Review | Constants Part C The velocity of a particle constrained to move along the x-axis as a function of time t is given by: 0 when t = 0, and find its position at t = 0.20to Now assume that the particle is at v(t)-(19/to)sin(t/to) Express your answer to 3 significant figures. -0.379 m Previous Answers Submit Correct Significant Figures Feedback: Your answer -0.378 m was either rounded differently or used a different number of significant figures than required for this part. Part D Evaluate v(0)t a(0)t2/2 at t 0.20to to 3 significant figures. Your answers to parts (c) and (d) should be in good agreement. Try to work out why that is so before submitting the answer to part (d) ΑΦφ m P Pearson

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Part D

Review | Constants
Part C
The velocity of a particle constrained to move along
the x-axis as a function of time t is given by:
0 when t = 0, and find its position at t = 0.20to
Now assume that the particle is at
v(t)-(19/to)sin(t/to)
Express your answer to 3 significant figures.
-0.379 m
Previous Answers
Submit
Correct
Significant Figures Feedback: Your answer -0.378 m was either rounded differently or used a
different number of significant figures than required for this part.
Part D
Evaluate v(0)t a(0)t2/2 at t 0.20to to 3 significant figures. Your answers to parts (c) and (d) should be
in good agreement. Try to work out why that is so before submitting the answer to part (d)
ΑΦφ
m
P Pearson
Transcribed Image Text:Review | Constants Part C The velocity of a particle constrained to move along the x-axis as a function of time t is given by: 0 when t = 0, and find its position at t = 0.20to Now assume that the particle is at v(t)-(19/to)sin(t/to) Express your answer to 3 significant figures. -0.379 m Previous Answers Submit Correct Significant Figures Feedback: Your answer -0.378 m was either rounded differently or used a different number of significant figures than required for this part. Part D Evaluate v(0)t a(0)t2/2 at t 0.20to to 3 significant figures. Your answers to parts (c) and (d) should be in good agreement. Try to work out why that is so before submitting the answer to part (d) ΑΦφ m P Pearson
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