Exercise 1 REVISION OF ELECTRICAL CIRCUITS AND OHM'S LAW Observe the following circuit diagram: 1.1 Indicate the positive (+) and negative (-) terminals of the battery on the diagram. electrons battery ammeter 1 ammeter 2 1.2 Use arrows to indicate the conventional direction of the current. A 1.3 What is the difference in readings on ammeter 1 and ammeter 2?

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11. As what type of conductor is a conductor such as a flash light bulb known?
Exercise 1
REVISION OF ELECTRICAL CIRCUITS AND OHM'S LAW
1 Observe the following circuit diagram:
1.1 Indicate the positive (+) and negative (-)
terminals of the battery on the diagram.
electrons
battery
ammeter 1
ammeter 2
1.2 Use arrows to indicate the conventional
direction of the current.
1.3 What is the difference in readings on ammeter 1 and ammeter 2?
The reading of ammeter 1 as a function of time is indicated below.
0,6
0,5
0,4
1.4 What is the reading on ammeter 1 and
what does it mean?
0,3
0,2
0,1
0.
3
4
6
Time (s)
7.
8
1.5 How many electrons flow through ammeter 1 in one second? (Charge of one electron is 1,6 x10-19 C)
1.6 What is the meaning of the area below the graph?
1.7 What quantity charge moves through ammeter 1 from time t = 2 s to t = 9 s?
2. Your teacher gives you the following apparatus to investigate the relation between the electrical current flowing
through a resistor and the potential difference (V) across it.
Before you do your investigation, you should first plan and design a suitable experiment. Make use of the layou
on the next page to assist you in the planning, design and investigation.
Current (A)
Transcribed Image Text:11. As what type of conductor is a conductor such as a flash light bulb known? Exercise 1 REVISION OF ELECTRICAL CIRCUITS AND OHM'S LAW 1 Observe the following circuit diagram: 1.1 Indicate the positive (+) and negative (-) terminals of the battery on the diagram. electrons battery ammeter 1 ammeter 2 1.2 Use arrows to indicate the conventional direction of the current. 1.3 What is the difference in readings on ammeter 1 and ammeter 2? The reading of ammeter 1 as a function of time is indicated below. 0,6 0,5 0,4 1.4 What is the reading on ammeter 1 and what does it mean? 0,3 0,2 0,1 0. 3 4 6 Time (s) 7. 8 1.5 How many electrons flow through ammeter 1 in one second? (Charge of one electron is 1,6 x10-19 C) 1.6 What is the meaning of the area below the graph? 1.7 What quantity charge moves through ammeter 1 from time t = 2 s to t = 9 s? 2. Your teacher gives you the following apparatus to investigate the relation between the electrical current flowing through a resistor and the potential difference (V) across it. Before you do your investigation, you should first plan and design a suitable experiment. Make use of the layou on the next page to assist you in the planning, design and investigation. Current (A)
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