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WPHY1510 Engineering Physics

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  1. While floating in deep space, a stationary astronaut throws a toolbox in the negative x-direction with a speed of 5 m/s. After throwing the wrench, the astronaut finds themselves with a velocity of 0:15 m/s in the positive x-direction. The astronaut’s mass is 120 kg, and no external forces act on the astronaut-toolbox system.

1.Calculate the momentum of the toolbox.

2.Calculate the mass of the toolbox.

3.If the toolbox was accelerated from rest to its final speed in 0:2 s, what was magnitude of the force applied by the astronaut?

  1. A 20 kg box slides down a curved ramp with a raised lip at the end, as shown. The box starts at the top of the ramp at height H = 50 m above the ground, with an initial speed of vi= 10 m/s.
  • Calculate the total mechanical energy of the box at the top of the ramp.
  • Calculate the velocity of the box when it reaches the top of the lip at h = 10 m, in the absence of non-conservative forces.
  • A coating is added to the ramp that introduces fric-tion. After the box leaves the ramp and continues travelling vertically, it reaches a maximum height of Y = 33 m.
  1. What is the total mechanical en-ergy of the box when it reaches its maximum height?
  2. Calculate the work done by fric-tion.
  1. A physics student is ice skating on a frozen river, with a constant velocity towards north. The mass of the student is 60 kg.
  • The coefficient of friction between the ice and skates is k= 0:02. What is the horizontal force the student applies to the surface of the ice to move at a constant velocity?
  • The student encounters an upwards slope of 20 , as measured from the horizontal.
  1. Draw a free body diagram representing all of the forces acting on the student as they skate up the slope.
  2. What force does the student need to apply to continue moving at a constant velocity up the slope?
  1. A small sphere undergoes uniform circular motion; it has a mass of 5 kg. The circular path of the sphere has a radius of 6 m, and the object travels with a constant tangential speed of 3 m/s. Calculate
  • the angular speed, tangential and radial acceleration of the object, and
  • the centripetal force acting on the sphere.
  • If the sphere can treated as a point mass, what is the magnitude of its angular momentum?

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PHYS159 Psychology

Questions: Nebraska-Lincoln. Your unique three sets of parameters for 'Initial Star Mass' and 'Initial Planet Distance' will be allocated to you in the report spreadsheet. You must input these values into the simulator. The simulator is quite easy to use; it should only take a few moments to famili ...

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Pa ge 1 of 4 2 UNIVERSITY OF DERBY College of Science and Engineering TIME CONSTRAINED ASSESSMENT BENG H MECH ENG (AER) BENG H MECH ENG ELEC (AER) BENG H MANUF PROD ENGINEERING BENG H MECH ENG WITH IND YR BENG H MECHANICAL & MANUF ENG BENG H MECHANICAL ENGINEE ...

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