Explore the fundamentals of quantum mechanics with the 'Quantum Quiz March 21'. This quiz covers key topics like the Compton shift, electron diffraction, and blackbody radiation, assessing your understanding of complex physical phenomena and their mathematical descriptions.
Electroluminescence
Thermionic emission
Electron diffraction
X-ray diffraction
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4
1
-2
-4
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Hν/c
Hν/c²
Zero
Hν²/c
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2c/3
C/3
√2c
2√2c/3
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0º to 90º
90º to 180º
0º to 180º
0º to 45º
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8
6
4
12
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0.08 Å
1 Å
12.26 Å
150 Å
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1.5
1.12
1.22
2.22
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H/√(3mkT)
H/√(2mkT)
√3h/(mkT)
3h/√(2mkT)
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1.67 Å
0.167 Å
0.227 Å
2.27 Å
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4V
V/4
V/8
8V
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705 nm
515 nm
630 nm
555 nm
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4000 K
4500 K
5000 K
5500 K
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E(ν) → 0 as ν → 0
E(T) → ∞ as T → 0
E(λ) → ∞ as λ → 0
E(λ) → ∞ as λ → ∞
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Hν/(exp[hν/kT] - 1)
Hν/(exp[hν/kT] + 1)
Hν
Hν.exp[-hν/kT]
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2 eV
2 keV
2 MeV
0.02 eV
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Negative
Zero
More positive than what is observed with X-rays
Positive but not detectable in the visible window
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ν³
ν²
ν
Hν/(exp[hν/kT] - 1)
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45°
90°
60°
180°
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I > I' for both carbon and silver
I = I' for both carbon and silver
I > I' for carbon, I < I' for silver
I < I' for carbon, I > I' for silver
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Photon's energy
Photon's energy >> kT
Photon's energy = kT
Photon's energy has any finite value
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Zero
∞
1
½
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1.3 nanometer
1.3 micrometer
3.3 nanometer
3.3 micrometer
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0.24 Å
0.024 Å
2.4 Å
0.0024 Å
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Infrared signature
Twin paradox
Ultraviolet catastrophe
Gibb's paradox
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Zero
∞
1
1/2
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9x10¹⁰ Joules
300 Joules
9x10¹³ Joules
900 Joules
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Higher temperature
All temperatures
Higher wavelength
Lower wavelength
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1.67 m₀
1.25 m₀
0.8 m₀
0.6 m₀
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7250 K
8750 K
3550 K
5200 K
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90°
180°
135°
60°
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(h/Mc)²
H/(Mc²)
H/(Mc)
Mc²/h
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T²
T⁴
T⁻⁴
T⁻¹
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1000:1
10000:1
1:1000
1:10000
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2
0.25
4
1
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2.1x10ˉ²⁸
2.1x10ˉ³⁴
0.5x10ˉ³⁴
5.0x10ˉ²⁴
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5:3
3:5
25:9
9:25
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1:1
1:4
2:1
4:1
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10ˉ³¹ m
10ˉ³³ m
10ˉ¹⁸ m
10ˉ²⁵ m
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The more precise a particle's energy can be measured, the less precise its position can be measured
The more precise a particle's momentum can be measured, the less precise its position can be measured
The more precise a particle's momentum can be measured, the less precise its time can be measured
A particle's momentum can be measured exactly
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