Ⅹ Law of motion => heat physics
when we find
= we find heat physics
ⅹ Composition = 錬成
Ⅹ Law of motion => heat physics
point :
🐓 1⃣ heat = sum of small vibration energy of particles
🐓 2⃣ object that store info , vibrates
particles in save system = read location info of particles
🐓 3⃣ randomness ~= energy
randomness => energy & energy => randomness
⚖️heat physics 3 Laws = Newton Leibniz 3 Law
source: Newton, leibniz, Clausius, jesus, Clapeyron, Thomson
Newton Leibniz 3 laws
1⃣ Power from universal gravitation Fa = GMm / r^2
2⃣ F = m Σ a
3⃣ In ALL action, energy is preserve.
heat physics 3 Laws
Q1⃣ heat moves within 2 case of object H & U till H & U become same temperature. why ?
A1⃣ if 2 particle crush, power moves from 1 particle to another particle.
faster particle, can crush to slower particle
◎ | slow particle <= fast particle | (can clash) | |
✕ | slow particle => fast particle | (can't clash) |
between 2 cases, always faster particle push slower particle .
so heat = movement energy
moves from Low temperature to High temperature.
Q2⃣ δU = - δW + δQ
U : total internal energy
W : output length ・ Force from system
Q : input heat into system
δ means slite change of something 's quantity
A2⃣ preservation of energy
= preservation of movement energy of particles, to each XYZ vector
is answer.
Q3⃣ Clausius's fundamental
if there is 2 things A & Q
if temperature of A = T(A) and temperature of Q = T(Q)
if T(A) < T(Q), move only heat itself from A to Q is impossible
A3⃣ resembles to A1⃣,
but move heat from A to Q is in fact possible,
with lazer cooling
Q4⃣ Nernst fundamental
temperature of A = T(A) => "absolute" 0 temperature is impossible
if energy have no minimum unit, cool down with ( pv=nRT ) impossible.
if E = mc^2 right, energy may have minimum unit.
if energy ~= particle, "absolute" 0 temperature may possible.
! pv=nRT, not always true.
its approximation equation, when atom radius ~= 0
=> pv=nRT, hard to confirm in real experiments
heat physic => entropy theory
source:
Claude Elwood Shannon ( concept of info entropy ) |
immanuel kant
|
Abraham Maslow (maslow desires) |
Werner Karl Heisenberg & Masanao Ozawa (law of uncertainty) |
Rudolf Julius Emmanuel Clausius (law of heat physics 123) |
Richard Feynman朝永 振一郎 ( effective mass (space physics) ) |
William Thomson, 1st Baron Kelvin (temperature unit: Kelvin) |
Andrey Markov(markov map) |
Benoît Paul Émile Clapeyron (law of heat physics with Clausius) |
Ludwig Boltzmann( entropy equation ) |
tetsuro akasaka ( gravity cos wave manipulate method ) |
jesus(bible) |
🐓
1⃣ convert equation between
🌀shannon 's info entropy & 🔥boltzmann 's heat entropy
source: Stephen Hawking, Ludwig Boltzmann, Rudolf Clausius, , Claude Elwood Shannon
entropy, is quantity, about randomness.
we can convert
🌀info entropy & 🔥heat entropy
info entropy = H = Σ p(x) log₂ (p (x) ) 🌀
heat entropy = s = kB loge (W) 🔥
s = H ・ log ₂ e ・kB
info randomness <=> energy
🌀 you can solve all problem, if we reduce entropy
=
🌀 problem will increase, if we increase entropy
🌀 entropy increase = Bad event
・ cell, become old
・ visible area, become small
・ fake info increase
・ time cost increase
reason = ratio, of necessary info quantity vs non necessary info
・ residence of metal increase
reason = random move metal particle, confliction possibility increase
🧭 entropy flow = direction of Bad event
if we check
residence of metal,
where residence of metal high,
where vibration of metal increase.
flow of info entropy
can be find.
source: Pirates of the Caribbean - Wikipedia
& JoJo's Bizarre Adventure: Stone Ocean - Wikipedia
🧭 ① let s check metal conductivity difference,
on compass circle ' s 8 ways
if there is high metal conductivity way,
that shows
" from what way " info entropy come from
🧭 ◎ reason
hot metal ... conductivity become small.
and also,
a lot of info entropy having metal
...
friction of electron become big = conductivity become small.
🧭 ◎ how do we understand about outcome ?
① prescious big info, might there
② bad event, come from that direction
③ some object, exist at that direction
🐓 other method to measure info entropy
◎ reason | ◎outcome | |||
①check liquid friction difference |
= friction of water, might increase if info entropy= vibration of water increase. |
warter, hard to flow | ||
②check metal conductivity difference | Electrical resistivity and conductivity - Wikipedia |
hot metal ... residence become big, ~= conductivity become small. |
friction in brain circuit => if different, fight happens. |
|
③check air pressure difference | Torricelli's experiment - Wikipedia |
air also become heavy if info is heavy, |
high air pressure, might happens. |
🐓 entropy reduce systems
➀ split mix liquid
② split anmonia from mix air
③ separate simple substance
④ join cutted metal ?
➄ recover broken crystal ?
➀ split mix liquid
② split anmonia from mix air
usual method
- cool air into cold liquid
- Centrifugation ... inventor = Theodor Svedberg
other method ?
- send air particular wave sound
- if particle have particular frequence, 1 type air might gather at 1 place
- ... Electrophoresis 's " electric wave " => " sound " version
③ separate simple substance
(burn) hydrogen + oxigen => water <> (thunder battery) hydrogen + oxigen <= water
Rechargeable battery = flow electric power to opposite way
④ join cutted metal ?
➄ recover broken crystal ?
-
put powder of crystal 's material
- => heat with 3 axis lazer beam
- => collupted crystal ' s 2 edge might become bond by powder
❄️ to output energy from planet core
COOL Lazer System or Resonance within planets System
= one way to solve grobal warming.
12 reasons, why we can observe object ?
TrueTheory CertificateWith TrueTheory |
logical tie within certification |
if Unit experiment true, other experiment true |
Truth = Common info |
static should be True |
Truth => search laws | static save system => confirm static |
Split power => study each power |
infinity & exact observation of location |
Return time = Blanch of future = Blanch of world |
Law of motion => heat physics |
randomness => observe hard objects => rare phenomeons |
I | Ⅴ | ⅵ | Ⅶ | ⅷ | ⅸ | Ⅹ |
writer will keep, exact expression
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