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  <title>Astrogeophysics: T.G. Barnes, D.Sc.; H.S. Slusher Ph.D., D.Sc.; C.A. Paiva, M.S.</title>
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      Astrogeophysics: T.G. Barnes, D.Sc.; H.S. Slusher Ph.D., D.Sc.; C.A. Paiva, M.S.
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  <p id="description">[PLEASE USE CONTROL (+) FOR ZOOM AND CONTROL (0) FOR NORMAL VIEW].To see other BSMRA sites the BSM Research Associates Integrated Websites Selection.   Also please use the included PDFs and WORD files for higher resolution if desired. With regards to doppler interpretation for spectral absorption and emission lines, it is not possible for electromagnetic waves to propagate through interstellar and 
intergalactic space (filled with hydrogen and helium transmission fields) without substantial loss of amplitude and wavelength.  The assumption of an expanding universe based on the doppler interpretations of spectral redshifts is, due to the ignoring of the propagation physics resulting in absorption and scattering by interplanetary, interstellar, intergalactic and inter-galactic cluster transmission fields.
As the tension of the universe decreases (in accordance with the Second Law of Thermodynamics) the square root of the ratio of tension-to-density (i.e. velocity of light) also decreases.  Another result is the elongation
of electromagnetic wave propagation falsely interpreted as a doppler velocity shift.  Stretching universe field lines increase tension which result in an increase of total electromagnetic frequency and 
decrease of wavelengths observed, while decreased tension has the opposite effect
So-called emission and absorption spectral "reddening" effects are really
functions of electromagnetic re-emission at longer wavelengths.  The electromagnetic wavelength increases are not the result of a doppler velocity effects, but rather physical electro-optical
results.  The electromagnetic extinction in intergalactic and inter-galactic cluster space is the result of the characteristics of the intergalactic and inter-galactic cluster transmission fields.  Super-galactic cluster collisions occurring along Geller Shocks Zones (GSZ) generate 
exceedingly high intergalactic temperatures, and result in the generation of gamma and X-rays.  These high-frequency transmission fields further affect the intergalactic transmission field's propagation characteristics to the extent that extinction is increased through interference.  Galaxies of 
super clusters forming around Geller Shock Zones are 
located within 100 million-degree Celsius hydrogen and helium gas 
clouds.  These intergalactic gas clouds absorb, scatter and re-transmit radiation, the propagation of which includes light 
(.398 -. 780 microns). This generates the impression of velocity doppler effects, and yet has nothing 
to do with assumed galaxy expansion processes.  For example concentrations of 10-20 million-degree gas fields have been 
observed surrounding large galaxies clusters of NGC 4889 and NGC 4874, resulting in an incorrect assumption of doppler velocities to spectral line shifts; such line shifting being functions of transmission through
very hot hydrogen and helium intergalactic space near galaxy cluster compression zones.  

The images shown below from Dr. Halton Arp's catalogue and re-processed here (BSM Research Associates) reveal galaxy disintegration processes, which further add to the intergalactic dust and the hydrogen-helium gas fields within galactic clusters.  Galaxies are always in clusters of galaxies found along Geller nodal compression
zones. An expanding universe model is proven neither by astrophysical field data, nor by electromagnetic propagation physics. 
Electromagnetic absorption, scattering and re-transmission of radiation in the REAL universe are based on a decreasing Integrated Field System (IFS) line tension.  This results in a reduction in cumulative observed wavelengths across broadband transmission.  Another caution:  Earth is neither at the center of the Solar System nor at the center of this galaxy. 
THIS SITE ALSO INCLUDES THE UNIVERSITY OF TEXAS AT EL PASO (PHYSICS DEPARTMENT) THOMAS G. BARNES AND HAROLD S. SLUSHER FILES
KEYS: Messier 66  M65; Arp 317

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     <h2 class="date-header">Friday, 30 September 2011</h2>
      
   <div class="post"><a name=36></a>
    <h3 class="post-title">BSM Research Associates</h3>
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      <p><p><strong><a href="http://my.opera.com/cliffordanthonypaiva/blog/">BSM Research Associates subsites: OPERA and FACEBOOK</a></strong></p><p>
<p>clifford.paiva@gmail.com </p><p>(661) 370 1482</p><strong><br></strong></p></p>
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      <em>Clifford A. Paiva @ 08:56 AM</em>
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     <h2 class="date-header">Tuesday, 10 May 2011</h2>
      
   <div class="post"><a name=35></a>
    <h3 class="post-title">CLASSIC BARNES AND SLUSHER TEXTS</h3>
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      <p><p><strong><font color="#0000ff"><a href="http://my.opera.com/cliffordanthonypaiva/blog/">Back to BSM Research Associates Homepage</a></font><br></strong></p><p><strong><font color="#0000ff"><a href="http://my.opera.com/cliffordanthonypaiva/blog/2011/10/16/space-physics-interplanetary-dust-interplanetary-magnetic-field-earths-geoma">Geomagnetic Field (Barn</a>es)<br></font></strong></p><p><strong><br></strong></p><p><strong><a href="http://my.opera.com/cliffordanthonypaiva/blog/2011/05/08/test-gmf">The Origin and Destiny of the Earth's Geomagnetic Field by Thomas G. Barnes (Implications for Biological Processes on Earth)</a></strong>; Professor Emeritus, University of Texas at El Paso; Physics Department</p><p><strong><a href="http://my.opera.com/cliffordanthonypaiva/blog/2011/05/09/critique-of-radiometric-dating-methods-harold-s-slusher-u238-pb209-k40-ar40">Critique of Radiometric Dating by Dr. Harold S. Slusher</a>; Professor of Physics, University of Texas at El Paso Physics Department<br></strong></p></p>
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      <em>Clifford A. Paiva @ 08:53 AM</em>
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     <h2 class="date-header">Tuesday, 28 December 2010</h2>
      
