Question

7. We construct a rotating object from four uniform rods (lying in the same plane), each of mass 1.2 kg and length 1.5 m join
0 0
Add a comment Improve this question Transcribed image text
Answer #1

Moment of Inertia of one rod about 20Nm its end tme2 T= 4x ( Mey) = y me?=4x1-86.592 = 3.6 kgm2 (b) T=IX - I- 20 m2 (C) Wes w

Add a comment
Know the answer?
Add Answer to:
7. We construct a rotating object from four uniform rods (lying in the same plane), each...
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
  • 8. A uniform rod of length 1.0 m and mass 0.80 kg has small 0.30 kg...

    8. A uniform rod of length 1.0 m and mass 0.80 kg has small 0.30 kg attached to either end. It is made to rotate in a horizontal plane about an axis through its center The system starts from rest and after 8.0 s it is rotating at 5.0 a) What is the object's angular acceleration in ind? 0.30 kg 0.kg 0.30 kg 1.0 m b) How many revolutions did the object make in the 8.0 s it was speeding...

  • 8. Th e moment of inertia for a wagon wheel can be calculated by taking the sum of the moment of ...

    8. Th e moment of inertia for a wagon wheel can be calculated by taking the sum of the moment of inertia for a hoop (radius 1.2 m) rotating about a Cylinder axis (mass 3 kg) and three rods of length 1.2 m, rotating about their center perpendicular to their length, each of mass o.8 kg. If the wheel is rotating at an angular speed of 2.5 rad/s, what is the wagon wheel's kinetic energy as it spins in place?...

  • rods of negligible mass lying along the y axis connect three particles. The system rotates about...

    rods of negligible mass lying along the y axis connect three particles. The system rotates about the x axis with an angular peed of 3.70 rad/s. (a) Find the moment of inertia about the x axis. kg middot m^2 (b) Find the total rotational kinetic energy evaluated from 1/2 I omega^2. J (c) Find the tangential speed of each particle. 4.00 kg particle m/s 2.00 kg particle m/s 3.00 kg particle m/s (d) Find the total kinetic energy evaluated from...

  • A uniform disk with mass M and radius R is rotating about an axis through its center-of-mass.

    A uniform disk with mass M and radius R is rotating about an axis through its center-of-mass. The axis is perpendicular to the disk. The moment of inertial for the disk with a central axis is I MR2. Two non-rotating smaller disks, each with mass M2 and radius R/4, are glued on the original disk as shown in the figure. (a) Show that the ratio of the moments of inertia is given by  I'/I = 35/16, where I' is the moment...

  • Multiple Choice (select the best answer) (2 pts each 1. Consider a uniform hoop of radius...

    Multiple Choice (select the best answer) (2 pts each 1. Consider a uniform hoop of radius R and mass M rolling without slipping. Which is larger, its translational kinetic energy or its rotational kinetic energy? A) Translational kinetic energy is larger B) Rotational kinetic energy is larger. C) Both are equal. D) You need to know the speed of the hoop to tell. 2. A disk and a hoop of the same mass and radius are released at the same...

  • positive direction) Multiple Choice 15% each! 1. A solid uniform sphere of mass 1.85 kg and...

    positive direction) Multiple Choice 15% each! 1. A solid uniform sphere of mass 1.85 kg and diameter 45.0 cm spins about an axle through its center. Starting with an angular velocity of 2.40 revisit stops after turning through 18.2 rev with uniform acceleration. The net torque acting on this sphere as it is slowing down is dosest to (A) 0.0466 Nm (B) 0.00593 Nm (C) 0.0620 Nm (D) 0.149 Nm (E) 0.0372 Nm 2. If the torque on an object...

  • A uniform rod of mass 2.00 kg and length 2.00 m is capable of rotating about...

    A uniform rod of mass 2.00 kg and length 2.00 m is capable of rotating about and passing through its center and perpendicular to its length. A mass m, m, 2.70 kg is attached to the other end of the red treat the two massess point partides. 5.50 kg is attached to one end and a seconds (a) What is the moment of inertia of the system in kg.my (6) If the rod rotates with an angular speed of 2.60...

  • If a rigid body is rotating about its central axis with a rotational kinetic energy of...

    If a rigid body is rotating about its central axis with a rotational kinetic energy of 3.78 J and it has a moment of inertia equal to 5.08 kg*m^2, what is its angular momentum? Answer in kg*m^2/s.

  • 4. A student (mass= 60.0 kg) is standing on a rotating platform (mass= 200 kg). Treat...

    4. A student (mass= 60.0 kg) is standing on a rotating platform (mass= 200 kg). Treat the platform as a uniform cylinder with a radius 1.50 m, and treat the student as a point object. The student is standing right on the edge. The platform starts at rest. A friend then exerts a constant torque on the platform. This causes the angular speed of the platform to increase to 0.8 rad/s over a time of 5.0 s, at which point...

  • A rigid object rotating about a fixed axis has an angular momentum L=7.0 kg m2 /s...

    A rigid object rotating about a fixed axis has an angular momentum L=7.0 kg m2 /s and a kinetic energy K=21.3 J. What is the rotational inertia I of the object? A rigid object rotating about a fixed axis has an angular momentum L=7.0 kg m2/s and a kinetic energy K=21.3 J. What is the rotational inertial of the object? Select one: I=1.27 kg m 2 1=1.61 kg m 2 1=0.92 kg m^2 I=1.15 kg m 2 I=1.50 kg m...

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