Problem 3: Let's say you have a flat plate, placed on the table. The coefficient of friction is 0.20. The mass of the plate is 0.2 kg. It has a length of 2 m and the width of 1 m. Next you have air at 200C flowing over the top surface with velocity of 25 m/s. You have a small metal rod that holding the plate in place. What is the force on the rod necessary to keep the plate from moving. Support Rod Plate Table The friction drag for mixed flow can be calculated using: 0.455 FD= (log Rez) 2.58 (1/2)pU (bL)- 0.0740 (Rez)a (1/2)pʊ² (bza) 1.328 + (1/2)p (b) √(Rez) The friction drag for laminar flow can be calculated using: 0.664bpU³L FDI- ✓REL TTI -M 1500 H -" -00 " " 1000 1000 1305 11310 G
Problem 3: Let's say you have a flat plate, placed on the table. The coefficient of friction is 0.20. The mass of the plate is 0.2 kg. It has a length of 2 m and the width of 1 m. Next you have air at 200C flowing over the top surface with velocity of 25 m/s. You have a small metal rod that holding the plate in place. What is the force on the rod necessary to keep the plate from moving. Support Rod Plate Table The friction drag for mixed flow can be calculated using: 0.455 FD= (log Rez) 2.58 (1/2)pU (bL)- 0.0740 (Rez)a (1/2)pʊ² (bza) 1.328 + (1/2)p (b) √(Rez) The friction drag for laminar flow can be calculated using: 0.664bpU³L FDI- ✓REL TTI -M 1500 H -" -00 " " 1000 1000 1305 11310 G
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
Problem 1.1MA
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