   <div class="post"><a name=34></a>
    <h3 class="post-title">George Mulfinger (Bob Jones University): Critique of Stellar Evolution</h3>
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      <em>Clifford A. Paiva @ 09:30 AM</em>
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		  			<div class="comment-body"><a name=34_1></a>
			  <p><b>Chynna:</b> I&#39;m rellay into it, thanks for this great stuff! <small>(12/13/11)</small></p>
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		  			<div class="comment-body"><a name=34_2></a>
			  <p><b>Bucky:</b> Thanky Thanky for all this good ifnomrtaion! <small>(12/14/11)</small></p>
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     <h2 class="date-header">Monday, 31 August 2009</h2>
      
   <div class="post"><a name=31></a>
    <h3 class="post-title">Clifford Anthony Paiva_BSMRA:  Stardust Mission Integrity Questions: The Isotopic Abundance of Glycine-Carbon-13 On Earth and Mission Contamination</h3>
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      <p><p style="TEXT-ALIGN: justify"><span style="COLOR: #4b5c68"><strong><a href="http://smtp.antelecom.net/blogs/BSMRAMainsite/">BSMRA.or</a>g</strong></span></p>
<p style="TEXT-ALIGN: justify"><span style="COLOR: #4b5c68">Earlier, preliminary analysis in the NASA Goddard labs detected glycine in both the <strong><em><u>foil</u></em></strong> </span><b><span style="COLOR: red">(BSMRA: this is <u>contamination</u> since glycine molecules would have been vaporized on impact with the aluminum wall, which is of course the reason for the requirement of the aerogel on the STARDUST mission)</span></b><span style="COLOR: #4b5c68"> and a sample of the aerogel. However, since glycine is used by <i>terrestrial</i> life, at <b><i><u><a href="http://stardust.jpl.nasa.gov/news/news115.html">first the team was unable to rule out contamination from sources on Earth. "It was possible that the glycine we found originated from handling or manufacture of the Stardust spacecraft itself,"</a></u></i></b> said Elsila (NASA-Astrobiology). The new research used isotopic analysis of the <strong><em><u>foil</u></em></strong> </span><b><span style="COLOR: red">(BSMRA: aluminum)</span></b><span style="COLOR: #4b5c68"> to rule out </span><b><span style="COLOR: red">(BSMRA: this is an unwarranted assumption since 1.1% of carbon on Earth <i>IS</i> <sup>13</sup>C)</span></b><span style="COLOR: #4b5c68"> that possibility.<br><br><span style="mso-spacerun: yes"> </span>…A glycine molecule from space will tend to have more of the heavier Carbon-13 atoms in it than glycine that's from Earth </span><b><span style="COLOR: red">(BSMRA: Incorrect since displacement through the solar plasma field (solar wind) precludes the possibility of any intact glycine. Any Carbon 13 within the solar wind plasma field would be dissociated into its atomic constituents; not remaining in glycine</span></b><span style="COLOR: #4b5c68"> </span><b><span style="COLOR: red">form.)</span></b><span style="COLOR: #4b5c68"> That is what the team found. </span><b><span style="COLOR: red">(BSMRA: The NASA astrobiology team found 13C contamination)</span></b><span style="COLOR: red">.</span></p>
<p><span style="FONT-FAMILY: 'Times New Roman'; COLOR: #4b5c68; FONT-SIZE: 12pt; mso-fareast-font-family: 'Times New Roman'; mso-ansi-language: EN-US; mso-fareast-language: EN-US; mso-bidi-language: AR-SA"><span style="mso-spacerun: yes"> </span>"We discovered that the Stardust-returned glycine has an </span><i><span style="FONT-FAMILY: 'Times New Roman'; FONT-SIZE: 12pt; mso-fareast-font-family: 'Times New Roman'; mso-ansi-language: EN-US; mso-fareast-language: EN-US; mso-bidi-language: AR-SA">extraterrestrial</span></i><b><span style="FONT-FAMILY: 'Times New Roman'; COLOR: red; FONT-SIZE: 12pt; mso-fareast-font-family: 'Times New Roman'; mso-ansi-language: EN-US; mso-fareast-language: EN-US; mso-bidi-language: AR-SA"> (BSMRA: another NASA assumption)</span></b><span style="FONT-FAMILY: 'Times New Roman'; COLOR: #4b5c68; FONT-SIZE: 12pt; mso-fareast-font-family: 'Times New Roman'; mso-ansi-language: EN-US; mso-fareast-language: EN-US; mso-bidi-language: AR-SA"> carbon isotope signature, indicating that it originated on the comet," said Elsila. </span><b><span style="FONT-FAMILY: 'Times New Roman'; COLOR: red; FONT-SIZE: 12pt; mso-fareast-font-family: 'Times New Roman'; mso-ansi-language: EN-US; mso-fareast-language: EN-US; mso-bidi-language: AR-SA">Elsila is not admitting an otherwise <u>mishandled</u> experiment via unnecessary contamination of the STARDUST mission, and attempting to turn the mistake to the benefit NASA; essentially by covering a contamination occurrence of a multi-million dollar NASA effort. </span></b><b><span style="FONT-FAMILY: 'Times New Roman'; COLOR: red; FONT-SIZE: 12pt; mso-fareast-font-family: 'Times New Roman'; mso-ansi-language: EN-US; mso-fareast-language: EN-US; mso-bidi-language: AR-SA">[Further Interest: </span></b><strong><font color="#ff0000"><a href="http://smtp.antelecom.net/blogs/bsmaCIA/">http://smtp.antelecom.net/blogs/bsmaCIA/</a>]</font></strong></p>
<p><a href="http://stardust.jpl.nasa.gov/home/index.html"><img src="a_31_NASA_Stardust_Contamination.jpg"></a> <br><strong>Clifford A. Paiva_</strong><a href="http://smtp.antelecom.net/blogs/bsmaastrophysics/a_31_Stardust_Contamination_BEFORE.doc"><strong>BSMRA_Stardust Contamination BEFORE.doc</strong></a><strong> </strong></p>
<p><a href="http://smtp.antelecom.net/blogs/bsmaastrophysics/a_31_Intergalactic_Dust.pdf"><strong>BSMRA_</strong><strong>Intergalactic Dust.pdf</strong></a> </p>
<p><a href="a_31_Cliff_PRIMARY_Prime_Military__RESUME__2009.doc"><strong>Clifford Anthony Paiva RESUME 2009.doc</strong></a><strong> <br></strong><br><a href="http://dynamics.chem.ox.ac.uk/projects/project1.html"><img src="a_31_Solar_Wind_PD_out_1.jpg"></a> <br><a href="http://dynamics.chem.ox.ac.uk/projects/project1.html"><img src="a_31_Solar_Wind_PD_out_2.jpg"></a> <br><strong>Clifford A. Paiva_</strong><a href="http://smtp.antelecom.net/blogs/bsmaastrophysics/a_31_Photodissociation_of_Peptide_Model_Compounds_out1.doc"><strong>BSMRA_Photodissociation of Peptide Model Compounds out1.doc</strong></a></p>
<p><strong>Clifford A. Paiva_<a href="http://s8int.com/phile/page62.html">BSMRA</a></strong>_<a href="http://s8int.com/phile/page62.html"><strong>SI8 and Interplanetary Dust</strong></a></p>
<p><strong><a href="http://www.google.com/search?q=Clifford+A.+Paiva+BSMRA&amp;hl=en&amp;filter=0">All BSMRA Sites</a></strong></p>
<p><strong><a href="http://smtp.antelecom.net/blogs/BSMRAMainsite/">BSMRA.org</a></strong></p><p><img src="a_31_Blast_Effects.jpg"></p><img src="a_31_Blast_Effects_2.jpg">
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      <em>Clifford A. Paiva @ 09:49 AM</em>
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			  <p><b>Cliff:</b> No apologies here from BSM Research since NASA has no apologies regarding the unecessary contamination of a 150 million dollar mission, probably before the STARDUST satellite even left the laboratory. <small>(08/31/09)</small></p>
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     <h2 class="date-header">Monday, 24 August 2009</h2>
      
