a) For kretsen i Figur 2, beregn total resistans (RT). R2 = 10 R1 = YQ Figur 2. Krets for oppgave 2a. RT R3 = 100 R4 = 70 R5 = 70 R6 = 150

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For the circuit in Figure 2, calculate total resistance (RT).

Y=3

Handwritten answer please. (example image attached)

 

R&= koblet til
R67= R6 + R₂ = 1+2 KR = 3kr
R. = R$||R₁ + = 6· 3kr = 2kn
6+3kR
R4567= R₁ + R²567 = 3+2k₁ = 5KR
234567 R₂1 R₂ || R
€21.
brudd Prefered
R₁ = R₁₂ 11 R₂
234567
Setup
= 5KM = 1,67 kn
= 1,43k
4667
= 10·1,67 KR
10+1.67 KR.
Transcribed Image Text:R&= koblet til R67= R6 + R₂ = 1+2 KR = 3kr R. = R$||R₁ + = 6· 3kr = 2kn 6+3kR R4567= R₁ + R²567 = 3+2k₁ = 5KR 234567 R₂1 R₂ || R €21. brudd Prefered R₁ = R₁₂ 11 R₂ 234567 Setup = 5KM = 1,67 kn = 1,43k 4667 = 10·1,67 KR 10+1.67 KR.
a) For kretsen i Figur 2, beregn total resistans (RT).
R2 = 10
R1=YQ
Figur 2. Krets for oppgave 2a.
RT
R3 = 100
R4 = 70
R5 = 70
R6 = 150
Transcribed Image Text:a) For kretsen i Figur 2, beregn total resistans (RT). R2 = 10 R1=YQ Figur 2. Krets for oppgave 2a. RT R3 = 100 R4 = 70 R5 = 70 R6 = 150
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