Question

A car is traveling around a horizontal circular track with radius r 190 m at a constant speed v angle θ 29 above the x axis, and the angle es* 65° below the x axis. 15 m/s as shown. The 1) What is the magnitude of the cars acceleration? m/s Submit 2) What is the x component of the cars acceleration when it is at point A m/s Submit 3) What is the y component of the cars acceleration when it is at point A m/s Submit 4) What is the x component of the cars acceleration when it is at point B m/st Submit 5) What is the y component of the cars acceleration when it is at point B m/s Submit 6) As the car passes point B, the y component of its acceleration is O increasing constant Odecreasing Submit

0 0
Add a comment Improve this question Transcribed image text
Know the answer?
Add Answer to:
A car is traveling around a horizontal circular track with radius r 190 m at a...
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
  • Car on curve 12 3 4 5 67 A car is traveling around a horizontal circular...

    Car on curve 12 3 4 5 67 A car is traveling around a horizontal circular track with radius r = 240 m at a constant speed v angle 8A 29 above the x axis, and the angle Op 58 below the x axis. 25 m/s as shown. The 1) What is the magnitude of the car's acceleration? m/s Submit 2) What is the x component of the car's acceleration when it is at point A m/ st Submit 3)...

  • A car is travelling around a horizontal circular track with radius r = 270 m. It...

    A car is travelling around a horizontal circular track with radius r = 270 m. It takes the car t = 66 s to go around the track once. The angle theta A = 19 degrees above the x axis, and the angle theta B = 56 degrees below the x axis. 1) What is the magnitide of the car? 2) What is the x component of the car's velocity when it is at point A? 3) What is the...

  • Please help with whatever you can! Thanks A car is traveling around a horizontal circular track...

    Please help with whatever you can! Thanks A car is traveling around a horizontal circular track with radius r- 280 m angle θ~ 26. above the x axis, and the angle θΒ-51, below the x axis. at a constant speed v 19 m/s as shown. The 1) What is the magnitude of the car's acceleration? 1.28 m/s2 Submit Your submissions:1.28 Computed value: 1.28 Smitted: Tuesday, January 29 at 9:21 PM Feedback: Correct 2) What is the x component of the...

  • A car is traveling around a horizontal circular track with radius r 270 m at a...

    A car is traveling around a horizontal circular track with radius r 270 m at a constant speed v 19 m/s as show angle θA-25° above the x axis, and the angle θ8" 66" below the x axis 1) What is the magnitude of the car's acceleration? m/s2 Submit You currently have 2 submissions for this question. Only 10 submission are allowed You can make 8 more submissions for this question 2) What is the x component of the car's...

  • A car starts from rest and moves around a circular track of radius 32.0 m. Its...

    A car starts from rest and moves around a circular track of radius 32.0 m. Its speed increases at the constant rate of 0.550 m/s2. (a) What is the magnitude of its net linear acceleration 19.0 s later? (b) What angle does this net acceleration vector make with the car's velocity at this time? Question 6 A car starts from rest and moves around a circular track of radius 32.0 m. Its speed increases at the constant rate of 0.550...

  • A section of a high speed test track is circular with a radius of curvature R...

    A section of a high speed test track is circular with a radius of curvature R = 1700 m. At what angle of θ should the track be inclined so that a car traveling at 77.0 m/s (172 mph) would keep moving in a circle if there is oil on that section of the track, i.e., it would not slip sideways even with zero friction on that section. (Hint: The car's vertical acceleration is zero.)

  • A section of a high speed test track is circular with a radius of curvature R...

    A section of a high speed test track is circular with a radius of curvature R = 1620 m. At what angle of θ should the track be inclined so that a car traveling at 65.0 m/s (145 mph) would keep moving in a circle if there is oil on that section of the track, i.e., it would not slip sideways even with zero friction on that section. (Hint: The car's vertical acceleration is zero.)

  • A race car enters the circular portion of a track that has a radius of 61m....

    A race car enters the circular portion of a track that has a radius of 61m. When the car enters the curve at point P, it is traveling with a speed of 120km/h that is increasing at 5m/s^2. three sec later, determine the x and y components of velocity and acceleration of the car. 120 km/h 1 The x component of the total acceleration is The y component of the total acceleration is - The xcomponent of tne inear velocty...

  • A car initially traveling eastward turns north by traveling in a circular path at uniform speed...

    A car initially traveling eastward turns north by traveling in a circular path at uniform speed as shown in the figure below. The length of the arc ABC is 230 m, and the car completes the turn in 41.0 s. (a) Determine the car's speed. 5.609m/s (b) What is the magnitude and direction of the acceleration when the car is at point B? magnitude m/s2 direction counterclockwise from the +x-axis

  • A racing car travels with a constant tangential speed of 75.0 m/s around a circular track...

    A racing car travels with a constant tangential speed of 75.0 m/s around a circular track of radius 625 m. Find |(a) The magnitude of the car's total acceleration and |(b) The direction of its total acceleration relative to the radial direction.

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