Preview

Compound Pendulum

Good Essays
Open Document
Open Document
672 Words
Grammar
Grammar
Plagiarism
Plagiarism
Writing
Writing
Score
Score
Compound Pendulum
The compound pendulum
Consider an extended body of mass with a hole drilled though it. Suppose that the body is suspended from a fixed peg, which passes through the hole, such that it is free to swing from side to side, as shown in Fig. 98. This setup is known as a compound pendulum. | Figure 98: A compound pendulum. |
Let be the pivot point, and let be the body's centre of mass, which is located a distance from the pivot. Let be the angle subtended between the downward vertical (which passes through point ) and the line . The equilibrium state of the compound pendulum corresponds to the case in which the centre of mass lies vertically below the pivot point: i.e., . See Sect. 10.3. The angular equation of motion of the pendulum is simply | |

where is the moment of inertia of the body about the pivot point, and is the torque. Using similar arguments to those employed for the case of the simple pendulum (recalling that all the weight of the pendulum acts at its centre of mass), we can write | |

Note that the reaction, , at the peg does not contribute to the torque, since its line of action passes through the pivot point. Combining the previous two equations, we obtain the following angular equation of motion of the pendulum: | |

Finally, adopting the small angle approximation, , we arrive at the simple harmonic equation: | |

It is clear, by analogy with our previous solutions of such equations, that the angular frequency of small amplitude oscillations of a compound pendulum is given by | |

It is helpful to define the length | |

The above equation reduces to | |

which is identical in form to the corresponding expression for a simple pendulum. We conclude that a compound pendulum behaves like a simple pendulum with effective length .

Compound pendulum
The length L of the ideal simple pendulum above, used for calculating the period, is the distance from the pivot point to the center of mass of the

You May Also Find These Documents Helpful

  • Satisfactory Essays

    The Claw

    • 474 Words
    • 2 Pages

    It was estimated that the pendulum would be off the floor at the height of a person’s hip.…

    • 474 Words
    • 2 Pages
    Satisfactory Essays
  • Satisfactory Essays

    Practice Quiz

    • 5122 Words
    • 42 Pages

    Note: The pendulum bob is released at a height below the height of the peg. A pendulum made of a string of length 10.5 m and a spherical bob of mass 7.3 kg and negligible raius swings in a vertical plane. The pendulum is released from an angular position 39 ◦ from vertical as shown in the figure below. The string hits a peg located a distance 6 m below the point of suspension and swings about the peg up to an angle α on the other side of the peg. Then, the bob proceeds to oscillate back and forth between these two angular positions.…

    • 5122 Words
    • 42 Pages
    Satisfactory Essays
  • Good Essays

    Pendulum Experiment Essay

    • 809 Words
    • 4 Pages

    The apparatus for this experiment will include the following. Firstly in order to start the experiment the stand of the pendulum will require the wood planks, nails and the brackets to hold the stand. Followed by the building string, stopwatch, nuts (weights), pegs, fishing hooks, the measuring tape and either a drill or a screwdriver which ever one is more preferable to be…

    • 809 Words
    • 4 Pages
    Good Essays
  • Satisfactory Essays

    Nt1310 Unit 6 Lab Report

    • 3292 Words
    • 14 Pages

    where h' is distance between the pivot point and the mass center of the pendulum and I is the moment of inertia of the pendulum about the pivot point. Equation 10 and 11 are used to calculate h' and I for the pendulum…

    • 3292 Words
    • 14 Pages
    Satisfactory Essays
  • Good Essays

    To achieve the backward giant circle energy lost to frictional forces and the conversion of energy must be overcome. The gymnast achieves this by varying her pendulum length (distance between the axis of rotation…

    • 353 Words
    • 2 Pages
    Good Essays
  • Good Essays

    pendulum physics

    • 1414 Words
    • 6 Pages

    Shown below is a diagram representing a "ballistic pendulum." The bullet is fired into the block, the bullet-block…

    • 1414 Words
    • 6 Pages
    Good Essays
  • Satisfactory Essays

    lab projectile motion

    • 324 Words
    • 2 Pages

    |Trial |Length of the Pendulum (L) |Time to complete period (T)|T2 |Gravity (g) | |1 |2.00 m |6.91 s |47.7 |1.66 m/sec2 | |2 |1.40 m |5.78 s |33.4 |1.65 m/sec2 | |3 |1.25 m |5.46 s |29.8 |1.66 m/sec2 | |4 |1.92 m |6.77 s...…

    • 324 Words
    • 2 Pages
    Satisfactory Essays
  • Satisfactory Essays

    To determine whether the length of string used for a simple pendulum, affects the simple pendulums capacity to define the value of acceleration due to gravity on the surface of the earth.…

    • 268 Words
    • 1 Page
    Satisfactory Essays
  • Good Essays

    Projectile Motion Lab

    • 1266 Words
    • 4 Pages

    The pendulum of a ballistic pendulum was moved back so that it would not get in the…

    • 1266 Words
    • 4 Pages
    Good Essays
  • Good Essays

    Based on our results, I feel the period of oscillation will increase at 1m. At .30cm there is a prominent change in the average period when the length of the string increased to .50cm. The same result can be seen in the when the length of the string is increased from .50cm to .70cm. Following this pattern, we can speculate that the length of the string affects the period of oscillation.…

    • 655 Words
    • 3 Pages
    Good Essays
  • Powerful Essays

    The pendulum was then grounded and returned to neutral. Repeating the charging process but this time it was only charged to 100. Using only the ruler this time, the distance was measured between the pith ball and the length of the string. Using this data and trigonometric functions, the deflection angle was calculated. The coulombs force was calculated once again, and from the equilibrium conditions the mass of the pith ball was calculated. The tension force of the string was calculated.…

    • 629 Words
    • 3 Pages
    Powerful Essays
  • Good Essays

    [->0], where L is the string length (in meters) and g is the gravitational acceleration on earth (9.8 m/s2). The formula shows that the period of the pendulum depends on the square root of the string length and the gravitational acceleration of the Earth (under normal circumstances, since we are…

    • 644 Words
    • 3 Pages
    Good Essays
  • Good Essays

    Procedure: The apparatus’ dimensions and the mass of the pendulum were measured and recorded. The angles of the pendulum were recorded at the loaded and rest position. The specimen was then placed onto the apparatus with the notch side aligned so the pendulum will hit there. The apparatus’ pendulum was dropped from a known height…

    • 656 Words
    • 3 Pages
    Good Essays
  • Better Essays

    Pendulum Physics Lab

    • 2188 Words
    • 9 Pages

    Was there any point in the motion where the velocity was zero? Explain. The velocity was at zero at every time it was turning back , Yes, as the velocity comes to 0.0m/s the position is 0.77m. As the pendulum must come to a complete stop.…

    • 2188 Words
    • 9 Pages
    Better Essays
  • Good Essays

    In this lab, the purpose was to find how mass, angle, and length affected the average period that it took for a pendulum to swing eight times. For each experiment, the pendulum had two constants either being the mass, angle, or length and had one variable being changed, also being either the mass, angle, or length. In each experiment, the pendulum took ten full swings and at the end of the tenth swing, the time was taken. Then, the time of the ten swings was divided by ten and an average period was found for that specific variable.…

    • 400 Words
    • 2 Pages
    Good Essays

Related Topics