Calculate the positions at which the probability of a particle in a one-dimensional box is maximum if the particle is in the fifth energy level and in the eighth energy level. 7:56 M ← 10 Famous Examples... 40% + 10 Famous Em 1. of Fons with oxygen Gas on Risti rd +xy De forsir plifi 2. Aluminuric tic (Al 13 RCO 4 3. Magnen 3 nig (M 4 Sodiu prinous an Na . 5 Coppa h g (C eor sim Silver (Si con w Var): hcm x): Fe +30 Fe,O hu O ger +210 esi yg n): 2/9 bus odam + xy en) 2 or + d, ce ▸ Sul geothe atmosphomphen le proces): 2 u+2CuC cobuns in r): ed, rtioith ulfur om Lir (C iun Oxygen, tro ied woxen) 2CaP₂- nium Ox en) ds): 2 →→₂S etc.): CaO tec (sim Calc R tion (sir Titan ki ation F Con: T Zinc x tn (Zi ion: O₂-ZnO 0. Pot supe For tion tion exce oxy assium K+O Eess Oyge): (pot isiu su eroxid →T (ar other oxide) Oxyg ): 10 amo ples al Fction with Wat 1. S Readi Reactor 2. Flumea hW (Scum + Wa : JaOH + H wi Reactio alm React Rectic ater otassium +ater DH+H₁₂ ther cium + ate: (OH)2 Ла esin R Reacti Lim Reac eact 15 actio Reac 2 m)→0 21 2 ilum ate): 2 OHH hean (IrStem at is temperare: 3 +H,C stam e 4H₂ Zinc Reactiotten (2nc Sangh temper ur s): Reac o Zn+HO tea) Zr Aluminum Ftion wi Sam 0 Reach (simple: 2A 3H₂ (am) → Al₂O, 32
Calculate the positions at which the probability of a particle in a one-dimensional box is maximum if the particle is in the fifth energy level and in the eighth energy level. 7:56 M ← 10 Famous Examples... 40% + 10 Famous Em 1. of Fons with oxygen Gas on Risti rd +xy De forsir plifi 2. Aluminuric tic (Al 13 RCO 4 3. Magnen 3 nig (M 4 Sodiu prinous an Na . 5 Coppa h g (C eor sim Silver (Si con w Var): hcm x): Fe +30 Fe,O hu O ger +210 esi yg n): 2/9 bus odam + xy en) 2 or + d, ce ▸ Sul geothe atmosphomphen le proces): 2 u+2CuC cobuns in r): ed, rtioith ulfur om Lir (C iun Oxygen, tro ied woxen) 2CaP₂- nium Ox en) ds): 2 →→₂S etc.): CaO tec (sim Calc R tion (sir Titan ki ation F Con: T Zinc x tn (Zi ion: O₂-ZnO 0. Pot supe For tion tion exce oxy assium K+O Eess Oyge): (pot isiu su eroxid →T (ar other oxide) Oxyg ): 10 amo ples al Fction with Wat 1. S Readi Reactor 2. Flumea hW (Scum + Wa : JaOH + H wi Reactio alm React Rectic ater otassium +ater DH+H₁₂ ther cium + ate: (OH)2 Ла esin R Reacti Lim Reac eact 15 actio Reac 2 m)→0 21 2 ilum ate): 2 OHH hean (IrStem at is temperare: 3 +H,C stam e 4H₂ Zinc Reactiotten (2nc Sangh temper ur s): Reac o Zn+HO tea) Zr Aluminum Ftion wi Sam 0 Reach (simple: 2A 3H₂ (am) → Al₂O, 32
Physical Chemistry
2nd Edition
ISBN:9781133958437
Author:Ball, David W. (david Warren), BAER, Tomas
Publisher:Ball, David W. (david Warren), BAER, Tomas
Chapter10: Introduction To Quantum Mechanics
Section: Chapter Questions
Problem 10.77E: Consider a one-dimensional particle-in-a-box and a three-dimensional particle-in-a-box that have the...
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Answer the question in the first photo

Transcribed Image Text:Calculate the positions at which
the probability of a particle in a
one-dimensional box is maximum if
the particle is in the fifth energy level
and in the eighth energy level.

Transcribed Image Text:7:56 M
← 10 Famous Examples...
40%
+
10 Famous Em
1.
of Fons with oxygen Gas
on Risti rd +xy
De forsir plifi
2. Aluminuric tic (Al
13 RCO 4
3. Magnen 3 nig (M
4 Sodiu prinous
an Na
.
5 Coppa h g (C
eor sim
Silver (Si
con w
Var):
hcm x): Fe +30 Fe,O
hu O ger
+210
esi yg n):
2/9
bus odam + xy en)
2
or +
d, ce
▸ Sul
geothe atmosphomphen
le proces): 2 u+2CuC
cobuns in r):
ed, rtioith ulfur om
Lir (C iun Oxygen, tro
ied woxen) 2CaP₂-
nium Ox en)
ds): 2 →→₂S
etc.):
CaO
tec (sim
Calc
R
tion (sir
Titan
ki ation
F
Con: T
Zinc x
tn (Zi
ion:
O₂-ZnO
0. Pot supe
For
tion
tion
exce oxy
assium
K+O
Eess Oyge):
(pot isiu su eroxid
→T (ar other oxide)
Oxyg ):
10 amo
ples al Fction with Wat
1. S
Readi
Reactor
2. Flumea
hW (Scum + Wa :
JaOH + H
wi
Reactio
alm React
Rectic
ater otassium +ater
DH+H₁₂
ther
cium + ate:
(OH)2
Ла esin R
Reacti
Lim Reac
eact
15
actio
Reac
2 m)→0 21 2
ilum ate):
2 OHH
hean (IrStem at is temperare:
3 +H,C stam e 4H₂
Zinc Reactiotten (2nc Sangh temper ur s):
Reac o Zn+HO tea) Zr
Aluminum Ftion wi Sam
0 Reach (simple: 2A 3H₂ (am) → Al₂O, 32
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