KEY CONCEPT FIGURE 28.19 Energy levels and quantum jumps for an electron in a 0.19-nm-long box. (a) Energy levels (b) Photon emission (c) Photon absorption Energy 160 eV - n = 4 AEsystem = IE, – E,I = 30 eV AEsystem = IE3 – E,I · An electron can have only these - allowed energies. = 80 eV Incoming 80 eV photon 90 e V n= 3 Excited Emitted 30 e V states photon -…... 40 eV- n= 2 10 eV- n= 1 A transition from n=2 to A transition from n = 1 to n= 1 requires the emission n=3 requires the absorption of a 30 eV photon. Ground state of an 80 eV photon.

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For the system shown, which are possible energies of emitted photons? There may be more than one correct answer.
A. 40 eV        B. 50 eV       C. 60 eV        D. 70 eV        E. 80 eV

KEY CONCEPT
FIGURE 28.19 Energy levels and quantum jumps for an electron in a
0.19-nm-long box.
(a) Energy levels
(b) Photon emission
(c) Photon absorption
Energy
160 eV -
n = 4
AEsystem = IE, – E,I
= 30 eV
AEsystem = IE3 – E,I
· An electron can
have only these
- allowed energies.
= 80 eV
Incoming 80 eV photon
90 e V
n= 3
Excited
Emitted 30 e V
states
photon -…...
40 eV-
n= 2
10 eV-
n= 1
A transition from n=2 to A transition from n = 1 to
n= 1 requires the emission n=3 requires the absorption
of a 30 eV photon.
Ground state
of an 80 eV photon.
Transcribed Image Text:KEY CONCEPT FIGURE 28.19 Energy levels and quantum jumps for an electron in a 0.19-nm-long box. (a) Energy levels (b) Photon emission (c) Photon absorption Energy 160 eV - n = 4 AEsystem = IE, – E,I = 30 eV AEsystem = IE3 – E,I · An electron can have only these - allowed energies. = 80 eV Incoming 80 eV photon 90 e V n= 3 Excited Emitted 30 e V states photon -…... 40 eV- n= 2 10 eV- n= 1 A transition from n=2 to A transition from n = 1 to n= 1 requires the emission n=3 requires the absorption of a 30 eV photon. Ground state of an 80 eV photon.
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