A solid spherical object m= 65 g is fired form a spring loaded mechanism k = 45N/m compressed a distance of 0.5 m on the surface of Mars at an angle of 31 with respect to the horizontal. It lands in a canyon 45 m below the launch point. It rolls down a hill that is 25 m in height and encounters a patch of ice at the bottom of the canyon that goes up the other side of the canyon to the top (2500m). How far does it rise on the icy side of the canyon? Mars mass 6.417 (1023) kg G= 6.67 (10 11) N m² kg? Mars diameter 6792 km k = 45N/m O 2.99 m O 26.82 m O 66.63m O 50.35 m O 74.31 m

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A solid spherical object m= 65 g is fired form a spring loaded mechanism k = 45N/m compressed a distance
of 0.5 m on the surface of Mars at an angle of 31 with respect to the horizontal. It lands in a canyon 45 m
below the launch point. It rolls down a hill that is 25 m in height and encounters a patch of ice at the
bottom of the canyon that goes up the other side of the canyon to the top (2500m). How far does it rise on
the icy side of the canyon?
Mars mass 6.417 (1023) kg
G = 6.67 (10 11) N
m2
kg2
Mars diameter = 6792 km
k = 45N/m
O 2.99 m
O 26.82 m
66.63m
O 50.35 m
O 74.31 m
Transcribed Image Text:A solid spherical object m= 65 g is fired form a spring loaded mechanism k = 45N/m compressed a distance of 0.5 m on the surface of Mars at an angle of 31 with respect to the horizontal. It lands in a canyon 45 m below the launch point. It rolls down a hill that is 25 m in height and encounters a patch of ice at the bottom of the canyon that goes up the other side of the canyon to the top (2500m). How far does it rise on the icy side of the canyon? Mars mass 6.417 (1023) kg G = 6.67 (10 11) N m2 kg2 Mars diameter = 6792 km k = 45N/m O 2.99 m O 26.82 m 66.63m O 50.35 m O 74.31 m
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