• Q : Problem related to centripetal acceleration....
    Physics :

    You are consulting for an amusement park that wants to build a new "rotor" ride. In order to increase capacity, they would like to build a unit with a 16.9 feet diameter. The rotor should provide a

  • Q : Find the force exerted by the rope on the bucket of water....
    Physics :

    A 5.5 kg bucket of water is raised from a well by a rope. The acceleration of gravity is 9.81 m/s2 . If the upward acceleration of the bucket is 2.9 m/s2, find the force exerted by the rope on the buc

  • Q : Determining the average power dissipated....
    Physics :

    You have a 7.70 uF capacitor a 1250 resistor who are connected in series to a generator operating at 50 Hz, producing an rms voltage of 208. what is the average power dissipated?

  • Q : What are the magnitude and direction of the field produced....
    Physics :

    A current path shaped as shown in the figure produces a magnetic field at P, the center of the arc. If the arc subtends an angle of θ = 50.0 ° and the radius of the arc is 0.500 m,

  • Q : Evaluating the speed of the electron....
    Physics :

    An electron experiences a magnetic force of magnitude 4.60 x10^-15 when moving at an angle of 60.0 degree with respect to a magnetic field of magnitude 3.5x10^-3 T. Find the speed of the electron.

  • Q : Calculate the maximun hight of the object....
    Physics :

    If you hace 10 degree angle and the means time is .52second the initial hight is .042m the long is .426m and the final distance when the object rich the floor is .4970m calculate the maximun hight o

  • Q : Simple pendulum having period on earth....
    Physics :

    A certain simple pendulum has a period on earth of 1.60 s. what is its period on the surface of Mars , where the acceleration due to gravity is 3.71 m/s2?

  • Q : Find the velocity of the particle....
    Physics :

    The rest energy of a particle is 1 MeV. When it travels at a speed of v with respect to an observer, the kinetic energy is measured to be 0.6 MeV. Find the velocity v of the particle.

  • Q : Amount of radiant power produced by the sun....
    Physics :

    The amount of radiant power produced by the sun is approximately 3.9 x 1026 W. Assuming the sun to be a perfect blackbody sphere with a radius of 6.96 x 108 m, find its surface temperature (in kelvi

  • Q : What is the radiant energy absorbed per second....
    Physics :

    What is the radiant energy absorbed per second by his head when it is covered with hair? The surface area of the hair (assumed to be flat) is 140 cm2 and its emissivity is 0.87.

  • Q : Calories are expected in a single climb up the rope....
    Physics :

    As part of an exercise routine an 81.9 kg person climbs 40.4 m up a vertical rope. How many (food) Calories are expected in a single climb up the rope? The acceleration due to gravity is 9.8 m/s2 an

  • Q : What is the minimum power output of the winch....
    Physics :

    A winch pulls a car of mass 2000kg up a 20 degree incline at a speed of 3 m/s. What is the minimum power output of the winch? (minimum means ignore friction)

  • Q : What was the net work done on the rock....
    Physics :

    What was the net work W (in J) done on the rock during the period of time between these two instants?

  • Q : Direction of current in the larger loop....
    Physics :

    What is the direction of current through the smaller loop compared to the direction of current in the larger loop? Is it in the same or the opposite direction?

  • Q : Determine the total change in entropy....
    Physics :

    Assuming no heat is lost to the surroundings and neglibible heat loss from the container. Determine the total change in entropy as a result of the mixing process.

  • Q : Mass of the wrecking ball....
    Physics :

    A large wrecking ball is held in place by two light steel cables. if the tension TA in the horizontal cable is 600 N, what is: a.) the tension TB in the other side that makes an angle of 40o with the

  • Q : Find out the beat frequency heard....
    Physics :

    What is the beat frequency heard when two organ pipes, each open at both ends, are sounded together if one pipe is 58 cm long and the other is 67 cm long? (The speed of sound is 340 m/s)

  • Q : Central diffraction maximum....
    Physics :

    A slit 0.30 mm wide is illuminated by light of wavelength 426 nm. A diffraction pattern is seen on a screen 2.8 m from the slit. what is the linear distance on the screen between the first diffracti

  • Q : Problem based on degrees from the central maximum....
    Physics :

    A single slit illuminated with a 500 nm light gives a diffraction pattern on a far screen. the 5th minimum occures at 7 degrees from the central maximum. At what angle does the 18th minimum occur?

  • Q : What is the wavelength of this new light....
    Physics :

    Monochromatic light of 630 nm wavelength is used. the same slit, illuminated by new monochromatic light source, produces a diffraction pattern with the second minimum at a 60 ° angle from the ce

  • Q : Estimate the local wavelength of this function....
    Physics :

    Eastimate the local wavelength of this function at x=4.0cm by averaging the distance to adjacent crests on either side.

  • Q : By what factor does the tunneling current increase....
    Physics :

    The probe passes over an atom that is .05 nm tall off the surface. By what factor does the tunneling current increase?

  • Q : What is the weight of the heaviest brick....
    Physics :

    A very powerful vacuum cleaner has a hose 2.68 cm in diameter. With the end of the hose placed perpendicularly on the flat face of a brick, what is the weight of the heaviest brick that the cleaner

  • Q : Minimum energy necessary to place satellite in orbit....
    Physics :

    Starting from the satellite on the Earth's surface, what is the minimum energy input necessary to place this satellite in orbit? Ignore air resistance but include the effect of the planet's daily ro

  • Q : How far is the cannon from the observer....
    Physics :

    A cannon fires a cannon ball at 954.4 m/s in a straight line that passes directly over an observer's head. If the observer hears the sound of the cannon fire 2.53 seconds after he sees the cannon ba

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