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Zorch, an archenemy of Superman, decides to slow Earth's rotation to once per 28.0 h by exerting an opposing force at and parallel to the equator. Superman is not immediately concerned, because he knows Zorch can only exert a force of
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- Three uniform spheres are located at the corners of an equilateral triangle. Each side of the triangle has a length of 1.35 m. Two of the spheres have a mass of 2.72 kg each. The third sphere (mass unknown) is released from rest. Considering only the gravitational forces that the spheres exert on each other, what is the magnitude of the initial acceleration of the third sphere?arrow_forwardA small block with mass 0.0300 kg slides in a vertical circle of radius 0.425 m on the inside of a circular track. During one of the revolutions of the block, when the block is at the bottom of its path, point A, the magnitude of the normal force exerted on the block by the track has magnitude 3.90 N . In this same revolution, when the block reaches the top of its path, point B, the magnitude of the normal force exerted on the block has magnitude 0.675 N . 1) How much work was done on the block by friction during the motion of the block from point A to point B?arrow_forwardA small block with mass 0.0300 kg slides in a vertical circle of radius 0.550 m on the inside of a circular track. During one of the revolutions of the block, when the block is at the bottom of its path, point A, the magnitude of the normal force exerted on the block by the track has magnitude 3.75 N. In this same revolution, when the block reaches the top of its path, point B, the magnitude of the normal force exerted on the block has magnitude 0.685 N. Part A How much work was done on the block by friction during the motion of the block from point A to point B? Express your answer with the appropriate units. W friction = Submit μA Value Request Answer Units ?arrow_forward
- A rocket is fired straight up, and it burns out at an altitude of 250 km when traveling at 6.00 km/s (at this point the rocket is too far from the surface of the earth to be affected by the earth gravitational pull). What maximum distance from the earth surface does the rocket travel before falling back to the earth? The radius of the earth is RE = 6.37 x 106 meters, the mass of the earth is ME = 5.98 x 1024 kg and G = 6.67 x 10-11 N∙m2/kg2arrow_forwardIn the Bohr model of the hydrogen atom, an electron (mass m=9.1 x 10^-31 kg) orbits a proton at a distance of 5.3 x 10^-11 m. The proton pulls on the electron with an electric force of 8.2 x 10^-8 N. How many revolutions per second does the electron make? Can you please make the solution detailed as this is a new topic I had to self-teach myself due to the peculiar circumstances, which is difficult for me. Thank you :)arrow_forwardAliens declare war on Earth by dropping an asteroid on our planet. The asteroid starts at rest from a distance of 37 x 106 m from the center of Earth. Calculate the speed with which the asteroid hits Earth's surface, in km/s. Use that G = 6.7 x 10-11 N m2 / kg2, MEarth = 6 x 1024 kg, and REarth = 6 x 106 m. (Please answer to the fourth decimal place - i.e 14.3225)arrow_forward
- An 80 kg person riding a Ferris wheel moves in a vertical circular trajectory of radius 6 m. As the person reaches the lowest point, a scale that the person is sitting on reads 920 N. There is nothing else in contact with the person. The person's speed is ____ m/s.arrow_forwardThe mass of Mars is 6.4 × 10²³ kg and its radius is 3.4 × 106 m. What is the value of the constant g on the surface of Mars? How long does it take a 2 kg ball to land on the Martian ground if it is dropped from a height of 2 meters, starting at rest?arrow_forwardPlease don't provide handwritten solution.... Two forces act on a 4.05 kg object, the gravitational force and a second, constant force. The object starts from rest and in 1.20 s is displaced (5.40î − 3.30ĵ) m. Write the second force in unit vector notation. (Enter your answer in kg · m/s2. Assume the gravitational force acts in the −ĵ direction.)arrow_forward
- The physics of circular motion sets an upper limit to the speed of human walking. (If you need to go faster, your gait changes from a walk to a run.) If you take a few steps and watch what's happening, you'll see that your body pivots in circular motion over your forward foot as you bring your rear foot forward for the next step. As you do so, the normal force of the ground on your foot decreases and your body tries to "lift off" from the ground. A. A person's center of mass is very near the hips, at the top of the legs. Model a person as a particle of mass m at the top of a leg of length L. Find an expression for the person's maximum walking speed vmax Express your answer in terms of the variables L and appropriate constants. b.)Evaluate your expression for the maximum walking speed of a 70 kg person with a typical leg length of 70 cm . Give your answer in m/s. c.) Give your answer in mph.arrow_forwardQuestion in pic.arrow_forwardIn an automatic clothes drier, a hollow cylinder moves the clothes on a vertical circle (radius r = 0.519 m), as the drawing shows. The appliance is designed so that the clothes tumble gently as they dry. This means that when a piece of clothing reaches an angle of 0 above the horizontal, it loses contact with the wall of the cylinder and falls onto the clothes below. How many revolutions per second should the cylinder make in order that the clothes lose contact with the wall when 0 = 64.0°? Number Unitsarrow_forward
- Physics for Scientists and Engineers: Foundations...PhysicsISBN:9781133939146Author:Katz, Debora M.Publisher:Cengage Learning