The figure shows a rigid structure consisting of a circular hoop of radius R and mass m, and a square made of four thin bars, each of length R and mass m. The rigid structure rotates at a constant speed about a vertical axis, with a period of rotation of 1.1 s. If R = 0.9 m and m = 4.2 kg, calculate the angular momentum about that axis
Q: At the instant of the figure, a 1.6 kg particle P has a position vector of magnitude 1.7 m and angle…
A:
Q: A fan has four blades attached to a central shaft. The blades are If = 15 cm long and each blade…
A:
Q: A particle of mass 6.2 kg has position vector r = (1.9î – 3.4j) m at a particular instant of time…
A: Given Data:- Mass of the particle is m=6.2 kg Position vector of the particle is r→=1.9i^-3.4j^ m…
Q: Two particles of masses M1=2Kg and M2=3Kg are attached to the ends of a 2.4 meter long light…
A: Answer:- A) L=86.4kgm^2/s Option A is correct Answer.
Q: A 4.2 m diameter merry go round is rotating freely with an angular velocity of 0.6 rad/s. If its…
A: The expression for the final angular velocity is,
Q: A spherical satellite of approximately uniform density with radius 5.7 m and mass 240 kg is…
A: Given:- Aspherical satellite of approximately uniform density with radius r = 5.7 m and mass m=…
Q: A light rigid rod of length ℓ = 1.00 m in length rotates about an axis perpendicular to its length…
A: The angular momentum of a mass rotating about a fixed axis of rotation is given as L=IωI is the…
Q: Consider the rectangular block of mass, M = 2Kg and length L = 2m. Two cylindrical disks (each disk…
A: a) Let the initial velocity of the rectangular block be vin, and L be the length of the rod.…
Q: The 4-kg rod AB can slide freely inside the 6-kg tube. The rod was entirely within the tube (x = =…
A: Given: Mass of the rod AB is Mr=4kg Mass of the tube CDis Ml=6kg Angular velocity of the assembly…
Q: As shown, three particles on a rigid rod of negligible mass are rotating about the x axis with an…
A:
Q: o ice skaters, whose masses are 55 kg and 85 kg, hold hands and rotate about a vertical axis that…
A:
Q: At one instant, force F = 1.61 N acts on a 0.215 kg object that has position vector 7 = (8.77î –…
A:
Q: A 4.2 m diameter merry go round is rotating freely with an angular velocity of 0.8 rad/s. If its…
A:
Q: A sanding disk with rotational inertia 0.0012 kg-m2 is attached to an electric drill whose motor…
A:
Q: A particle of mass 4.4 kg has position vector r= (1.9î – 3.4j) m at a particular instant of time…
A:
Q: The figure shows a rigid structure consisting of a circular hoop of radius R and mass m, and a…
A:
Q: A turntable has a moment of inertia of 3.00´ 10-2 kg×m2 and spins freely on a frictionless bearing…
A:
Q: A rod 2-meter long rod is initially at rest and is fixed on its right side, which acts as its axis…
A: Torque = moment of inertia *angular acceleration Angular momentum = moment of inertia * angular…
Q: A satellite is spinning at 6.0 rev/s. The satellite consists of a main body in the shape of a sphere…
A:
Q: Two 3.90 kg balls are attached to the ends of a thin rod of length 29.0 cm and negligible mass. The…
A:
Q: Two 3.90 kg balls are attached to the ends of a thin rod of length 29.0 cm and negligible mass. The…
A: Mass of each ball: The length of the rod: The mass of the putty: Speed of putty just before the…
Q: The Cavendish balance shown in the figure below has two large lead balls, each of mass M = 1.5 kg,…
A: The given values are,
Q: A 0.22-kg gerbil runs in place with a linear speed of 0.40 m/s on an exercise wheel that is shaped…
A: m=5.5×10-3 kgv=0.4 m/sl=9×10-2 m And,
Q: A woman with mass 50 kg is standing on the rim of a large horizontal disk that is rotating at 0.80…
A: The unit of angular momentum is kg m²/s.
Q: A child is 80kg and starts running at 2m/s. He then jumps on a merry-go-round that has a radius of…
A:
Q: A sanding disk with rotational inertia 0.0012 kg-m² is attached to an electric drill whose motor…
A:
Q: Determine the angular momentum of the system about the origin when the speed of each particle is…
A: Given Length of rod L = 1.00 m m1 = 4.00 kg m2 = 3.00 kg speed of both the particles v = 4.00 m/s
Q: A disk of mass M is spinning freely at 9.11 rad/s when a second identical disk, initially not…
A: Given data: Angular velocity, ω=9.11 rad/s
Q: At a particular instant, a 1.0 kg particle's position is r = (4.0î − 2.0ĵ + 3.0) m, its velocity is…
A: (a) Angular momentum L→=r→×p→=r→×mv→=4.0 i^ − 2.0 j^ + 3k^×1.0-1.0 i^+ 2.0 j^+1.0 k^=4.0 i^ − 2.0 j^…
Q: A thin rod of mass M and length L is struck at one end by a ball of clay of mass m, moving with…
A:
Q: A light, rigid rod of length ℓ = 1.00 m joins two particles, with masses m1 = 4.00 kg and m2 =…
A: Angular momentum of particle of mass moving with velocity V→ about origin is given by…
Q: The figure shows an overhead view of a 2.90 kg plastic rod of length 1.20 m on a table. One end of…
A: Given Data: The mass of a plastic rod is, mrod=2.90 kg The length of a plastic rod is, lrod=1.20 m…
The figure shows a rigid structure consisting of a circular hoop of radius R and mass m, and a square made of four thin bars, each of length R and mass m. The rigid structure rotates at a constant speed about a vertical axis, with a period of rotation of 1.1 s. If R = 0.9 m and m = 4.2 kg, calculate the
I got 36.5 but it was wrong


Trending now
This is a popular solution!