   <div class="post"><a name=30></a>
    <h3 class="post-title">Clifford Anthony Paiva_BSMRA:  Arp 308 [NGC 0545+]; 47Arp 299 [NGC 3690] Collision System; Disintegration of Vortex Galaxies; So-Called "Quasars":  Normal Stars and Galaxies; Dr. Halton Arp (Max Planck Institute); Assumed Doppler Interpretation for Redshift and Application Within the BSMRA_Hubble Constant; Closed Science</h3>
    <div class="post-body">
      <p><p><a href="http://smtp.antelecom.net/blogs/BSMRAMainsite/"><strong>Back to BSMRA Main Site</strong></a></p>
<p><strong><a href="http://www.google.com/search?q=Clifford+A.+Paiva+BSMRA&amp;hl=en&amp;filter=0">All BSMRA Sites</a></strong></p>
<p>
<span class="Apple-style-span" style="border-collapse: separate; color: rgb(0, 0, 0); font-family: 'Times New Roman'; font-style: normal; font-variant: normal; font-weight: normal; letter-spacing: normal; line-height: normal; orphans: 2; text-align: auto; text-indent: 0px; text-transform: none; white-space: normal; widows: 2; word-spacing: 0px; -webkit-border-horizontal-spacing: 0px; -webkit-border-vertical-spacing: 0px; -webkit-text-decorations-in-effect: none; -webkit-text-size-adjust: auto; -webkit-text-stroke-width: 0px; font-size: medium; "><span class="Apple-style-span" style="color: rgb(51, 51, 51); font-family: 'Trebuchet MS', Verdana, Arial, sans-serif; font-size: 13px; line-height: 18px; text-align: left; "><span class="Apple-style-span" style="border-collapse: separate; color: rgb(0, 0, 0); font-family: 'Times New Roman'; font-style: normal; font-variant: normal; font-weight: normal; letter-spacing: normal; line-height: normal; orphans: 2; text-indent: 0px; text-transform: none; white-space: normal; widows: 2; word-spacing: 0px; -webkit-border-horizontal-spacing: 0px; -webkit-border-vertical-spacing: 0px; -webkit-text-decorations-in-effect: none; -webkit-text-size-adjust: auto; -webkit-text-stroke-width: 0px; font-size: medium; "><span class="Apple-style-span" style="color: rgb(51, 51, 51); font-family: 'Trebuchet MS', Verdana, Arial, sans-serif; font-size: 13px; line-height: 18px; text-align: left; "><a href="http://haysvillelibrary.files.wordpress.com/2009/05/galaxies-on-collision-course-hst-ultra-deep-field.jpg" style="color: rgb(51, 68, 119); "><strong>BSMRA_Galaxies are exceedingly high-entropy vortex systems in the process of<span class="Apple-converted-space">&#65533;</span><em>disintegration</em></strong></a><strong>;</strong> not formation. Further stars within dense interstellar (intra-galactic) dust transmission fields, and galaxies within intergalactic cluster fields; absorb, multiple-scatters, and re-transmits electromagnetic radiation at all wavelengths, but particularly at in the .398-.780 micron and shorter propagation band-passes. Extinction and reddening increases as a function of decreasing wavelength resulting in percieved spectral shifts. Also the<em> intensity </em>and of re-emitted radiation is specific to the characteristics of the interstellar dust and gas fields, intergalactic and inter-cluster (between galactic clusters) and along acoustic (<a href="http://www.cfa.harvard.edu/~mjg/" style="color: rgb(51, 68, 119); ">Geller)</a>field zones. The<strong> X-ray QSO (X-QSO)</strong> has been measured by <a href="http://chandra.harvard.edu/" style="color: rgb(51, 68, 119); "><strong>CHANDRA X-ray </strong></a>observations: 1.5(10)^40 erg/s. Such prodigious amounts of very short wave electromagnetic wave propagation energy is subject to absorption and multiple-scattering by interstellar (ISM), inter-galactic, intra-cluster (IGM, <a href="http://en.wikipedia.org/wiki/Intracluster_medium" style="color: rgb(51, 68, 119); ">ICM</a>) and inter-galactic cluster (IGCM) transmission media.<a href="http://wiki.answers.com/Q/What_is_the_wavelength_of_an_X-ray" style="color: rgb(51, 68, 119); "><strong> X-ray</strong></a> sources are subject to intense extinction by <a href="http://en.wikipedia.org/wiki/Cosmic_dust" style="color: rgb(51, 68, 119); ">ISM</a>, and<a href="http://en.wikipedia.org/wiki/Intracluster_medium" style="color: rgb(51, 68, 119); "> extremely hot IGM, and ICM</a> transmission fields. More data is included from <a href="http://iso.esac.esa.int/" style="color: rgb(51, 68, 119); ">Infrared Space Observatory (ISO)</a>,<a href="http://www.spitzer.caltech.edu/Media/mediaimages/zooms/index.shtml" style="color: rgb(51, 68, 119); "> Spitzer Space Telescope (SST)</a>and its<a href="http://www.iop.org/EJ/article/0067-0049/154/1/18/60259.web.pdf?request-id=9a78e440-acc8-43d9-acbe-3ec73c4aaf2d" style="color: rgb(51, 68, 119); "> Infrared Spectrograph (IRS).</a> Other space<a href="http://www.spitzer.caltech.edu/" style="color: rgb(51, 68, 119); "> electro-optics programs</a> are included in this section.