Exam 37: The Foundations of Modern Physics
Exam 1: Concepts of Motion52 Questions
Exam 2: Kinematics in One Dimension59 Questions
Exam 3: Vectors and Coordinate Systems33 Questions
Exam 4: Kinematics in Two Dimensions49 Questions
Exam 5: Force and Motion30 Questions
Exam 6: Dynamics I: Motion Along a Line46 Questions
Exam 7: Newtons Third Law43 Questions
Exam 8: Dynamics II: Motion in a Plane20 Questions
Exam 9: Work and Kinetic Energy66 Questions
Exam 10: Interactions and Potential Energy55 Questions
Exam 11: Impulse and Momentum43 Questions
Exam 12: Rotation of a Rigid Body116 Questions
Exam 13: Newtons Theory of Gravity50 Questions
Exam 14: Fluids and Elasticity72 Questions
Exam 15: Oscillations49 Questions
Exam 16: Traveling Waves51 Questions
Exam 17: Superposition51 Questions
Exam 18: A Macroscopic Description of Matter46 Questions
Exam 19: Work, heat, and the First Law of Thermodynamics96 Questions
Exam 20: The Micromacro Connection41 Questions
Exam 21: Heat Engines and Refrigerators44 Questions
Exam 22: Electric Charges and Forces26 Questions
Exam 23: The Electric Field32 Questions
Exam 24: Gausss Law41 Questions
Exam 25: The Electric Potential40 Questions
Exam 26: Potential and Field57 Questions
Exam 27: Current and Resistance32 Questions
Exam 28: Fundamentals of Circuits68 Questions
Exam 29: The Magnetic Field83 Questions
Exam 30: Electromagnetic Induction66 Questions
Exam 31: Electromagnetic Fields and Waves52 Questions
Exam 32: Ac Circuits44 Questions
Exam 33: Wave Optics51 Questions
Exam 34: Ray Optics60 Questions
Exam 35: Optical Instruments52 Questions
Exam 36: Relativity49 Questions
Exam 37: The Foundations of Modern Physics7 Questions
Exam 38: Quantization45 Questions
Exam 39: Wave Functions and Uncertainty18 Questions
Exam 40: One-Dimensional Quantum Mechanics32 Questions
Exam 41: Atomic Physics38 Questions
Exam 42: Nuclear Physics64 Questions
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An electric current through a tungsten filament maintains its temperature at 2800 K.Assume the tungsten filament behaves as an ideal radiator at that temperature.If the radiating area of the filament is 2.0 × 10-6 m2,at what rate does it radiate energy? (σ = 5.670 × 10-8 W/m2 ∙ K4,Wien displacement law constant is 2.90 × 10-3 m ∙ K)
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(Multiple Choice)
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Correct Answer:
B
A perfectly black sphere 18.0 cm in diameter is held at a temperature of 215°C.
(σ = 5.670 × 10-8 W/m2 ∙ K4,Wien displacement law constant is 2.90 × 10-3 m ∙ K,
h = 6.626 × 10-34 J ∙ s,c = 3.00 × 108 m/s)
(a)Near what wavelength does this sphere radiate most strongly?
(b)If all the radiated energy were at the wavelength found in part (a),how many photons would the sphere emit each second?
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(Essay)
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Correct Answer:
(a)5.94 µm (b)9.79 × 1021 photons
A perfectly black body at 100°C emits light of intensity I that has the strongest intensity near wavelength λ.The temperature of this body is now increased to 200°C.
(a)In terms of I,what is the intensity at which this hotter body radiates?
(b)In terms of λ,near what wavelength does light radiated from this hotter body have the strongest intensity?
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(Short Answer)
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Correct Answer:
(a)2.6I (b)0.80 λ
In the vicinity of what frequency does an object with a temperature of 1000 K radiate the largest amount of power? (c = 3.00 × 108 m/s,Wien displacement law constant equals 2.90 × 10-3 m ∙ K,σ = 5.670 × 10-8 W/m2 ∙ K4)
(Multiple Choice)
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What is the wavelength of peak emission for a black body at 37°C? (c = 3.0 × 108 m/s,Wien displacement law constant is 2.9 × 10-3 m ∙ K,σ = 5.67 × 10-8 W/m2 ∙ K4)
(Multiple Choice)
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An electric current through a tungsten filament maintains its temperature at 2800 K.Assume the tungsten filament behaves as an ideal radiator at that temperature.Near what wavelength does the filament emit the greatest power? (σ = 5.67 × 10-8 W/m2 ∙ K4,Wien displacement law constant is 2.9 × 10-3 m ∙ K)
(Multiple Choice)
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At absolute temperature T,a black body radiates its peak intensity at wavelength λ.At absolute temperature 2T,what would be the wavelength of the peak intensity?
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