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PPT - LSU Physics
PPT - LSU Physics

... until he hits the core, then experiences a moment of weightlessness at the core, and then resumes normal gravity (in the opposite direction) as the train continues to the other side of the Earth. Decide if this is what really would happen (or if it is complete Hollywood BS) by finding the gravitatio ...
Vectors 101
Vectors 101

Document
Document

FRICTION
FRICTION

... an object through a fluid. (water, air) Fluid friction INCREASES as speed of object INCREASES. Fluid friction on an object moving through the air is known as AIR RESISTANCE ...
Mechanics Lecture 6 - Newton`s Laws File
Mechanics Lecture 6 - Newton`s Laws File

Sem 2 Course Review
Sem 2 Course Review

Class 6 - Eqns of Motion
Class 6 - Eqns of Motion

... τ x   xx i   yx j   zxk τ y   xy i   yy j   zyk τ z   xz i   yz j   zzk ...
Chapter 2 Review Questions
Chapter 2 Review Questions

Vectors 101
Vectors 101

File - BAZINGA BROWN
File - BAZINGA BROWN

16-11. From Eq. (16.10), a general expression for a sinusoidal wave
16-11. From Eq. (16.10), a general expression for a sinusoidal wave

... E  dA  0 . Thus,  = 0. (e) We now have to add the flux through all six faces. One can easily verify that the flux through the front face is zero, while that through the right face is the opposite of that through the left one, or +16 N·m2/C. Thus the net flux through the cube is  = (–72 + 24 – 16 ...
Gravity and Potential Energy
Gravity and Potential Energy

PHYSICS 100A Second Exam
PHYSICS 100A Second Exam

Ch. 7 Circular Motion and Gravitation
Ch. 7 Circular Motion and Gravitation

... Law One: Planets travel in elliptical orbits around the sun. ...
the Normal vector - Pinellas County Schools
the Normal vector - Pinellas County Schools

... ddown is an arrangement of 5 letters, 4 of which are subscripts, that can be used to identify a specific distance in the down direction. Variables are symbols that are made from any combination of letters and numbers with any arrangement of subscripts and/or superscripts. ...
Equilibrium
Equilibrium

No Slide Title
No Slide Title

... A 0.5 kg ball is dropped to the floor from a height of 2 m. If it bounces back to a height of 1.8 m, what is the magnitude of its change in momentum? Some energy is lost in the bounce. Just before it hits the ground, its velocity is: (use conservation of ME) mgh=1/2mv2 so v=(2gh)=(2*9.8*2)= 6.26 m ...
Chapter 10: Dynamics of Rotational Motion
Chapter 10: Dynamics of Rotational Motion

Gravity, Not Mass Increases with Velocity
Gravity, Not Mass Increases with Velocity

Exp 04 - Coefficient of Friction
Exp 04 - Coefficient of Friction

... moving with constant speed after given a small push. Don’t forget to include the mass of the hanger. Repeat the above procedure for masses of 400, 600, 800 and 1000 g. With this data we can find the coefficient of kinetic friction. 3) Set up the block again as in procedure 2 and place a mass of 600 ...
Chapter 4 Notes
Chapter 4 Notes

PowerPoint - University of Toronto Physics
PowerPoint - University of Toronto Physics

Gravity and Potential Energy
Gravity and Potential Energy

... moving in a circular path, so this acceleration is also an essential part of a roller coaster. Centripetal acceleration points toward the center of the circular path of the train, but is felt by passengers as a force pushing them to the outer edge of the circular path. This feeling is often describe ...
Chapter 8
Chapter 8

... Moment of Inertia • Remember back to Newton’s 1st Law of Motion, Objects tend to stay in motion, or at rest, unless acted upon by a net force. • Notice it says Motion, but does not specify whether the motion is linear or rotational. • We also said that Newton’s 1st Law describes the term inertia, o ...
Offline HW 3 solutions
Offline HW 3 solutions

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Centripetal force

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