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Classical Mechanics Friction: Examples Work

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Title: Physics 211 Author: Mats Selen Last modified by: wayne springer Created Date: 1/4/2000 10:49:06 PM Document presentation format: On-screen Show (4:3) – PowerPoint PPT presentation

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Title: Classical Mechanics Friction: Examples Work


1
Classical Mechanics Friction ExamplesWork
Kinetic Energy
Midterm 2 will be held on November 8. Covers
units 4-9
JFB Rotunda David Matthew Stephens Lei Shan
(Mike)
2
Schedule
3
Schedule
4
Schedule
5
Coupled Blocks with Friction
A block (m2) slides on a table pulled by a string
attached to a mass (m1) hanging over the side.
The coefficient of kinetic friction between the
sliding block and the table is mk. What is the
tension in the string?
m2
g
m1
6
Tension in String

A block (m2) slides on a table pulled by a string
attached to a mass (m1) hanging over the side.
The coefficient of kinetic friction between the
sliding block and the table is mk. What is the
tension in the string?
T1
T2
m2
g
What is the relationship between the magnitude of
the tension of the string at block 2 and the
magnitude of the tension in the string at block
1? A) T1 gt T2 B) T1 T2 C) T1 lt T2
m1
7
Acceleration of coupled blocks

A block (m2) slides on a table pulled by a string
attached to a mass (m1) hanging over the side.
The coefficient of kinetic friction between the
sliding block and the table is mk. What is the
tension in the string?
m2
g
m1
What is the relationship between the magnitudes
of the acceleration of the two blocks? A) a1 a2
B) a1 lt a2 C) a1 gt a2
8
m2
1) FBD
N
T
m2
g
f
T
m1
m1
m2g
m1g
9
m2
1) FBD 2) SFma
N
T
m2
g
f
T
m1
m1
m2g
N m2g
m1g
m1g T m1a
T m m2g m2a
add
m1g m m2g m1a m2a
m1g m m2g
a
m1 m2
10
m2
1) FBD 2) SFma
N
T
m2
g
f
T
m1
m1
m2g
m1g
m1g T m1a
m1g m m2g
T m1g m1a
a
m1 m2
T is smaller when a is bigger
11
Accelerating Blocks
12
Accelerating Blocks
13
Carnival Ride
14
Carnival Ride
15
Accelerating Truck
16
Accelerating Truck
17
Mass on Incline
18
Mass on Incline
19
Mass on Incline
20
Mass on Incline 2
21
Mass on Incline 2
22
Mass on Incline 2
23
Mass on Incline 2
24
Block
25
Pushing Blocks
26
Classical Mechanics Lecture 7
Midterm 2 will be held on November 8. Covers
units 4-9
  • Todays Concepts
  • Work Kinetic Energy

JFB Rotunda David Matthew Stephens Lei Shan
(Mike)
27
Lecture Thoughts
28
Kinetic Energy and Work
29
Work-Kinetic Energy Theorem
  • The work done by force F as it acts on an object
    that moves between positions r1 and r2 is equal
    to the change in the objects kinetic energy

30
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31
What about Potential Energy??.next Unit!
32
Work-Kinetic Energy Theorem
  • The work done by force F as it acts on an object
    that moves between positions r1 and r2 is equal
    to the change in the objects kinetic energy

But again!!!
33
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34
Newtons 2nd law? Work Kinetic Energy
35
(No Transcript)
36
(No Transcript)
37
Vector Multiplication
38
The Dot Product
39
The Dot Product
40
The Dot Product
41
Work Kinetic Energy Theorem Work on sliding box
42
Work Kinetic Energy Theorem
43
Work done by Weight
44
Work Kinetic Energy Theorem Applied
45
(No Transcript)
46
Work done by a Spring
47
Main Points
48
Main Points
49
Main Points
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