<a href="a_30_Quasars_So-Called_Are_In_Fact_Normal_Stars_and_Galaxies.pdf" style="color: rgb(51, 68, 119); ">Quasars So-Called Are In Fact Normal Stars and Galaxies.pdf</a>.</span></span></span></span></p><p><span class="Apple-style-span" style="border-collapse: separate; color: rgb(0, 0, 0); font-family: 'Times New Roman'; font-style: normal; font-variant: normal; font-weight: normal; letter-spacing: normal; line-height: normal; orphans: 2; text-align: auto; text-indent: 0px; text-transform: none; white-space: normal; widows: 2; word-spacing: 0px; -webkit-border-horizontal-spacing: 0px; -webkit-border-vertical-spacing: 0px; -webkit-text-decorations-in-effect: none; -webkit-text-size-adjust: auto; -webkit-text-stroke-width: 0px; font-size: medium; "><span class="Apple-style-span" style="color: rgb(51, 51, 51); font-family: 'Trebuchet MS', Verdana, Arial, sans-serif; font-size: 13px; line-height: 18px; text-align: left; "><span class="Apple-style-span" style="border-collapse: separate; color: rgb(0, 0, 0); font-family: 'Times New Roman'; font-style: normal; font-variant: normal; font-weight: normal; letter-spacing: normal; line-height: normal; orphans: 2; text-indent: 0px; text-transform: none; white-space: normal; widows: 2; word-spacing: 0px; -webkit-border-horizontal-spacing: 0px; -webkit-border-vertical-spacing: 0px; -webkit-text-decorations-in-effect: none; -webkit-text-size-adjust: auto; -webkit-text-stroke-width: 0px; font-size: medium; "><span class="Apple-style-span" style="color: rgb(51, 51, 51); font-family: 'Trebuchet MS', Verdana, Arial, sans-serif; font-size: 13px; line-height: 18px; text-align: left; "><strong><a href="http://nedwww.ipac.caltech.edu/level5/Arp/Arp_contents.html" style="color: rgb(51, 68, 119); ">Dr. Halton Arp's Peculiar Galaxy Catalogue</a></strong>.</span></span></span></span></p><p><a href="http://smtp.antelecom.net/blogs/bsmaastrophysics/a_30_Redshift_As_A_Function_of_Electromagnetic_Wave_Absorption__Scattering_and_Re-Transmission.pdf"> <img src="a_30_Xray_Seyfert_II_NGC_7319_X-QSO.jpg"></a> </p>
<p><a href="http://smtp.antelecom.net/blogs/bsmaastrophysics/a_30_Redshift_As_A_Function_of_Electromagnetic_Wave_Absorption__Scattering_and_Re-Transmission.pdf"><strong>BSMRA_Redshift As A Function of Electromagnetic Wave Absorption, Scattering and Re-Transmission.pdf</strong></a> <br><a href="http://smtp.antelecom.net/blogs/bsmaastrophysics/a_30_Redshift_As_A_Function_of_Electromagnetic_Wave_Absorption__Scattering_and_Re-Transmission.pdf"><strong>BSMRA_Interstellar and IGM dust Primary.doc</strong></a><strong> <a href="http://smtp.antelecom.net/blogs/bsmaastrophysics/a_30_Clerk-Maxwell_Moving_Field_Equations.doc">BSMRA_</a></strong><strong><a href="http://smtp.antelecom.net/blogs/bsmaastrophysics/a_30_Clerk-Maxwell_Moving_Field_Equations.doc">Clerk-Maxwell Moving Field Equations.doc</a></strong> <br><a href="http://smtp.antelecom.net/blogs/bsmaastrophysics/a_30_Redshift_As_A_Function_of_Electromagnetic_Wave_Absorption__Scattering_and_Re-Transmission.pdf"><img src="a_30_Hubble_Constant_Assumed.jpg"></a> <br><a href="http://smtp.antelecom.net/blogs/bsmaastrophysics/a_30_Redshift_As_A_Function_of_Electromagnetic_Wave_Absorption__Scattering_and_Re-Transmission.pdf"><img src="a_30_Hubble_Constant_Assumed2_.jpg"></a> <br><a href="http://smtp.antelecom.net/blogs/bsmaastrophysics/a_30_Clerk-Maxwell_Moving_Field_Equations.doc"><img src="a_30_Hubble_Constant_Assumed3_.jpg"></a> <br><a href="http://smtp.antelecom.net/blogs/bsmaastrophysics/a_30_Clerk-Maxwell_Moving_Field_Equations.doc"><img src="a_30_Hubble_Constant_Assumed4.jpg"></a> <br><a href="http://smtp.antelecom.net/blogs/bsmaastrophysics/a_30_Electromagnetic_Extinction_From_Interstellar_Dust.doc"><strong>BSMRA_</strong><strong>Electromagnetic Extinction From Interstellar Dust.doc</strong></a><strong> <br><a href="http://smtp.antelecom.net/blogs/bsmaastrophysics/a_30_EXTINCTION_AS_A_FUNCTION_OF_PARTICLE_DIAMETER.doc">BSMRA_</a></strong><strong><a href="http://smtp.antelecom.net/blogs/bsmaastrophysics/a_30_EXTINCTION_AS_A_FUNCTION_OF_PARTICLE_DIAMETER.doc">EXTINCTION AS A FUNCTION OF PARTICLE DIAMETER.doc</a></strong> <br><a href="http://smtp.antelecom.net/blogs/bsmaastrophysics/a_30_Interstellar_and_IGM_dust_Primary.doc"><img src="a_30_Beers_Law_out_main.jpg"></a></p>
<p><strong>Clifford A. Paiva_BSMRA_W5 Interstellar Shock Zone</strong>.  Vortex symmetry is not possible in this zone consisting of intense electromagneto-hydrodynamic shocks; hence planetary formation is not possible, assuming incorrectly that planetary gravitational accretion physics was possible...which it is not due to outward pressure potentials and energy dissipative processes, in accordance with the Second Law of Thermodyanmics: <a href="http://smtp.antelecom.net/blogs/bsmaastrophysics/a_30_Intergalactic_Dust.pdf"><strong>BSMRA_</strong><strong>Intergalactic Dust.pdf</strong></a> </p>
