6.71 Several excited states of the neon atom are important in the operation of a helium-neon laser. In these excited states, one electron of the neon atom is promoted from the 2p level to a higher energy orbital. An excited neon atom with a 1 s 2 2 s 2 2 p 5 5 s 1 electron configuration can emit a photon with a wavelength of 3391 nm as it makes a transition to a lower energy state with a 1 s 2 2 s 2 2 p 5 4 p 1 electron configuration. Other transitions are also possible. If an excited neon atom with a 1 s 2 2 s 2 2 p 5 3 p 1 electron configuration makes a transition to a lower energy state with a 1 s 2 2 s 2 2 p 5 3 p 1 electron configuration, it emits a photon with a wavelength of 632.8 nm. Find the wavelength of the photon that would be emitted in a transition from the 1 s 2 2 s 2 2 p 5 4 p 1 electron configuration to the 1 s 2 2 s 2 2 p 5 3 p 1 electron configuration. (It should help if you start by drawing an energy-level diagram.)
6.71 Several excited states of the neon atom are important in the operation of a helium-neon laser. In these excited states, one electron of the neon atom is promoted from the 2p level to a higher energy orbital. An excited neon atom with a 1 s 2 2 s 2 2 p 5 5 s 1 electron configuration can emit a photon with a wavelength of 3391 nm as it makes a transition to a lower energy state with a 1 s 2 2 s 2 2 p 5 4 p 1 electron configuration. Other transitions are also possible. If an excited neon atom with a 1 s 2 2 s 2 2 p 5 3 p 1 electron configuration makes a transition to a lower energy state with a 1 s 2 2 s 2 2 p 5 3 p 1 electron configuration, it emits a photon with a wavelength of 632.8 nm. Find the wavelength of the photon that would be emitted in a transition from the 1 s 2 2 s 2 2 p 5 4 p 1 electron configuration to the 1 s 2 2 s 2 2 p 5 3 p 1 electron configuration. (It should help if you start by drawing an energy-level diagram.)
6.71 Several excited states of the neon atom are important in the operation of a helium-neon laser. In these excited states, one electron of the neon atom is promoted from the 2p level to a higher energy orbital.
An excited neon atom with a
1
s
2
2
s
2
2
p
5
5
s
1
electron configuration can emit a photon with a wavelength of 3391 nm as it makes a transition to a lower energy state with a
1
s
2
2
s
2
2
p
5
4
p
1
electron configuration. Other transitions are also possible. If an excited neon atom with a
1
s
2
2
s
2
2
p
5
3
p
1
electron configuration makes a transition to a lower energy state with a
1
s
2
2
s
2
2
p
5
3
p
1
electron configuration, it emits a photon with a wavelength of 632.8 nm. Find the wavelength of the photon that would be emitted in a transition from the
1
s
2
2
s
2
2
p
5
4
p
1
electron configuration to the
1
s
2
2
s
2
2
p
5
3
p
1
electron configuration. (It should help if you start by drawing an energy-level diagram.)
Diels Alder Cycloaddition: Focus on regiochemistry (problems E-F) –> match + of thedienophile and - of the diene while also considering stereochemistry (endo).
HELP! URGENT! PLEASE RESOND ASAP!
Question 4
Determine the rate order and rate constant for sucrose hydrolysis.
Time (hours)
[C6H12O6]
0
0.501
0.500
0.451
1.00
0.404
1.50
0.363
3.00
0.267
First-order, k = 0.210 hour 1
First-order, k = 0.0912 hour 1
O Second-order, k =
0.590 M1 hour 1
O Zero-order, k = 0.0770 M/hour
O Zero-order, k = 0.4896 M/hour
O Second-order, k = 1.93 M-1-hour 1
10 pts
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