QUANTISATION
NAME OF THEORETICAL PARTICLE ASTROPHYSICIST : MUNISHKUMAR.B.CHINNAKAR.
PLACE OF INVENTIONS: MUNISHKUMAR.B.C’S FIRST FLOOR BUILDING NEAR BHAIRI WELL BOYER STREET,SHORAPUR,PIN:585224 DIST:YADAGEER,KARNATAKA STATE INDIA.
CO-WORKERS:NO CO-WORKERS.
DATE OF ENTRY OF INVENTIONS:AUGUST,17,2013.
DATE OF UPDATE WITH MODIFICATION DUE TO
FAILURE OF EXISTENCE OF TACHYONS :2/10/2017
Quantisation is one of the important basic concept to understand simple laws of Physics and simplicity of Creation.
Recall that from My modification to Max planck’s Theory,where quantization uses quantized number of gravitons in a Equation like E=nhf ,where n=number of gravitons=from 3……0.5 x 10^23 and f=1Hz.This is the quantization of energy,as such quantization of mass of photon gives m=nhf/C^2,here quantization of mass of EM radiation is via transformation constant like C=3 x 10^8.This is a direct quantization.
Quantisation of Mass of Matter[1] however needs reactive methods as matter brings to rest compared to Energy.This is as follows,
(01)In case of 1D particle ,charged
Mass of particle=M1=1/(D x n1x
m1x h x9x 10^-3 x C^2),where h in the denominator is reactive vector
h not action h.This indicates mass quantizes when brought to rest
Or
Here m1=0.3 x 10^-50Kg
Where n1=number of action/reaction M particles having mass m1 and D=diameter of particle,C=3 x 10^8m/s^2
(02)In case
of 1D particle ,neutral
Mass of particle =M2=1/(D x n2x
m1x h x9x 10^-3 x C^2),where h in the denominator is reactive vector
h not action h.This indicates mass quantizes when brought to rest
Or
Here m1=0.3 x 10^-50Kg
Where n1=number of action/reaction M particles having mass m1 and D=diameter of particle,C=3 x 10^8m/s^2
(03)In case
of 4D particle ,charged
M3=1/(D x n3x m1x
h x4x 10^-5 x C^2),where h in the denominator is reactive vector h not action h.This
indicates mass quantizes when brought to rest
Or
Here m1=0.3 x 10^-50Kg
Where n1=number of action/reaction M particles having mass m1 and D=diameter of particle,C=3 x 10^8m/s^2
(04)In case of 1D particle ,neutral
M4=1/(D x n4x m1x
h x4x 10^-4 x C^2),where h in the denominator is reactive vector h not action h.This
indicates mass quantizes when brought to rest
Or
Here m1=0.3 x 10^-50Kg
Where n1=number of action/reaction M particles having mass m1 and D=diameter of particle,C=3 x 10^8m/s^2
Energy of Energy can be easily quantisable[1] using infinitesimal quantization in Equation E=rC^4,here mass can be quantized.
Reference:[1]MATTER BY MUNISHKUMAR.B.CHINNAKAR PUBLISHED IN HIS ONLINE JOURNAL DATED 24/10/2017.
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