QUESTION IMAGE
Question
test information
description
instructions from the list of choices, select the one best answer.
multiple attempts not allowed. this test can only be taken once.
force completion this test can be saved and resumed later.
your answers are saved automatically.
question completion status:
1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25
moving to another question will save this response.
question 4 of 25
question 4
4 points save answer
(problem reference 3 - 1) a puck is moving on a frictionless air hockey table. relative to an x,y coordinate system at time t0 = 0 s, the x components of the pucks initial velocity and acceleration are v0x = + 1.0 m/s and ax = +2.0 m/s². the y - components of the pucks initial velocity and acceleration are v0y = + 2.0 m/s and ay = -2.0 m/s².
find the direction of the pucks final velocity at time t = 0.50 s. specify the direction relative to the +x axis
a. 63°
b. 72°
c. 45°
d. 27°
Step1: Find x - component of final velocity
Use the equation $v_x=v_{0x}+a_x t$. Given $v_{0x} = 1.0\ m/s$, $a_x=2.0\ m/s^2$ and $t = 0.50\ s$. Then $v_x=1.0+2.0\times0.50=1.0 + 1.0=2.0\ m/s$.
Step2: Find y - component of final velocity
Use the equation $v_y=v_{0y}+a_y t$. Given $v_{0y}=2.0\ m/s$, $a_y=- 2.0\ m/s^2$ and $t = 0.50\ s$. Then $v_y=2.0+( - 2.0)\times0.50=2.0 - 1.0 = 1.0\ m/s$.
Step3: Find the direction of the velocity
Use the formula $\theta=\arctan(\frac{v_y}{v_x})$. Substitute $v_x = 2.0\ m/s$ and $v_y=1.0\ m/s$ into the formula. $\theta=\arctan(\frac{1.0}{2.0})\approx27^{\circ}$.
Snap & solve any problem in the app
Get step-by-step solutions on Sovi AI
Photo-based solutions with guided steps
Explore more problems and detailed explanations
d. $27^{\circ}$