Question
first picture has the information you need to do the other parts
A remote-controlled car is moving in a vacant parking lot. The velocity of the car as a function of time is given by ū– (5.00
Part C What is the magnitude of the velocity of the car at t = 6.73 s? Express your answer to three significant figures and i
Submit Request Answer Part D What is the direction (in degrees counterclockwise from +x-axis) of the velocity of the car at t
What is the magnitude of the acceleration of the car at t = 6.73 s? Express your answer to three significant figures and incl
Part F What is the direction (in degrees counterclockwise from +X-axis) of the acceleration of the car at t = 6.73 s? Express
0 0
Add a comment Improve this question Transcribed image text
Answer #1

V (5-0.018062 i +(2+0.550t)) t= 6.735 V=5-0.0180x6.73² i +2+0. STON 6.733 W = 4.18 êt 5703 |ůl = 54. 18²7 8.702 7.07 m/s oz t

Add a comment
Know the answer?
Add Answer to:
first picture has the information you need to do the other parts A remote-controlled car is...
Your Answer:

Post as a guest

Your Name:

What's your source?

Earn Coins

Coins can be redeemed for fabulous gifts.

Not the answer you're looking for? Ask your own homework help question. Our experts will answer your question WITHIN MINUTES for Free.
Similar Homework Help Questions
  • A remote-controlled car is moving in a vacant parking lot. The velocity of the car as...

    A remote-controlled car is moving in a vacant parking lot. The velocity of the car as a function of time is given by υ⃗ =[5.00m/s−(0.0180m/s3)t2]i^ + [2.00m/s+(0.550m/s2)t]j^ a> What is ax(t) the x-component of the acceleration of the car as function of time? ax(t)=(−0.0180m/s3)t ax(t)=(0.0360m/s3)t ax(t)=(−0.0360m/s3)t b> What is ay(t) the y-component of the acceleration of the car as function of time? ay(t)=2.00m/s2 ay(t)=0.550m/s2 ay(t)=(−0.550m/s2)t c> What is the magnitude of the velocity of the car at t = 6.59...

  • i already tried poaitive 65.2 A remote-controlled car is moving in a vacant parking lot. The...

    i already tried poaitive 65.2 A remote-controlled car is moving in a vacant parking lot. The velocity of the car as a function of time is given by v = [5.00 m/s - (0.0180 m/s^3)t^2]i + [2.00 m/s + (0.550 m/s^2)t]j. What is the direction (in degrees counterclockwise from +x-axis) of the acceleration of the car at t = 7.05 s ? Express your answer to three significant figures and include the appropriate units.

  • A remote-controlled car is moving in a vacant parking lot. The velocity of the car as...

    A remote-controlled car is moving in a vacant parking lot. The velocity of the car as a function of time is given by υ⃗ =[5.00m/s−(0.0180m/s3)t^2]i^ + [2.00m/s+(0.550m/s^2)t]j^. What is the direction (in degrees counterclockwise from +x-axis) of the acceleration of the car at t = 7.48 s ? Express your answer to three significant figures and include the appropriate units.

  • Part C Constants A remote-controled car is moving in a vacant parking lot. The velocity of...

    Part C Constants A remote-controled car is moving in a vacant parking lot. The velocity of the car as a unction of Sime is given by5.00 m/s (0.0180 m/e +12.00 m/s+(00 What is the magnitude of he velecity of the car at t6.50 Express your answer to three signficant figures and include the appropriate units U- 1 Value Units Part D What is the direction (in degrees counherdlockwise from*-ais) of the velocity of the car at t6.50s Express your answer...

  • Problem 12.225 Part A Cars A and B are traveling around the circular race track. At...

    Problem 12.225 Part A Cars A and B are traveling around the circular race track. At the instant shown, A has a speed of 76 ft/s and is increasing its speed at the rate of 15 ft /s2, whereas B has a speed of 113 ft/s and is decreasing its speed at 25 ft /s2. (Figure 1) Determine the relative velocity of car A with respect to car B at this instant Express your answer to three significant figures and...

  • Constants Part A The position of a squirrel running in a park is given by T[(0.280...

    Constants Part A The position of a squirrel running in a park is given by T[(0.280 m/s)t(0.0360 m/s?)t2]i- (0.0190 /)3j. What is u (t), the z-component of the velocity of the squirrel, as function of time? ○ vx(t) = (0.280 m/s)t + (0.0720 m/s*)e 。Ug(t)= (0.0720 m/s*)t O x(t) = 0.280 m/s + (0.0720 m/s)t x(t) 0.280 m/s Submit Reques Answer Part What is vy (t), the y-component of the velocity of the squirrel, as function of time? 0 ty...

  • At a given instant the roller A on the bar has the velocity v = 3...

    At a given instant the roller A on the bar has the velocity v = 3 m/s and acceleration a = 6.5 m/s2 Determine the acceleration of the roller B at this instant. Determine the bar's angular acceleration at this instant measured counterclockwise. and Acceleration = 6.5 mis - Part A At a given instant the roller 4 on the bar has the velocity n = 3 m (Figure 1) Determine the velocity of the roler at this Inalart. Express...

  • Constants Part A The position of a squirrel running in a park is given by r...

    Constants Part A The position of a squirrel running in a park is given by r [(0.280 m/s)t (0.0360 m/s2)t2]i (0.0190 m/s3)t3j Whais (t), the z-component of the velocity of the squirrel, as function of time? O Ux(t) = 0.280 m/s x(t) (0.280 m/s)t (0.0720 m/s2)t2 x(t) (0.0720 m/s2)t O vx(t) 0.280 m/s + (0.0720 m/s*)t Submit Request Answer Part B What is vy(t), the y-component of the velocity of the squirrel, as function of time? uy (t) (0.0570 m/s3)t...

  • The link AB has an angular velocity of 2.1 rad/s (Figure 1) Part A Determine the...

    The link AB has an angular velocity of 2.1 rad/s (Figure 1) Part A Determine the velocity of block C, at the instant θ 45° Express your answer to three significant figures and include the appropriate units. Enter positive value if the velocity is directed to the left and negative value if the velocity is directed to the right. ucValue Units Submit Request Answer Part B Figure 1of 1 > Determine the angular velocity of link BC at the instant...

  • The platform is rotating about the vertical axis such that at any instant its angular position...

    The platform is rotating about the vertical axis such that at any instant its angular position is 0 (482) rad, where t is in seconds. A ball rolls outward along the radial groove so that its position is r = (0.17") m, where t is in seconds. (Figure 1) Figure < Re Part A Determine the magnitude of the velocity of the ball when t124 Express your answer to three significant figures and include the appropriate units. HA @ ?...

ADVERTISEMENT
Free Homework Help App
Download From Google Play
Scan Your Homework
to Get Instant Free Answers
Need Online Homework Help?
Ask a Question
Get Answers For Free
Most questions answered within 3 hours.
ADVERTISEMENT
ADVERTISEMENT
ADVERTISEMENT