3. The graph below represents a plot of the location versus time for an object. Use this graph to answer the following questions: a. What is the displacement of the object between 0.0 s and 32 s? b. What is the average velocity of the object between 4.0 s and 20 s? C. What is the average velocity of the object between 20 s and 30 s? d. What is the average velocity of the object between 2.0 s and 26 s?
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- Suppose an object moves along a line at 10 m/s for 0sts2 s and at 16 m/s for 2Can i get help step by step with this problem?1. A motorized toy car moves at a constant velocity of 4 m/s. You start recording its motion at zero time as it passes a point 2 m from the zero-position point. a. Sketch a position vs. time graph for the toy car. Be sure you include appropriate labels and units for each axis. b. How can you find the velocity of the car from the position vs. time graph? c. Write an equation for the graph using the proper variables and units.Provide an explanation on outlining the underlying physics principle and using correct terminologies. In answering these problems, apply appropriate formulae, principles, and equations. A. Can an object have a constant speed but varying velocity ?A. If the graphs shown are position versus time, rank the graphs from highest to lowest displacement over the time intervals shown. B. If the graphs shown are position versus time, which graph(s) show constant velocity? Shows steps used to solve this ranking.Figure below is a velocity-versus-time graph for a moving object. The object starts at position x = 0. What is the acceleration at t= 1.0 s, in m/s2? Your answer needs to have 3 significant figures, including the negative sign in your answer if needed. Do not include the positive sign if the answer is positive. No unit is needed in your answer, it is already given in the question statement. time in secondsThe velocity-versus-time graph for an object moving along an x-axis is shown below. The initial position of the object is xo = -10.0 m. V (m/s) 4- t (s) 4 0. a) Draw a motion diagram of the object. Be sure to label your velocity and acceleration vectors. 0. b) What are the position, velocity, and acceleration of the object at t = 3 s? You must show all %3D of your work to get full credit. c) Sketch the object's position-versus-time graph and acceleration-versus-time graph. 2.1.The motion of an athletic mouse is shown in the graph below. Use the graph to answer the following questions. (a) Total distance travelled. (b) Total displacement (c) Average speed (d) Average velocity 2. Sketch the corresponding velocity-time graph for the given position time graph. Make sure to CLEARLY indicate values for key points on the graph.The figure shows the speedometer readings as a car drives down a straightroad. (attached) a. What is the acceleration at t = 8.0s. b. What is the change in the cars speed from 5-10 seconds? c. What distance is traveled by the car between t = 0 and t = 4 s d. Draw a graph of the acceleration for the cars motion between t=0s and t=14sThe motion of a person as seen by another person is described by the equation v=-3.0m/s+0.5m/s^2t. Draw a motion diagram. draw a motion potion vs time graph draw a motion velocity versus time graph draw a acceleration vs time graph say everything you can about this motion and what happens to the person when his speed becomes zero.Which of the following statements are true regarding velocity-time graphs?I. The slope of a velocity-time graph is acceleration. II. The graph has a slope of zero if the object is at rest. III. A line with negative slope indicates that the object is slowing down.3. A body moves in a straight line according to this equation of motion: s(t) = 10t² - 4t + 8, where t is measured in seconds and s in meters. a. What is its position at the end of 5 sec? b. What is the equation for its velocity v at any time t? c. What is its velocity v at the end of 5 seconds? d. What is the equation for its acceleration a at any time t? e. What is its acceleration at the end of 5 seconds?SEE MORE QUESTIONS