A flow of 50 m3/s of air exits a manufacturing facility, containing particles whose drift ve m/s. Assume that 99.2 percent removal efficiency is required. (a) Calculate the total plate for an electrostatic precipitator. (b) Estimate how many plates are needed. Assume the p for this unit measure 2 m by 5 m.
A flow of 50 m3/s of air exits a manufacturing facility, containing particles whose drift ve m/s. Assume that 99.2 percent removal efficiency is required. (a) Calculate the total plate for an electrostatic precipitator. (b) Estimate how many plates are needed. Assume the p for this unit measure 2 m by 5 m.
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![A flow of 50 m3/s of air exits a manufacturing facility, containing particles whose drift velocity is 0.121
m/s. Assume that 99.2 percent removal efficiency is required. (a) Calculate the total plate surface area
for an electrostatic precipitator. (b) Estimate how many plates are needed. Assume the plates available
for this unit measure 2 m by 5 m.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fbddcb004-5e94-495d-ad26-41fd109f9bb4%2Fe0f7d88b-6707-4517-b13a-6a4aa0693cb3%2Fzzvge8r_processed.png&w=3840&q=75)
Transcribed Image Text:A flow of 50 m3/s of air exits a manufacturing facility, containing particles whose drift velocity is 0.121
m/s. Assume that 99.2 percent removal efficiency is required. (a) Calculate the total plate surface area
for an electrostatic precipitator. (b) Estimate how many plates are needed. Assume the plates available
for this unit measure 2 m by 5 m.
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