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	<title>Comments on: Classical Electrodynamics and Theory of Relativity</title>
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	<link>http://artikel-software.com/blog/2007/12/31/classical-electrodynamics-and-theory-of-relativity/</link>
	<description>Free Download Engineering Ebooks</description>
	<lastBuildDate>Mon, 06 Feb 2012 08:09:47 +0000</lastBuildDate>
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	<item>
		<title>By: latha.V</title>
		<link>http://artikel-software.com/blog/2007/12/31/classical-electrodynamics-and-theory-of-relativity/comment-page-1/#comment-123999</link>
		<dc:creator>latha.V</dc:creator>
		<pubDate>Mon, 22 Aug 2011 02:09:39 +0000</pubDate>
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		<description>the content should be proper and it is very useful to sstundents which are study eng</description>
		<content:encoded><![CDATA[<p>the content should be proper and it is very useful to sstundents which are study eng</p>
]]></content:encoded>
	</item>
	<item>
		<title>By: Electromagnetic Field Theory &#187; Free Download Engineering &#124; Science &#124; Technology Books</title>
		<link>http://artikel-software.com/blog/2007/12/31/classical-electrodynamics-and-theory-of-relativity/comment-page-1/#comment-33092</link>
		<dc:creator>Electromagnetic Field Theory &#187; Free Download Engineering &#124; Science &#124; Technology Books</dc:creator>
		<pubDate>Fri, 12 Nov 2010 15:18:14 +0000</pubDate>
		<guid isPermaLink="false">http://www.artikel-software.com/blog/2007/12/31/classical-electrodynamics-and-theory-of-relativity/#comment-33092</guid>
		<description>[...] Foundations of Classical Electrodynamics 1.1 Electrostatics 1.1.1 Coulomb’s law 1.1.2 The electrostatic field 1.2 Magnetostatics 1.2.1 [...]</description>
		<content:encoded><![CDATA[<p>[...] Foundations of Classical Electrodynamics 1.1 Electrostatics 1.1.1 Coulomb’s law 1.1.2 The electrostatic field 1.2 Magnetostatics 1.2.1 [...]</p>
]]></content:encoded>
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	<item>
		<title>By: Alexander Nahhas</title>
		<link>http://artikel-software.com/blog/2007/12/31/classical-electrodynamics-and-theory-of-relativity/comment-page-1/#comment-3127</link>
		<dc:creator>Alexander Nahhas</dc:creator>
		<pubDate>Sun, 08 Feb 2009 05:57:19 +0000</pubDate>
		<guid isPermaLink="false">http://www.artikel-software.com/blog/2007/12/31/classical-electrodynamics-and-theory-of-relativity/#comment-3127</guid>
		<description>Einstein&#039;s Physics Dollar Store on Campus
MIT Harvard Cal-Tech
Sponsored by NASA
Why Relativity theory is not Physics and why Einstein&#039;s &quot;thought&quot; = 0
Walking the walk and talking the talk taking on all space-time confusion of physics by
MIT Harvard and Cal-Tech and all other Physics dollar stores departments
And why LHC burned itself

Visual Effects and the confusions of &quot;Modern&quot; physics

  r --------- Light sensing of moving objects ------- S
Actual object----- Light --------- Visual object
r - -------cosine (wt) + i sine (wt) - S = r [cosine (wt) + i sine (wt)]
Newton-- Kepler&#039;s time visual effects -- Time dependent Newton
Particle -------------- Visual effects -------------------- Wave

Line of Sight:  r cosine wt

r ------------------- r cosine (wt) line of sight light aberrations

A moving object with velocity v will be visualized by
light sensing through an angle (wt);w = constant and t= time
Also, sine wt = v/c; cosine wt = √ [1-sine² (wt) = √ [1-(v/c) ²]

A visual object moving with velocity v will be seen as S

S = r [cosine (wt) + i sine (wt)] = r Exp [i wt]; Exp = Exponential

S = r [√ [1-(v/c) ²] + ỉ (v/c)] = S x + i S y

S x = Visual along the line of sight = r [√ [1-(v/c) ²]

This Equation is special relativity length contraction formula
And it is just the visual effects caused by light aberrations of a
moving object along the line of sight.

