Q1: A converging-diverging frictionless nozzle is used to accelerate an airstream emanating from a large chamber. The nozzle has an exit area of 30cm² and a throat area of 15cm². If the chamber temperature is 500K, and the back pressure is 101kPa, calculate the following: a. Minimunt chamber pressure (po) to choke the nozzle. b. Mass flow rate for a chamber pressure (p.) of 400kPa. c. Mass flow rate for a chamber pressure (po) of 105kPa.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Q1:
A converging-diverging frictionless nozzle is used to accelerate an airstream emanating from a large
chamber. The nozzle has an exit area of 30cm² and a throat area of 15cm². If the chamber temperature is
500K, and the back pressure is 101kPa, calculate the following:
a. Minimunt chamber pressure (po) to choke the nozzle.
b. Mass flow rate for a chamber pressure (po) of 400kPa.
c. Mass flow rate for a chamber pressure (po) of 105kPa.
Transcribed Image Text:Q1: A converging-diverging frictionless nozzle is used to accelerate an airstream emanating from a large chamber. The nozzle has an exit area of 30cm² and a throat area of 15cm². If the chamber temperature is 500K, and the back pressure is 101kPa, calculate the following: a. Minimunt chamber pressure (po) to choke the nozzle. b. Mass flow rate for a chamber pressure (po) of 400kPa. c. Mass flow rate for a chamber pressure (po) of 105kPa.
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