Preview

1.Experimental Test of F=Mrω2 by Whirling a Rubber Bung

Powerful Essays
Open Document
Open Document
1298 Words
Grammar
Grammar
Plagiarism
Plagiarism
Writing
Writing
Score
Score
1.Experimental Test of F=Mrω2 by Whirling a Rubber Bung
Physics Practical
TAS Lab Report
Experimental test of Fc=mrω2 by whirling a rubber bung

CHUI, WING LAM CYNTHIA
6B (3)
GROUPMATES: ANDY TAM, TOMMY LO
Date of experiment: 26-01-2011
Date of submission: 21-02-2011
I. Objective For a body moving in a uniform circular motion, measure the centripetal force acting on it and compare it with the theoretical value Fc=mrω2.
II. Theory
|Fc=mrω2 =Mg |where |Fc is the centripetal force |
| | |m is the mass of the rubber bung |
| | |M is the mass of 3 crew nuts |
|Let |T be the tension in the string |
| |L be the length of the string between the bung and the upper opening of the tube|
| |ω be the angular velocity of the rubber bung |
| |r be the radius of the circular path |
| |θ be the vertical angle of the string |

Centripetal force is the centrally directed net force acting on the body. It provides the centripetal acceleration which keeps the body moving in a circle according to Newton’s Second law (Fnet=ma). In this experiment, the tension is provided by the weight of screw nuts and the centripetal force is supplied by the tension. The tension in the string is resolved into two components(Tsinθ and Tcosθ).As there is no vertical motion, the vertical component of tension is balanced by the weight of the rubber bung (i.e. Tcosθ=mg).The horizontal component of the tension provides the net centripetal force (i.e. T=mLω2). By comparing the two values of tension, the expression of centripetal force (Fc=mrω2) can be verified
III. Apparatus
|Rubber Bung x1 |Adhesive Tape x1

You May Also Find These Documents Helpful

  • Good Essays

    A2 Physics Summary

    • 689 Words
    • 3 Pages

    Generally when asked to test a equation, we need to balance the centripetal force with gravitational force.…

    • 689 Words
    • 3 Pages
    Good Essays
  • Satisfactory Essays

    4. The net force acting on a body in uniform circular motion is constant in…

    • 514 Words
    • 3 Pages
    Satisfactory Essays
  • Satisfactory Essays

    Practice Quiz

    • 5122 Words
    • 42 Pages

    What is the net centripetal force needed to keep the car from skidding sideways? Answer in units of N 006 (part 2 of 5) 10.0 points Were there no friction between the car’s tires and the road, what centripetal force could be provided just by the banking of the road? Answer in units of N 007 (part 3 of 5) 10.0 points Now suppose the friction force is sufficient to keep the car from skidding. Calculate the magnitude of the normal force exerted on the car by the road’s surface.…

    • 5122 Words
    • 42 Pages
    Satisfactory Essays
  • Good Essays

    Lab 5

    • 1158 Words
    • 7 Pages

    3. Measure a piece of string that is approximately 120 cm in length. Tie the string around the top of the bag so that the washers cannot fall out. Suspend the bob from this string so that it measures exactly 1 m (100 cm) between where it attaches to the support and the bottom of the bob.…

    • 1158 Words
    • 7 Pages
    Good Essays
  • Satisfactory Essays

    Vocabulary: acceleration, centripetal acceleration, centripetal force, Newton’s first law, Newton’s second law, uniform circular motion, vector, velocity…

    • 1444 Words
    • 6 Pages
    Satisfactory Essays
  • Satisfactory Essays

    6. Centripetal Force- This is a force that pulls from the center of the car when in a circular motion. It’s the opposite of centrifugal force and does increase with acceleration.…

    • 484 Words
    • 2 Pages
    Satisfactory Essays
  • Good Essays

    Tubes and Drains

    • 591 Words
    • 3 Pages

    5. The Levin tube has circular markings at specific points. The tube should be inserted to what length?…

    • 591 Words
    • 3 Pages
    Good Essays
  • Satisfactory Essays

    Lab Report Physics

    • 466 Words
    • 2 Pages

    Roll a car down the plane. Position the CBR to record the acceleration of the car after it hits the wall. Note what happens to the car when it hits the wall. Measure the distance the car bounces. Record the graph of the acceleration after the car hits the wall. Now, repeat the experiment 5 times, taping a penny to the car each time. By the 5th trial, you should have 5 pennies taped to the car. Compare the 5 graphs. What do you notice about them? How does the distance the car bounced relate to the graph? Record your observations in your lab book. Discuss how you could use Newton’s Laws of Motion to describe what…

    • 466 Words
    • 2 Pages
    Satisfactory Essays
  • Good Essays

    Physics Measurements

    • 391 Words
    • 2 Pages

    2). Make a table to record all of your data. Start measuring the diameter and circumferences of all your circular objects.…

    • 391 Words
    • 2 Pages
    Good Essays
  • Satisfactory Essays

    module

    • 314 Words
    • 2 Pages

    8. Centripetal Force-a force that pulls an object that's moving in a circular motion going towards the center…

    • 314 Words
    • 2 Pages
    Satisfactory Essays
  • Satisfactory Essays

    Mass and Acceleration

    • 3043 Words
    • 10 Pages

    In this activity, you will explore the acceleration of an object that travels a circular path at constant speed. Motion of this kind is called uniform circular motion.…

    • 3043 Words
    • 10 Pages
    Satisfactory Essays
  • Satisfactory Essays

    Live Life

    • 330 Words
    • 2 Pages

    2. Attach a 1-kg mass to the end of a force meter (the force meter will measure the force required to move the mass.…

    • 330 Words
    • 2 Pages
    Satisfactory Essays
  • Satisfactory Essays

    Drivers Ed

    • 414 Words
    • 2 Pages

    8. Centripetal Force- A force that acts on an object moving in a circular path and is pulled toward the center around which the object is moving.…

    • 414 Words
    • 2 Pages
    Satisfactory Essays
  • Good Essays

    Physics Pendulum Prac

    • 367 Words
    • 2 Pages

    4. Repeat steps 2 and 3 at least five times, after shortening the string by 5cm each time.…

    • 367 Words
    • 2 Pages
    Good Essays
  • Powerful Essays

    Daniel Tan

    • 1387 Words
    • 6 Pages

    The structure and the design of a mechanism sometimes counteract the line of pull by having a tension force. This means that the tension member has to carry a both tension and bending with an increase eccentricity of the load at the back. In the experiment, the load line is outside the middle third of a square tie bar. This causes the bending moment takes over and there will be a bending deflection. A mathematical solution can be found from the eccentric loaded tie by using some differential equations. In this experiment, the students to have the opportunity to study on how to measure the transverse bending deflection of the tie bar and comparing it with the theoretical values. There are two theoretical values that are used to get the central deflection of the tie bar which are the simplified formulae and the exact formulae. One of the approximate solutions that could be obtained is by regarding the tie bar as a beam with equal and opposite couples applied which then produces circular bending. A…

    • 1387 Words
    • 6 Pages
    Powerful Essays

Related Topics