An annular stainless steel (type 304) fin of thickness 4 mm and outside diameter 2 cm is attached to a 1 cm OD tube. The fin is surrounded by a fluid at 40°C with a heat transfer coefficient of 40 W/m2K. The tube wall temperature is 120°C. Calculate: The fin efficiency Area of the fin The rate of heat transfer (W) from the fin.

Principles of Heat Transfer (Activate Learning with these NEW titles from Engineering!)
8th Edition
ISBN:9781305387102
Author:Kreith, Frank; Manglik, Raj M.
Publisher:Kreith, Frank; Manglik, Raj M.
Chapter3: Transient Heat Conduction
Section: Chapter Questions
Problem 3.10P: 3.10 A spherical shell satellite (3-m-OD, 1.25-cm-thick stainless steel walls) re-enters the...
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​​​​​​​can you please please do this one and please show all the work please 

An annular stainless steel (type 304) fin of thickness 4 mm and outside diameter 2 cm is
attached to a 1 cm OD tube. The fin is surrounded by a fluid at 40°C with a heat transfer
coefficient of 40 W/m2K. The tube wall temperature is 120°C. Calculate:
The fin efficiency
Area of the fin
The rate of heat transfer (W) from the fin.
Transcribed Image Text:An annular stainless steel (type 304) fin of thickness 4 mm and outside diameter 2 cm is attached to a 1 cm OD tube. The fin is surrounded by a fluid at 40°C with a heat transfer coefficient of 40 W/m2K. The tube wall temperature is 120°C. Calculate: The fin efficiency Area of the fin The rate of heat transfer (W) from the fin.
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