<p><a href="http://smtp.antelecom.net/blogs/bsmaastrophysics/a_30_Interstellar_and_IGM_dust_Primary.doc"><img src="a_30_W5_Shock_out_1.jpg"></a> </p>
<p><a href="a_30_BSMRA_Arp_Objects_in_Arp_and_NGC_Sequence.pdf"><strong>BSMRA_Arp Objects in Arp and NGC Sequence.pdf</strong></a> </p>
<p><a href="http://smtp.antelecom.net/blogs/bsmaastrophysics/a_30_Clusters_and_Galaxies_in_Collision.pdf"><img src="a_30_NGC_1365_NO_BLACKHOLE_SOURCE.jpg"></a> </p>
<p><a href="a_30_Clusters_and_Galaxies_in_Collision.pdf"><strong>Clusters and Galaxies in Collision.pdf</strong></a> </p>
<p><strong><a href="http://www.google.com/search?q=Clifford+A.+Paiva+BSMRA&amp;hl=en&amp;filter=0">All BSMRA Sites</a></strong></p>
<p>
<span class="Apple-style-span" style="border-collapse: separate; color: rgb(0, 0, 0); font-family: 'Times New Roman'; font-style: normal; font-variant: normal; font-weight: normal; letter-spacing: normal; line-height: normal; orphans: 2; text-align: auto; text-indent: 0px; text-transform: none; white-space: normal; widows: 2; word-spacing: 0px; -webkit-border-horizontal-spacing: 0px; -webkit-border-vertical-spacing: 0px; -webkit-text-decorations-in-effect: none; -webkit-text-size-adjust: auto; -webkit-text-stroke-width: 0px; font-size: medium; "><span class="Apple-style-span" style="color: rgb(51, 51, 51); font-family: 'Trebuchet MS', Verdana, Arial, sans-serif; font-size: 13px; line-height: 18px; text-align: left; ">I. All galaxies presented here are disintegrating through direct collision and wake-mass loss. None are in developmental <em>evolutionary</em> processes (since evolution...<u><em><strong>all </strong></em></u>evolution...is an etiological result of man's fertile imagination; neither scientifically verified nor validated. Specifically e<font face="times new roman,serif">xcited hydrogen and helium gas bridge for Arp 307 [NGC 2872] is still present for this coupled galaxy system. Variant spectral dopplers notwithstanding, many of these types of coupled galaxy systems remain connected.<strong><u>IF</u></strong> the so-called "big bang"model were indeed true (which it is <u>NOT</u>), coupled galaxies with spectral velocity dopplers would have de-coupled long ago...even if once connected. <u>Answer to the dilema</u>: Variant galaxy-associated dopplers are generated by non-homogenous and anisotropic (variant) gas concentions and densities along the lines-of-sight of observation. These systems are subject to light years of transmission through inter-galactic and inter-stellar gas and dust zones. Further, these systems of </font><span class="Apple-style-span" style="widows: 2; text-transform: none; text-indent: 0px; border-collapse: separate; font: normal normal normal medium/normal 'Times New Roman'; white-space: normal; orphans: 2; letter-spacing: normal; color: rgb(0, 0, 0); word-spacing: 0px; -webkit-border-horizontal-spacing: 0px; -webkit-border-vertical-spacing: 0px; -webkit-text-decorations-in-effect: none; -webkit-text-size-adjust: auto; -webkit-text-stroke-width: 0px; "><span class="Apple-style-span" style="-webkit-border-horizontal-spacing: 2px; -webkit-border-vertical-spacing: 2px; "><font size="3"><strong><u>galaxies are in violent collision, not evolutionarily"merging",which is just a cute term to hide the high entropy reality concerning the character of Universe: Galaxies<em> collide and disintegrate</em> (not form); stars explode (not <em>create</em> themselves).</u></strong></font></span></span></span></span>
<span style="WIDOWS: 2; TEXT-TRANSFORM: none; TEXT-INDENT: 0px; BORDER-COLLAPSE: separate; FONT: medium 'Times New Roman'; WHITE-SPACE: normal; ORPHANS: 2; LETTER-SPACING: normal; COLOR: rgb(0,0,0); WORD-SPACING: 0px; -webkit-border-horizontal-spacing: 0px; -webkit-border-vertical-spacing: 0px; -webkit-text-decorations-in-effect: none; -webkit-text-size-adjust: auto; -webkit-text-stroke-width: 0px" class="Apple-style-span"><span style="-webkit-border-horizontal-spacing: 2px; -webkit-border-vertical-spacing: 2px" class="Apple-style-span"><font size="3"><strong><u></u></strong></font></span></span></p>
<p><img src="a_30_Arp_26_Mrk_101.jpg"> </p><p><img src="a_30_Arp_29_NGC_6946.jpg"></p><p><img src="a_30_Arp_299_NGC_3690.jpg"></p><img src="a_30_Arp_308_out_2.jpg">
</p>
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      <em>Clifford A. Paiva @ 06:52 AM</em>
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			  <p><b>Cliff:</b> Most of the applicable equations of absorption and scattering are of course derived from James Clerk-Maxwell&#39;s field equations. Included applications to geocore geomagnetics, electromagnetic extinction, non-equilibrium radiative gas dynamics, and missile exhaust plume radiation processes. <small>(08/26/09)</small></p>
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     <h2 class="date-header">Saturday, 15 August 2009</h2>
      
