Wednesday, November 9, 2011

QUANTUM MECHANICS SOLVES KILOGRAMME WEIGHT CRISIS.

QUANTUM MECHANICS SOLVES KILOGRAMME WEIGHT CRISIS.




NAME OF SCIENTIST: MUNISHKUMAR.B.CHINNAKAR.

Theoretical Particle astroscientist.











PLACE OF RESEARCH: MUNISHKUMAR'S SCIENCE RESEARCH CENTRE,NEAR BHAIRI WELL BOYER STREET(BHOVI STREET),SHORAPUR,KARNATAKA STATE,INDIA.

its

E-mail:www.MChinnakar@gmail.com.



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E-mail:www.mchinnakar@gmail.com.



NUMBER OF CO-WORKERS : No co-workers.



DATE OF RESEARCH WORK: NOV,09,2011



DATE OF ENTRY OF RESEARCH WORK: NOV,09,2011.





Most of the Problems were already solved by Special relativistic particle quantum mechanics.Recently one of the problem posed in weight crisis is due to wrong choice of alloy.As an alloy indicates sensitive to thermo-emf produced by gravity space tempraure variations.Further in an alloy if one metal charges other neutralises its effect.Therefore instead of using 10% of irredium they would have used different value.Here use of 10% indicates that they are making the alloy sensitive to charge balances via EM radiation effects.This is reflected in the value 50microgrammes=50 x 10^-3Kg.=5 x 10 x 10^-3=.005 x 10.If C=10=a transformation constant for neutrality of created charges from one metal to another is accounted then above value becomes 0.005 x 10/10=0.005.This 0.005 indicates that Alloy is sensitive to Gravitational temprature or EM radiation.Therefore prototype changed by arround 50microgrammes.This is further evident in comparision with densities of both metals.

The above arguement uses Special relativistic particle quantum mechanics and Transformation Constants.

The value h=6.6256 x 10^-34J.S is having correct meaning in every digits.One can use this value indirectly for Kilogramme measurement as Standard.

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