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ENG1013 - Engineering Smart Systems - MUM S1 2025

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Given the code shown below, map out its execution flow in steps.

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Given the code shown below

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Correctly identify the scope of all the unique variables shown.

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Calculate the conductivity of n-type Ge at RT. Express your answer to 0 decimal places in units of (Ω•m)-1. You need only consider the primary charge carriers at this temperature.

ne at RT = 4 x 1021/m3

mobility of electrons at RT = 580 m2/(V•s)

nh at RT = 6 x 1016/m3

mobility of holes at RT = 420 m2/(V•s)

charge (q) is q = 1.602 x 10-19 Coulombs = 1.602 x 10-19 Amp•sec

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Calculate the conductivity of n-type Ge at RT. Express your answer to 0 decimal places in units of (Ω•m)-1. You need only consider the primary charge carriers at this temperature.

ne at RT = 5.1 x 1021/m3

mobility of electrons at RT = 580 m2/(V•s)

nh at RT = 6 x 1016/m3

mobility of holes at RT = 420 m2/(V•s)

charge (q) is q = 1.602 x 10-19 Coulombs = 1.602 x 10-19 Amp•sec

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In p-n junction, the depletion region is a result of the recombination of all holes and electrons in the device.
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Calculate the conductivity of n-type Si at RT. Express your answer to 0 decimal places in units of (Ωm)-1. You need only consider the primary charge carriers at this temperature.  

ne at RT = 3.1 x 1021/m3

mobility of electrons at RT = 550 m2/(V•s)

nh at RT = 6 x 1016/m3

mobility of holes at RT = 510 m2/(V•s)

charge (q) is q = 1.602 x 10-19 Coulombs = 1.602 x 10-19 Amp•sec

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