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  1. We’ll then explore what happens in series and parallel circuits when you combine different types of components, such as capacitors and inductors. Covered in this Tutorial. What series and parallel circuit configurations look like. How passive components act in these configurations.

  2. Alyssia investigates the current in circuits made from cells and lamps. All the cells are alike and all the lamps are alike. Here are four circuits she connects up.

  3. Calculate the total current in the circuit. 11. Three identical lamps are connected in series to each other and then connected to a 6 V battery. What is the voltage drop across each lamp? 12. How does the current behave in a series circuit? 13.

  4. Voltage (V) Current (A) Resistance (Ω) Power (W) R1 R2. 6 27R3 R447 15RTOTAL10D. Twenty resistors, each with a resistance of 22 . , are connected in series. Wh. t is the total resistance?E. Ten resistors, each with a resistance of 1000 Ω, are connected in parallel. Wh. t.

  5. Current in a Series Circuit. In a series circuit, the same amount of current flows through each component in the circuit. This is because there is only one path for the current flow.

  6. Series and parallel combinations. One of the simplest and most useful things we can do in a circuit is to reduce the complexity by combining similar elements that have series or parallel connections. Resistors, voltage sources, and current sources can all be combined and replaced with equivalents in the right circumstances. We start with resistors.

  7. Parallel Circuits. Components in parallel have their own separate circuit or loop. If resistor 1 in the diagram was removed this would only break that circuit, a current would still flow through resistors 2 and 3. The total current is equal to the sum of the currents through each resistor.

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