Ii materiales y métodos a equipos materiales y

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II. MATERIALES Y MÉTODOS A. Equipos, materiales y herramientas usadas 02 fuentes de poder DC Multímetro digital Resistores de 20KΩ (2), 10KΩ (2), 2KΩ y 1KΩ (2) Protoboard Computadora con Multisim B. Esquemas Circuito 1 (GRAFICA DEL CIRCUITO 1) (SIMULACION DEL CIRCUITO 1) V1 7V V2 5V R1 10kΩ R2 10kΩ R3 20kΩ R4 20kΩ U1 DC 1e-009Ohm 0.3m A + - U2 DC 1e-009Ohm 0.1m A + - U3 DC 1e-009Ohm 0.201m A + - U4 DC 1e-0 0.2m A + - U5 DC 10MOhm 2.996 V + - U6 DC 10MOhm 2.004 V + - U7 DC 2 V + - U8 DC 10MOhm 4.004 V + - I 3 I 1 I 2
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Universidad Nacional Mayor de San Marcos. De la Cruz Quevedo. 2da Ley Kirchhoff 2 (IMPLEMENTAR PROTOBOARD C.1) Circuito 2 (GRAFICA DEL CIRCUITO 2) (SIMULACION DEL CIRCUITO 2) (IMPLEMENTAR PROTOBOARD C.2) C. Procedimientos 1. Realizamos las mediciones de las resistencias a usar 2. Calibramos lo mejor posible las fuentes DC, para que emitan la tensión requerida. 3. Armamos el circuito e implementamos los instrumentos de medición sea voltímetro (en paralelo a la resistencia) o el amperímetro (en serie con la resistencia a medir). 4. Hacemos las anotaciones correspondientes y se comparan datos con la simulación en el Multisim. R1 1kΩ R2 10kΩ R3 20kΩ R4 20kΩ R5 10kΩ R6 2kΩ R7 1kΩ V1 5V U1 DC 1e-009Ohm 0.489m A + - U2 DC 1e-009Ohm 0.328m A + - U3 0.163m A + - U4 DC 1e-009Ohm 0.491m A + - U5 0.038m A + - U6 0.076m A + - U7 0.377m A + - U8 DC 10MOhm 0.49 V + - U9 3.265 V + - U10 3.265 V + - U11 0.755 V + - U12 0.755 V + - U13 0.755 V + - U14 DC 10MOhm 0.491 V + - I 4 I 3 I 2 I 1
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Universidad Nacional Mayor de San Marcos. De la Cruz Quevedo. 2da Ley Kirchhoff 2 III. RESULTADOS A. RESULTADOS DEL CIRCUITO 1 [ 30 k 10 k 2 Ok 5 10 k 30 k 2 Ok 7 20 k 20 k 50 k 0 ] [ I 1 I 2 I 3 ] I 1
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  • Fall '19
  • Instrumento de medición, Circuito, Simulación, Óhmetro

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