   <div class="post"><a name=29></a>
    <h3 class="post-title">Clifford Anthony Paiva_BSMRA:  Intergalactic and BSMRA_Interstellar Electromagnetic Wave Absorption and Scattering Resulting in Wave Elongation (Reddening)</h3>
    <div class="post-body">
      <p><P><A href="http://smtp.antelecom.net/blogs/BSMRAMainsite/"><STRONG>Back to BSMRA Main Site</STRONG></A></P>
<P><STRONG><A href="http://smtp.antelecom.net/blogs/BSMRAMainsite/">BSMRA.org</A></STRONG></P>
<P><STRONG><A href="http://www.google.com/search?q=Clifford+A.+Paiva+BSMRA&amp;hl=en&amp;filter=0">All BSMRA Sites</A></STRONG></P>
<P><A href="http://smtp.antelecom.net/blogs/bsmaastrophysics/a_29_Galaxy_and_Star_Absorption_and_Emission_Lines.doc"><STRONG>BSMRA_</STRONG><STRONG>Galaxy and Star Absorption and Emission Lines.doc</STRONG></A><STRONG> <BR></STRONG><A href="http://www.universetoday.com/2009/02/26/intergalactic-dust-could-be-messing-up-observations/"><IMG src="a_29_IGM_ISM_Re-emission_out_1.jpg"></A> <BR><A href="http://apod.nasa.gov/apod/image/0101/ngc1410_keel_big.jpg"><IMG src="a_29_IGM_ISM_Re-emission_out_2.jpg"></A>&nbsp;<BR></P>
<P><STRONG>Clifford A. Paiva_</STRONG><A href="a_29_BSMRA_Arp_Objects_in_Arp_and_NGC_Sequence.pdf"><STRONG>BSMRA_Arp Objects in Arp and NGC Sequence.pdf</STRONG></A> </P>
<P><STRONG>Clifford A. Paiva_<A href="http://nedwww.ipac.caltech.edu/level5/Arp/Arp_contents.html">BSMRA_Halton Arp's Peculiar Galaxy Catalogue</A></STRONG></P></p>
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      <em>Clifford A. Paiva @ 14:06 PM</em>
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			  <p><b>Cliff:</b> Electromagnetic waves originating from stars and galaxies undergo absorption, multiple scattering, and re-emission (at longer wavelengths and lower frequencies) processes. When viewed through appropriate optics (telescopes, spectrometers, etc.) the absorption and emission lines are usually shifted to longer wavelengths, or "reddened". Note that this&nbsp;electromagnetic extinction&nbsp;process&nbsp;is not a function of galaxy or star displacement velocities, but rather the physical characteristics of the intergalactic and interstellar transmission fields (i.e. interstellar carbonaceous silicates and graphites). Gravitational redshifting may also be involved. Big Bang models which require a <EM>dopple</EM>r interpretation for the absorption and emission line spectral shifts are based on a <FONT face="times new roman,serif">false assumption regarding the generating function of the spectral sh</FONT>ift. <small>(08/15/09)</small></p>
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		  			<div class="comment-body"><a name=29_2></a>
			  <p><b>Cathleen:</b> I can&#39;t believe you&#39;re not playing with me--that was so hlepufl. <small>(12/12/11)</small></p>
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     <h2 class="date-header">Thursday, 30 April 2009</h2>
      
