Question

A small block with mass 0.0400 kg is moving in the xy-plane. The net force on the block is described by the potential-energy

0 0
Add a comment Improve this question Transcribed image text
Answer #1

If block move in block 5.40 x2-3.9od U= We know that 5-302 -3.90) (0) - ()g -2X5 F0 2 x5.70x max 2X5.70xO.23 -65 m2 1 Simbul

Add a comment
Know the answer?
Add Answer to:
A small block with mass 0.0400 kg is moving in the xy-plane. The net force on...
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 small block with mass 0.0400 kg is moving in the xy-plane. The net force on...

    A small block with mass 0.0400 kg is moving in the xy-plane. The net force on the block is described by the potential- energy function U(x,y)= (6.00 J/ m 2 ) x 2 -(3.90 J/ m 3 ) y 3 . a-What is the magnitude of the acceleration of the block when it is at the point x= 0.20 m , y= 0.64 m ? Express your answer with the appropriate units. b-What is the direction of the acceleration of...

  • A small block with mass 0.0400 kg is moving in thexy-plane. The net force on the...

    A small block with mass 0.0400 kg is moving in thexy-plane. The net force on the block is described by the potential- energy function U(x,y)= (5.95 J/m2 )x2-(3.60 J/m3 )y3. a) What is the magnitude of the acceleration of the block when it is at the point x= 0.30 m , y= 0.56 m? b)What is the direction of the acceleration of the block when it is at the point x= 0.30 m , y= 0.56 m ?

  • A small block with mass 0.0400kg is moving in the xy-plane. The net force on the...

    A small block with mass 0.0400kg is moving in the xy-plane. The net force on the block is described by the potential- energy function U(x,y)= (5.90J/m2 )x2-(3.45J/m3 )y3. Part A: What is the magnitude of the acceleration of the block when it is at the point x= 0.21m , y= 0.60m ? Part B: What is the direction of the acceleration of the block when it is at the pointx= 0.21m , y= 0.60m ?

  • Constants Part A A metal bar is in the xy-plane with one end of the bar...

    Constants Part A A metal bar is in the xy-plane with one end of the bar at the origin. A force F (6.54 N)i ( 3.06 N )j is applied to the bar at the point x- 3.81 m, y 3.60 m What is the position vector r for the point where the force is applied? Enter the x and y components of the radius vector separated by a comma Submit Request Answer Part B What are the magnitude of...

  • m A block with mass m, - 8.9 kg is on an incline with an angle...

    m A block with mass m, - 8.9 kg is on an incline with an angle 8 - 24" with respect to the horizontal. For the first question there is no friction, but for the rest of this problem the coefficients of friction are: Pk - 0.23 and Ms - 0.253. 1) When there is no friction, what is the magnitude of the acceleration of the block? 3.99 m/s2 Submit Your submissions: 3.99 Computed value: 3.99 Feedback: Correct! Submitted: Wednesday,...

  • The block shown in (Figure 1) has mass m 7.0 kg and foxed smooth trictionless plane...

    The block shown in (Figure 1) has mass m 7.0 kg and foxed smooth trictionless plane tited at an angle 0 26.5 horizontal les on a Express your enswer unree sgea ngures anu inoue e apprupriae unns to the a 4.37 Subt Previous Anawers Correct Part B the block starts from rest 11.4 mup the plane from its base, what will be the block's speed when it reaches the botom of the incline? Express your answer to three significant figures...

  • Express your answer with the appropriate units. A car moving in a straight line starts at...

    Express your answer with the appropriate units. A car moving in a straight line starts at 2 = 0 at t = 0. It passes the point * = 29.0 m with a speed of 12.0 m/s at t = 3.00 s. It passes the point 2 = 375 m with a speed of 42.0 m/s at t = 20.0 S. HÅR to X o U = Value O 2 ? x•10" @ @ Units You have already submitted this...

  • Show how you solved Velocity in xy-Plane Part A A particle's position in the xy-plane is...

    Show how you solved Velocity in xy-Plane Part A A particle's position in the xy-plane is given by the vector r (ct2-5dt3)计(2ct2-de)j, where c and d are positive constants. Find the expression for the velocity (for time t> 0) when the particle is moving in the x-direction. You should express your answer in terms of the variables c and d. Submit Answer Tries o/6 Part B Find the expression for velocity (for time t > 0) when the particle is...

  • Constants A small block is attached to an ideal spring and is moving in SHM on...

    Constants A small block is attached to an ideal spring and is moving in SHM on a horizontal, frictionless surface. The amplitude of the motion is 0.260 m and the period is 3.38 s What is the acceleration of the block when 0.160 m? Express your answer with the appropriate units. IA | az = 1 Value Units Submit Request Answer Part B What is the speed of the block when -0.160 m? Express your answer with the appropriate units....

  • A particle of mass 2 kg is moving in the xy plane at a constant speed...

    A particle of mass 2 kg is moving in the xy plane at a constant speed of 0.80 m/s in the +x direction along the line y=4m.  As the particle travels from ,x= -3m to x= +3m, the magnitude of its angular momentum with respect to the origin is A] not constant B] 0 C} 4.8 kg m2/s D} 8.4 kg m2/s E} 8 kg m2/s

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