Accedi

Resistors are fundamental components in electrical circuits, often manufactured from metallic alloys or carbon compounds. They model a material's ability to resist the flow of electric current, a characteristic that is crucial in controlling and regulating electrical power within a circuit.

This current-resisting behavior of resistors is governed by Ohm's law, which states that the voltage across a resistor is directly proportional to the current flowing through it.

Equation1

Equation2

The constant of proportionality in this relationship is known as resistance. Measured in units called ohms (Ω), resistance indicates how effectively a material can impede the flow of electric current.

The resistance of a material is directly proportional to its length and inversely proportional to its cross-sectional area. The proportionality constant in this relationship is known as resistivity, which varies among different materials. Conductors, which allow easy passage of electrical current, have low resistivities, while insulators, which block the flow of current, have high resistivities.

Resistors can further be categorized into linear and non-linear based on their voltage-current relationship. Linear resistors obey Ohm's law, exhibiting a linear relationship between their current and voltage. Non-linear resistors, on the other hand, do not adhere to this law, and their resistance changes with the applied voltage or current.

Two extreme cases of resistance are short circuits and open circuits. A short circuit has zero resistance and voltage drop, allowing it to carry any amount of current. In contrast, an open circuit has infinite resistance, resulting in zero current flow, and can sustain an unrestricted voltage.

Conversely, the reciprocal of resistance is known as conductance. This measures how well an element conducts electric current. Conductance is measured in Siemens (S), with one Siemens being equivalent to one ampere per volt.

Tags
Ohm s LawResistorsElectrical CircuitsElectric CurrentResistanceOhmsResistivityConductorsInsulatorsLinear ResistorsNon linear ResistorsShort CircuitsOpen CircuitsConductanceSiemens

Dal capitolo 1:

article

Now Playing

1.7 : Ohm's Law

Basics of Electric Circuits

571 Visualizzazioni

article

1.1 : Charge and Current

Basics of Electric Circuits

1.8K Visualizzazioni

article

1.2 : Voltage

Basics of Electric Circuits

1.1K Visualizzazioni

article

1.3 : Power and Energy

Basics of Electric Circuits

535 Visualizzazioni

article

1.4 : Electric Circuit Elements

Basics of Electric Circuits

485 Visualizzazioni

article

1.5 : Circuit Terminology

Basics of Electric Circuits

512 Visualizzazioni

article

1.6 : Independent and Dependent Sources

Basics of Electric Circuits

858 Visualizzazioni

article

1.8 : Kirchhoff's Current Law

Basics of Electric Circuits

834 Visualizzazioni

article

1.9 : Kirchhoff's Voltage Law

Basics of Electric Circuits

527 Visualizzazioni

article

1.10 : Voltage Dividers

Basics of Electric Circuits

385 Visualizzazioni

article

1.11 : Current Dividers

Basics of Electric Circuits

267 Visualizzazioni

article

1.12 : Equivalent Resistance

Basics of Electric Circuits

298 Visualizzazioni

article

1.13 : Design Example: Resistive Touchscreen

Basics of Electric Circuits

221 Visualizzazioni

JoVE Logo

Riservatezza

Condizioni di utilizzo

Politiche

Ricerca

Didattica

CHI SIAMO

Copyright © 2025 MyJoVE Corporation. Tutti i diritti riservati