11.11 The acceleration of a particle is directly proportional to the time t. At t = 0, the velocity of the particle is v = 16 in./s. Knowing that 20 in. when t = 1 s, determine the velocity, the position, and the total distance traveled whent = 7 s. v = 15 in./s and that x = %3D
11.11 The acceleration of a particle is directly proportional to the time t. At t = 0, the velocity of the particle is v = 16 in./s. Knowing that 20 in. when t = 1 s, determine the velocity, the position, and the total distance traveled whent = 7 s. v = 15 in./s and that x = %3D
Engineering Fundamentals: An Introduction to Engineering (MindTap Course List)
5th Edition
ISBN:9781305084766
Author:Saeed Moaveni
Publisher:Saeed Moaveni
Chapter9: Mass And Mass-related Variables In Engineering
Section: Chapter Questions
Problem 33P
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11.11
![11.11 The acceleration of a particle is directly proportional to the time t.
At t = 0, the velocity of the particle is v = 16 in./s. Knowing that
20 in. when t = 1 s, determine the
velocity, the position, and the total distance traveled whent = 7 s.
v = 15 in./s and that x =
%3D](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F6111f256-433b-49a2-9feb-2b343c5bc0c2%2Fd5d3fb31-0c80-4a55-acff-ec85ce2db644%2F4f6785d_processed.png&w=3840&q=75)
Transcribed Image Text:11.11 The acceleration of a particle is directly proportional to the time t.
At t = 0, the velocity of the particle is v = 16 in./s. Knowing that
20 in. when t = 1 s, determine the
velocity, the position, and the total distance traveled whent = 7 s.
v = 15 in./s and that x =
%3D
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