2.1 Evaluate the constant B in the hydrogen-like wave function Y(1,0,0)=Br²sin²0e²¹⁹ exp(-3Zr/3a) 2.2 The wavefunction of a state of harmonic oscillator is given by: 1/4 Φ(x) = mo 64πħ 4mo ħ ²x² −2)exp(-m cox ²/2ħ); - 00
2.1 Evaluate the constant B in the hydrogen-like wave function Y(1,0,0)=Br²sin²0e²¹⁹ exp(-3Zr/3a) 2.2 The wavefunction of a state of harmonic oscillator is given by: 1/4 Φ(x) = mo 64πħ 4mo ħ ²x² −2)exp(-m cox ²/2ħ); - 00
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![2.1
2.2
Evaluate the constant B in the hydrogen-like wave function
Y(1,0,0)=Br²sin²0e²¹⁹ exp(-3Zr/3a)
The wavefunction of a state of harmonic oscillator is given by:
1/4
$(x) =
mo
64πħ
4mo
ħ
x²-2)exp(-m cox ²/2ħ);
Obtain the corresponding energy of the state.
- 00 < x < 00](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F0f71bc4f-b443-409b-900a-c5e680e620b6%2F51cfb9ce-7740-4f4c-b251-74ab33be2cbf%2F0pc40d_processed.png&w=3840&q=75)
Transcribed Image Text:2.1
2.2
Evaluate the constant B in the hydrogen-like wave function
Y(1,0,0)=Br²sin²0e²¹⁹ exp(-3Zr/3a)
The wavefunction of a state of harmonic oscillator is given by:
1/4
$(x) =
mo
64πħ
4mo
ħ
x²-2)exp(-m cox ²/2ħ);
Obtain the corresponding energy of the state.
- 00 < x < 00
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