PROBLEM NO. 3 The acceleration of a particle is defined by the piecewise linear function of the a-t graph shown below. ■ (m/s²) ♦ (0, 0) (t₂, a₂) (t₁, a₁) (t3, a3) T (sec) A. Determine its velocity at time t1, t2, and t3. B. Determine its position at time t1, t2, and t3. C. Determine its position, velocity, and position at t4. Note: t1, t2, t3, a1, a2, and a3 should be variable inputs in your worksheet, assume it initially as any number between 0- 100. Where t4 is between 0 -t3
PROBLEM NO. 3 The acceleration of a particle is defined by the piecewise linear function of the a-t graph shown below. ■ (m/s²) ♦ (0, 0) (t₂, a₂) (t₁, a₁) (t3, a3) T (sec) A. Determine its velocity at time t1, t2, and t3. B. Determine its position at time t1, t2, and t3. C. Determine its position, velocity, and position at t4. Note: t1, t2, t3, a1, a2, and a3 should be variable inputs in your worksheet, assume it initially as any number between 0- 100. Where t4 is between 0 -t3
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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The acceleration of a particle is defined by the piecewise
linear function of the a-t graph shown below.
A. Determine its velocity at time t1, t2, and t3.
B. Determine its position at time t1, t2, and t3.
C. Determine its position, velocity, and position at t4.
Note:
t1, t2, t3, a1, a2, and a3 should be variable inputs in your
worksheet, assume it initially as any number between 0
100.
Where t4 is between 0 – t3
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