(a) A light, rigid rod of length l 1.00 m joins two particles, with masses m, = 4.00 kg and m, = 3.00 kg, at its ends. The combination rotates in the xy-plane about a pivot through the center of the rod (see figure below). Determine the angular momentum of the system about the origin when the speed of each particle is 8.00 m/s. (Enter the magnitude to at least two decimal places in kg · m2/s.) magnitude kg · m2/s direction --Select--- v (b) What If? What would be the new angular momentum of the system (in kg m2/s) if each of the masses were instead a solid sphere 11.5 cm in diameter? (Round your answer to at least two decimal places.) kg · m2/s

Principles of Physics: A Calculus-Based Text
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Chapter10: Rotational Motion
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Problem 68P: Two astronauts (Fig. P10.67), each having a mass M, are connected by a rope of length d having...
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= 4.00 kg and m, = 3.00 kg, at its ends. The combination rotates in the xy-plane about a
(a) A light, rigid rod of length e = 1.00 m joins two particles, with masses m,
pivot through the center of the rod (see figure below). Determine the angular momentum of the system about the origin when the speed of each particle is 8.00 m/s.
(Enter the magnitude to at least two decimal places in kg · m2/s.)
magnitude
kg :
m2/s
direction
---Select--- v
(b) What If? What would be the new angular momentum of the system (in kg · m2/s) if each of the masses were instead a solid sphere 11.5 cm in diameter? (Round
your answer to at least two decimal places.)
kg :
m2/s
Transcribed Image Text:= 4.00 kg and m, = 3.00 kg, at its ends. The combination rotates in the xy-plane about a (a) A light, rigid rod of length e = 1.00 m joins two particles, with masses m, pivot through the center of the rod (see figure below). Determine the angular momentum of the system about the origin when the speed of each particle is 8.00 m/s. (Enter the magnitude to at least two decimal places in kg · m2/s.) magnitude kg : m2/s direction ---Select--- v (b) What If? What would be the new angular momentum of the system (in kg · m2/s) if each of the masses were instead a solid sphere 11.5 cm in diameter? (Round your answer to at least two decimal places.) kg : m2/s
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