1. . The brake mechanism used to reduce a gun recoil consists of a piston attached to a barrel moving in the fixed cylinder filled with oil. As the barrel recoils with an initial velocity vo , the piston moves and the oil is forced through the orifices in the piston, causing the piston and the cylinder to decelerate at a rate proportional to their velocities. Determine v (t), x (f), and v (x)

Structural Analysis
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Chapter2: Loads On Structures
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Non-uniformly accelerated motion & Motion Curves
1. . The brake mechanism used to reduce a gun recoil consists of a piston
attached to a barrel
moving in the fixed cylinder filled with oil. As the barrel recoils with an initial
velocity vo , the piston moves and the oil is forced through the orifices in the
piston, causing the piston and the cylinder to
decelerate at a rate proportional to their velocities. Determine v (t), x (t), and v
(x)
Piston
a =-kv `oil
Transcribed Image Text:Non-uniformly accelerated motion & Motion Curves 1. . The brake mechanism used to reduce a gun recoil consists of a piston attached to a barrel moving in the fixed cylinder filled with oil. As the barrel recoils with an initial velocity vo , the piston moves and the oil is forced through the orifices in the piston, causing the piston and the cylinder to decelerate at a rate proportional to their velocities. Determine v (t), x (t), and v (x) Piston a =-kv `oil
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