In a right angled velocity triangle A B C: Angle A = wt; angle B = 90°; Angle C = 90° -wt
AB = hypotenuse = c; BC = opposite = v; CA= adjacent = √ [1-(v/c) ²]</description>
		<content:encoded><![CDATA[<p>Einstein&#8217;s Physics Dollar Store on Campus<br />
MIT Harvard Cal-Tech<br />
Sponsored by NASA<br />
Why Relativity theory is not Physics and why Einstein&#8217;s &#8220;thought&#8221; = 0<br />
Walking the walk and talking the talk taking on all space-time confusion of physics by<br />
MIT Harvard and Cal-Tech and all other Physics dollar stores departments<br />
And why LHC burned itself</p>
<p>Visual Effects and the confusions of &#8220;Modern&#8221; physics</p>
<p>  r &#8212;&#8212;&#8212; Light sensing of moving objects &#8212;&#8212;- S<br />
Actual object&#8212;&#8211; Light &#8212;&#8212;&#8212; Visual object<br />
r &#8211; &#8212;&#8212;-cosine (wt) + i sine (wt) &#8211; S = r [cosine (wt) + i sine (wt)]<br />
Newton&#8211; Kepler&#8217;s time visual effects &#8212; Time dependent Newton<br />
Particle &#8212;&#8212;&#8212;&#8212;&#8211; Visual effects &#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8211; Wave</p>
<p>Line of Sight:  r cosine wt</p>
<p>r &#8212;&#8212;&#8212;&#8212;&#8212;&#8212;- r cosine (wt) line of sight light aberrations</p>
<p>A moving object with velocity v will be visualized by<br />
light sensing through an angle (wt);w = constant and t= time<br />
Also, sine wt = v/c; cosine wt = √ [1-sine² (wt) = √ [1-(v/c) ²]</p>
<p>A visual object moving with velocity v will be seen as S</p>
<p>S = r [cosine (wt) + i sine (wt)] = r Exp [i wt]; Exp = Exponential</p>
<p>S = r [√ [1-(v/c) ²] + ỉ (v/c)] = S x + i S y</p>
<p>S x = Visual along the line of sight = r [√ [1-(v/c) ²]</p>
<p>This Equation is special relativity length contraction formula<br />
And it is just the visual effects caused by light aberrations of a<br />
moving object along the line of sight.</p>
<p>In a right angled velocity triangle A B C: Angle A = wt; angle B = 90°; Angle C = 90° -wt<br />
AB = hypotenuse = c; BC = opposite = v; CA= adjacent = √ [1-(v/c) ²]</p>
]]></content:encoded>
	</item>
	<item>
		<title>By: Joe Nahhas</title>
		<link>http://artikel-software.com/blog/2007/12/31/classical-electrodynamics-and-theory-of-relativity/comment-page-1/#comment-3126</link>
		<dc:creator>Joe Nahhas</dc:creator>
		<pubDate>Wed, 28 Jan 2009 08:31:58 +0000</pubDate>
		<guid isPermaLink="false">http://www.artikel-software.com/blog/2007/12/31/classical-electrodynamics-and-theory-of-relativity/#comment-3126</guid>
		<description>No Need for relativity</description>
		<content:encoded><![CDATA[<p>No Need for relativity</p>
]]></content:encoded>
	</item>
	<item>
		<title>By: Joe Nahhas</title>
		<link>http://artikel-software.com/blog/2007/12/31/classical-electrodynamics-and-theory-of-relativity/comment-page-1/#comment-3125</link>
		<dc:creator>Joe Nahhas</dc:creator>
		<pubDate>Wed, 28 Jan 2009 08:31:14 +0000</pubDate>
		<guid isPermaLink="false">http://www.artikel-software.com/blog/2007/12/31/classical-electrodynamics-and-theory-of-relativity/#comment-3125</guid>
		<description>Kepler (demolish) Vs Einstein&#039;s

Ending Einstein&#039;s space jail of time in 2009 that led to fraud Symbol E=mc²

Areal velocity is constant: r² θ&#039; =h         Kepler&#039;s Law

 h = 2π a b/T; b=a√ (1-ε²); a = mean distance value; ε = eccentricity
r² θ&#039;= h = S² w&#039;

S = r exp (ỉ wt); h = [r² Exp (2iwt)] w&#039;=r²θ&#039;
w&#039; = (θ&#039;) exp [-2(i wt)]

w&#039;= (h/r²) [cosine 2(wt) - ỉ sine 2(wt)] = (h/r²) [1- 2sine² (wt) - ỉ sin 2(wt)]
w&#039; =  w&#039;(x) + ỉ w&#039;(y) ;  w&#039;(x) = (h/r²) [ 1- 2sine² (wt)]

Δ w&#039;= w&#039;(x) – (h/r²) = - 2(h/r²) sine² (wt) = - 2(h/r²) (v/c) ² v/c=sine wt
(h/ r²)(Perihelion/Periastron)= [2πa.a√ (1-ε²)]/Ta² (1-ε) ²= [2π√ (1-ε²)]/T (1-ε) ²
Δ w&#039; = [w&#039;(x) – h/r²] = -4π {[√ (1-ε²)]/T (1-ε) ²} (v/c) ² radian per second

