an "the flying tomato" leaves the half pipe with a ocity of 2.7 m/sec. His center of mass when he eters above the edge. He does a 1080 degree sp ch a double flip before his center of mass reache y down. How high above the edge of the halfp

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Sean "the flying tomato" leaves the half pipe with a center of mass vertical
velocity of 2.7 m/sec. His center of mass when he leaves the halfpipe is 0.2
meters above the edge. He does a 1080 degree spin (that's three revolutions)
with a double flip before his center of mass reaches the halfpipe edge on his
way down. How high above the edge of the halfpipe does his center of mass
rise during this move? (3 pts)
Express your answer in meters (m), accurate to two decimal places.
Transcribed Image Text:Sean "the flying tomato" leaves the half pipe with a center of mass vertical velocity of 2.7 m/sec. His center of mass when he leaves the halfpipe is 0.2 meters above the edge. He does a 1080 degree spin (that's three revolutions) with a double flip before his center of mass reaches the halfpipe edge on his way down. How high above the edge of the halfpipe does his center of mass rise during this move? (3 pts) Express your answer in meters (m), accurate to two decimal places.
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