Question

Which of the following energy system(s) is (are) independent of orientation/direction? -Kinetic Energy (moving left vs...

Which of the following energy system(s) is (are) independent of orientation/direction?

-Kinetic Energy (moving left vs right)

-Rotational Kinetic Energy (spinning clockwise vs spinning anti-clockwise)

-Spring-Mass Potential Energy (being compressed vs being stretched)

-Gravitational Potential Energy (being 2 m above ground vs 2 m below ground)

I thought it was kinetic energy and spring mass potential energy but is it also rotational energy?

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

The correct options are as below:

- Kinetic Energy. since kinetic energy depends on speed, without direction of velocity

- Rotational kinetic Energy: It depends on square of angular velocity. Therefore, either angular velocity can be positive or negative.

- Spring Mass potential energy: It is proportional to square of either compression or elongation, therefore always positive.

Add a comment
Know the answer?
Add Answer to:
Which of the following energy system(s) is (are) independent of orientation/direction? -Kinetic Energy (moving left vs...
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
  • 6. Consider the system shown: m, J, R The wheel with mass m, radius R, and rotational moment of i...

    6. Consider the system shown: m, J, R The wheel with mass m, radius R, and rotational moment of inertia J rolls without slipping down the incline shown. The spring affixed to its axle has rest length h, and is neither extended nor compressed when r 0. The external force F is directed parallel to the direction of rolling. Find the total kinetic energy and potential energy in the system. Assume the gravitational potential energy to be zero when the...

  • The energy of motion is called: Kinetic energy. potential energy, inertial energy. Power. In an inelastic...

    The energy of motion is called: Kinetic energy. potential energy, inertial energy. Power. In an inelastic collision: momentum is conserved. kinetic energy is conserved, both (a) and (b). If the velocity of a moving object is doubled and its mass is cut in half, the kinetic energy of the object is; remains the same, doubled quadrupled, cut in half. When the net work done on an object is speed of the object is me on an object is zero; the...

  • Problem 3: Two billiard balls of equal mass collide, one moving with 0.5 m/s to the...

    Problem 3: Two billiard balls of equal mass collide, one moving with 0.5 m/s to the left, another with 1 m/s to the Compute their veloci ities after the collision assuming both momentum and energy are conserved right. roblem 4: hula hoop of radius 1 m and mass 0.3 kg rolls down from a hill 10 meters long, angled at 30 degrees. ompute its speed of motion at the bottom of the hill assuming (a) absence of friction to the...

  • Prelab 2: Write an expression for the conservation of energy for the system that you considered...

    Prelab 2: Write an expression for the conservation of energy for the system that you considered in Prelab 1. You may consider the system to be frictionless. The equations should include the change in gravitational potential energy of the falling mass (), the change in kinetic energy of the falling mass ) and the change in rotational kinetic energy of the platter (K-12l Prelab 3: In the following apparatus, the auxiliary platter is dropped onto the main platter Auxiliary Platter...

  • Parallel Axis Theorem: I = ICM + Md Kinetic Energy: K = 2m202 Gravitational Potential Energy:...

    Parallel Axis Theorem: I = ICM + Md Kinetic Energy: K = 2m202 Gravitational Potential Energy: AU = mgay Conservation of Mechanical Energy: 2 mv2 + u = žmo+ U Rotational Work: W = TO Rotational Power: P = TO Are Length (angle in radians, where 360º = 2a radians): S = re = wt (in general, not limited to constant acceleration) Tangential & angular speeds: V = ro Frequency & Period: Work-Energy Theorem (rotational): Weet = {102 - 10...

  • A Two-Body Collision with a Spring A block of mass m,-1.9 kg initially moving to the...

    A Two-Body Collision with a Spring A block of mass m,-1.9 kg initially moving to the right with a speed of 3.2 m/s on a frictionless, horizontal track collides with a spring attached to a second block of mass m2 - 3.9 kg initially moving to the left with a speed of 1.8 m/s as shown in figure (a). The spring constant is 505 N/m in A moving block collides with another moving block with a spring attached: (a) before...

  • Ignoring friction, the total energy of the skater is conserved. This means that the kinetic plus...

    Ignoring friction, the total energy of the skater is conserved. This means that the kinetic plus potential energy at one location, say E1=K1+U1, must be equal to the kinetic plus potential energy at a different location, say E2=K2+U2. This is the principle of conservation of energy and can be expressed as E1=E2. Since the energy is conserved, the change in the kinetic energy is equal to the negative of the change in the potential energy: K2❝K1=❝(U2❝U1), or ΝK1=❝ΝU2. Select the...

  • An electron with a kinetic energy equal to 40 J is moving in an electric field....

    An electron with a kinetic energy equal to 40 J is moving in an electric field. The electric field produces a force the slow the electron to a stop. How much work in Joules is done on the electron? Enter only the numerical value. Submit response An electron with 50 J of energy enters a magnetic field. The magnetic field changes the direction of the electron to follow a helical path, but keeps a constant speed. How much work in...

  • 2. The energy of the mass-spring system is given by the sum of the kinetic energy and the potenti...

    using matlab help to answer #2 please show steps in creating code 2. The energy of the mass-spring system is given by the sum of the kinetic energy and the potential energy. In the absence of damping, the energy is conserved (a) Add commands to LAB05ex1 to compute and plot the quantity E-m k2 as a function of time. What do you observe? (pay close attention to the y-axis scale and, if necessary, use ylim to get a better graph)....

  • Engineers are designing a system by which a falling mass m imparts Kinetic energy to a...

    Engineers are designing a system by which a falling mass m imparts Kinetic energy to a rotating uniform drum to which it is attached by thin, very light wire wrapped around the rim of the drum (the figure (Figure 1)) There is no appreciable friction in the axle of the drum, and everything starts from rest This system is being tested on earth but it is to be used on Mars, where the acceleration due to gravity is 3 71...

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