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Sharma, Ajay 2004<br />

The origin of generalised mass-energy equation [delta]<br />

E = Ac² [delta] M; and its applications in general physics<br />

and cosmology / Ajay Sharma.<br />

In: The general science journal. 2004 =<br />

http://wbabin.net/ajay/sharmab.pdf - 33 S.<br />

Status: Kritik. - Quelle: Autopsie.<br />

Sharma, Ajay 2004<br />

The origin of generalized mass-energy equation [delta]<br />

E = Ac² [delta] M; and its applications in general physics<br />

and cosmology / Ajay Sharma.<br />

In: Physics essays. 17. 2004, S. 195-222.<br />

http://www.wbabin.net/ajay/sharmab.pdf - 33 S.<br />

Status: Kritik. - Quelle: Autopsie.<br />

Sharma, Ajay 2005<br />

a²-b² =(a+b)(a-b) is not obeyed by Einstein's derivation<br />

of E=mc² / Ajay Sharma.<br />

In: The general science journal. 2005 =<br />

http://wbabin.net/ajay/sharma8.pdf - 3 S.<br />

EMC2. MATH. LOGIK.<br />

"Abstract - a²-b² =(a+b)(a-b) is the basic algebraic identity<br />

taught in middle schools. It is surprising to learn that this<br />

identity is not obeyed by the central equation on which<br />

Einstein's E=mc² is based, under some conditions. The<br />

derivation of E=mc² was given by Einstein in Sep 1905<br />

and the central equation in the June 1905 paper which is<br />

known as the Special Theory of Relativity. This aspect is<br />

discussed here logically."<br />

Sharma, Ajay 2005<br />

Modification of Einstein's E=mc²: [datiert: 18.3.05]<br />

book proposal; status manuscript complete (PAGES<br />

260) / Ajay Sharma.<br />

In: The general science journal. 2005 =<br />

http://wbabin.net/ajay/sharma5.pdf - 6 S.<br />

Status: Kritik. - Quelle: Auropsie.<br />

Sharma, Ajay 2006<br />

Einstein derived E[rest] = M[rest] c² from a NON-<br />

EXISTENT equation: a discussion / Ajay Sharma.<br />

In: The General science journal. 2006 =<br />

http://wbabin.net/ajay/sharma9.pdf - 4 S.<br />

Status: Kritik. - Quelle: Autopsie.<br />

Sharma, Ajay 2006<br />

Which mathematical equation from Einstein's Sep.<br />

1905 derivation predicts that when Light Energy is<br />

emitted, MASS OF BODY INCREASES? / Ajay Sharma.<br />

- [Indien]: WWW 2006. 4 S.<br />

http://www.mrelativity.net/Papers/8/102.pdf<br />

Status: Kritik. - Quelle: Autopsie.<br />

Sharma, Ajay 2007<br />

Einstein's E=mc² generalized / Ajay Sharma. - New<br />

York: Raider Publ. International 2007. 298 S.<br />

Status: Kandidat. - Quelle: Moody 2010 (Beyond<br />

Einstein).<br />

Sharma, Ajay 2008<br />

An indispensable equation in the deduction of E =<br />

mc² / Ajay Sharma.<br />

In: The General science journal. 2008 =<br />

http://wbabin.net/ajay/sharma12.pdf - 5 S.<br />

Status: Kritik. - Quelle: Autopsie.<br />

Sharma, Ajay 2008<br />

Open Letter to Prof. Andrew George, University of Denver,<br />

Colorado, USA: Ref.: Einstein's Sep 1905 derivation<br />

predicts that, 'When body emits light energy, its mass<br />

must also increase'. / Ajay Sharma. - [Indien]: WWW<br />

2008. 4 S.<br />

URL: http://www.mrelativity.net/Papers/8/<br />

OP.LETT.pdf - Status: Kritik. - Quelle: Autopsie.<br />

Sharma, Ajay 2010<br />

Beyond Archimedes and Einstein: 22 Dec. 2010 / Ajay<br />

Sharma.<br />

In: The General science journal. 2010 =<br />

http://www.wbabin.net/indaf/sharma19.pdf - 176 S.<br />

Status: Kritik. - Quelle: Autopsie.<br />

Sharma, Ajay 2010<br />

Incomplete derivation of [delta]L=[delta]mc² (or<br />

speculation of [delta]E=[delta]mc²) , its critical analysis:<br />

and applications of generalized form [delta]E =<br />

Ac²[delta]m ; or consequences of hidden aspects of<br />

Einstein's Sep 1905 paper / Ajay Sharma.<br />

In: The General science journal. 2010 =<br />

http://www.wbabin.net/ajay/sharma17.pdf - 72 S.<br />

EMC2. ERHALTUNGSSAETZE.<br />

S. 1: "Abstract." - [Auszug:] "Einstein's Sep. 1905<br />

paper [1] in which [delta]L = [delta]mc² (light energy -<br />

mass equation) is derived, is not completely studied;<br />

and is only valid under handpicked or super-special<br />

conditions of involved parameters. The origin of [delta]E<br />

= [delta]mc² from [delta]L = [delta]mc2 is completely<br />

speculative in nature. This derivation (under general<br />

conditions) contradicts the law of conservation of matter/energy.<br />

In simple words it implies that when light<br />

energy is emitted then its mass must increase. The decrease<br />

in mass can be equal to L/c² or less or more than<br />

L/c². Thus self contradictions also exist in Einstein's<br />

derivation. The factor c² has been arbitrarily brought in<br />

picture by Einstein. Einstein applied binomial theorem<br />

in the end of the derivation then equation is [delta]L =<br />

[delta]mc2 is obtained. If the same derivation is applied<br />

Textversion 1.2 - 2012 287<br />

G. O. Mueller: SRT Kap. 4-Erg..

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