Q4. (a) Explain in detail how p-type and n-type semiconductors of a diode are formed. (b) Explain what happen inside the diode when it is forward bias and reverse bias. (c) The head of a hydropower station is 383 m while the average volume flow rate is 1430 m'/s. The reservoir at the back of the dam is a lake that encompasses an area of 6250 km². Determine the available water power for this hydropower station. A 3-blade, 500 kW wind turbine is expected to generate full power by using 12 m/s wind speed. The length of the blade is 16 m while the turbine rated speed is 55 RPM. Calculate the wind power generated. (d)
Q4. (a) Explain in detail how p-type and n-type semiconductors of a diode are formed. (b) Explain what happen inside the diode when it is forward bias and reverse bias. (c) The head of a hydropower station is 383 m while the average volume flow rate is 1430 m'/s. The reservoir at the back of the dam is a lake that encompasses an area of 6250 km². Determine the available water power for this hydropower station. A 3-blade, 500 kW wind turbine is expected to generate full power by using 12 m/s wind speed. The length of the blade is 16 m while the turbine rated speed is 55 RPM. Calculate the wind power generated. (d)
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
Problem 1P: Visit your local library (at school or home) and describe the extent to which it provides literature...
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Answer a,b,c,d

Transcribed Image Text:Q4. (a) Explain in detail how p-type and n-type semiconductors of a diode are formed.
Explain what happen inside the diode when it is forward bias and reverse bias.
The head of a hydropower station is 383 m while the average volume flow rate is
1430 m/s. The reservoir at the back of the dam is a lake that encompasses an area
of 6250 km?. Determine the available water power for this hydropower station.
A 3-blade, 500 kW wind turbine is expected to generate full power by using 12 m/s
wind speed. The length of the blade is 16 m while the turbine rated speed is 55
RPM. Calculate the wind power generated.
(d)
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