PART A: Two parallel plates 0.5 cm apart are maintained at 298 and 301K. The space...
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PART A: Two parallel plates 0.5 cm apart are maintained at 298 and 301K. The space between the two plates is filled with H, (g) (o=1.9 Å' and (v) = 1773.4 ms ¹) Calculate the flow of heat between the two plates in J cm² s¹ (6 marks). I PART B: The viscosity coefficient of methane gas at 0°C is 1.026x10 g cm¹ s¹. Calculate the molecular diameter of methane assuming spherical geometry and (v) = 600.4 m s¹ (5 marks). PART C: The densities of acetone and water at 20°C are 0.792 and 0.9982 g ml¹ respectively. The viscosity of water is 1.005 x 102 poise at 20°C. If water requires 60.25 s to run between the marks on a viscometer and acetone requires 24.75 s, calculate the viscosity of acetone (4 marks). PART A: Two parallel plates 0.5 cm apart are maintained at 298 and 301K. The space between the two plates is filled with H, (g) (o=1.9 Å' and (v) = 1773.4 ms ¹) Calculate the flow of heat between the two plates in J cm² s¹ (6 marks). I PART B: The viscosity coefficient of methane gas at 0°C is 1.026x10 g cm¹ s¹. Calculate the molecular diameter of methane assuming spherical geometry and (v) = 600.4 m s¹ (5 marks). PART C: The densities of acetone and water at 20°C are 0.792 and 0.9982 g ml¹ respectively. The viscosity of water is 1.005 x 102 poise at 20°C. If water requires 60.25 s to run between the marks on a viscometer and acetone requires 24.75 s, calculate the viscosity of acetone (4 marks).
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PART A Two parallel plates 05 cm apart are maintained at 298 and 301K The space between the two plates is filled with H g 19 A2 and v 17734 m s1 Calcu... View the full answer
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