| I |
U-235 ATOMIC NUCLEUS |
92 protons
143 neutrons
|
| II |
Add (by RADIATION formula) of one
NEUTRON to nucleus
|
| III |
There will be a new NUCLEUS, which will FALL APART |
2 SCRAP PIECES +
3 NEURONS |
143
÷ 93 = 1,5376344
143 ÷ 92 = 1,5543478
143 = 91,949588 × 1,5552
± 92
|
Old calculation d.d. 140288 Made a mistake between PROTON and NEUTRON |
| 144 ÷ 92 = |
1,5652174
1,5552
---------- -
0,0100174
|
New calculation d.d. 030788
Difference -> (Entrophy / loss of energy??) |
 |
h = 6,625 ×
10 34 J.s.
h = 15552 × 2 = 31104
155,52 metric carats = 1 TROY OZ AU
|
618631,83 × 2 = 1.237.263,6
125.000 Mile
125 00 × 12 = 1.500.000 Mile
384.400 km = avarage between APOHELIUM and PERIHELIUM.
|
12 × 1.500.000 = 18.000.000
24 × 1.500.000 = 36.000.000
space and time -> distance = time = interchangeable |
(calculation)
Half-life of U-238 is |
4,5 ×
365
4,32 × 109 × 360 =
109 × 1555,2 year
= 1.555.200.000.000 year
=> Half-life of U-238 = 10% of the lifespan of one cosmos.
|
| |
U-235
If the speed of a moving object absorps radiation Energy E0 (Seen from a moving coordinate sytem), without changing speed, than the energy of that object will increase with.

|
U-238 NOT fissile
can be converted by radiation with neutrons into |
|
| Fissile Pu-239 -> |
Zie 030887 |
| Fissile U -235 -> See above (I) |
in the nucleus 92 protons
143 neutrons |
|
Stationary state (of an atom)
the excited states
by the addition of radition by an amount of
on a substance
can an atom transite to a excited state |
E0
En
En - E0 = h
m
|
The less energyrich transition is the transition of the second excited state with n=3
Here red light
with a wavelength (λ) of 16562,79 Å
and a frequence (v) of 4,58 × 1014 Hz
will be transmitted.
|
h = constant of Planck =
6,625 × 10 -34 J.s.
h = h/2π = 4,58 × 1014Hz = 6,625 ×
10 -34 J.s.
=
1,5552 × 2 = 31104 (zon)
= 155,52 =
1 TROY OZ (AU) - NOBLE METALS.
c = Speed of light in Mile/sec
=
1 Mile = 1,609344567
km
1 sec = 86400 part of a complete day = 24 u.
=
43200 part of a half day = 12
u.
√c = √Speed of lighr
in Mile/sec = 432
=>
c2 = 4324
|
Nuclear mass en binding energy
The unit of mass used by nuclear reactions is the Atomic Mass Unit (AMU)
1 AMU = 1,66 × 10 -27kg.
1 AMU =
|
|