{x [180/π;degrees]x[100years=36526days;century]x[3600;seconds in degree]
Δ w&quot; = (-720x36526x3600/T) {[√ (1-ε²]/(1-ε)²} (v/c)² seconds of arc per century

This Kepler&#039;s Equation solves all the problems Einstein and all physicists could not solve
DI Her Binary starts systems

The circumference of an ellipse: 2πa (1 - ε²/4 + 3/16(ε²)²- --.) ≈ 2πa (1-ε²/4); R =a (1-ε²/4) v=√ [G m M / (m + M) a (1-ε²/4)] ≈ √ [GM/a (1-ε²/4)]; m&gt;Exp (ì w t) ----------&gt;&gt; S=r Exp (ì wt)   Nahhas&#039; Equation
Orbit--------&gt;&gt; Orbit light sensing------&gt;&gt; Visual Orbit; Exp = Exponential
Particle ----&gt;&gt; light sensing of moving objects------------ &gt;&gt; Wave
Newton---------&gt;&gt;light sensing----------&gt;&gt; Quantum
Quantum = Newton x Visual Effects
Quantum - Newton = Relativistic = Optical Illusions
E (Energy by definition) = mv²/2 = mc²/2; if v = c
m = mass; v= speed; c= light speed; w= angular velocity; t= time
S = r Exp (ì w t) = r [cos (wt) + ì sin (wt)] Visual effects
P = visual velocity = change of visual location
P = d S/d t = v Exp (ì w t) + ì w r Exp (ì w t)
   = (v + ì w r) Exp (ì w t) = v (1 + ì) Exp (ì w t) = visual speed; v = wr
E (visual energy= what you see in lab) = m p²/2; replace v by p in E = mv²/2
      = m p²/2 = m v²/2 (1 + ì) ² Exp (2ì wt)
     = mv²/2 (2ì) [cosine (2wt) + ì sine (2wt)]
      =ì mv² [1 - 2 sine² (wt) + 2 ì sine (wt) cosine (wt)];v = speed; c = light speed
wt = π/2
E (visual) = ìmv² (1 - 2 + 0)
E (visual) = -ì mc² ≡ mc² (absolute value;-ì = negative complex unit)   If v = c
w t = π/4
E (visual) = imv² [1-1 +ỉ] =-mc²; v = c
wt =-π/4+ỉln2/2; 2ỉ wt=-ỉπ/2 - ln2
Exp (2i wt) = Exp [-ỉπ/2] Exp [ln(1/2)]=[-ỉ (1/2)]
E (visual) = imv² (-ỉ/2) =1/2mc² v = c
Conclusion:  E = mc² is the visual Illusion of E = mc²/2                                           joenahhas1958@yahoo.com.         All rights reserved.
PS: In case of E=mc² claims to be rest energy claims then
E=1/2m (m v + m&#039; r) ² = (1/2m) (m&#039; r) ²; v = 0
E = (1/2m) (mc) ²; m&#039; r =mc
E=mc²/2</description>
		<content:encoded><![CDATA[<p>Kepler (demolish) Vs Einstein&#8217;s</p>
<p>Ending Einstein&#8217;s space jail of time in 2009 that led to fraud Symbol E=mc²</p>
<p>Areal velocity is constant: r² θ&#8217; =h         Kepler&#8217;s Law</p>
<p> h = 2π a b/T; b=a√ (1-ε²); a = mean distance value; ε = eccentricity<br />
r² θ&#8217;= h = S² w&#8217;</p>
<p>S = r exp (ỉ wt); h = [r² Exp (2iwt)] w&#8217;=r²θ&#8217;<br />
w&#8217; = (θ&#8217;) exp [-2(i wt)]</p>
<p>w&#8217;= (h/r²) [cosine 2(wt) - ỉ sine 2(wt)] = (h/r²) [1- 2sine² (wt) - ỉ sin 2(wt)]<br />
w&#8217; =  w&#8217;(x) + ỉ w&#8217;(y) ;  w&#8217;(x) = (h/r²) [ 1- 2sine² (wt)]</p>
<p>Δ w&#8217;= w&#8217;(x) – (h/r²) = &#8211; 2(h/r²) sine² (wt) = &#8211; 2(h/r²) (v/c) ² v/c=sine wt<br />
(h/ r²)(Perihelion/Periastron)= [2πa.a√ (1-ε²)]/Ta² (1-ε) ²= [2π√ (1-ε²)]/T (1-ε) ²<br />
Δ w&#8217; = [w'(x) – h/r²] = -4π {[√ (1-ε²)]/T (1-ε) ²} (v/c) ² radian per second</p>
<p>{x [180/π;degrees]x[100years=36526days;century]x[3600;seconds in degree]<br />
Δ w&#8221; = (-720x36526x3600/T) {[√ (1-ε²]/(1-ε)²} (v/c)² seconds of arc per century</p>
<p>This Kepler&#8217;s Equation solves all the problems Einstein and all physicists could not solve<br />
DI Her Binary starts systems</p>
