100% de satisfacción garantizada Inmediatamente disponible después del pago Tanto en línea como en PDF No estas atado a nada 4.2 TrustPilot
logo-home
Notas de lectura

Kirchhoff's Current And Voltage Law

Puntuación
-
Vendido
-
Páginas
16
Subido en
11-06-2024
Escrito en
2023/2024

Kirchhoff's Laws are fundamental principles in electrical circuit theory that govern the behavior of electrical circuits, specifically in terms of current and voltage. They are named after Gustav Kirchhoff, a German physicist who formulated them in the mid-19th century. 1. **Kirchhoff's Current Law (KCL)**: - KCL states that the total current flowing into a junction (or node) in a circuit must equal the total current flowing out of that junction. - Mathematically, it can be expressed as: Σ(I_in) = Σ(I_out), where Σ represents the sum of currents. - In other words, the algebraic sum of the currents entering any junction in a circuit is equal to the algebraic sum of the currents leaving that junction. 2. **Kirchhoff's Voltage Law (KVL)**: - KVL states that the sum of the voltage drops (or rises) around any closed loop in a circuit is equal to zero. - Mathematically, it can be expressed as: Σ(V) = 0, where Σ represents the sum of voltages. - In other words, the sum of the voltage drops across the components around any closed loop in a circuit equals the sum of the voltage sources in that loop. These laws are crucial tools in circuit analysis, allowing engineers to analyze and solve complex electrical circuits. They are applicable to both DC (direct current) and AC (alternating current) circuits and form the foundation for understanding and analyzing electrical networks.

Mostrar más Leer menos
Institución
Grado










Ups! No podemos cargar tu documento ahora. Inténtalo de nuevo o contacta con soporte.

Escuela, estudio y materia

Institución
Estudio
Desconocido
Grado

Información del documento

Subido en
11 de junio de 2024
Número de páginas
16
Escrito en
2023/2024
Tipo
Notas de lectura
Profesor(es)
Subha basak
Contiene
Todas las clases

Temas

Vista previa del contenido

6/11/24, 8:30 PM Kirchhoff's Current And Voltage Law




Kirchhoff’s Voltage Law:
Kirchhoff’s Voltage Law (KVL) is Kirchhoff’s second law that deals
with the conservation of energy around a closed circuit path.
Gustav Kirchhoff’s Voltage Law is the second of his fundamental laws
we can use for circuit analysis. His voltage law states that for a closed
loop series path the algebraic sum of all the voltages around any
closed loop in a circuit is equal to zero. This is because a circuit loop
is a closed conducting path so no energy is lost.
In other words the algebraic sum of ALL the potential differences
around the loop must be equal to zero as: ΣV = 0. Note here that the
term “algebraic sum” means to take into account the polarities and signs
of the sources and voltage drops around the loop.
This idea by Kirchhoff is commonly known as the Conservation of
Energy, as moving around a closed loop, or circuit, you will end up
back to where you started in the circuit and therefore back to the same
initial potential with no loss of voltage around the loop. Hence any
voltage drops around the loop must be equal to any voltage sources met
along the way.
So when applying Kirchhoff’s voltage law to a specific circuit element,
it is important that we pay special attention to the algebraic signs,
(+ and -) of the voltage drops across elements and the emf’s of sources
otherwise our calculations may be wrong.
But before we look more closely at Kirchhoff’s voltage law (KVL) lets
first understand the voltage drop across a single element such as a
resistor.


A Single Circuit Element




about:blank 1/16

,6/11/24, 8:30 PM Kirchhoff's Current And Voltage Law




For this simple example we will assume that the current, I is in the same
direction as the flow of positive charge, that is conventional current
flow.
Here the flow of current through the resistor is from point A to point B,
that is from positive terminal to a negative terminal. Thus as we are
travelling in the same direction as current flow, there will be a fall in
potential across the resistive element giving rise to a -IR voltage drop
across it.
If the flow of current was in the opposite direction from point B to
point A, then there would be a rise in potential across the resistive
element as we are moving from a - potential to a + potential giving us
a +I*R voltage drop.
Thus to apply Kirchhoff’s voltage law correctly to a circuit, we must
first understand the direction of the polarity and as we can see, the sign
of the voltage drop across the resistive element will depend on the
direction of the current flowing through it. As a general rule, you will
loose potential in the same direction of current across an element and
gain potential as you move in the direction of an emf source.
The direction of current flow around a closed circuit can be assumed to
be either clockwise or anticlockwise and either one can be chosen. If the
direction chosen is different from the actual direction of current flow,
the result will still be correct and valid but will result in the algebraic
answer having a minus sign.
To understand this idea a little more, lets look at a single circuit loop to
see if Kirchhoff’s Voltage Law holds true.




about:blank 2/16

, 6/11/24, 8:30 PM Kirchhoff's Current And Voltage Law




A Single Circuit Loop




Kirchhoff’s voltage law states that the algebraic sum of the potential
differences in any loop must be equal to zero as: ΣV = 0. Since the two
resistors, R1 and R2 are wired together in a series connection, they are
both part of the same loop so the same current must flow through each
resistor.
Thus the voltage drop across resistor, R1 = I*R1 and the voltage drop
across resistor, R2 = I*R2 giving by KVL:




We can see that applying Kirchhoff’s Voltage Law to this single closed
loop produces the formula for the equivalent or total resistance in the




about:blank 3/16
$7.99
Accede al documento completo:

100% de satisfacción garantizada
Inmediatamente disponible después del pago
Tanto en línea como en PDF
No estas atado a nada

Conoce al vendedor
Seller avatar
waltonx96mini

Conoce al vendedor

Seller avatar
waltonx96mini self
Seguir Necesitas iniciar sesión para seguir a otros usuarios o asignaturas
Vendido
0
Miembro desde
1 año
Número de seguidores
0
Documentos
15
Última venta
-

0.0

0 reseñas

5
0
4
0
3
0
2
0
1
0

Recientemente visto por ti

Por qué los estudiantes eligen Stuvia

Creado por compañeros estudiantes, verificado por reseñas

Calidad en la que puedes confiar: escrito por estudiantes que aprobaron y evaluado por otros que han usado estos resúmenes.

¿No estás satisfecho? Elige otro documento

¡No te preocupes! Puedes elegir directamente otro documento que se ajuste mejor a lo que buscas.

Paga como quieras, empieza a estudiar al instante

Sin suscripción, sin compromisos. Paga como estés acostumbrado con tarjeta de crédito y descarga tu documento PDF inmediatamente.

Student with book image

“Comprado, descargado y aprobado. Así de fácil puede ser.”

Alisha Student

Preguntas frecuentes