AP Physics 1: Algebra-Based 1.3 A Describe the Position Velocity and Acceleration of an Object Using Representations of That Objects Motion Questions

Represent one-dimensional motion with motion diagrams, graphs, equations, and narratives, then connect position, velocity, and acceleration for constant acceleration.

Syllabus
Effective Fall 2024
Course
AP Physics 1: Algebra-Based

Exam points

  • translate among position-, velocity- and acceleration-time graphs, motion diagrams and descriptions
  • use graph slopes to find instantaneous velocity or acceleration and identify changing motion
  • use signed areas under velocity or acceleration graphs to find displacement or change in velocity
  • apply constant-acceleration equations to derive time, displacement, speed or acceleration in one dimension
  • design motion measurements and linearised graphs to determine acceleration while reducing uncertainty

AP Physics 1: Algebra-Based 1.3 A Describe the Position Velocity and Acceleration of an Object Using Representations of That Objects Motion Questions question 1

[Maximum number: 10]

(12 points, suggested time 25 minutes)

Question (a)

(a)

Students conduct an experiment to determine the acceleration a of a cart. The cart is released from rest at the top of the ramp at time t=0 and moves down the ramp. The x-axis is defined to be parallel to the ramp with its origin at the top, as shown in the figure. The students collect the data shown in the following table.

Table for Question (a) — AP Physics 1: Algebra-Based
[ 6 ]

Question (i)

(i)

Indicate which quantities could be graphed to yield a straight line whose slope could be used to determine the acceleration a of the cart. You may use the remaining columns in the table, as needed, to record any quantities (including units) that are not already in the table.

Vertical axis: Horizontal axis:

[ 1 ]

Question (ii)

(ii)

On the following grid, plot the appropriate quantities to create a graph that can be used to determine the acceleration a of the cart as it rolls down the ramp. Clearly scale and label all axes (including units), as appropriate. Draw a straight line that best represents the data.

Figure for Question (ii) — AP Physics 1: Algebra-Based
[ 3 ]

Question (iii)

(iii)

Using the line you drew in part (a)(ii), calculate an experimental value for the acceleration a of the cart as it rolls down the ramp.

[ 2 ]

Question (b)

(b)

The students are asked to determine an experimental value for the acceleration due to gravity gexp g_{\text {exp }} using their data.

[ 2 ]

Question (i)

(i)

What additional quantities do the students need to measure in order to calculate gexp g_{\text {exp }} from a ?

[ 1 ]

Question (ii)

(ii)

Write an expression for the value of gexp g_{\text {exp }} in terms of a.

[ 1 ]

Question (c)

(c)

On the following graphs, sketch the position x and velocity v as functions of time t that correspond to the scenario shown while the cart moves up the ramp.

Figure for Question (c) — AP Physics 1: Algebra-Based
Figure for Question (c) — AP Physics 1: Algebra-Based
Figure for Question (c) — AP Physics 1: Algebra-Based
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