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Can you please send all the work, I want to understand how to do it please. Thank you ? The image above shows a student's

Can you please send all the work, I want to understand how to do it please. Thank you ?

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The image above shows a student's model rocket breaking up into two pieces as its engine malfunctions and blows up as the rocket is moving up in the air with a speed of 91.4 meters-per-second. The rocket's mass at the moment of the explosion is 8.84 kilograms and it breaks up into two pieces, labeled as A and B, of equal mass. The student is recording a video of the rocket launch and is able to capture the moment of the explosion on video. Using the video frame represented by the image shown, the student measures the angle of fragment Awith the vertical, labeled alpha, as 35.6 degrees and the angle of fragment B with the vertical, labeled beta, as 56.8 degrees. We are going to ignore the effects of air resistance and gravity for this scenario. The reason is that our focus is on the very short time interval before, during and after the model rocket's breakup during which the effects of these external forces do not have sufficient time to noticeably affect our system. 1.) What is the y-momentum of the model rocket before its breakup ? 2.) What is the x-momentum of the model rocket before its breakup ? 3.) What is the combined y-momentum of pieces A and B immediately after the breakup ? 4.) What is the combined x-momentum of pieces A and B immediately after the breakup ? At this point you have the total momentum of the system in both the horizontal and vertical directions. Remember, the momentum of the system is conserved. Now set up two equations for the conservation of momentum, one for the horizontal direction and one for the vertical direction. You will have two equations with two unknowns. 5.) What is the speed of piece A immediately after the explosion ? 6.) What is the speed of piece B immediately after the explosion ? 7.) What is the x-velocity of piece A immediately after the explosion ? 8.) What is the x-velocity of piece B immediately after the explosion ? 9.) What is the y-velocity of piece A immediately after the explosion ? 10.) What is the y-velocity of piece B immediately after the explosion ? 11 .)What is the x-impulse on piece A during the explosion ? 12.) What is the x-impulse on piece B during the explosion ? 13.) What is the y-impulse on piece Aduring the explosion ? 14.) What is the y-impulse on piece B during the explosion

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