Q2: Two resistors connected in series and at differing temperature are shown below. (a) Derive relations for the noise – equivalent resistor and temperature Reg, Teq- (b) Calculate Reg, Teg for the specific case where: R1 = 1kn , R2 = 2kN , T, = 300°k , T2 = 390°k EE R1 „T, Reg Teg R2 „T2 R,T, +R,T, Ans: (a) (b) Teg = 360°k R1+R2

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Q2: Two resistors connected in series and at differing temperature are shown below.
(a) Derive relations for the noise – equivalent resistor and temperature Req, Teq-
(b)Calculate Reg, Teg for the specific case where:
R1 = 1kN , R2 = 2kN , T1 = 300°k , T2 = 390°k
R, „T,
Reg ,Teq
E R2 „T2
Ans: (a)
R,T,+R2T,
(b) Teg = 360°k
R1+R2
Transcribed Image Text:Q2: Two resistors connected in series and at differing temperature are shown below. (a) Derive relations for the noise – equivalent resistor and temperature Req, Teq- (b)Calculate Reg, Teg for the specific case where: R1 = 1kN , R2 = 2kN , T1 = 300°k , T2 = 390°k R, „T, Reg ,Teq E R2 „T2 Ans: (a) R,T,+R2T, (b) Teg = 360°k R1+R2
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