Practical 2 - Determination of unknown masses using the principal of moments Flashcards

1
Q

What are the apparatus for this practical?

A

-Nail to pivot ruler at the 70cm mark
-Metre long ruler
-Clamp and stand
-200g mass and hanger
-Loops of thread

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2
Q

At what point do we nail the ruler to create its pivot?

A

70cm mark

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3
Q

What does a risk assessment apply to?

A

People AND equipment

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4
Q

What are three hazards of this practical?

A

-Pointy nail
-Stand + clamp
-Loose weight

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5
Q

What’s the risk with a pointy nail?

A

Eye injury

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6
Q

What’s the control measure for a pointy nail?

A

Clamp the pointy end facing away

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7
Q

What’s the risk with the stand and clamp?

A

Toppling/mass falling over -injury or damage equipment

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8
Q

What’s the control measure for the stand and clamp?

A

Use a G-clamp

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9
Q

What’s the risk with the loose weight?

A

Sliding off ruler

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10
Q

What’s the control measure for the loose weight sliding off the ruler?

A

Use both hands

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11
Q

What’s the first stage in completing this practical?

A

-Loop the 200g (1.96N) over the metre rule uni it’s horizontal + note down the distance (l) from the point
-Can now calculate the mass (or weight) of the metre rule using the principal of moments

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12
Q

Which principle do we use to do our calculations in this practical?

A

The principle of moments

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13
Q

How do we know that 200g = 1.96N?

A

W = mg
W = 0.2 x 9.81
W = 1.96N

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14
Q

What’s the equation used to calculate the weight of the metre rule?

A

0.20 x metre rule weight = l x 1.96

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15
Q

Why do we use 0.20 in these calculations?

A

It’s the distance from the weight force (in the centre - 0.5m) to the pivot (0.7m)

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16
Q

What’s the second stage of completing this practical?

A

-Replace the 200g mass with an unknown weight (W) and adjust the position until it balances again
-Measure the distance, d, of the unknown weight from the pivot - can now calculate the unknown weight again using the principle of moments

17
Q

What’s the equation used to calculate the unknown weight?

A

0.2 x metre rule weight = d x unknown weight

18
Q

How do we convert the unknown weight into a mass?

A

Divide it by 9.81

19
Q

With what do we check the real weight at the end?

A

Top pan balance

20
Q

What’s the uncertainty of our measurements on a 1m ruler with mm measurements?

A

+-0.001m

21
Q

How do we calculate the % uncertainty of our answer?

A

% u = add the uncertainties
——————————— x final answer of the mass
100

22
Q

What’s the relationship between the unknown mass and the uncertainty?

A

Lighter unknown mass = Higher uncertainty

23
Q

Name two factors that could lead to additional uncertainty in the measurements

A

-uncertainty of the 200g mass
-beam may not have been exactly level - could use a spirit or a laser level to improve this

24
Q

What could we use the ensure that the beam is definitely level?

A

A spirit or even a laser level

25
Q

How do we get the absolute uncertainty over a spread of data?

A

Range
———
2