Problem 10: While watching the clouds pass by, you notice a European swallow flying horizontally at a height h = 21.9 m above you. When the swallow is directly overhead, it drops an m = 10.7 kg coconut. From your ornithological studies, you know that the air-speed of this particular species of swallow while carrying such a load is vo = 7.73 m/s. In this problem you may neglect air friction. Refer to the diagram..Assume the origin of the coordinate system there is at your head. h

College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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Problem 10: While watching the clouds pass by, you notice a European swallow flying
horizontally at a height h = 21.9 m above you. When the swallow is directly overhead, it drops an m
= 10.7 kg coconut. From your ornithological studies, you know that the air-speed of this particular
species of swallow while carrying such a load is vo = 7.73 m/s. In this problem you may neglect air
friction. Refer to the diagram. Assume the origin of the coordinate system there is at your head.
h
Transcribed Image Text:Problem 10: While watching the clouds pass by, you notice a European swallow flying horizontally at a height h = 21.9 m above you. When the swallow is directly overhead, it drops an m = 10.7 kg coconut. From your ornithological studies, you know that the air-speed of this particular species of swallow while carrying such a load is vo = 7.73 m/s. In this problem you may neglect air friction. Refer to the diagram. Assume the origin of the coordinate system there is at your head. h
Part (d) Calculate the magnitude of the angular momentum L, in kg · m²/s, of the coconut as observed by you one second after it is released
directly overhead (t = 1 s).
L =
Transcribed Image Text:Part (d) Calculate the magnitude of the angular momentum L, in kg · m²/s, of the coconut as observed by you one second after it is released directly overhead (t = 1 s). L =
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