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	<title>Comments on: &#8220;Space-Time Based Services&#8221; (I said it first)</title>
	<atom:link href="http://blog.gustavvonsydow.com/2008/05/07/space-time-based-services-i-said-it-first/feed/" rel="self" type="application/rss+xml" />
	<link>http://blog.gustavvonsydow.com/2008/05/07/space-time-based-services-i-said-it-first/</link>
	<description>Gustav von Sydow on reactive advertising, social webshopping, start-up strategies and mesh networking</description>
	<lastBuildDate>Thu, 11 Mar 2010 23:41:02 +0000</lastBuildDate>
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		<title>By: Alexander Nahhas</title>
		<link>http://blog.gustavvonsydow.com/2008/05/07/space-time-based-services-i-said-it-first/#comment-3947</link>
		<dc:creator>Alexander Nahhas</dc:creator>
		<pubDate>Sun, 08 Feb 2009 06:19:13 +0000</pubDate>
		<guid isPermaLink="false">http://gustav.wordpress.com/?p=111#comment-3947</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 = c √ [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 = c √ [1-(v/c) ²]</p>
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	<item>
		<title>By: joe nahhas</title>
		<link>http://blog.gustavvonsydow.com/2008/05/07/space-time-based-services-i-said-it-first/#comment-3946</link>
		<dc:creator>joe nahhas</dc:creator>
		<pubDate>Mon, 26 Jan 2009 11:21:47 +0000</pubDate>
		<guid isPermaLink="false">http://gustav.wordpress.com/?p=111#comment-3946</guid>
		<description>Kepler (demolish)Vs Einstein&#039;s space jail of time
r -------------- Exp (i wt) -----------S= r Exp (ì wt) Nahhas&#039; Equation
Orbit location-----------Orbit light sensing -------------- Visual orbit location 
Particle/Newton ---------------- --Visual -------------------------- Wave/Quantum
Quantum - Newton=visual effects=relativistic effects=space-time confusions
S= visual distance; r = actual distance; v = speed and c = light speed 
S = r Exp (i wt) = r [cosine (wt) + î sine (wt)]
P =d S/d t = v Exp (ì w t) + ì r w Exp (ì w t); v=d r/d t; v=w r
   = v (1+ ì) [Exp (ì wt)] = visual velocity
E (definition) = m/2(m v + m&#039; r) ²; E = mc²/2 If v = 0; m&#039; r=mc
E (visual) = mp²/2 = mv²/2(1+ì) ² Exp 2(ì w t)
E (visual) = mv²/2(1 + 2ì -1) [cos2wt + ì sin2wt]
E (visual) = ì (mv²) [1-2sin²wt + 2i [sin (wt)] [cosine (wt)]
If wt = (2n+1) π/4
E (visual) = ì (mv²) [1-1 ± ỉ] = ± (mc²); v = c
2-Central force law Areal velocity is constant: r² (d θ/d t) =h         Kepler&#039;s Law
 h = 2π a b/T; b=a√ (1-ε²); a = mean distance value; ε = eccentricity
r² (d θ/d t) = h = S² (d w/d t)   
Replace r with S = r exp (ỉ wt); h = [r² Exp (2iwt)] (d w/d t)
(d w/d t) = (h/r²) exp [-2(i wt)] 
d w/d t= (h/r²) [cosine 2(wt) - ỉ sine 2(wt)] = (h/r²) [1- 2sine² (wt) - ỉ sin 2(wt)] 
d w/d t = d w(x)/d t + d w(y)/d t; d w(x)/d t = (h/r²) [ 1- 2sine² (wt)]  
d w(x)/d t – (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/d t = (d w/d t – h/r²] = -4π {[√ (1-ε²)]/T (1-ε) ²} (v/c) ² radian per second
Δ w/d t = (- 4π /T) {[√ (1-ε²)]/ (1-ε) ²} (v/c) ² radians 
Δ w°/d t = (-720/T) {[√ (1-ε²)]/ (1-ε) ²} (v/c) ² degrees; Multiplication by 180/π 
Δ w°/d t = (-720x36526/T) {[√ (1-ε²)]/(1-ε)²} (v/c)² degrees/100 years  
Δ w”/d t = (-720x3600/T) {[√ (1-ε²)]/(1-ε) ²} (v/c) ² seconds of arc multiplication by 3600
Δ w/d t = (-720x36526x3600/T) {[√ (1-ε²]/(1-ε)²} (v/c)² seconds of arc per century
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&lt;&lt;M; Solar system    
  Application 3: Advance of Perihelion of mercury.
