Rigid Body - GEOCITIES.ws
... Set the turntable rotating with an angular velocity Drop a small mass to the platform, changes to a lower value ’ If there is no frictional couple, the angular momentum is conserved, I = I’ ’ = (I + mr2) ’ ...
... Set the turntable rotating with an angular velocity Drop a small mass to the platform, changes to a lower value ’ If there is no frictional couple, the angular momentum is conserved, I = I’ ’ = (I + mr2) ’ ...
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... The surface shown in the figure is frictionless. If the block is released from rest, it will compress the spring at the foot of the incline A) 4.00 m B) 3.24 m C) 1.57m D) 0.989 m E) None of these is correct. 49. A 5-kg blob of putty is dropped from a height of 10.0 m above the ground onto a light v ...
... The surface shown in the figure is frictionless. If the block is released from rest, it will compress the spring at the foot of the incline A) 4.00 m B) 3.24 m C) 1.57m D) 0.989 m E) None of these is correct. 49. A 5-kg blob of putty is dropped from a height of 10.0 m above the ground onto a light v ...
Section 1 Newton`s Second Law
... A. Law of gravitation—any two masses exert an attractive force on each other 1. Gravity is one of the four basic forces that also include the electromagnetic force, the strong nuclear force, and the weak nuclear force. 2. Gravity is a long-range force that gives the universe its structure. B. Due to ...
... A. Law of gravitation—any two masses exert an attractive force on each other 1. Gravity is one of the four basic forces that also include the electromagnetic force, the strong nuclear force, and the weak nuclear force. 2. Gravity is a long-range force that gives the universe its structure. B. Due to ...
chapter 06
... You have two springs that are identical except that spring 1 is stiffer than spring 2 (k1 > k2). On which spring is more work done (a) if they are stretched using the same force, (b) if they are stretched the same distance? ...
... You have two springs that are identical except that spring 1 is stiffer than spring 2 (k1 > k2). On which spring is more work done (a) if they are stretched using the same force, (b) if they are stretched the same distance? ...
Lecture 17 - Wayne State University Physics and Astronomy
... 2. will recoil in the opposite direction with tiny velocity 3. might recoil, but there is not enough information provided to see if that could happened Note: momentum is conserved. Let’s estimate Earth’s velocity after a jump by a 80-kg person. Suppose that initial speed of the jump is 4 m/s, the ...
... 2. will recoil in the opposite direction with tiny velocity 3. might recoil, but there is not enough information provided to see if that could happened Note: momentum is conserved. Let’s estimate Earth’s velocity after a jump by a 80-kg person. Suppose that initial speed of the jump is 4 m/s, the ...
Document
... ● Three key forms of energy Potential (PE) , Kinetic (KE) and (Internal Energy) (Q) ● PE = Stored Energy - when you have height or springs, KE = Energy of Motion - when moving , Q = Heat Energy due to losses from friction ● Mechanical Energy is defined as Potential + Kinetic combined ME = KE + P ...
... ● Three key forms of energy Potential (PE) , Kinetic (KE) and (Internal Energy) (Q) ● PE = Stored Energy - when you have height or springs, KE = Energy of Motion - when moving , Q = Heat Energy due to losses from friction ● Mechanical Energy is defined as Potential + Kinetic combined ME = KE + P ...
From Last Time… Momentum conservation: equal masses
... • An impulse is a short ‘disturbance’ exerted on an object. • It is equal to the momentum change of the object. ...
... • An impulse is a short ‘disturbance’ exerted on an object. • It is equal to the momentum change of the object. ...
Momentum and Collisions
... Force and momentum In order to change the momentum of an object, a force must be applied (from Newton’s first law). The rate of change of momentum of an object is proportional to the resultant force acting on the object. This is an alternative way of stating Newton’s second law in terms of momentum ...
... Force and momentum In order to change the momentum of an object, a force must be applied (from Newton’s first law). The rate of change of momentum of an object is proportional to the resultant force acting on the object. This is an alternative way of stating Newton’s second law in terms of momentum ...
Document
... (A) The collision is elastic. (B) All of the initial kinetic energy of the lessmassive object is lost. (C) The momentum of the objects that are stuck together has a smaller magnitude than the initial momentum of the less-massive object. (D) The speed of the objects that are stuck together will be le ...
... (A) The collision is elastic. (B) All of the initial kinetic energy of the lessmassive object is lost. (C) The momentum of the objects that are stuck together has a smaller magnitude than the initial momentum of the less-massive object. (D) The speed of the objects that are stuck together will be le ...
You get to explore the possible energy transitions for Hydrogen
... is a satellite of the more massive object. The two bodies orbit a common center of mass. For a much smaller satellite, the center of mass is inside the more massive body. ...
... is a satellite of the more massive object. The two bodies orbit a common center of mass. For a much smaller satellite, the center of mass is inside the more massive body. ...
How does Energy Change Form?
... Potential Energy • Potential Energy- is energy that is stored in an object. – It is due to the object’s position or to substances the object is made of. – Example: A diver standing on the diving board has potential energy because she is above Earth’s surface and will fall due to the force of Earth’ ...
... Potential Energy • Potential Energy- is energy that is stored in an object. – It is due to the object’s position or to substances the object is made of. – Example: A diver standing on the diving board has potential energy because she is above Earth’s surface and will fall due to the force of Earth’ ...
REVIEW MIDTERM 1st SEMESTER 2010 What are the 6 metric
... 53. Define force. What unit do we use to measure force? 54. What are the 2 kinds of friction? 55. State one way that friction can be helpful and one way that friction can be harmful. 56. What is gravity? What unit do we use to measure gravity? 57. What do you have to overcome to lift an object? 58. ...
... 53. Define force. What unit do we use to measure force? 54. What are the 2 kinds of friction? 55. State one way that friction can be helpful and one way that friction can be harmful. 56. What is gravity? What unit do we use to measure gravity? 57. What do you have to overcome to lift an object? 58. ...