The point of this question is to compare rest energy and kinetic energy at low speeds. A baseball is moving at a speed of 17m/s. Its mass is 145g(0.145kg). (a) What is its rest energy? (b) Is it okay to calculate its kinetic energy using the expressionrole="math" localid="1657713286046" 12mv2? (c) What is its kinetic energy? (d) Which is true? A. the kinetic energy is approximately equal to the rest energy. B. the kinetic energy is much bigger than the rest energy. C. the kinetic energy is much smaller than the rest energy.

Short Answer

Expert verified

(a) The rest energy is, 1.305×10'8J

(b) The kinetic energy is, 20.95J

(c) The kinetic energy of the body is the energy that the body holds due to motion. This is the work done to the body to accelerate from a standstill to a constant speed

(d) The kinetic energy is much smaller than the rest energy

Step by step solution

01

Identification of the given data

The given data can be listed below as,

- The mass of baseball is, m=0.145kg

- The speed of baseball is, v=17m/s

02

Significance of rest energy

Energy is equivalent to the mass of a particle at rest in an inertial frame of reference, energy equal to its rest mass multiplied by the square of the speed of light.

03

(a) Determination of the rest energy

The relation of rest energy is expressed as,

E0=mc2

(i)

Here E0is the rest energy, mis the mass of the baseball and cis the speed of light. Substitute 0.145kgfor mand 3×108m/sfor cin the equation (i).

E0=0.145kg×3×108m/s2

=1.305×1016J

Hence the rest energy is, 1.305×10'8J.

04

(b) Determination of the kinetic energy

The relation of kinetic energy is expressed as,

K-12mv2

Here Kis the kinetic energy, mis the mass of the baseball and vis the speed of baseball.

Substitute 0.145kgand 17m/sfor Vin the above equation.

K=12×0.145kg×(17m/s)2

=20.95J

Hence the kinetic energy is,20.95J

05

(c) Determination of the kinetic energy

The kinetic energy of the body is the energy that the body holds due to motion. This is the work done to the body to accelerate from a standstill to a constant speed.

06

(d) Determination of the kinetic energy is equal to the rest energy or greater than the rest energy

From the result of part (a) and part (b) the rest energy and kinetic energy is expressed as,

E0=1.305×1016J

K=20.95J

Here , hence kinetic energy is much smaller than the rest energy.

Unlock Step-by-Step Solutions & Ace Your Exams!

  • Full Textbook Solutions

    Get detailed explanations and key concepts

  • Unlimited Al creation

    Al flashcards, explanations, exams and more...

  • Ads-free access

    To over 500 millions flashcards

  • Money-back guarantee

    We refund you if you fail your exam.

Over 30 million students worldwide already upgrade their learning with Vaia!

One App. One Place for Learning.

All the tools & learning materials you need for study success - in one app.

Get started for free

Most popular questions from this chapter

Calculate the approximate ratio of the binding energy of O2(about 5eV) to the rest energy of O2. Most oxygen nuclei contain 8 protons and 8 neutrons, and the rest energy of a portion or neutron is about 940 MeV. Do you think you could use a laboratory scale to detect the difference in mass between a mole of molecular oxygen (O2)and two moles of atomic oxygen?

You push a crate3 m across the floor with aforce whose direction is30° below the horizontal. How much work do you do?

Figure 6.76 shows the path of a comet orbiting a star.

(a) Rank-order the locations on the path in terms of the magnitude of the comet’s momentum at each location, starting with the location at which the magnitude of the momentum is the largest. (b) Rank-order the locations on the path in terms of the comet’s kinetic energy at each location, starting with the location at which the kinetic energy is the largest. (c) Rank-order the locations on the path in terms of the potential energy of the system at each location, largest first. (d) Rank-order the locations on the path in terms of the sum of the kinetic energy and the potential energy of the system at each location, largest first

You pull your little sister across a flat snowy field on a sled. Your sister plus the sled have a mass of 20 kg. The rope is at an angle of 35 degrees to the ground. You pull a distance of 50 m with a force of 30 N. How much work do you do?

The point of this question is to compare rest energy and kinetic energy at high speeds. An alpha particle (a helium nucleus) is moving at a speed of 0.9993times the speed of light. Its mass is 6.40×10-27kg(a) what is its rest energy? (b) Is it okay to calculate its kinetic energy using the expressionK-12mv2?(c) What is its kinetic energy? (d) Which is true? A. the kinetic energy is approximately equal to the rest energy. B. The kinetic energy is much bigger than the rest energy. C. The kinetic energy is much smaller than the rest energy.

See all solutions

Recommended explanations on Physics Textbooks

View all explanations

What do you think about this solution?

We value your feedback to improve our textbook solutions.

Study anywhere. Anytime. Across all devices.

Sign-up for free