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- Note: Kindly provide a solution pls. The answer is already provided. Thank you! 14. The gasoline tank of a car contains 57 liters of gasoline and alcohol. The alcohol comprises 37%. How much (in liters) of the mixture must be drawn off and replaced by alcohol so that the tank contains a mixture of which 68% is alcohol? Round off to two decimal places. Ans: 28.05Speed measurement is made with a pitot tube by connecting a mercury manometer to a vertical pipeline through which water is transmitted. If the deviation in the manometer column is 15 cm, calculate the speed of the water in the pipe.?mercury = 13560 ???3, ?water = 1000 ???3 (figure in picture) #fluidmechanicsIn the simplified depiction of an ice rink with an ice resurfacing machine operating (shown in Figure), points 1 and 3 represent the ventilation air intake and exhaust for the entire ice rink, and point 2 is the resurfacing machine's exhaust. Conditions at each point are (C indicates the concentration of carbon monoxide, CO): point 1: Q1=3.0 m3/s, C1=10 mg/m3; point 2: emission rate = 8 mg/s of nonreactive CO; point 3: Q3, C3 unknown. The ice rink volume (V) is 5.0 x 104 m3. (a) Define a control volume as the interior of the ice rink. What is the mass flux of CO into the control volume, in units of mg/s? (b) Assume that the resurfacing machine has been operating for a very long time, and that the air within the ice rink is well mixed. What is the concentration of CO within the ice rink, in units of mg/m3? loe Rink
- In an experiment on a venturi meter installed in a 300 mm diameter pipe, themercury in the differential U-tube manometer connected to the venturi meterdeflects 73 mm when 73 l/s of water is flowing in the pipe. If the diameter of thethroat of the venturi is 150 mm, calculate Cd for the venturi.PROBLEM 5: The water in a tank is pressurized by air, and the pressure is measured by a multifluid manometer as shown. Determine the gage pressure of air in the tank if h1 = 16", h2 = 24", and h3 = 30". Take the densities of water, oil, and mercury to be 1.94, 1.65 and 26.39 slugs/ft^3, respectively. - Oil Air Water h2 h3 Mercury Your answerThe rate of change of a particular substance is related to the amount of material that remains unaltered or unchanged. If the quantity of substance is 10 grams at the start and 5 grams at the end of two minutes, calculate the quantity remains after six minutes. a.) 3.75 grams b.) 5.00 grams c.) 1.25 grams d.) 2.50 grams
- АСTIVITY 2 Direction: solve and analyze each of the following problem in neat and orderly manner. Do this in your indicated format. 1. A thermometer reading 18°C is brought into a room where the temperature is 70°C ; 1 minute later the thermometer reading is 31°C. determine the thermometer reading 5 minutes after its brought into the room.In a relative density test, the following values are recorded: Dry mass = 3017 g Submerged mass = 1050 g Saturated, Surface Dry (SSD) mass = 3033 g Find the relative density values (RDapparent, RDbulk, and RDSSD) by first completing the phase diagram. (write answers in the phase diagram to the nearest whole number. Write the relative density answers to two decimal places.) VOLUME MASS Va = cm3 AIR Ma = grams Vw = cm3 WATER Mw = grams Vs = cm3 SOLIDS Ms = grams VT = cm3 MT = grams RDapparent = RDbulk = RDSSD =A tank contains gasoline and glycerine with open piezometer tubes attached as shown. The depths of fluids inside the tank are 2 m for air, 1.5 m for gasoline, 1 m for glycerine. The air pressure measured by the gage is 1.5 kPa. Unit weights are 6670 N/m3 for gasoline and 12360 N/m3 for glycerine. Air Gasoline Glycerine 6.0 Find the height of gasoline in the tube measured from the gasoline-glycerine interface. a.) 1.72 m b.) 1.22 m c.) 0.22 m d.) 2.72 m 7.0 Find the height of glycerine in the tube measured from the air-gasoline interface. a.) 0.93 m b.) 0.43 m c.) 0.57 m d.) 1.93 m e.)
- Compute for the ultimate BOD and the rate constant for the following set of data. Time (days) BOD (mg/L) 0 1 2 3 4 5 6 7 0.00 1.60 3.00 3.86 4.74 5.14 6.68 7.74 Thank youAs an engineer working for a water bottling company, you collect the following data in order to test the performance of the bottling systems. Plot the data and calculate the mean and standard deviation. Milliliters of Water Frequency in the Bottle 485 13 490 17 495 25 500 40 505 23 510 18 515 15Engineering statistics, i need solutions in 10 minutes please. MCQ/The table below shows a frequency distribution of the lifetimes of electronic tubes produced at a factory, determine the percentage of electronic tubes with lifetimes are at least 400 hours but less than 700 hours. A-19% B-29.5% C-78% D-51.5% E-45%