This time we have a non-rotating space station in the shape of a long thin uniform rod of mass 4.78 x 10^6 kg and length 992 meters. Small probes of mass 8070 kg are periodically launched in pairs from two points on the rod-shaped part of the station as shown, launching at a speed of 3029 m/s with respect to the launch points, which are each located 308 m from the center of the rod. After 14 pairs of probes have launched, how fast will the station be spinning? 1.80 rpm 5.14 rpm 2.57 rpm 8.22 rpm
This time we have a non-rotating space station in the shape of a long thin uniform rod of mass 4.78 x 10^6 kg and length 992 meters. Small probes of mass 8070 kg are periodically launched in pairs from two points on the rod-shaped part of the station as shown, launching at a speed of 3029 m/s with respect to the launch points, which are each located 308 m from the center of the rod. After 14 pairs of probes have launched, how fast will the station be spinning? 1.80 rpm 5.14 rpm 2.57 rpm 8.22 rpm
Glencoe Physics: Principles and Problems, Student Edition
1st Edition
ISBN:9780078807213
Author:Paul W. Zitzewitz
Publisher:Paul W. Zitzewitz
Chapter3: Accelerated Motion
Section: Chapter Questions
Problem 102A
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This time we have a non-rotating space station in the shape of a long thin uniform rod of mass 4.78 x 10^6 kg and length 992 meters. Small probes of mass 8070 kg are periodically launched in pairs from two points on the rod-shaped part of the station as shown, launching at a speed of 3029 m/s with respect to the launch points, which are each located 308 m from the center of the rod. After 14 pairs of probes have launched, how fast will the station be spinning?1.80 rpm5.14 rpm2.57 rpm8.22 rpm
![launch point
axis
launch point](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F0795f56b-0a15-4f37-aa5f-bf96362a487b%2F058d9622-3f3b-4b88-9ad2-7e8c833bb0a8%2Fiaggtume_processed.png&w=3840&q=75)
Transcribed Image Text:launch point
axis
launch point
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