Question

51 length L=1.85 m oscillates as a physical pendulum. (a) What value of distance x between the sticks center of mass and its pivot point O gives the least period? (b) What is that least period? In Fig. 15-46, a stick of GO
L/2 L/2 Figure 15-46 Problem 51
0 0
Add a comment Improve this question Transcribed image text
Know the answer?
Add Answer to:
51 length L=1.85 m oscillates as a physical pendulum. (a) What value of distance x between...
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
  • The Physical Pendulum Points:3 A uniform stick of length L 1.0 m, width w 10.0 cm,...

    The Physical Pendulum Points:3 A uniform stick of length L 1.0 m, width w 10.0 cm, and mass M = 1.9 kg oscillates as a physical pendulum and pivots about point O as shown in the Figure. what is the period of the pendulum if x, the distance from the pivot point to the center of gravity of the pendulum, is equal to 0.30 m? し2 L/2 0.4977s Tries 2/10 Previous Tries Determine the distance x for which the period...

  • A flat, rigid object oscillates as a physical pendulum in simple harmonic motion with a frequency...

    A flat, rigid object oscillates as a physical pendulum in simple harmonic motion with a frequency f. The mass of the pendulum is m, and the pivot point is a distance d from the center of mass. What is the moment of inertia of the pendulum about its pivot point? (Use any variable or symbol stated above along with the following as necessary: g.)

  • A coat hanger of mass m = 0.248 kg oscillates on a peg as a physical...

    A coat hanger of mass m = 0.248 kg oscillates on a peg as a physical pendulum as shown in the figure below. The distance from the pivot to the center of mass of the coat hanger is d = 18.0 cm and the period of the motion is T = 1.16 s. Find the moment of inertia of the coat hanger about the pivot. _______________________=kg · m2 Pivot CM

  • Pivot point Consider the figure Center of mass where L is the length of the e<15...

    Pivot point Consider the figure Center of mass where L is the length of the e<15 Meter stick I meter stick and h is the distance between the pivot point and center of mass of the system. According to the formula T 27T whrI is the moment of mgh inertia about the pivot point. If the parallel axis theorem is used, which of the following equations will best describe an estimate of the moment of inertia of the system? 급...

  • A. (10 points) A physical pendulum consists of a uniform rod of mass m and length...

    A. (10 points) A physical pendulum consists of a uniform rod of mass m and length L pivoting by its end as shown. If the rod makes 14 complete oscillations in 17 seconds, what is the length of the rod? Solve completely symbolically before inserting values. B. (10 points) Now consider a uniform rod of mass m and length L pivoting the rod about a point L/5 from its end. What is the period of the rod? Solve completely symbolically....

  • A. (10 points) A physical pendulum consists of a uniform rod of mass m and length...

    A. (10 points) A physical pendulum consists of a uniform rod of mass m and length L pivoting by its end as shown. If the rod makes 14 complete oscillations in 17 seconds, what is the length of the rod? Solve completely symbolically before inserting values. B. (10 points) Now consider a uniform rod of mass m and length L pivoting the rod about a point L/5 from its end. What is the period of the rod? Solve completely symbolically....

  • Q23 A physical pendulum consists of a uniform meter stick that is pivoted at a small...

    Q23 A physical pendulum consists of a uniform meter stick that is pivoted at a small hole drilled through the stick at point O, which is at distance x from the center of mass of the stick, as shown in Figure 13. The period of oscillation is 2.5 s. What is the value of x? L/2 L/2 A) 0.056 nm B) 0.123 m C) 0.215 m D) 0.079 mm E) 0.432 m

  • A compound pendulum is made up of a rod of length L, with mass M and...

    A compound pendulum is made up of a rod of length L, with mass M and a solid sphere of radius r, with mass m (see figure below). The pendulum is pivoted about one end and released from rest from and angle of 0, (angle with the vertical). (a) Find the distance, dom, of center of mass of this pendulum from its pivot. (b) Draw a free body diagram and write down Newton's 2nd Law (for rotation) for the pendulum...

  • 5. 0/1 points Previous Answers SerPSE10 15.5.OP.025. My Notes A meter stick is attached to one...

    5. 0/1 points Previous Answers SerPSE10 15.5.OP.025. My Notes A meter stick is attached to one end of a rigid rod with negligible mass of length = 0.502 m. The other end of the light rod is suspended from a pivot point, as shown in the figure below. The entire system is pulled to a small angle and released from rest. It then begins to oscillate. (a) What is the period of oscillation of the system (in s)? (Round your...

  • Chapter 15, Problem 041 The pendulum in the figure consists of a uniform disk with radius...

    Chapter 15, Problem 041 The pendulum in the figure consists of a uniform disk with radius r 16.0 cm and mass 470 g attached to a uniform rod with length L = 660 mm and mass 290 g. (a) Calculate the rotational inertia of the pendulum about the pivot point. (b) What is the distance between the pivot point and the center of mass of the pendulum? (c) Calculate the period of oscillation. (a) Number Units (b) Number Units c)...

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