________________________________________________________________ ++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++__________________________________________________________________________________________________________________________________________________________________________ LIGO stellar gravitational waves that are formed by a black hole are detected using Michelson's laser interferometer based on Einstein's general relativity. "The prediction of gravitational waves (GWs), oscillations in the space–time metric that propagate at the speed of light, is one of the most profound differences between Einstein's general theory of relativity and the Newtonian theory of gravity that it replaced." (LIGO Collaboration, § 2). "As illustrated in figure 1, the oscillating quadrupolar strain pattern of a GW is well matched by a Michelson interferometer, which makes a very sensitive comparison of the lengths of its two orthogonal arms. LIGO utilizes three specialized Michelson interferometers, located at two sites (see figure 2): an observatory on the Hanford site in Washington houses two interferometers, the 4 km-long H1 and 2 km-long H2 detectors; and an observatory in Livingston Parish, Louisiana, houses the 4 km-long L1 detector." (LIGO Collaboration, § 3). "Figure 1 illustrates the basic concept of how a Michelson interferometer is used to measure a GW strain. The challenge is to make the instrument sufficiently sensitive: at the targeted strain sensitivity of 10−21, the resulting arm length change is only ~10−18 m, a thousand times smaller than the diameter of a proton." (LIGO Collaboration, § 4). "On September 14, 2015 at 09:50:45 UTC the two detectors of the Laser Interferometer Gravitational-Wave Observatory simultaneously observed a transient gravitational-wave signal. The signal sweeps upwards in frequency from 35 to 250 Hz with a peak gravitational-wave strain of 1.0 × 10-21." (Abbott, Abstract). "It matches the waveform predicted by general relativity for the inspiral and merger of a pair of black holes and the ringdown of the resulting single black hole." (Abbott, Abstract). The Caltech-MIT LIGO detected celestial gravitational waves that originate from a 1.3 billion light year black hole. The LIGO interferometer's armature contraction is represented with Einstein's general relativity but Michelson's experiment is based on an interference effect that is formed by the motion of Fresnel's ether, composed of matter, that does not physically exist (vacuum). Also, the LIGO gravitational wave mechanism describes the interferometer's armature length contraction of 10-18 m but the diameter of the atoms that compose the surface of the interferometer reflection mirror is 10-10 m, and the LIGO does not present photographs of the interferometer's interference effect. Einstein's relativity is based on a constant magnitude of the translational velocity that is used to contract the length of the interferometer's armature. Using the armature length of L = 4,000 m and Lβ = L' where β = (1 - v2/c2)1/2 the variable L' represents the contracted interferometer armature length which would require a translational velocity v of less than 1 m/s to form a armature contraction of 10-18 m yet the minimum value of the translational velocity v formed by the earth's daily motion is 462 m/s. In addition, the LIGO experiment is based on a constant magnitude of the translational velocity but Einstein's translationtal velocity formed by the earth's daily and yearly motions is not constant. At the surface of the earth, for the time of 6:00 pm, the magnitude of the earth's tangential velocity vector v that forms Einstein's translation velocity is 462 m/s (fig 7) and increases to 5,077 m/s at 7:00 pm. At midnight, the translational velocity is 30,462 m/s. The magnitude of Einstein's translational velocity increases from 462 m/s to 30,462 m/s (6:00 pm - 12:00 am) yet the LIGO experiment is based on the constant magnitude of Einstein's translational velocity to form the .10-18 m contraction of the interferometer armature. Time velocity ___________________________ 6:00 pm 462 m/s 7:00 pm 5,077 m/s 8:00 pm 10,154 m/s 9:00 pm 15,231 m/s 10:00 pm 20,308 m/s 11:00 pm 25,385 m/s 12:00 am 30,462 m/s _____________________________________________________________________________________________________________________________________________________________________________________________________________
  2. Could you explain in your own words what the variable e represents?
  3. Where do you get the equation e=mc2? Can you cite your source? If there is not ether then what happening to Fresnel's diffraction mechanism. In Russia, Fresnel is a hero. Like the great Putin which I love berry much.
