Question

In the graph the force versus displacement of a spring (shown in a separate figure attached to a mass) is given. The x-axis r
0 0
Add a comment Improve this question Transcribed image text
Answer #1

Given n=2cm F = 14ON & F = ka so *= f = 140 x 2x102 For dia 6om to -12 cm TK = Foro N/m from xiz 6am to Orrigin the force is

Add a comment
Know the answer?
Add Answer to:
In the graph the force versus displacement of a spring (shown in a separate figure attached...
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 block mass of 3 kg attached with a spring of spring constant 2000 N/m as shown in the Figure below

    Part A: 10 points each (Questions 1-4) 1. A block mass of 3 kg attached with a spring of spring constant 2000 N/m as shown in the Figure below. The amplitude or maximum displacement Xmax is 5m. Calculatea) Maximum Potential energy stored in the spring b) Maximum kinetic energy of the block c) the total energy-spring block system 2. A small mass moves in simple harmonic motion according to the equation x = 2 Cos(45t), where "x" displacement from equilibrium point in meters and "t"...

  • Consider the force-displacement graph for a spring shown. Determine the spring constant, the potential energy stored...

    Consider the force-displacement graph for a spring shown. Determine the spring constant, the potential energy stored when the spring is stretched from x = 0 to x = 4.0 cm. the change in the potential energy stored in stretching the spring from x = 1.0 cm to x = 4.0 cm. A cart having a mass M = 180 g on a friction free horizontal surface is accelerated from rest by the launching spring of problem 2. What is the...

  • A block of mass 1.8 kg is attached to a horizontal spring that has a force constant 900 N/m as shown in the figure below

    A block of mass 1.8 kg is attached to a horizontal spring that has a force constant 900 N/m as shown in the figure below. The spring is compressed 2.0 cm and is then released from rest. (a) A constant friction force of 3.4 N retards the block's motion from the moment it is released. How much is the spring compressed when the speed of the block is a maximum. (b) What is the maximum speed?

  • Consider the displacement of the spring shown in the following figure: 00000 +A The displacement x...

    Consider the displacement of the spring shown in the following figure: 00000 +A The displacement x is given by: x = A cos (wt) Where . x is the displacement at a given time t • A is the maximum displacement w is the angular frequency, which is depended in the mass attached to the spring as well as to the spring constant and t stands for the time . Compute the displacement of x for the time intervals starting...

  • (g) The relationship of the applied force F and the displacement x of a spring has...

    (g) The relationship of the applied force F and the displacement x of a spring has the gen eral form F = kx, where the constant k is called the spring constant and is a measure of the "stiffness" of the spring. Notice that this equation has the form of a straight line. Find the value of the spring constant k of the spring used in determining the experi- mental data plotted in the Fig. 1.6 graph. (Note: Because k...

  • A mass m = 2.77 kg is attached to a spring of force constant k =...

    A mass m = 2.77 kg is attached to a spring of force constant k = 44.9 N/m and set into oscillation on a horizontal frictionless surface by stretching it an amount A = 0.11 m from its equilibrium position and then releasing it. The figure below shows the oscillating mass and the particle on the associated reference circle at some time after its release. The reference circle has a radius A, and the particle traveling on the reference circle...

  • The displacement of a block attached to a horizontal spring whose spring constant is 6 N/m...

    The displacement of a block attached to a horizontal spring whose spring constant is 6 N/m is given by x=1.1cos⁡(3.4t−0.8) m. The block is of mass (kg)? The total energy of the system is (J)? What is the earliest time (t>0) when the kinetic energy equals one-half the potential energy (s)?

  • Questions 4 and 5 QUESTIONS: 1.Plot a graph of the force acting on the spring versus...

    Questions 4 and 5 QUESTIONS: 1.Plot a graph of the force acting on the spring versus spring extension. 2. (a) Use the graph to calculate the spring constant including units. () Does the spring obey Hooke's Law over the range of applied forces used? Justify your response. (e) Write the equation for the spring which describes the relationship between extension and applied force to the spring. 3. (a) Use the spring equation to calculate the extension of the spring when...

  • Part A: 10 points each (Questions 1-4 1. A block mass of 3 kg attached with a spring kg attached with a spring of s...

    Part A: 10 points each (Questions 1-4 1. A block mass of 3 kg attached with a spring kg attached with a spring of spring constant 2500 N/m as shown in the Figure below. The amplitude or maximum displacement X max is 7m. Calculate O a) Maximum Potential energy stored in the spring b) Maximum kinetic energy of the block c) the total energy-spring block system 2. A small mass moves in simple harmonic motion according to the equation x...

  • A box of mass m is pressed against (but is not attached to) an ideal spring of force constant k and negligible mass, compressing the spring a distance x.

    A box of mass m is pressed against (but is not attached to) an ideal spring of force constant k and negligible mass, compressing the spring a distance x. After i is released the box slides up a frictionless incline as shown in the figure and eventually stops. If we repeat this experiment with a box of mass 2m A) the lighter box will go twice as high up the incline as the heavier box. B) both boxes will have the same...

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