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- The city of Minneapolis, Minnesota is trying to assess the hydrologic impact of the conversion of a 2 acre grass field to a parking lot on surface runoff from a 10 year return period 4-hr duration storm event. (a) Determine the difference in surface runoff volume in inches for these two land types. Assume an antecedent moisture condition II and a hydrologic soil group B for a lawn in good condition with greater than 75% cover. (b) If the city wanted to collect all this excess surface runoff in a settling basin (i.e. the additional water generated from the parking lot). determine the capacity of this settling basin in cubic feet1. Most bridges contain interlocking steel grates (α steel = 1.2 x 10 - 5 ºC -1 ) that allow the bridge toexpand and contract with the changes in temperature. The Golden Gate Bridge in San Francisco isabout 1350 meters long.(A) The seasonal temperature variation in San Francisco ranges from about 0ºC to 30ºC. Howmuch will the bridge expand between these two extremes?(B) What percent of the length of a subcompact automobile, 2.5 meters, does this gaprepresent?2. Selena has a fire in her fireplace to warm her 20ºC apartment. She realizes that she hasaccidentally left the iron poker (α iron = 1.2 x 10 -5 ºC -1 ) in the fire. How hot is the fire if the 0.60-meter poker lengthens 0.30 cm?3. Just before midnight, when the air temperature of 10.0ºC, Karl stops and fills the 0.0600 m 3 gastank in his car. At noon the next day, when the temperature has risen to 32ºC, Karl finds a puddle ofgasoline (βgas = 3 x 10 -4 ºC -1 ) beneath his car.(A) How much gasoline spilled out of Karl's car?…another question: Within the field of mechanical engineering, what are the intricate interplays between fluid dynamics, heat transfer, and thermodynamics that engineers must meticulously analyze and optimize in order to design highly efficient and compact cooling systems for electronic devices, and how do these advancements contribute to the continuous evolution of computing technology and its diverse applications in modern society
- A gravity settling tank has a settling area of 5 (m) x 25 (m) and a capacity of 1000 m3 of suspension per hour. The densities of dispersed and continuous phases are 2000 and 1000 kg/m3 , respectively. Viscosity of the continuous phase is 1cP. a. Determine the minimum diameter of the dispersed phase that can be settled. b. As the viscosity of the continuous phase increases, how does the settling capacity change and whyDuring a mountain climbing trip it is observed that the water used to cook a meal boils at 93 °C rather than the standard 100 °C at sea level. At what altitude are the climbers preparing their meal? (See Physical Properties of Water (SI Units) and Properties of the U.S. Standard Atmosphere (SI Units) for data needed to solve this problem.) Wiley saids the answer is 2059.7m. I'd appreciate it if somebody would work it out for meDesign and study of floating Roofs for Oil storage tanks(*50 mm of rain above the roof) . what the Challenges and Solutions of that ?
- We kow that for resulting fluids, the force must be eperpendicular to the surface due to the absene of shearing forces.(Choices: False, depending on situation, sometimes, true)Imagine a narrow pipe, filled with fluid, in which the concentration of a certain type of molecule varies only along the length of the pipe (in the x direction). By considering the flux of these particles from both directions into a short segment ux, derive Fick's second law. Discuss the implications of this equation in some detail.Topic: Heat transfer Completely solve and box the final answer. 6. Water flows at 5m/s is passed through a tube of 2.5 cm diameter, it is found to be heated from 20degC to 60degC. The heating is achieved by condensing steam on the surface of the tube and subsequently the surface temperature of the tube is maintained at 90degC. Water properties are as follows: density=995kg/m3, kinematic viscosity=.657x10-6 m2/s, Pr=4.43, k=.628W/mK, cp=4178J/kgK. What is the heat absorbed by the water?
- A cylindrical barrel s feet in diameter of weight w lb isfloating in water as shown in Figure 1.3.17(a). After an initialdepression the barrel exhibits an up-and-down bobbing motionalong a vertical line. Using Figure 1.3.17(b), determine adifferential equation for the vertical displacement y(t) if theorigin is taken to be on the vertical axis at the surface of thewater when the barrel is at rest. Use Archimedes’ principle:Buoyancy, or upward force of the water on the barrel, isequal to the weight of the water displaced. Assume that thedownward direction is positive, that the weight density of wateris 62.4 lb/ft3, and that there is no resistance between the barreland the water.Topic: Heat transfer Completely solve and box the final answer. Water flows at 5m/s is passed through a tube of 2.5 cm diameter, it is found to be heated from 20degC to 60degC. The heating is achieved by condensing steam on the surface of the tube and subsequently the surface temperature of the tube is maintained at 90degC. Water properties are as follows: density=995kg/m3, kinematic viscosity=.657x10-6 m2/s, Pr=4.43, k=.628W/mK, cp=4178J/kgK. Determine the Reynolds number.Topic: Heat transfer Completely solve and box the final answer. 5. Water flows at 5m/s is passed through a tube of 2.5 cm diameter, it is found to be heated from 20degC to 60degC. The heating is achieved by condensing steam on the surface of the tube and subsequently the surface temperature of the tube is maintained at 90degC. Water properties are as follows: density=995kg/m3, kinematic viscosity=.657x10-6 m2/s, Pr=4.43, k=.628W/mK, cp=4178J/kgK. Find the thermal coefficient.