Monday 23 June 2014

PHYSICS: The Table of Space-Time Relativity may be to Physics what the Periodic Table is to Chemistry.

Table of Space -Time Relativity
Michael J. Bull 2013

                      MOTION                             SPACE EXPANSION                           MATTER
S4/T4
?
S4/T3
?
S4/T2
?
S4/T
?
S4
?
S4
S4
?


TS4
gluon
T2S4
photon
T3S4
Z-boson
T4S4
W-boson
S3/T4
?
S3/T3
mass current
GRAVITY
S3/T2
?
S3/T
?
S3
volume

S3
S3
volume

TS3
top quark
T2S3
bottom quark
T3S3
tau
T4S3
tau neutrino
S2/T4
?
S2/T3
?
S2/T2
magnetic current
S2/T
?
S2
area

S2
S2
area
TS2
charm quark
T2S2
strange quark
T3S2
muon
T4S2
muon neutrino
S/T4
?
S/T3
Δ accel,
moment of accel.
S/T2
Δ speed,
accel.
S/T
speed,
elec current
S
distance,
elec quantity capacitance C

S1
S
distance,
elec quantity
capacitance C
TS
up quark
T2S
down quark
T3S
electron
T4S
electron neutrino
1/T4
?

1/T3
?

contraction
1/T2
?

of time
1/T
frequency


S0/T0 = 1
Unity
MOTION


S0
T0 S0 = 1
Unity
MATTER

T
time


T2
?

expansion
T3
?

of time
T4
?

T - 4
T - 3
T - 2
T - 1
T0
O
T0
T1
T2
T3
T4
1/T4
?
1/T3
?
1/T2
?
1/T
frequency
1/T0 S0 = 1
Unity
ANTI-MATTER

S0
T0/S0 = 1
Unity
ENERGY
T
time
T2
?
T3
?
T4
?
1/T4S
anti electron neutrino
1/T3S
anti electron (positron)
1/T2S
anti down quark
1/TS
anti up quark
1/S
power

S-1
1/S
power


T/S
energy
electric energy
T2/S
inertia
T3/S
moment of inertia
T4/S
?
1/T4S2
anti muon neutrino
1/T3S2
anti muon
1/T2S2
anti strange quark
1/TS2
anti charm quark
1/S2
?

S-2
1/S2
?


T/S2
force,
elect potential V
T2/S2
momentum
magnetic energy
elec resitivity σ
T3/S2
?
T4/S2
?
1/T4S3
anti tau neutrino
1/T3S3
anti tau
1/T2S3
anti bottom quark
1/TS3
anti top quark
1/S3
?

S-3
1/S3
?


T/S3
elect field intensity E
T2/S3
elec resis R
magnetic potential
T3/S3
MASS
energy
T4/S3
?
1/T4S4
anti W-boson
1/T3S4
anti Z-boson
1/T2S4
anti photon
1/TS4
anti gluon
1/S4
?

S-4
1/S4
?


T/S4
pressure
T2/S4
magnetic intensity H
T3/S4
mag resist μ
T4/S4
?
             ANTI – MATTER                         SPACE CONTRACTION                       ENERGY
Motion and Energy, Matter and Anti-Matter are mathematically reciprocal and conservative of the energy contained therein. Quantities unknown to science are marked with '?'. Space-Time units of measure can be readily verified from SI units of measure. Axes describe expansion and contraction of both Space and Time and the Table shows the results of that relative interaction. The S-T product describes the Standard Model of particle physics which is well understood, while the S-T ratio describes the known quantities of physics. The S-T Table predicts the relationship between ratios and provides a guide as to the relationship of known to unknown energies and motions. The principle of unity is well supported by the mathematics of reciprocosity between Motion and Energy, Matter and Anti-Matter.

Monday 9 June 2014

PHYSICS: Variable Space and Time



It is possible, but as yet only conjecture, that there is a relativity between space and time if both are considered variable.
  Newtonian physics may be a special case where both space and time are constant ; Einsteinian physics a case where space is variable and time is constant ; and Quantum physics where both space and time are variable. The former two are then contained within the latter.
   A study of natural vortices, such as tornados, hurricanes, galaxies and black holes suggests that they concentrate energy by contracting the space factor. Mass energy with the Space-Time units t3/s3 would therefore increase as s3 decreased, and observation supports that proposition. Using similar logic, if time decreased relative to space, then so would mass energy. This is supported by the mathematics in Section 2 (of a paper by this author titled 'Mass, Gravity and Unity' not yet published) where t = mr/F, and also by the algebra of the S-T unit for mass. Then, from the S-T unit for mass energy t3/s3, expansion of space (which is not a new idea) reduces mass energy. The corollary to that is that it also increases the G-field value, which S-T unit is s3/t3. The Dark Matter and Dark Energy hypotheses look less likely to be relevant if the relativity between space and time is variable by space, time or by both. Mathematics explain the anomalies in observed gravity effects without the Dark hypotheses.