PowerPoint Presentation

Published on Slideshow
Static slideshow
Download PDF version
Download PDF version
Embed video
Share video
Ask about this video

Scene 1 (0s)

Ohm’s law for closed circuit. Ohm’s law for closed Circuit.

Scene 2 (11s)

. EMF = Terminal potential + Lost Potential. Idea (1).

Scene 3 (20s)

The intensity of the current that flows through the battery after closing its external circuit is inversely proportional to - The emf of the battery The internal resistance of the battery The external resistance of the battery The total resistance of the circuit.

Scene 4 (36s)

In the opposite electric circuit when the switch S is closed then -- The voltmeter reading decreases and the ammeter reading decreases. The voltmeter reading decreases and the ammeter reading increases. The voltmeter reading increases and the ammeter reading decreases. The voltmeter reading increases and the ammeter reading increases..

Scene 5 (54s)

Idea (1). In the opposite circuit if the internal resistance of the battery is 2 Ω , so the readings of both the ammeter and the voltmeter when t he switch (K) closed.

Scene 6 (1m 13s)

Idea (2) Charging a battery. charging 12 volt batteries in series - Cheap Online Shopping -.

Scene 7 (1m 22s)

from the opposite figures,. Idea (2). The relation between V B1 and V 1 is - V B1 = V 1 V B1 > V 1 V B1 < V 1.

Scene 8 (1m 33s)

from the opposite figures,. Idea (2). The relation between V B2 and V 2 is - V B2 = V 2 V B2 > V 2 V B2 < V 2.

Scene 9 (1m 44s)

from the opposite figures,. Idea (2). The relation between V B3 and V 3 is - V B3 = V 3 V B3 > V 3 V B3 < V 3.

Scene 10 (1m 55s)

Idea (2). In the opposite electric circuit, the voltmeter reading is --.

Scene 11 (2m 7s)

Idea (3). Electromotive Force and Internal Resistance.

Scene 12 (2m 16s)

Idea (3). The opposite graph represents the relation between the potential difference between the terminals of a battery and the current passes in a circuit then:.

Scene 13 (2m 34s)

Idea (3). In the opposite graph represents the variation of the potential difference between two poles of two electric cells (X, Y) with respect to the electric current intensity that passes in the circuit of each of them, then the ratio between their internal resistance is --.

Scene 14 (2m 51s)

Idea (4). Cartoon thief walking and carrying a bag Vector Image.

Scene 15 (3m 1s)

Idea (4). The diagram represents a closed electric circuit, so when the variable resistance (S) is increases, the readings of the two voltmeters V 1 and V 2.

Scene 16 (3m 16s)

MOHAMED SALAH PHYSICS TEACHER. 01000100460. 12.