The motion of a particle is defined by x = 6t"4 - 2t°3 - 12t^2 + 3t + 3, when x and t are expressed in meters and seconds, respectively. • When a = 0, determine the time • When a= 0, determine the velocity When a = 0, determine the position
The motion of a particle is defined by x = 6t"4 - 2t°3 - 12t^2 + 3t + 3, when x and t are expressed in meters and seconds, respectively. • When a = 0, determine the time • When a= 0, determine the velocity When a = 0, determine the position
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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![The motion of a particle is defined by x = 6t"4 - 2t°3 - 12t^2 + 3t + 3, when x and t are expressed in
meters and seconds, respectively.
• When a = 0, determine the time
• When a= 0, determine the velocity
When a = 0, determine the position](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F20a71687-c10e-4008-a6b3-21d9ad714bb0%2Fbb06eefb-b698-4d1e-a973-2eafd93c2c80%2Fipqzn0n_processed.png&w=3840&q=75)
Transcribed Image Text:The motion of a particle is defined by x = 6t"4 - 2t°3 - 12t^2 + 3t + 3, when x and t are expressed in
meters and seconds, respectively.
• When a = 0, determine the time
• When a= 0, determine the velocity
When a = 0, determine the position
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