Question

In: Physics

A slender rod with a length of 0.280 m rotates with an angular speed of 8.00...

A slender rod with a length of 0.280 m rotates with an angular speed of 8.00 rad/s about an axis through one end and perpendicular to the rod. The plane of rotation of the rod is perpendicular to a uniform magnetic field with a magnitude of 0.620 T .

1)What is the induced emf in the rod?

E= V

2)What is the potential difference between its ends?

V=

3)Suppose instead the rod rotates at 8.00 rad/srad/s about an axis through its center and perpendicular to the rod. In this case, what is the potential difference between the ends of the rod?

V=

4)Suppose instead the rod rotates at 8.00 rad/srad/s about an axis through its center and perpendicular to the rod. In this case, what is the potential difference between the center of the rod and one end?

V=

Solutions

Expert Solution


Related Solutions

A wheel rotates with a constant angular acceleration of 3.0 rad/. If the angular speed of...
A wheel rotates with a constant angular acceleration of 3.0 rad/. If the angular speed of the wheel is 2 rad/s at t = 0, through what angular displacement does the wheel rotate in 2 s? 10 rad. 6 rad. 15 rad. 4 rad. 12 rad. Based on question number 3, through how many revolutions has the wheel turned during this time interval?   4 rev. 3 rev. 1.6 rev. 5 rev. 2 rev. Based on question number 3, what is...
A slender rod with length L has a mass per unit length that varies with distance...
A slender rod with length L has a mass per unit length that varies with distance from the left end, where ? = 0, according to ??/?? = ??, where ? has units of kg/m^2 a. Calculate the total mass M of the rod in terms of ? and L. b. Use the equation ? = ∫ ?=?? to calculate the moment of inertia of the rod for an axis at the left end, perpendicular to the rod. Express your...
A rod of length L has a charge per unit length λ. The rod rotates around...
A rod of length L has a charge per unit length λ. The rod rotates around its center at angular frequency ω. Using the dipole approximation, find the power radiated by the rotating rod.
A disk rotates with constant angular acceleration. The initial angular speed of the disk is 2?...
A disk rotates with constant angular acceleration. The initial angular speed of the disk is 2? rad/s. After the disk rotates through 20? radians, the angular speed is 3? rad/s. (a) What is the magnitude of the angular acceleration? rad/s2 (b) How much time did it take for the disk to rotate through 20? radians? s (c) What is the tangential acceleration of a point located at a distance of 3 cm from the center of the disk? m/s2
The 25-lb slender rod has a length of 6 ft. Using a collar of negligible mass,...
The 25-lb slender rod has a length of 6 ft. Using a collar of negligible mass, its end A is confined to move along the smooth circular bar of radius 32√ ft. End B rests on the floor, for which the coefficient of kinetic friction is μB = 0.28. The bar is released from rest when θ = 30∘. Determine the angular acceleration of the bar at this instant, measured clockwise.
A student on a piano stool rotates freely with an angular speed of 3.05 rev/s ....
A student on a piano stool rotates freely with an angular speed of 3.05 rev/s . The student holds a 1.25 kg mass in each outstretched arm, 0.749 m from the axis of rotation. The combined moment of inertia of the student and the stool, ignoring the two masses, is 5.53 kg⋅m2 , a value that remains constant. Part A As the student pulls his arms inward, his angular speed increases to 3.65 rev/s . How far are the masses...
A student on a piano stool rotates freely with an angular speed of 3.05 rev/s ....
A student on a piano stool rotates freely with an angular speed of 3.05 rev/s . The student holds a 1.05 kg mass in each outstretched arm, 0.779 m from the axis of rotation. The combined moment of inertia of the student and the stool, ignoring the two masses, is 5.53 kg⋅m2 , a value that remains constant. Calculate the initial kinetic energy of the system. Calculate the final kinetic energy of the system. Please list every steps
Rod OA rotates counterclockwise with a constant angular velocity of = 5 rad/s. The double collar...
Rod OA rotates counterclockwise with a constant angular velocity of = 5 rad/s. The double collar B is pin connected together such that one collar slides over the rotating rod and the other slides over the horizontal curved rod, of which the shape is described by the equation r = 1.5(2 - cos θ) ft. If both collars weigh 0.75 lb, determine the normal force which the curved rod exerts on one collar at the instant θ = 120o. Neglect...
A helicopter has a rotor (radius R0) that rotates with constant angular speed ω. The helicopter...
A helicopter has a rotor (radius R0) that rotates with constant angular speed ω. The helicopter is accelerating vertically with constant acceleration A0, starting from rest. Using cylindrical coordinates a) Write the position vector of the tip of the rotor as a function of time. b) Find the velocity vector of the rotor tip as a function of time by taking the derivative of the previous result. c) Find the acceleration vector of the rotor tip as a function of...
A compact disc rotates from rest up to an angular speed of 34.3 rad/s in a...
A compact disc rotates from rest up to an angular speed of 34.3 rad/s in a time of 0.867 s. (a) What is the angular acceleration of the disc, assuming the angular acceleration is uniform? rad/s2 (b) Through what angle does the disc turn while coming up to speed? rad (c) If the radius of the disc is 4.45 cm, find the tangential speed of a microbe riding on the rim of the disc. m/s (d) What is the magnitude...
ADVERTISEMENT
ADVERTISEMENT
ADVERTISEMENT