Systems, Impact and Energy Systems Flashcards

1
Q

The principle of linear momentum states that the ____ __________ __ ___ ________ __ ___ _____ ___ is equal to the resultant of the external forces acting upon the system

A

Principle of linear momentum states that the time derivative of the
momentum of the whole system is equal to the resultant of the
external forces acting upon the system

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2
Q

What is the overall momentum of a system of particles?

A

H = Mv(c)
Momentum of system = Mass of system * Velocity of the mass centre

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3
Q

What is the angular momentum of a system of particles about a point?

A

K = ∑ r x mv

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4
Q

What is the relationship between angular momentum and momentum?

A

The time derivative of the angular momentum is equal to the momentum

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5
Q

During impact, what are the names of the two periods?

A
  • Period of deformation
  • Period of restitution
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6
Q

What is the total impulse after impact?

A

0

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7
Q

What is the momentum before and after impact?

A

mv1 + mv2 = mv’1 + mv’2

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8
Q

What is the coefficient of restitution?

A

This is the ratio of the deformation impulse and the restoration impulse
e = Restoration Impulse / Deformation Impulse

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9
Q

What does a coefficient of restitution of 1 represent?

A

A perfectly elastic collision

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10
Q

What can impact the coefficient of restitution?

A
  • Material Used
  • Relative Velocity Impact
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11
Q

What types of impact are there?

A
  • Direct Central Impact:
    Mass centres of bodies are on the line of impact and velocities are also directed along the line of impact
  • Direct Oblique Impact:
    Mass centres of bodies are on the line of impact but velocities aren’t directed along the line of impact
  • Eccentric Impact:
    Mass centres aren’t on the line of impact
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12
Q

What is the coefficient of restitution relative to the velocities before and after impact?

A

e = (v’2 - v’1) / (v1 - v2)

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13
Q

What is the energy loss after an impact?

A

1/2 * (1 - e^2) * ((m1 * m2) / (m1 + m2)) * (v1 - v2)^2

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14
Q

How do you calculate the velocities of an oblique central impact?

A

We need to resolve the velocities so then they are on the line of impact by using trigonometry. Then we can use the same principles as a direct central impact

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15
Q

What is the kinetic energy of a system equal to?

A

The sum between the kinetic energy in a translation with the velocity of the mass centre and the kinetic energy of the particles in their rotation about the mass centre

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