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Electronics resistors

Total questions: 12

Worksheet time: 7mins

Name
Class
Date
1.

What is the name of the resistor shown?

a)

Thermistor

b)

Fixed resistor

c)

Variable resistor

d)

Light-dependent resistor

2.

What is the name of the resistor shown?

a)

Thermistor

b)

Fixed resistor

c)

Variable resistor

d)

Light-dependent resistor

3.

What is the name of the resistor shown?

a)

Thermistor

b)

Fixed resistor

c)

Variable resistor

d)

Light-dependent resistor

4.

What is the name of the resistor shown?

a)

Thermistor

b)

Fixed resistor

c)

Variable resistor

d)

Light-dependent resistor

5.

What is the name of the resistor shown?

a)

Thermistor

b)

Fixed resistor

c)

Variable resistor

d)

Light-dependent resistor

6.

What is the name of the resistor shown?

a)

Thermistor

b)

Fixed resistor

c)

Variable resistor

d)

Light-dependent resistor

7.

What is the name of the component shown?

a)

Rotary switch

b)

Potentiometer

c)

LDR

d)

Thermistor

8.

Which resistors are also used as sensors?

a)

Thermistor

b)

Fixed resistor

c)

Variable resistor

d)

Light-dependent resistor

9.

The shown resistor has the following colour bands: Brown - Black - Orange and Gold. What is the resistance value?

a)

10 Ω10\ \Omega

b)

1000 Ω1000\ \Omega

c)

10000 Ω10000\ \Omega

d)

100 Ω100\ \Omega

10.

The shown resistor has the following colour bands: Brown - Black - Orange and Gold. What is the tolerance value?

a)

± 0.5 %\pm\ 0.5\ \%

b)

± 1 %\pm\ 1\ \%

c)

± 5 %\pm\ 5\ \%

d)

± 10 %\pm\ 10\ \%

11.

Which is the correct way of calculating total resistance RT ?

a)

RT = R1 + R2R_T\ =\ R_1\ +\ R_2

b)

RT = R1 × R2R_T\ =\ R_1\ \times\ R_2

c)

1RT= 1R1+1R2\frac{1}{R_T}=\ \frac{1}{R_1}+\frac{1}{R_2}

d)

RT = R1+R2R1 × R2R_T\ =\ \frac{R_1+R_2}{R_1\ \times\ R_2}

12.

Which is the correct way of calculating total resistance RT ?

a)

RT = R1 + R2R_T\ =\ R_1\ +\ R_2

b)

RT = R1 × R2R_T\ =\ R_1\ \times\ R_2

c)

1RT= 1R1+1R2\frac{1}{R_T}=\ \frac{1}{R_1}+\frac{1}{R_2}

d)

RT = R1+R2R1 × R2R_T\ =\ \frac{R_1+R_2}{R_1\ \times\ R_2}