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For the LEO satellite in Problem 8.5, estimate the maximum path loss.
Problem 8.5
Calculate the velocity of an LEO satellite at an altitude of 1000 km.
A speeding motorist traveling 100km/h passes a stationary police officer. The officer immediately begins pursuit at a constant acceleration of 12km/h/s (note the mixed units).
0.60 kg rubber ball has a speed of 2.30 m/s at point A and kinetic energy of 8.3 J at point B. (a) Determine the ball's kinetic energy at A (b) Determine the ball's speed at B (c) Determine the total work done on the ball from A to B
1. what is the minimum necessary power output rating of the water pump in watts?2. what is the minimum necessary power
Identify the magnitudes of the tension force t in the deltoid muscle and the force s of the shoulder on the humerus (upper-arm bone) to hold the arm in the position shown.
A tire placed on a balancing machine in a service station startsfrom rest and turns through 5.5 revs in1.2 s before reaching its final angularspeed. calculate the wheel's angular acceleration
a circular metal plate of radius 0.2m has 1010 excess electrons uniformly distributed over its surfaces. what is the
A point charge q1=15.00uC is held fixed in space. From a horizontal distance of 6.00 cm, What is the acceleration of the sphere
An object's true weight is 135N. When it is completely submerged in water, what is the density of the object
In 11.1 s, 205 bullets strike and embed themselves in a wall. The bullets strike the wall perpendicularly. find the average change in momentum per second for the bullets
A supertanker filled with oil has a total mass of 6.1 x 108 kg. how far below the water level is the bottom of the tanker
Water in a pipe runs down a 20 m high hill. If the speed of the water on the top of the hill is 5.0 m/s and its pressure is 150 kPa, what is the pressure of the water at the bottom of the hill
Draw a graph on the graph paper of x against t and use it to find the maximum speed at the end of the ruler.
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