G=6.673x10^-11; M=2x10^30kg; m=.32x10^24kg
 ε = 0.206; T=88days; c = 299792.458 km/sec; a = 58.2km/sec
Calculations yields:
 v =48.14km/sec
 [√ (1- ε²)] (1-ε) ² = 1.552 
Δ w”= (-720x36526x3600/88) x (1.552) (48.14/299792)²=43.0”/century
Conclusions:
E ≠ mc² (special-relativity) and the 43&quot; seconds of arc of advance of perihelion of Planet mercury (general-relativity) is are caused by deformed space-time physicists &quot;thought&quot; and not deformed space (x, y, z).

Anyone dare to prove me wrong?
E=mc²/2
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 = w r 
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 space jail of time<br />
r &#8212;&#8212;&#8212;&#8212;&#8211; Exp (i wt) &#8212;&#8212;&#8212;&#8211;S= r Exp (ì wt) Nahhas&#8217; Equation<br />
Orbit location&#8212;&#8212;&#8212;&#8211;Orbit light sensing &#8212;&#8212;&#8212;&#8212;&#8211; Visual orbit location<br />
Particle/Newton &#8212;&#8212;&#8212;&#8212;&#8212;- &#8211;Visual &#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8212;&#8211; Wave/Quantum<br />
Quantum &#8211; Newton=visual effects=relativistic effects=space-time confusions<br />
S= visual distance; r = actual distance; v = speed and c = light speed<br />
S = r Exp (i wt) = r [cosine (wt) + î sine (wt)]<br />
P =d S/d t = v Exp (ì w t) + ì r w Exp (ì w t); v=d r/d t; v=w r<br />
   = v (1+ ì) [Exp (ì wt)] = visual velocity<br />
E (definition) = m/2(m v + m&#8217; r) ²; E = mc²/2 If v = 0; m&#8217; r=mc<br />
E (visual) = mp²/2 = mv²/2(1+ì) ² Exp 2(ì w t)<br />
E (visual) = mv²/2(1 + 2ì -1) [cos2wt + ì sin2wt]<br />
E (visual) = ì (mv²) [1-2sin²wt + 2i [sin (wt)] [cosine (wt)]<br />
If wt = (2n+1) π/4<br />
E (visual) = ì (mv²) [1-1 ± ỉ] = ± (mc²); v = c<br />
2-Central force law Areal velocity is constant: r² (d θ/d t) =h         Kepler&#8217;s Law<br />
 h = 2π a b/T; b=a√ (1-ε²); a = mean distance value; ε = eccentricity<br />
r² (d θ/d t) = h = S² (d w/d t)<br />
Replace r with S = r exp (ỉ wt); h = [r² Exp (2iwt)] (d w/d t)<br />
(d w/d t) = (h/r²) exp [-2(i wt)]<br />
d w/d t= (h/r²) [cosine 2(wt) - ỉ sine 2(wt)] = (h/r²) [1- 2sine² (wt) - ỉ sin 2(wt)]<br />
d w/d t = d w(x)/d t + d w(y)/d t; d w(x)/d t = (h/r²) [ 1- 2sine² (wt)]<br />
d w(x)/d t – (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/d t = (d w/d t – h/r²] = -4π {[√ (1-ε²)]/T (1-ε) ²} (v/c) ² radian per second<br />
Δ w/d t = (- 4π /T) {[√ (1-ε²)]/ (1-ε) ²} (v/c) ² radians<br />
Δ w°/d t = (-720/T) {[√ (1-ε²)]/ (1-ε) ²} (v/c) ² degrees; Multiplication by 180/π<br />
Δ w°/d t = (-720&#215;36526/T) {[√ (1-ε²)]/(1-ε)²} (v/c)² degrees/100 years<br />
Δ w”/d t = (-720&#215;3600/T) {[√ (1-ε²)]/(1-ε) ²} (v/c) ² seconds of arc multiplication by 3600<br />
Δ w/d t = (-720&#215;36526x3600/T) {[√ (1-ε²]/(1-ε)²} (v/c)² seconds of arc per century<br />
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&lt;&lt;M; Solar system<br />
  Application 3: Advance of Perihelion of mercury.<br />
G=6.673&#215;10^-11; M=2&#215;10^30kg; m=.32&#215;10^24kg<br />
 ε = 0.206; T=88days; c = 299792.458 km/sec; a = 58.2km/sec<br />
Calculations yields:<br />
 v =48.14km/sec<br />
 [√ (1- ε²)] (1-ε) ² = 1.552<br />
Δ w”= (-720&#215;36526x3600/88) x (1.552) (48.14/299792)²=43.0”/century<br />
Conclusions:<br />
E ≠ mc² (special-relativity) and the 43&quot; seconds of arc of advance of perihelion of Planet mercury (general-relativity) is are caused by deformed space-time physicists &quot;thought&quot; and not deformed space (x, y, z).</p>
<p>Anyone dare to prove me wrong?<br />
E=mc²/2<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 = w r<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>
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