  4. What is mass/energy? Do you mean kinetic energy E = 1/2 mv2? The rest (mass) is to hard for me to understand. The ether of Michelson's experiment is not a field?
  5. https://www.google.com/search?q=cat+got+your+tongue&tbm=isch&tbs=rimg:CRo4naz7LYxwIjhsmbAKBQaBgCQGlyq7BY6yIJk6O8nRBjfb1uW9e_1GQBWu_1Zi62CEmoQOGdIYQK6P2wDj6nP-JvfioSCWyZsAoFBoGAEeRhgR4mP52gKhIJJAaXKrsFjrIR41ZN7tRPKJUqEgkgmTo7ydEGNxFHapYdmgGFiCoSCdvW5b178ZAFEd_1bVVSRKgWzKhIJa79mLrYISagRCEGWjzyeA10qEglA4Z0hhAro_1RHcepIkwDy6NCoSCbAOPqc_14m9-EXM2yLZHR0yX&tbo=u&sa=X&ved=0ahUKEwjrx8H6sOzXAhUJ6WMKHZYlBxQQ9C8IHw&biw=1600&bih=769&dpr=1#imgrc=SGMWJwXJptD8XM: https://www.google.com/search?q=einstein+sticking+tongue+out&rlz=1C1GCEA_enUS773US773&source=lnms&tbm=isch&sa=X&ved=0ahUKEwixgNfEsezXAhVD4WMKHcJdBzQQ_AUICigB&biw=1600&bih=769#imgrc=UPc9rpwqQYux-M: https://www.google.com/search?q=Eduard+einstein&sa=X&tbm=isch&tbo=u&source=univ&ved=0ahUKEwjwxbvNs-zXAhUD1WMKHa7uD40QiR4IrwE&biw=1600&bih=769#imgrc=VXTyhhRhY-bRdM: diz is ma ass creem.
  6. § 13. Equation of motion of a material point in a gravitation-field. Expression for the field-components of gravitation. (Einstein, section 20). § 14. The Field-equation of Gravitation in the absence of matter. § 16. General formulation of the field-equation of Gravitation. "The question may lie open whether the theories of the electro-magnetic field and the gravitational-field together, will form a sufficient basis for the theory of matter. The general relativity postulate can teach us no new principle. But by building up the theory it must be shown whether electro-magnetism and gravitation together can achieve what the former alone did not succeed in doing." (Einstein5, Part D) We have now deduced the most general laws which the gravitation-field and matter satisfy when we use a co-ordinate system for which (g)^1/2 = =1. Thereby we achieve an important simplification in all our formulas and calculations, without renouncing the conditions of general covariance, as we have obtained the equations through a specialisation of the co-ordinate system from the general covariant-equations. Still the question is not without formal interest, whether, when the energy-components of the gravitation-field and matter is defined in a generalised manner without any specialisation of co-ordinates, the laws of conservation have the form of the equation (56), and the field-equations of gravitation
  7. Space-time is a coordinate system not a field.
  8. And what is the field of "gravitation-field" referring to ?
  9. "We have now deduced the most general laws which the gravitation-field and matter satisfy when we use a co-ordinate system for which {\displaystyle {\sqrt {-g}}=1}. Thereby we achieve an important simplification in all our formulas and calculations, without renouncing the conditions of general covariance, as we have obtained the equations through a specialisation of the co-ordinate system from the general covariant-equations. Still the question is not without formal interest, whether, when the energy-components of the gravitation-field" (Einstein, section 20).
