Exam 10: Simple Harmonic Motion and Elasticity
Exam 1: Introduction and Mathematical Concepts70 Questions
Exam 2: Kinematics in One Dimension103 Questions
Exam 3: Kinematics in Two Dimensions68 Questions
Exam 4: Forces and Newtons Laws of Motion103 Questions
Exam 5: Dynamics of Uniform Circular Motion59 Questions
Exam 6: Work and Energy78 Questions
Exam 7: Impulse and Momentum66 Questions
Exam 8: Rotational Kinematics55 Questions
Exam 9: Rotational Dynamics57 Questions
Exam 10: Simple Harmonic Motion and Elasticity63 Questions
Exam 11: Fluids65 Questions
Exam 12: Temperature and Heat66 Questions
Exam 13: The Transfer of Heat42 Questions
Exam 14: The Ideal Gas Law and Kinetic Theory55 Questions
Exam 15: Thermodynamics79 Questions
Exam 16: Waves and Sound67 Questions
Exam 17: The Principle of Linear Superposition and Interference Phenomena46 Questions
Exam 18: Electric Forces and Electric Fields61 Questions
Exam 19: Electric Potential Energy and the Electric Potential70 Questions
Exam 20: Electric Circuits100 Questions
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Exam 22: Electromagnetic Induction71 Questions
Exam 23: Alternating Current Circuits84 Questions
Exam 24: Electromagnetic Waves66 Questions
Exam 25: The Refl Ection of Light: Mirrors43 Questions
Exam 26: The Refraction of Light: Lenses and Optical Instruments102 Questions
Exam 27: Interference and the Wave Nature of Light57 Questions
Exam 28: Special Relativity63 Questions
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Exam 30: The Nature of the Atom74 Questions
Exam 31: Nuclear Physics and Radioactivity37 Questions
Exam 32: Ionizing Radiation, Nuclear Energy, and Elementary Particles45 Questions
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A 5.0 × 102-N object is hung from the end of a wire of cross-sectional area 0.010 cm2. The wire stretches from its original length of 200.00 cm to 200.50 cm.
-What is the elongation strain on the wire?
(Multiple Choice)
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An iron ball hangs from a 21.5-m steel cable and is used in the demolition of a building at a location where the acceleration due to gravity is 9.78 m/s2. The ball is swung outward from its equilibrium position for a distance of 4.20 m. Assuming the system behaves as a simple pendulum, find the maximum speed of the ball during its swing.
(Multiple Choice)
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A 0.800-kg block is placed on top of a vertically oriented spring as shown. The block is not attached to the spring, but the spring is attached to the floor. The block oscillates in simple harmonic motion. If the spring constant is 95.0 N/m, determine the amplitude at which the block loses contact with the spring. 

(Multiple Choice)
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