A/solid block of 2.0 kg mass slides steadily at a velocity Valong a vertical wall as shown in the figure below. A thin oil film of thickness h = 0.15 mm provides lubrication between the block and the...

I need the answer as soon as possibleA/solid block of 2.0 kg mass slides steadily at<br>a velocity Valong a vertical wall as shown in the<br>figure below. A thin oil film of thickness h = 0.15<br>mm provides lubrication between the block and<br>the wall. The surface area of the face of the block<br>in contact with the oil film is 0.04 m2. The velocity<br>distribution within the oil film gap is linear as<br>shown in the figure. Take dynamic viscosity of<br>oil as 7 x 10-3 Pa-s and acceleration due to<br>gravity as 10 m/s². Neglect weight of the oil. The<br>terminal velocity V (in m/s) of the block is<br>(correct to one decimal place).<br>-h3D0.15 mm<br>m = 2.0 kg<br>A = 0.04 m2<br>Impermeable<br>wall<br>

Extracted text: A/solid block of 2.0 kg mass slides steadily at a velocity Valong a vertical wall as shown in the figure below. A thin oil film of thickness h = 0.15 mm provides lubrication between the block and the wall. The surface area of the face of the block in contact with the oil film is 0.04 m2. The velocity distribution within the oil film gap is linear as shown in the figure. Take dynamic viscosity of oil as 7 x 10-3 Pa-s and acceleration due to gravity as 10 m/s². Neglect weight of the oil. The terminal velocity V (in m/s) of the block is (correct to one decimal place). -h3D0.15 mm m = 2.0 kg A = 0.04 m2 Impermeable wall

Jun 11, 2022
SOLUTION.PDF

Get Answer To This Question

Related Questions & Answers

More Questions »

Submit New Assignment

Copy and Paste Your Assignment Here