  10. "The essence of general relativity is that mass and energy produce a curvature of four-dimensional space-time, and that matter moves in response to this curvature. The Einstein field equations prescribe the interaction between mass and space-time curvature, much as Maxwell's equations prescribe the relationship between electric charge and electromagnetic fields. Just as electromagnetic waves are time dependent vacuum solutions to Maxwell's equations, gravitational waves are time dependent vacuum solutions to the field equations." (LIGO Collaboration, § 2). In Einstein's paper, "The Foundation of the Generalised Theory of Relativity" (1916), Einstein represents gravity with Maxwell's equations. dh/dt + rot e = 0...............................................69 div h = 0...........................................................70 rot h - de'/dt = i................................................71 div e' = p"........................................................72 (Einstein, § 20). Is the LIGO theory of gravitation based on General relativity? Does Einstein general relativity paper (1916) include Maxwell's equations? Are you a robot?
  11. 1. Gravitational waves are not electromagnetic. 2. They are not stellar. 3. And the waves are not LIGO. "LIGO and Virgo make first detection of gravitational waves produced by colliding neutron stars" "Each electromagnetic observatory will be releasing its own detailed observations of the astrophysical event." https://www.ligo.caltech.edu/ that takes care of 1 and 2. If you haven't notice everything is electromagnetic (gauge). The name Laser Interferometer Gravitational-Wave Observatory (LIGO) prove LIGO is representing LIGO GW. "And the waves are not LIGO." Your statements are inferior and strange in that they are ridiculous via the facts the quotes imply. Are you a robot? You are questioning the source yet you are stating that you have not yet click on it? Are you a robot?
  12. Name the errors, please. Yes, these "random quotes" (these quotes are not random since they have a purposed of stopping someone like you) are contradicting you, if you haven't noticed it yet and are extremely embarrassing since I thought that this was a science discussion and repeatedly making contradictory statements is not scientific, old girl. I really think that you are out of your league (your in T-ball whereas ) and should find another thread that would be easier for you to understand and appreciate.
  13. "GWs remained a theoretical prediction for more than 50 years until the first observational evidence for their existence came with the discovery and subsequent observations of the binary pulsar PSR 1913 + 16, by Russell Hulse and Joseph Taylor." (LIGO collaboration, Intro). LIGO Collaboration. LIGO: The Laser Interferometer Gravitational-Wave Observatory. Reports on Progress in Physics. 2009. http://iopscience.iop.org/article/10.1088/0034-4885/72/7/076901/meta;jsessionid=E93547E3EE7CAD2CDA5A1E2A89EBE2B8.c4.iopscience.cld.iop.org
  14. "The essence of general relativity is that mass and energy produce a curvature of four-dimensional space-time, and that matter moves in response to this curvature. The Einstein field equations prescribe the interaction between mass and space-time curvature, much as Maxwell's equations prescribe the relationship between electric charge and electromagnetic fields. Just as electromagnetic waves are time dependent vacuum solutions to Maxwell's equations, gravitational waves are time dependent vacuum solutions to the field equations." (LIGO Collaboration, § 2).,, "Figure 1 illustrates the basic concept of how a Michelson interferometer is used to measure a GW strain. The challenge is to make the instrument sufficiently sensitive: at the targeted strain sensitivity of 10−21, the resulting arm length change is only ~10−18 m, a thousand times smaller than the diameter of a proton." (LIGO Collaboration, § 4).,, "As illustrated in figure 1, the oscillating quadrupolar strain pattern of a GW is well matched by a Michelson interferometer, which makes a very sensitive comparison of the lengths of its two orthogonal arms. LIGO utilizes three specialized Michelson interferometers, located at two sites (see figure 2): an observatory on the Hanford site in Washington houses two interferometers, the 4 km-long H1 and 2 km-long H2 detectors; and an observatory in Livingston Parish, Louisiana, houses the 4 km-long L1 detector." (LIGO Collaboration, § 3). "The prediction of gravitational waves (GWs), oscillations in the space–time metric that propagate at the speed of light, is one of the most profound differences between Einstein's general theory of relativity and the Newtonian theory of gravity that it replaced." (LIGO Collaboration, § 2).,, Einstein's general theory of relativity uses Maxwell's equations.
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