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Norton: Circuitos Equivalentes

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Quiz sobre Norton

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Norton: Circuitos Equivalentes
 

Norton: Circuitos EquivalentesOnline version

Quiz sobre Norton

by José Pacheco
1

Qué afirma el teorema de Norton sobre una red lineal de fuentes y resistencias?

2

Qué se obtiene al cortocircuitar las terminales de la red?

3

Cómo se relaciona R_N con R_th?

4

Qué configuración resulta entre la fuente y R_N?

5

Cómo se relacionan I_N y V_th?

6

Qué prueba facilita el teorema de Norton?

7

Si se abre la carga, ¿qué valor se obtiene en la salida?

8

Qué define la resistencia de Norton R_N?

9

Ventaja de usar la representación de Norton?

10

Cómo se realiza la conversión de Thévenin a Norton?

Explicación

El teorema usa una fuente de corriente en paralelo con R_N para equivaler la red.

El I_N es la corriente que circula cuando las terminales están unidas.

En Norton, la resistencia equivalente vista desde las terminales es la misma que la de Thevenin.

Norton usa una fuente de corriente en paralelo con la resistencia equivalente.

La corriente de Norton es la tensión de Thevenin dividida por la resistencia de Thevenin.

Al acotar las terminales, se obtiene I_N.

Con carga abierta, el voltaje es el Thévenin V_th.

R_N es la resistencia equivalente cuando fuentes independientes están desactivadas.

Las impedancias en paralelo son simples de manejar con I_N y R_N.

Conversión directa: I_N = V_th / R_th y R_N = R_th.

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