D The graph in Figure 1 shows the current-voltage characteristics of a certain light bulb. Two light bulbs of this type are connected to a battery with an electromotive force of 10 V as shown in Figure 2. The internal resistance of the battery is negligible. Current [A] 0.8 0.6 0.4 0.2 O 2 4 6 8 10 Voltage [V] 10 V Figure 1 Figure 2 Q4 What is the total electrical power consumed by the two light bulbs in this circuit? From 1-6 below choose the best answer. 17 W 12.0 4.0 3 6.0 8.0 612 5 10

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D The graph in Figure 1 shows the cunrent-voltage characteristics of a certain light bulb. Two
light bulbs of this type are connected to a battery with an electromotive force of 10 V as
shown in Figure 2. The intemal resistance of the battery is negligible.
Current [A]
0.8
0.6
0.4
0.2
2
6 8 10
Voltage [V]
4
10 V
Figure 1
Figure 2
Q4 What is the total electrical power consumed by the two light bulbs in this circuit? From
17 w
O-6 below choose the best answer.
2.0
(2)
4.0
6.0
4 8.0
(5)
10
12
Transcribed Image Text:D The graph in Figure 1 shows the cunrent-voltage characteristics of a certain light bulb. Two light bulbs of this type are connected to a battery with an electromotive force of 10 V as shown in Figure 2. The intemal resistance of the battery is negligible. Current [A] 0.8 0.6 0.4 0.2 2 6 8 10 Voltage [V] 4 10 V Figure 1 Figure 2 Q4 What is the total electrical power consumed by the two light bulbs in this circuit? From 17 w O-6 below choose the best answer. 2.0 (2) 4.0 6.0 4 8.0 (5) 10 12
E As shown in the figure below, a uniform magnetic fiekl with magniude of magnetic flux
density B is applied to a circukar region that is æntered on point A and has a radius of a-
The direction of the magnetic field is perpendicular to this page, going from the back to
the front. Acharged partidle with mass m and dharge q(> 0) is traveling in a straight line
fiom point Pouside the magnetic field toward A witha sped of v as it enters the region of
the magnetic field. After entering the magnetic fiekl, the particle moves in a circular path
that is centered on point O and has a radius of r. The partice then exits the magnetic field
and travels straight toward point Q. Whik the particle curved through the magnetic field,
its direction of motionchanged by 20 (the angular difference between direction P-A and
A-Q).
OB
20
Q5 What is tan (? From D-@ below chose the comect answer.
18
aqB
qB
4)
qB
aqB
amu
Transcribed Image Text:E As shown in the figure below, a uniform magnetic fiekl with magniude of magnetic flux density B is applied to a circukar region that is æntered on point A and has a radius of a- The direction of the magnetic field is perpendicular to this page, going from the back to the front. Acharged partidle with mass m and dharge q(> 0) is traveling in a straight line fiom point Pouside the magnetic field toward A witha sped of v as it enters the region of the magnetic field. After entering the magnetic fiekl, the particle moves in a circular path that is centered on point O and has a radius of r. The partice then exits the magnetic field and travels straight toward point Q. Whik the particle curved through the magnetic field, its direction of motionchanged by 20 (the angular difference between direction P-A and A-Q). OB 20 Q5 What is tan (? From D-@ below chose the comect answer. 18 aqB qB 4) qB aqB amu
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