2. Part 2 - oPhysics Simulations (i) The figure below, from oPhysics, shows a block being dragged across a rough surface by a tension force T. The figure includes a free-body diagram. The red T, = T cos 0 and T arrows are the horizontal and vertical components of the tension vector, respectively. Prove that = T sin e where Ti is the tension required to just get the block moving if it starts from

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2. Part 2 - oPhysics Simulations
(i) The figure below, from oPhysics, shows a block being dragged across a rough surface by a
tension force T. The figure includes a free-body diagram. The red T, = T cos 0 and Ty = T sin 6
arrows are the horizontal and vertical components of the tension vector, respectively. Prove that
T1
cos 0 + µ, sin 0
where T is the tension required to just get the block moving if it starts from
rest.
ma
x: ma= TcostMng-7-
yi ma= Tsint-my
Ccast-Mmy)
n
T.
mg
Transcribed Image Text:2. Part 2 - oPhysics Simulations (i) The figure below, from oPhysics, shows a block being dragged across a rough surface by a tension force T. The figure includes a free-body diagram. The red T, = T cos 0 and Ty = T sin 6 arrows are the horizontal and vertical components of the tension vector, respectively. Prove that T1 cos 0 + µ, sin 0 where T is the tension required to just get the block moving if it starts from rest. ma x: ma= TcostMng-7- yi ma= Tsint-my Ccast-Mmy) n T. mg
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