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13. a plane accelerates down a runway at 3 m/s² for 10 seconds before t…

Question

  1. a plane accelerates down a runway at 3 m/s² for 10 seconds before takeoff. what is the final velocity of the plane? 14. a motorcycle moving at 25 m/s slows down to 10 m/s in 3 seconds. what is the acceleration? 15. a car is initially at 10 m/s. it accelerates at 2 m/s² for 6 seconds. what is its final velocity? 16. an object is dropped from a height and reaches 24 m/s after 3 seconds. what is the objects average acceleration? 17. a soccer ball is kicked and accelerates at 5 m/s² for 0.6 seconds. if it started at 2 m/s, what is its final speed? 18. a rocket is launched upward. it starts from rest and accelerates at 9 m/s² for 12 seconds. what is its final velocity? 19. a skateboarder slows from 8 m/s to a stop in 4 seconds. what is the acceleration? 20. a cyclist is riding at 10 m/s when a pedestrian steps into the bike lane 15 meters ahead. the cyclist brakes with an acceleration of -2.5 m/s². will the cyclist stop in time, or hit the pedestrian? (assume instant reaction time and constant deceleration. show calculations and explain.) 21. a train is moving at 25 m/s when the conductor sees a barrier 200 meters ahead. the train begins braking immediately with a constant acceleration of -1.2 m/s². will the train stop before hitting the barrier? (show your work and explain your reasoning.) 22. a motorcycle is cruising at 18 m/s when the rider sees a red light 40 meters away. the rider brakes with a constant acceleration of -6 m/s². does the motorcycle stop before the intersection, or does it run the red light?(include all work and a short explanation.)

Explanation:

Response

15.

Step1: Identify the formula

Use the formula $v = v_0+at$, where $v$ is final - velocity, $v_0$ is initial - velocity, $a$ is acceleration, and $t$ is time.

Step2: Substitute the values

Given $v_0 = 10$ m/s, $a = 2$ m/s², and $t = 6$ s. Then $v=10 + 2\times6$.

Step3: Calculate the result

$v=10 + 12=22$ m/s.

Step1: Identify the formula

The formula for average acceleration is $a=\frac{v - v_0}{t}$, where $v$ is final - velocity, $v_0$ is initial - velocity (since it is dropped, $v_0 = 0$ m/s), $a$ is acceleration, and $t$ is time.

Step2: Substitute the values

Given $v = 24$ m/s, $v_0 = 0$ m/s, and $t = 3$ s. Then $a=\frac{24 - 0}{3}$.

Step3: Calculate the result

$a = 8$ m/s².

Step1: Identify the formula

Use the formula $v = v_0+at$, where $v$ is final - speed, $v_0$ is initial - speed, $a$ is acceleration, and $t$ is time.

Step2: Substitute the values

Given $v_0 = 2$ m/s, $a = 5$ m/s², and $t = 0.6$ s. Then $v=2+5\times0.6$.

Step3: Calculate the result

$v=2 + 3=5$ m/s.

Answer:

22 m/s

16.