angular motion Flashcards

1
Q

define angular motion

A

movement of a body or part in a circular path about an axis of rotation (radians)

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2
Q

what is the val of one radian

A

57.3 degrees

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3
Q

how is angular motion created

A

eccentric external force applied outside the centre of mass

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4
Q

describe longitudinal axis

A
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5
Q

describe transverse axis

A
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6
Q

describe frontal axis

A

splits you front and back

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7
Q

give a sporting example for each axis of rotation

A
  • longitudinal: pivot in netball, pirouette
  • frontal: cartwheel
  • transverse: somersault
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8
Q

define moment of inertia

A

distribution of mass from the axis of rotation measured in kgm^2

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9
Q

formulae for calculating moment of inertia

A

moment of inertia = angular momentum/ angular velocity

OR

sum of (mass x districution of mass from axis of rotation squared)

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10
Q

define anglar velocity

A

the rotational speed of an object and the axis the object rotates around

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11
Q

formulae for calculating angular velocity

A

angular velocity = angular displacement( rad)/ time(s)

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12
Q

define angular momentum

A

the quantity of angular motion possessed by a body (kgm^2rads^-1)

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13
Q

formulae for angular momentum

A

angular momentum = moment of inertia x angular velocity

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14
Q

explain the factors affecting the size of moment of inertia of a rotating body

A
  • mass of the body: greater the mass, greater the resistance to change and therefore greater moment of inertia
  • distribution of mass round axis of rotation: decreasing distance from axis increases angular velocity as moment of inertia is low, increasing distribution of mass from axis decreases angular velocity as moment of inertia is high
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15
Q

crime the relationship between moment of inertia and angular velocity

A

inversely proportional to each other, when one increases, the other decreases.

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16
Q

explain the conservation of angular momentum due to newtons laws of motion

A
  • angular momentum is. conserved quantity so stays constant unless external force acts upon it (Nwewton’s 1st law)
  • a rotating body will continue in a state of constant angular momentum until acted upon by an external torque.