1.2 An electrical load consists of three resistances connected in series-parallel. The series resistor has a value of 1.6 ohms and the two parallel connected resistors are rated at 4 and 6 ohms respectively. A 12 volt battery (ideal) is used to supply this load. 1.2.1 Calculate the current and power supplied from the battery to the load. 1.2.2 Calculate the current carried by each of the load resistors. 1.2.3 Calculate the power consumed by each of the load resistors. 1.2.4 Calculate the voltage drop across each of the load resistors. 1.2.5 Check that the power consumed by the load equals the power supplied by the battery.

Delmar's Standard Textbook Of Electricity
7th Edition
ISBN:9781337900348
Author:Stephen L. Herman
Publisher:Stephen L. Herman
Chapter7: Parallel Circuits
Section: Chapter Questions
Problem 3PP: Using the rules for parallel circuits and Ohmslaw, solve for the missing values....
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1.2
An electrical load consists of three resistances connected in series-parallel. The series resistor has a
value of 1.6 ohms and the two parallel connected resistors are rated at 4 and 6 ohms respectively. A
12 volt battery (ideal) is used to supply this load.
1.2.1 Calculate the current and power supplied from the battery to the load.
1.2.2 Calculate the current carried by each of the load resistors.
1.2.3 Calculate the power consumed by each of the load resistors.
1.2.4 Calculate the voltage drop across each of the load resistors.
1.2.5 Check that the power consumed by the load equals the power supplied by the battery.
Transcribed Image Text:1.2 An electrical load consists of three resistances connected in series-parallel. The series resistor has a value of 1.6 ohms and the two parallel connected resistors are rated at 4 and 6 ohms respectively. A 12 volt battery (ideal) is used to supply this load. 1.2.1 Calculate the current and power supplied from the battery to the load. 1.2.2 Calculate the current carried by each of the load resistors. 1.2.3 Calculate the power consumed by each of the load resistors. 1.2.4 Calculate the voltage drop across each of the load resistors. 1.2.5 Check that the power consumed by the load equals the power supplied by the battery.
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