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Worksheets

Physics Data Test Skills

Total questions: 34

Worksheet time: 1hrs 18mins

Name
Class
Date
1.

Determine the mean vertical drop when horizontal distance equals 2.0m. Give your answer to 2 d.p.

(a)  

2.

Determine the absolute uncertainty of the mean vertical drop when horizontal displacement is equal to 2.0m using the equation maxmin2\frac{\max-\min}{2}   Give your answer to 2 d.p.

(a)  

3.

Identify the relationship between horizontal distance and mean vertical drop.

a)

Linear

b)

Exponential

c)

Logarithmic

d)

Inverse

e)

Inverse Exponential

4.

Predict the value for mean vertical drop when horizontal distance is at a value of 6.0m. Give your answer to 2 d.p.

(a)  

5.

Determine the average temperature, T, when energy added, E = 12000 J. Give your answer to 2 d.p.

(a)  

6.

Determine the absolute uncertainty of the mean for the temperature T, when energy supplied E = 12000 J. Use the equation maxmin2\frac{\max-\min}{2}  Give your answer to 1 d.p.

(a)  

7.

Identify the relationship between energy supplied, E, and average temperature T. HINT: Initial conditions!

a)

Linear

b)

Exponential

c)

Logarithmic

d)

Inverse

e)

Inverse Exponential

8.

Predict the average temperature of the water, T, when energy supplied, E = 24000 J. Give your answer to 0 d.p.

(a)  

9.

Determine the average change in Temperature, ΔT\Delta T  , when time, t = 180 s. Give your answer to 1 d.p.

(a)  

10.

Determine the absolute uncertainty in the average change of temperature, ΔT\Delta T  , when time, t = 180 s. Use the formula max min2\frac{\max\ -\min}{2}  Give your answer to 2 d.p.

(a)  

11.

Identify the relationship between time, t, and average change in temperature, ΔT\Delta T   .

a)

Linear

b)

Exponential

c)

Logarithmic

d)

Inverse

e)

Inverse Exponential

12.

Predict the average change in temperature, ΔT\Delta T  , when time, t = 360 s. Give your answer to 0 d.p.

(a)  

13.

The type of relationship when a doubling of the independent variable (x-variable) produces a doubling of the dependent variable (y-variable)

a)

Linear

b)

Exponential

c)

Logarithmic

d)

Inverse

e)

Inverse Exponential

14.

The type of relationship when a doubling of the independent variable (x-variable) produces a quadrupling (4x) of the dependent variable (y-variable)

a)

Linear

b)

Exponential

c)

Logarithmic

d)

Inverse

e)

Inverse Exponential

15.

The type of relationship when a doubling of the independent variable (x-variable) increases the dependent variable (y-variable) by x1.4

a)

Linear

b)

Exponential

c)

Logarithmic

d)

Inverse

e)

Inverse Exponential

16.

The type of relationship when a quadrupling (4x) of the independent variable (x-variable) produces a doubling of the dependent variable (y-variable)

a)

Linear

b)

Exponential

c)

Logarithmic

d)

Inverse

e)

Inverse Exponential

17.

The type of relationship when a doubling of the independent variable (x-variable) reduces the dependent variable (y-variable) by half.

a)

Linear

b)

Exponential

c)

Logarithmic

d)

Inverse

e)

Inverse Exponential

18.

The type of relationship when a doubling of the independent variable (x-variable) reduces the dependent variable (y-variable) by a quarter.

a)

Linear

b)

Exponential

c)

Logarithmic

d)

Inverse

e)

Inverse Exponential

19.

If x2 = 2x1 and y2 = 2y1

a)

Linear

b)

Exponential

c)

Logarithmic

d)

Inverse

e)

Inverse Exponential

20.

If x2 = 2x1 and y2 = 4y1

a)

Linear

b)

Exponential

c)

Logarithmic

d)

Inverse

e)

Inverse Exponential

21.

If x2 = 2x1 and y2 = 1.4y1

a)

Linear

b)

Exponential

c)

Logarithmic

d)

Inverse

e)

Inverse Exponential

22.

If x2 = 2x1 and y2 = 0.5y1

a)

Linear

b)

Exponential

c)

Logarithmic

d)

Inverse

e)

Inverse Exponential

23.

If x2 = 2x1 and y2 = y12\frac{y_1}{2}  

a)

Linear

b)

Exponential

c)

Logarithmic

d)

Inverse

e)

Inverse Exponential

24.

If x2 = 2x1 and y2 = y14\frac{y_1}{4}  

a)

Linear

b)

Exponential

c)

Logarithmic

d)

Inverse

e)

Inverse Exponential

25.

If x2 = 2x1 and y2 = 0.25y1

a)

Linear

b)

Exponential

c)

Logarithmic

d)

Inverse

e)

Inverse Exponential

26.

Identify one of the angles that produce a horizontal displacement of 14.95m. No unit required.

(a)  

27.

In the phase change graph, identify the melting point of the substance. No units required.

(a)  

28.

Identify the field strength when the radii of detection is 10cm. No units required.

(a)  

29.

Identify the height when velocity first equals 9.2m/s. No units required.

(a)  

30.

Describe the relationship between projected angle and horizontal displacement. Use one word only. (Describe means you can use words not in the big 5).

(a)  

31.

Identify the relationship between time and temperature for t = 75s to t = 105s.

(a)  

32.

Identify the relationship between magnetic field strength and radii.

(a)  

33.

Identify the relationship between velocity and height

(a)  

34.

The equations show how changing inverse mass affects the velocity of a system. Do not round. Use the form y = (z+/-dz)x + (c+/-dc)

(a)