The two pieces of the spacecraft are returned to their initial configuration with a period of 350.9 seconds. A radiation leak is detected in one of the engines. An escape pod from each section of the spacecraft are ejected as indicated in the figure. Notice that the direction of rotation for the two pieces of the spacecraft is also indicated in the figure. pod path e Escape Pods pod path The escape pods each have a mass of 12900 kg and are ejected with a speed of 147.2 m/s along the directions indicated in the figure with = 27 degrees. What is the new period of the remaining spacecraft after the two escape pods are ejected?

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The two pieces of the spacecraft are returned to their initial configuration with a period of 350.9 seconds. A radiation leak is detected in one of the engines. An
escape pod from each section of the spacecraft are ejected as indicated in the figure. Notice that the direction of rotation for the two pieces of the spacecraft is
also indicated in the figure.
pod path
Ꮎ
Escape Pods
pod path
The escape pods each have a mass of 12900 kg and are ejected with a speed of 147.2 m/s along the directions indicated in the figure with 0 = 27 degrees.
What is the new period of the remaining spacecraft after the two escape pods are ejected?
Transcribed Image Text:The two pieces of the spacecraft are returned to their initial configuration with a period of 350.9 seconds. A radiation leak is detected in one of the engines. An escape pod from each section of the spacecraft are ejected as indicated in the figure. Notice that the direction of rotation for the two pieces of the spacecraft is also indicated in the figure. pod path Ꮎ Escape Pods pod path The escape pods each have a mass of 12900 kg and are ejected with a speed of 147.2 m/s along the directions indicated in the figure with 0 = 27 degrees. What is the new period of the remaining spacecraft after the two escape pods are ejected?
One way to provide artificial gravity (i.e., a feeling of weight) on long space voyages is to separate a spacecraft into two parts at the ends of a long cable, and set them
rotating about their center of mass. A craft has been separated into two parts with a mass of 92100 kg each, at the ends of a cable with their centers of mass 171 m
apart, rotating around the center point of the cable with a period of 350.9 seconds.
Transcribed Image Text:One way to provide artificial gravity (i.e., a feeling of weight) on long space voyages is to separate a spacecraft into two parts at the ends of a long cable, and set them rotating about their center of mass. A craft has been separated into two parts with a mass of 92100 kg each, at the ends of a cable with their centers of mass 171 m apart, rotating around the center point of the cable with a period of 350.9 seconds.
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