<p>The circumference of an ellipse: 2πa (1 &#8211; ε²/4 + 3/16(ε²)²- &#8211;.) ≈ 2πa (1-ε²/4); R =a (1-ε²/4) v=√ [G m M / (m + M) a (1-ε²/4)] ≈ √ [GM/a (1-ε²/4)]; m&#38;gt;Exp (ì w t) &#8212;&#8212;&#8212;-&#38;gt;&#38;gt; S=r Exp (ì wt)   Nahhas&#8217; Equation<br />
Orbit&#8212;&#8212;&#8211;&#38;gt;&#38;gt; Orbit light sensing&#8212;&#8212;&#38;gt;&#38;gt; Visual Orbit; Exp = Exponential<br />
Particle &#8212;-&#38;gt;&#38;gt; light sensing of moving objects&#8212;&#8212;&#8212;&#8212; &#38;gt;&#38;gt; Wave<br />
Newton&#8212;&#8212;&#8212;&#38;gt;&#38;gt;light sensing&#8212;&#8212;&#8212;-&#38;gt;&#38;gt; Quantum<br />
Quantum = Newton x Visual Effects<br />
Quantum &#8211; Newton = Relativistic = Optical Illusions<br />
E (Energy by definition) = mv²/2 = mc²/2; if v = c<br />
m = mass; v= speed; c= light speed; w= angular velocity; t= time<br />
S = r Exp (ì w t) = r [cos (wt) + ì sin (wt)] Visual effects<br />
P = visual velocity = change of visual location<br />
P = d S/d t = v Exp (ì w t) + ì w r Exp (ì w t)<br />
   = (v + ì w r) Exp (ì w t) = v (1 + ì) Exp (ì w t) = visual speed; v = wr<br />
E (visual energy= what you see in lab) = m p²/2; replace v by p in E = mv²/2<br />
      = m p²/2 = m v²/2 (1 + ì) ² Exp (2ì wt)<br />
     = mv²/2 (2ì) [cosine (2wt) + ì sine (2wt)]<br />
      =ì mv² [1 - 2 sine² (wt) + 2 ì sine (wt) cosine (wt)];v = speed; c = light speed<br />
wt = π/2<br />
E (visual) = ìmv² (1 &#8211; 2 + 0)<br />
E (visual) = -ì mc² ≡ mc² (absolute value;-ì = negative complex unit)   If v = c<br />
w t = π/4<br />
E (visual) = imv² [1-1 +ỉ] =-mc²; v = c<br />
wt =-π/4+ỉln2/2; 2ỉ wt=-ỉπ/2 &#8211; ln2<br />
Exp (2i wt) = Exp [-ỉπ/2] Exp [ln(1/2)]=[-ỉ (1/2)]<br />
E (visual) = imv² (-ỉ/2) =1/2mc² v = c<br />
Conclusion:  E = mc² is the visual Illusion of E = mc²/2                                           <a href="mailto:joenahhas1958@yahoo.com">joenahhas1958@yahoo.com</a>.         All rights reserved.<br />
PS: In case of E=mc² claims to be rest energy claims then<br />
E=1/2m (m v + m&#8217; r) ² = (1/2m) (m&#8217; r) ²; v = 0<br />
E = (1/2m) (mc) ²; m&#8217; r =mc<br />
E=mc²/2</p>
]]></content:encoded>
	</item>
	<item>
		<title>By: Daniel Jackson</title>
		<link>http://artikel-software.com/blog/2007/12/31/classical-electrodynamics-and-theory-of-relativity/comment-page-1/#comment-3124</link>
		<dc:creator>Daniel Jackson</dc:creator>
		<pubDate>Sun, 14 Sep 2008 18:50:58 +0000</pubDate>
		<guid isPermaLink="false">http://www.artikel-software.com/blog/2007/12/31/classical-electrodynamics-and-theory-of-relativity/#comment-3124</guid>
		<description>This is an excellent find in text on the Internet. (Classical Electrodynamics and Theory of Relativity)

Thank you for this work and for making it available on the web.  Not to mention all of the other items that you have here which are excellent.

Daniel Jackson
Project Starlight</description>
		<content:encoded><![CDATA[<p>This is an excellent find in text on the Internet. (Classical Electrodynamics and Theory of Relativity)</p>
<p>Thank you for this work and for making it available on the web.  Not to mention all of the other items that you have here which are excellent.</p>
<p>Daniel Jackson<br />
Project Starlight</p>
]]></content:encoded>
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