Kinematics
A machine is a device that accepts energy in some available form and utilizes it to do a type of work. Energy, work, or power has to be transferred from one mechanical part to another to run a machine. While the transfer of energy between two machine parts, those two parts experience a relative motion with each other. Studying such relative motions is termed kinematics.
Kinetic Energy and Work-Energy Theorem
In physics, work is the product of the net force in direction of the displacement and the magnitude of this displacement or it can also be defined as the energy transfer of an object when it is moved for a distance due to the forces acting on it in the direction of displacement and perpendicular to the displacement which is called the normal force. Energy is the capacity of any object doing work. The SI unit of work is joule and energy is Joule. This principle follows the second law of Newton's law of motion where the net force causes the acceleration of an object. The force of gravity which is downward force and the normal force acting on an object which is perpendicular to the object are equal in magnitude but opposite to the direction, so while determining the net force, these two components cancel out. The net force is the horizontal component of the force and in our explanation, we consider everything as frictionless surface since friction should also be calculated while called the work-energy component of the object. The two most basics of energy classification are potential energy and kinetic energy. There are various kinds of kinetic energy like chemical, mechanical, thermal, nuclear, electrical, radiant energy, and so on. The work is done when there is a change in energy and it mainly depends on the application of force and movement of the object. Let us say how much work is needed to lift a 5kg ball 5m high. Work is mathematically represented as Force ×Displacement. So it will be 5kg times the gravitational constant on earth and the distance moved by the object. Wnet=Fnet times Displacement.
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PS Physics
Work, and Energy
Answer the following problems using the GUESS method.
1.
A tennis ball has a mass of 0.5 kg and is moving with a velocity of 25 m/s. Calculate the kinetic
energy of the tennis ball.
2.
Miguel Cabrera exerts a force of 100 N for 2m to throw a ball from first base to home plate
which is 30m away. How much work was done on the ball?
Your favorite reading book has a mass of 345 grams. What is its' potential energy as it sits on a
book shelf 2.5 meters high?
3.
4.
The kinetic energy of a runner is 912 Joules. If the runner has a mass of 95kg, what is the
velocity of the runner?
5. John slides his calculator across the table to Joe during a test (tsk tsk) The table is 1.75 m long,
and John used a total of 10 J of energy to move the calculator. Determine the force John used.
6. The potential energy of a skier on top of a 100 m mountain is 83,000 J. What is the mass of the
skier?"
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