Step by step
Solved in 2 steps with 1 images

- 4 rod of mass 7 kg and length 3 m is pivoted at one end. The rod rotates about the pivot point with angular speed 4 rad/s. What is the rod's angular momentum about the pivot point? a) 21 kg m²/s 5) 42 kg · m²/s :) 84 kg m²/s 1) 168 kg · m²/s e) 252 kg · m? /sThe figure shows a rigid structure consisting of a circular hoop of radius R and mass m, and a square made of four thin bars, each of length R and mass m. The rigid structure rotates at a constant speed about a vertical axis, with a period of rotation of 4.6 s. If R = 1.0 m and m = 3.6 kg, calculate the angular momentum about that axis. Number i Units TAL Rotation axis 2RWhile a 0.5 kg bird flies parallel to the ground, it hits a vertical rod hinged on the ground as shown in the figure. The rod is smooth, homogeneous and 1 m long. The mass of the rod is 2 kg. After the collision, the bird falls to the ground, stunned. In this case, (a) find the angular velocity of the rod just after the bird strikes. (b) What is the angular velocity of the rod when it hits the ground?
- In the instant of the figure, two particles move in an xy plane. Particle P, has mass 6.73 kg and speed v, = 4.53 m/s, and it is at distance = 9.78 m from point O. Particle P2 has mass 2.02 kg and speed v2 = 6.42 m/s, and it is at distance d2 = 6.36 m from point O. What is the magnitude of the net angular momentum of the two particles about O? L. V2 -d2 P2A merry-go-round can be approximated as a solid disk of mass M = 100 kg (the base) and a 20-kg thin cylindrical shell (railing) around the edge of the disk. The diameter of the merry-go-round is 2.0 m. A point-like 30-kg child sits on the edge as her mother pushes to get it rotating at 5.0 rad/s. What is the angular momentum of the merry-go-round+child system?The figure shows a rigid structure consisting of a circular hoop of radius R and mass m, and a square made of four thin bars, each of length R and mass m. The rigid structure rotates at a constant speed about a vertical axis, with a period of rotation of 2.4 s. If R = 1.7 m and m = 4.2 kg, calculate the angular momentum about that axis. Number Units R Rotation axis от 2R ོ་
- A woman with mass 50 kg is standing on the rim of a large horizontal disk that is rotating at 0.80 rev/s about an axis through its center. The disk has mass 110 kg and radius 4.0 m. Calculate the magnitude of the total angular momentum of the woman–disk system. (Assume that you can treat the woman as a point.)The figure shows a small piece of clay colliding into a disk. The disk is initially at rest, but can rotate about a pivot fixed at its center. The collision is completely inelastic.The disk has mass M = 4.84 kilograms and radius R = 0.74 meters. The clay has mass m = 285 grams and is moving horizontally at vi = 3.88 m/s just before colliding with and sticking to the disk. The clay strikes the edge of the disk at a location of b = 0.505 meters offset from the center of the disk. Note that the size of the clay is negligible compared to the radius of the disk. 1. Calculate the angular speed (rad/s) of the disk just after the collision.Three light rods of negligible mass are joined to form an equilateral triangle of length L = 1.90 m. Three masses m, 6.00 kg, m, = 9.00 kg, and %D m3 3.00 kg are fixed to the vertices of this triangle as shown in the diagram below. Treat the masses as point particles. m, L L m, L/2 L/2 т, (a) What is the moment of inertia of the system about an axis lying in the plane of the triangle, passing through the midpoint of one side and the opposite vertex as shown by the dashed line? kg · m2 (b) What is the moment of inertia of the system about an axis passing through the center of the triangle and perpendicular to its plane? kg · m2
- A light, rigid rod of length ℓ = 1.00 m joins two particles, with masses m1 = 4.00 kg and m2 = 3.00 kg, at its ends. The combination rotates in the xy-plane about a pivot through the center of the rod (see figure below). Determine the angular momentum of the system about the origin when the speed of each particle is 4.20 m/s. (Enter the magnitude to at least two decimal places in kg · m2/s.) magnitude=------ b) What If? What would be the new angular momentum of the system (in kg · m2/s) if each of the masses were instead a solid sphere 10.5 cm in diameter? (Round your answer to at least two decimal places.) ----kg*m^2/sA solid cylinder of mass 4 kg and radius 2 m rotates with constant angular velocity of 5 rad/s about an axis through its center. What is the angular momentum of the cylinder?A spherical satellite of approximately uniform density with radius 4.8 m and mass 215 kg is originally moving with velocity (2600, 0, 0) m/s, and is originally rotating with an angular speed 2 rad/s, in the direction shown in the diagram. A small piece of space junk of mass 6.0 kg is initially moving toward the satellite with velocity (-2200, 0, 0) m/s. The space junk hits the edge of the satellite as shown in the figure below, and moves off with a new velocity ( 1300, 480, 0) m/s. Both before and after the collision, the rotation of the space junk is negligible. V3 L Part 1 Ux = Uy = @1 (a) Just after the collision, what are the components of the center-of-mass velocity of the satellite (v, and vy) and its rotational speed w? (For Ux, enter your answer to at least four significant figures.) Part 2 Mi @= i i Save for Later i M, R, 1 V2 m m/s m/s rad/s (b) Calculate the rise in the internal energy of the satellite and space junk combined. J Attempts: 0 of 10 used Submit Answer