   <div class="post"><a name=28></a>
    <h3 class="post-title">Clifford Anthony Paiva_BSMRA:  Arp 165 NGC 2418 Vortex System, Arp 152 [Messier 87] Represents Intensity Galactic Vortex</h3>
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      <p><P><FONT color="#3333ff"><A href="http://smtp.antelecom.net/blogs/BSMRAMainsite/"><STRONG>Back to BSMRA Main Site</STRONG></A></FONT></P>
<P><FONT color="#3333ff"><STRONG><A href="http://www.google.com/search?q=Clifford+A.+Paiva+BSMRA&amp;hl=en&amp;filter=0">All BSMRA Sites</A></STRONG></FONT></P>
<P><FONT color="#3333ff"><STRONG>BSM Research maintains that <A href="http://nedwww.ipac.caltech.edu/level5/Arp/Arp_contents.html">Arp 152 [M87]</A> and Arp 165 NGC 2418 represent intense galactic vortices.  As in all vortices, mass is primarily directed to the center of the vortex. Curl of the velocity vector is not zero, spiral characteristics notwithstanding.</STRONG></FONT></P>
<P><A href="http://apod.nasa.gov/apod/image/0101/ngc1410_keel_big.jpg"><IMG src="a_28_Messier_87_Arp_152.jpg"></A></P><P> <A href="http://smtp.antelecom.net/blogs/bsmaastrophysics/a_28_Arp_165_NGC_2418_Vortex.pdf"><IMG src="a_28_Arp_165_NGC_2418.jpg"></A> </P>
<P><STRONG><A href="http://smtp.antelecom.net/blogs/bsmaastrophysics/a_28_Arp_165_NGC_2418_Vortex.pdf">Clifford A. Paiva_BSMRA:</A></STRONG> <A href="a_28_Arp_165_NGC_2418_Vortex.pdf"><STRONG>Arp 165 NGC 2418 Vortex.pdf</STRONG></A> </P></p>
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      <em>Clifford A. Paiva @ 22:26 PM</em>
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			  <p><b>Cliff:</b> In any case I am not convinced on Dr. Arp&#39;s ejection model for Arp 152; and certainly not for what he assumes are ejected quasars in near proximity of galaxy hosts. <small>(04/30/09)</small></p>
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		<p class="profile-textblock">[PLEASE USE CONTROL (+) FOR ZOOMS AND CONTROL (0) FOR NORMAL VIEW].  Large Scale Structures (Geller Shock Compression Zones) clearly reveal the presence of voids (magnetohydrodynamic rarefaction zones).  This analysis was originally implemented by Dr. Lars Lindberg Christensen, University of Copenhagen, Denmark. The zones
in the immediate areas of the shock lines are in excess of 100 million degree-C.  WITHIN the shock lines temperatures are yet to be determined.  The surrounding area temperatures are 10-20 million deg-C.  Folks interested in astrophysical heat processes from a Biblical perspective may reference: 

