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  • Q1:Stack monitoring data is available for a paint booth. The measured average concentration of toluene is 0.1 ppmv (dry gas basis). The moisture content in the stack is typically 10%, and stack conditions are maintained at 80 °C and atmospheric pressure. The stack gas velocity is 8 m/s. The diameter of the stack is 0.3 m. If the paint booth is used 8 hours per day, 5 days per week, 52 weeks per year then calculate the: a) Volumetric flowrate. (m³/s) b) Molar volume (L/mol) c) Air release (lbs/year) NOTE: Air Release = (volumetric flow, m³ /s) × (concentration, mg/m³) × (operating time, sec/year)See Answer
  • Q2:Q3) The electric field and magnetic field in free space are given by E(z,t) = 754cos (106t + Bz)ax H(z,t) = 2cos (106t + Bz)ay Express these in phasor form and determine ß and Vpsuch that the fields satisfy Maxwell's equationsSee Answer
  • Q3:3. Flue gas stream of 4xy m3/s (x and y are the last two digits of your Sheridan ID number; for example, if the last two digits of your ID number are 78, your gas flow rate is 478 m3/s) is to be treated by an electrostatic precipitator to remove fly ash. a. What plate area is required to remove 1.0 um particles with 80% efficiency if the ash drift velocity is w = 2.57x105 dp? (3 marks) b. Calculate also plate area required to achieve 85%, 90%, and 95 % removal efficiencies of the same particles. (3 marks) c. Calculate % of the plate area increase required to increase removal efficiency from 80% to 85%. Also, calculate % of the plate area increase required to increase removal efficiency from 85% to 90% and from 90% to 95%. Discuss your results. (3 marks) d. Draw a graph of plate area vs removal efficiency. (2 marks)See Answer
  • Q4: Estimate the mixing power (Pm) in watt of a motor needed to mix water in a rapid mixing tank if the volume of the tank is 6.1 m3, motor energy transmission efficency E = 0.8, viscosity µ is 0.89 × 10-3 kg/m.s and the velocity gradient G is 944 (round your answer to the nearest whole number)See Answer
  • Q5: Estimate the water depth (Hw) in meters of a rapid mixing tank with a water volume of 7.9, a square cross section with width, Ww and a water depth equal to116% of Ww See Answer
  • Q6: Find the volume (m³) of a Rapid Mixing Coagulation System if the Design Flow is 82,838 m³/d and Detention Time is 22 seconds. (Round your answer to the nearest one decimal place, for example 15.1)See Answer
  • Q7: What is the minimum number of rapid mixing tanks do you recommend if the total volume of a rapid mixing system is 18.4 m³ and if the volume of any of the tanks can not exceed 8 m³? (Your answer should be a whole number)See Answer

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