A particle moves at a constant velocity along the line L that passes through (1, 2) and (4,7). The particle is at (1,2) at time 4 and moves at a speed of 3. Take y(t) to give the position of the particle at time t. For each t in R, determine y(t). Simulate the motion of this particle using a graphing application (Desmos or Geogebra for example).
A particle moves at a constant velocity along the line L that passes through (1, 2) and (4,7). The particle is at (1,2) at time 4 and moves at a speed of 3. Take y(t) to give the position of the particle at time t. For each t in R, determine y(t). Simulate the motion of this particle using a graphing application (Desmos or Geogebra for example).
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![A particle moves at a constant velocity along the line L that passes through (1, 2) and
(4,7). The particle is at (1,2) at time 4 and moves at a speed of 3. Take y(t) to give
the position of the particle at time t. For each t in R, determine y(t). Simulate the
motion of this particle using a graphing application (Desmos or Geogebra for example).](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fc95820b9-7e72-488a-a6b5-40488ccef25b%2Fd2937204-d93a-436d-ae95-b8a6301bef15%2F1rqzz3r_processed.jpeg&w=3840&q=75)
Transcribed Image Text:A particle moves at a constant velocity along the line L that passes through (1, 2) and
(4,7). The particle is at (1,2) at time 4 and moves at a speed of 3. Take y(t) to give
the position of the particle at time t. For each t in R, determine y(t). Simulate the
motion of this particle using a graphing application (Desmos or Geogebra for example).
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