The graph below illustrates the effect of temperature on the conductivity of an extrinsic semiconductor. Which stage most semiconductor devices can be operated? 1 III ind log, o high temp. IT low temp. Select one: a. No correct answer given b. Stage 2 because of the constant behaviour O c. Stage 3 because increasing the temperature increase the conductivity of semiconductor. Od. Stage 1 because low temperature increases the conductivity of materials. uestion 1 For some applications, gold is used as electrical conductor instead of copper because.

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Question
The graph below illustrates the effect of temperature on the conductivity of an
extrinsic semiconductor. Which stage most semiconductor devices can be
operated?
III
II
by
log, o
low
high temp.
IT
temp.
Select one:
O a. No correct answer given
O b. Stage 2 because of the constant behaviour
O c. Stage 3 because increasing the temperature increase the conductivity of
semiconductor.
d.
Stage 1 because low temperature increases the conductivity of
materials.
Question 1
For some applications, gold is used as electrical conductor instead of copper
because.
Select one:
a. all the answers are wrong
b.
Less density and cheaper than copper
С.
Easily oxidised and react with other material
O d.
It has higher conductivity than copper
e.
Good ductility and high strength
Transcribed Image Text:The graph below illustrates the effect of temperature on the conductivity of an extrinsic semiconductor. Which stage most semiconductor devices can be operated? III II by log, o low high temp. IT temp. Select one: O a. No correct answer given O b. Stage 2 because of the constant behaviour O c. Stage 3 because increasing the temperature increase the conductivity of semiconductor. d. Stage 1 because low temperature increases the conductivity of materials. Question 1 For some applications, gold is used as electrical conductor instead of copper because. Select one: a. all the answers are wrong b. Less density and cheaper than copper С. Easily oxidised and react with other material O d. It has higher conductivity than copper e. Good ductility and high strength
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