2Pe 3:10:
But the day of the Lord will come like a thief, in which the heavens will pass away with a roar and the elements will be destroyed with intense heat, and the earth and its works will be burned up. 

2Pe 3:12:
...looking for and hastening the coming of the day of God, because of which the heavens will be destroyed by burning, and the elements will melt with intense heat!...

Re 16:9:
Men were scorched with fierce heat; and they blasphemed the name of God who has the power over these plagues, and they did not repent so as to give Him glory. 

The last statement from Revelation 16:9 may also be connected to the global heating and solar radiance and storm (sunspot ) frequency increases, also assessed in this website (please refere to the Sections listing).

THIS SITE INCLUDES THE UNIVERSITY OF TEXAS AT EL PASO (PHYSICS DEPARTMENT) THOMAS G. BARNES AND HAROLD S. SLUSHER FILES

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		       BSM Research Associates 		    </a>
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		       Clifford Anthony Paiva_BSMRA:  Stardust Mission Integrity Questions: The Isotopic Abundance of Glycine-Carbon-13 On Earth and Mission Contamination 		    </a>
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		       Clifford Anthony Paiva_BSMRA:  Arp 308 [NGC 0545+]; 47Arp 299 [NGC 3690] Collision System; Disintegration of Vortex Galaxies; So-Called "Quasars":  Normal Stars and Galaxies; Dr. Halton Arp (Max Planck Institute); Assumed Doppler Interpretation for Redshift and Application Within the BSMRA_Hubble Constant; Closed Science 		    </a>
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		       Clifford Anthony Paiva_BSMRA:  Intergalactic and BSMRA_Interstellar Electromagnetic Wave Absorption and Scattering Resulting in Wave Elongation (Reddening) 		    </a>
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		       Clifford Anthony Paiva_BSMRA:  Arp 165 NGC 2418 Vortex System, Arp 152 [Messier 87] Represents Intensity Galactic Vortex 		    </a>
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		       Clifford Anthony Paiva_BSMRA:  Arp 166 [NGC 0750]; Arp 301[UGC 6204]: BSMRA_Hyrdrogen-Helium Intergalactic Gas Bridge 		    </a>
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		       Clifford Anthony Paiva_BSMRA:  Arp 299 [NGC 3690]; BSMRA_Arp 297 [NGC 5755 NGC 5754 NGC 5753 NGC 5752; BSMRA_ Intergalactic Dust Absorbtion and Re-Emission Yielding Apparent Velocity Doppler Shifts (NOT Real) 		    </a>
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		       Clifford Anthony Paiva_BSMRA:  Arp 290 [IC 0195-96]; BSMRA_Arp 291 [UGC 05832]; BSMRA_Arp 293 [NGC 6286-85]; BSMRA_Mass Loss  		    </a>
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		       Clifford Anthony Paiva_BSMRA:  Arp 23; BSMRA_Arp 269; BSMRA_Arp 287; BSMRA_Arp 288 		    </a>
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		       Clifford Anthony Paiva_BSMRA:  Spectral Redshifts: BSMRA_NGC 7320 (Arp 319); BSMRA_Arp 289 [NGC 3981]: Gas Connection Zones 		    </a>
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		       Clifford Anthony Paiva_BSMRA:  Arp 167 [NGC 2672 +73; Arp 319 BSMRA_[Messier 65-66]; BSMRA_Arp 319 [NGC 7320] System 		    </a>
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        		  <li>
		    <a href="http://smtp.antelecom.net/blogs/bsmaastrophysics/item_15.htm">
		       Clifford Anthony Paiva_BSMRA:  Arp 170 NGC GC 7578A/B; Arp 169 NGC 7236-39; Arp 168 NGC 221; Arp 272 [NGC 6050]; BSMRA_ Arp 286 [NGC 5566] NGC 5560 NGC 5569; 		    </a>
		  </li>
        		  <li>
		    <a href="http://smtp.antelecom.net/blogs/bsmaastrophysics/item_14.htm">
		       Clifford Anthony Paiva_BSMRA:  Arp 271[NGC 5426, NGC 5427]; BSMRA_Arp 87 [NGC 3808; NGC 3808] A Physically Connected Through Vortex Center Region 		    </a>
		  </li>
        		  <li>
		    <a href="http://smtp.antelecom.net/blogs/bsmaastrophysics/item_11.htm">
		       Clifford Anthony Paiva_BSMRA:  The Thomas G. Barnes and Harold S. Slusher Physics Files and Publications 		    </a>
		  </li>
        		  <li>
		    <a href="http://smtp.antelecom.net/blogs/bsmaastrophysics/item_10.htm">
		       Clifford Anthony Paiva_BSMRA:  Arp 194 [UGC 6945]; Arp 281 [NGC 4631 and 4627] In Violent Collision; BSMRA_ARP 269 [NGC 4485 and NGC 4490]  With  Gas Bridge Connection And In Intergalactic Collision 		    </a>
		  </li>
        		  <li>
		    <a href="http://smtp.antelecom.net/blogs/bsmaastrophysics/item_5.htm">
		       Clifford Anthony Paiva_BSMRA:  Large Scale Structures; BSMRA_Super Cluster Vortices Concentration; BSMRA_Standing Wave Shock Zones; BSMRA_Super Cluster Collision; BSMRA_ Inter-Galactic Cluster 100 Million Degree X and BSMRA_Gamma Ray Temperatures 		    </a>
		  </li>
        		  <li>
		    <a href="http://smtp.antelecom.net/blogs/bsmaastrophysics/item_2.htm">
		       Clifford Anthony Paiva_ BSMRA:  Galaxy Disintegration Processes; Electromagnetic Propagation Extinction; BSMRA_Geller LInes; BSMRA_ Arp 278; BSMRA_Arp 284;  Arp 286; NGC 5566; NGC 4319 Connecton; BSMRA_Arp 27, NGC 7578; Arp 26; M 101; Arp 3; Arp 41; NGC 1232; Arp 85, M 51CONNECTION; Arp 29, NGC 6946; Arp 27; Arp 93; Arp 84; Arp 112, BSMRA_NGC 7805; Arp 278, BSMRA_NGC 7253; 		    </a>
		  </li>
        
    </ul>
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