EXPLAINATION TO NEGATIVE RESULTS
OF MICHELSON –MORLEY EXPERIMENT
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:NOV,2,2016.
DATE
OF INVENTIONS:NOV,2,2016.
PAPER
NUMBER:PAPFMJ/QPP
218/4514
According to My modification to
Newton’s third Law[1],velocity of rarer most free space particle is
10^-8m/s.This is consistent with other Theories.Then velocity of free space particles
in a gravity space is of the order 10^-7m/s,as it gravitates C=10 factor is
utilized as transformation constant of unity type.Note that average velocity of
gravity field particles is 10^3m/s.
Michelson
–Morley conducted their experiment[2] in gravity field not in free space based
on the assumption that free space is Ether medium and highly elastic.Actually, theoretically
free space is rarer most energy. There is reason for their negative
results.This is as follows.
In
their experiment,according to My theories,there is a space action(Blue shift)
for the two rays in y –axis but this is appreciable only for length of arms
equal to 3x10^8m.For smaller arms space action is very negligible and almost
zero.For the two rays along y-axis,there is a space action for going away ray and space reaction(Redshift) for coming
ray towards semisilver mirror plate.But these space action and reactions are
very small such that they are almost zero.Thus two rays entering the objective
are not possessing any frequency shift.If frequency changes then there is a
fringe shift.Since there is no frequency shift therefore no fringe shift.You
can obtain the fringe shift if you perform this experiment considering the arm
lengths in terms of few lakh kilometers.
.
REFERENCE:[1]MODIFIED NEWTON’S THIRD
LAW,BY MUNISHKUMAR.B.CHINNAKAR,PUBLISHED
IN HIS ONLINE JOURNAL/BLOGGERS/SITES ON DATED 23/10/2009.
[2] MICHELSO-MORLEY EXPERIMENT,AS IN WIKIPEDIA UPDATED DURING 2016
No comments:
Post a Comment