Question

a)consider a puck (mass=0.40kg) that moves over a frictionless surface in one-dimensional motion along an axis....

a)consider a puck (mass=0.40kg) that moves over a frictionless surface in one-dimensional motion along an axis. a force of 3.3 N, directed along the x-axis, is exerted on the puck. What is the acceleration of the puck?

b) Consider the same puck hanging vertically from a rubber bungee cord 1.24m above the ground. What is the magnitude of the force exerted on the puck in the downward direction?

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

40 b)

I will be glad to see your comment if you have any query and thumb up if you are satisfied. Thanks...

Add a comment
Know the answer?
Add Answer to:
a)consider a puck (mass=0.40kg) that moves over a frictionless surface in one-dimensional motion along an axis....
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 mass of 7 kg is resting on a horizontal, frictionless surface. Force 1 is applied...

    A mass of 7 kg is resting on a horizontal, frictionless surface. Force 1 is applied to it at 23 degrees below the horizontal, force 2 has a magnitude of 19 N and is applied vertically downward, force 3 has a magnitude of 3 N and is applied vertically upwards, and force 4 has a magnitude of 21 N and is applied in the-x direction to the object. When these forces are applied to the object, the object moves 9...

  • An object is suspended from the ceiling by a spring aligned along a vertical x axis,...

    An object is suspended from the ceiling by a spring aligned along a vertical x axis, with upward defined as the positive x direction. When the spring is at its relaxed length, the object is at the origin of the axis. The object is pulled down to position −x1, held at rest, and released. Consider its motion from the instant of release until the instant it returns to −x1. Ignore friction, air drag, and the inertia of the spring. part...

  • 3) A mass of 5 kg is resting on a horizontal, frictionless surface. Force 1 is...

    3) A mass of 5 kg is resting on a horizontal, frictionless surface. Force 1 is applied to it at 20 degrees below the horizontal in the -x direction, force 2 has a magnitude of 88 N and is applied in the +x direction , and force 3 has a magnitude of 25 N and is applied vertically downwards. When these forces are applied, the normal force acting on the mass is twice the amount of its weight. Also, when...

  • Consider two masses: Mi=2.0 kg and M2 =1.5 kg. Mass Mı moves on a horizontal surface...

    Consider two masses: Mi=2.0 kg and M2 =1.5 kg. Mass Mı moves on a horizontal surface where the coefficient of kinetic friction 4k = 0.40. Mass M2 is hanging freely. Two masses are connected by a strong cord of negligible mass that extends over a pulley. M = 2.0 kg 2 MK = 0.40 My = 1.5 kg a) Draw Free Body Diagrams for the two objects b) Write the equations for the two masses in the direction of motion...

  • Consider two masses: M=2.0 kg and M2 =1.5 kg. Mass M, moves on a horizontal surface...

    Consider two masses: M=2.0 kg and M2 =1.5 kg. Mass M, moves on a horizontal surface where the coefficient of kinetic friction Mk = 0.40. Mass M2 is hanging freely. Two masses are connected by a strong cord of negligible mass that extends over a pulley. M - 2.0 kg He=0.40 M = 1.5 kg a) Draw Free Body Diagrams for the two objects b) Write the equations for the two masses in the direction of motion ( both x...

  • A particle of mass m moves in one dimension along the positive x axis. It is...

    A particle of mass m moves in one dimension along the positive x axis. It is acted on by a constant force directed toward the origin with magnitude B, and an inverse-square law repulsive force with magnitude A/x^2. Find the potential energy function, U(x). Sketch the energy diagram for the system when the maximum kinetic energy is K_0 = 1/2 mv_0^2 Find the equilibrium position, x_0.

  • A mass on a spring moving along the x-axis in simple harmonic motion starts from the equilibrium ...

    A mass on a spring moving along the x-axis in simple harmonic motion starts from the equilibrium position, the origin, at -0 and moves to the right (consider the right to be the positive x direction). The amplitude of its motion is 1.75 cm and its period is 0.667 s. You observe the motion for 5 seconds. a. At what time(s) in those 5 seconds do you observe the n 3. x=0 +X Ax acceleration? At what time(s) does in...

  • A charged particle moves along the x-axis through a region with a uniform magnetic field that...

    A charged particle moves along the x-axis through a region with a uniform magnetic field that is oriented to lie in the x-y plane. Part a) Assume that the particle has a net charge of +669 μC and is moving with a velocity of 464 m/s​​ in the +x direction at a particular instant. In that region of space, there is a uniform magnetic field of 1.91T directed in the x-y plane at an angle of +29.8 ∘ relative to...

  • Work Done by Normal Force Consider an object sliding along the surface shown below. Choose and...

    Work Done by Normal Force Consider an object sliding along the surface shown below. Choose and show a direction of motion for the object and show the direction of the normal force. Use this figure to do the scalar product given below. oM bns av W, n-s Is the work done by the normal force exerted between two colliding objects also zero? Explain. Work Done by Weight Unlike the normal and kinetic friction forces, the direction of an object's motion...

  • A mass on a spring moving along the x-axis in simple harmonic motion starts from the...

    A mass on a spring moving along the x-axis in simple harmonic motion starts from the equilibrium position, the origin, at t=0 and moves to the right (consider the right to be the positive x direction). The amplitude of its motion is 3.00cm and the frequency is 1.50Hz. At what earliest time does the mass have the maximum positive acceleration (i.e. pointing in the positive x direction)? A. t=0.667 seconds B. t=1.50 seconds C. t=0.500 seconds D. t=0.167 seconds E....

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