Mada za sehemu hiiCurrent ElectricityMada 6
Definition: Electric current is the rate of flow of electric charge through a conductor.
Formula: Let I be the electric current, Q be the charge in coulombs, and t be the time in seconds:
I=tQ
Units: Current is measured in amperes (A). One ampere is equal to one coulomb of charge passing through a point in one second.
1 A=1 s1 C
Example: If 10 coulombs of charge pass through a wire in 2 seconds, find the current.
Step 1: Write the known values:
Q=10 C,t=2 s
Step 2: Use the formula:
I=tQ
Step 3: Substitute the values:
I=210
Step 4: Simplify:
I=5 A
Final Answer: The current is 5 A.
Definition: Voltage is the energy per unit charge that drives electric current through a circuit.
Formula: Let V be the voltage, W be the energy in joules, and Q be the charge in coulombs:
V=QW
Units: Voltage is measured in volts (V).
1 V=1 C1 J
Example: If 12 joules of energy are used to move 4 coulombs of charge, find the voltage.
Step 1: Write the known values:
W=12 J,Q=4 C
Step 2: Use the formula:
V=QW
Step 3: Substitute the values:
V=412
Step 4: Simplify:
V=3 V
Final Answer: The voltage is 3 V.
Definition: Resistance is the opposition that a material offers to the flow of electric current.
Formula (Ohm's Law): Let V be the voltage, I be the current, and R be the resistance:
V=IR
Rearranging for resistance:
R=IV
Units: Resistance is measured in ohms (Ω).
Example: If a current of 2A flows through a resistor with 10V across it, find the resistance.
Step 1: Write the known values:
V=10 V,I=2 A
Step 2: Use the formula:
R=IV
Step 3: Substitute the values:
R=210
Step 4: Simplify:
R=5 Ω
Final Answer: The resistance is 5 Ω.
Definition: Ohm's Law states that the current I flowing through a conductor is directly proportional to the voltage V across it and inversely proportional to the resistance R.
V=IR
If the resistance is constant, the current increases with an increase in voltage.
Resistance is measured in ohms (Ω).
Common Units:
Milli-ohm:
1 mΩ=10−3 Ω
Kilo-ohm:
1 kΩ=103 Ω
Mega-ohm:
1 MΩ=106 Ω
Example 1: Convert 5 kΩ to ohms
Step 1: Use conversion formula:
1 kΩ=103 Ω
Step 2: Multiply:
5 kΩ=5×103=5000 Ω
Final Answer: 5 kΩ=5000 Ω
Example 2: Convert 0.02 Ω to milli-ohms
Step 1: Use conversion formula:
1 mΩ=10−3 Ω⇒1 Ω=1000 mΩ
Step 2: Multiply:
0.02 Ω=0.02×1000=20 mΩ
Final Answer: 0.02 Ω=20 mΩ
Example 3: Convert 2.5 MΩ to ohms
Step 1: Use conversion formula:
1 MΩ=106 Ω
Step 2: Multiply:
2.5 MΩ=2.5×106=2,500,000 Ω
Final Answer: 2.5 MΩ=2,500,000 Ω
| Name | Symbol | Conversion | Example |
|---|---|---|---|
| Milli-ohm | mΩ | 1 mΩ=10−3 Ω | R0=10 mΩ |
| Ohm | Ω | — | R1=10 Ω |
| Kilo-ohm | kΩ | 1 kΩ=103 Ω | R2=2 kΩ |
| Mega-ohm | MΩ | 1 MΩ=106 Ω | R3=5 MΩ |
A resistor is an electrical component that is specifically designed to resist the flow of electric current. It provides a known resistance to current in a circuit and is used to control the amount of current or divide voltage.
Types of Resistors:
- Fixed Resistors: These resistors have a constant resistance value that does not change with current or voltage.
- Variable Resistors: These resistors allow the resistance to be adjusted manually. Examples include:
Rheostat : used to control current
Potentiometer : used to control voltage
Function of a Resistor in a Circuit:
Resistors limit current, divide voltages, and protect components by ensuring that excessive current doesn't flow through the circuit.
Ohm's Law is used to calculate the current, voltage, or resistance in a circuit:
V=IR
Where: V = Voltage (in volts) I = Current (in amperes) R = Resistance (in ohms)
Examples Using Resistors:
Example 1: A resistor has a resistance of R=100 Ω, and a voltage of V=12 V is applied across it. What is the current flowing through the resistor?
Step 1: Use Ohm's Law: V=IR
Step 2: Rearrange to find current: I=RV
I=100 Ω12 V=0.12 A
Final Answer: I=0.12 A
Example 2: What resistance is needed to allow a current of 0.5 A to flow when a voltage of 6 V is applied?
Step 1: Use Ohm's Law: V=IR
Step 2: Rearrange to find resistance: R=IV
R=0.5 A6 V=12 Ω
Final Answer: R=12 Ω
Example 3: A resistor of 47 Ω has a current of 0.2 A flowing through it. What is the voltage across the resistor?
Step 1: Use Ohm's Law: V=IR
V=0.2 A×47 Ω=9.4 V
Final Answer: V=9.4 V
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