Engineering fluid mechanics crowe 8th edition




















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Interact Link to us Feedback Mailing lists. Articles BookFinder. Therefore, lift is a surface force, not a body force. A body force is one caused by a …eld, such as a magnetic, gravitational, or electrical …eld. Conclusion: A lift force is a surface force.

Show your work, using conversion factors found in Table F. Show your work - e. A 2-liter bottle of water? A typical adult male? A typical automobile? Show your work, and cancel and carry units. Express your answer in SI units. Select all that apply. State your answers in SI units and in traditional units. The density of water at room conditions is known Table A.

The density of air at room conditions is known Table A. From the Internet, dry air has a molar mass of This makes sense, because the molecules in a liquid are held together by weak inter-molecular bonding, and in gases they are not; see Table 1.

Volume inside the tank is constant, as is the mass. Mass is related to volume by density. In the problem statement, the temperatures were given in Celsius. We need to convert the given temperatures to Kelvin in order to relate them to the pressures. We see therefore that the ratio of temperatures in K is not Compare calculated density with the value from Table A.

From Table A. PLAN 1. First, apply the ideal gas law to …nd density. Apply the ideal gas law to …nd density. Moles of methane can be related to mass by molecular weight.

Find V using form of Ideal Gas Law containing the mass term. Solve for D as per step 1. Methane, CH4 , has a molecular weight of 16 mol g. Thus, 10 moles of methane weighs g, or 0. Solve for V as per step 1. Find: Ratio of …nal mass to initial mass in the tank. PLAN Use the ideal gas law to develop a formula for the ratio of …nal mass to initial mass.

Combine Eqs. Volume and gas temperature are constant, so the cancel when making a ratio comparing case 1 to case 2. Find: Ratio of density of water to density of air. Properties: Air, Table A. Water o C , Table A.

Properties: o From Table A. Apply the ideal gas law to …nd density of oxygen. Find the weight of the oxygen using speci…c weight and add to Wtank. Use ideal gas law, expressed in terms of density and the gas-speci…c not universal gas constant. Find the density for the case before the gas is released; and then mass from density, given the tank volume.

Find the density for the case after the gas is released, and the corresponding mass. Properties: J From Table A. Find: Mass of air using units of slugs and kg. Properties: From Table A. This assumption is not safe if extreme accuracy is required because the mass will be somewhat less than we calculated because density decreases with altitude. However our calculation is a good estimate for the purpose of illustrating that we are walking around at the bottom of a heavy ocean of air!

Find: Estimate the volume of the raft. Properties: CO2 ; Table A. Find volume using the formula for a cylinder. Find density using the ideal gas law IGL. Calculate mass. This would require a large and potentially expensive CO2 tank. Thus, this design idea may be impractical for a product that is driven by cost. Force, energy, power. Viscosity, surface tension. Force, lbf, N, dyne. Energy, J, ft lbf, Btu. Note to instructor - you may want to review these to …nd any excellent perspectives raised by one or more students, to share with the class.

Look up conversion ratios in Table F. Follow the process for the grid method given in the text. Look up conversion formulas in Table F. Situation: Wind is hitting a window of building.

Find: a. Express the answer in pascals. Express the answer in pounds force per square inch psi. Express the answer in inches of water column in-H2 0. PLAN Follow the process for the grid method given in the text. Situation: A cyclist is traveling along a road.

Find: a Find power in watts. Situation: A pump operates for one year.



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