• Q : House with a catchment surface....
    Civil Engineering :

    A rainwater harvesting system will be installed on a house with a catchment surface of 140 m2.

  • Q : Equivalent thickness of a new concrete slab....
    Civil Engineering :

    Question: Calculate the equivalent thickness of a new concrete slab required if the new slab is reinforced with a 6x6 W2.1 wire mesh. Note: Please solve the given numerical and provide appropriate s

  • Q : Effective stress at a depth of 6m....
    Civil Engineering :

    Question: What is the effective stress at a depth of 6m? Note: Can someone please give me a step by step solution?

  • Q : Mean time until the next failure....
    Civil Engineering :

    Question 1: What is the probability that the voltage regulator fails during your ownership? Question 2: If your regulator fails after you own the automobile three years and it is replaced, what is th

  • Q : Probability that the rounded result....
    Civil Engineering :

    Question 1: What is the probability that the rounded result is 167 grams? Question 2: What is the probability that the rounded result is 167 grams or more?

  • Q : Plans and specifications to the client....
    Civil Engineering :

    Question: Would it be ethical for Engineer A to deliver over the plans and specifications to the client? Note: Please solve the given numerical and provide appropriate solution.

  • Q : Determine the total equivalent single axle loads....
    Civil Engineering :

    Question: Determine the total equivalent single axle loads (ESALs) over the design life. Note: Please provide full description.

  • Q : Channel to maintain an upstream depth....
    Civil Engineering :

    A rectangular, sharp crested weir with end contractions is 1.5 meters long. How high should the weir be placed in the channel to maintain an upstream depth of 2.25 meters for a discharge of 0.45 m^3

  • Q : Determine the volume of a single cstr....
    Civil Engineering :

    Determine the volume of a single CSTR which is required to achieve 95% removal (an effluent concentration of 5 mg/L). Note: Please provide full description.

  • Q : Describing pollutant concentrations in system....
    Civil Engineering :

    Question 1: Derive a relationship describing pollutant concentrations in this system. Question 2: Present a graphic illustrating the 2nd-order mass loss process ongoing in this treatment lagoon.

  • Q : Flush diverter for the rainwater harvesting system....
    Civil Engineering :

    A rainwater harvesting system will be installed on a house with a catchment surface of 140 m2.  1. Size a first flush diverter for the rainwater harvesting system.

  • Q : Cogeneration plant-combined heat and power....
    Civil Engineering :

    Question: What is the difference between a Cogeneration plant/Combined Heat and Power (CHP) and a Chilled Water Plant (CWP)?

  • Q : Determining the average savings....
    Civil Engineering :

    Assuming the building is located in a region with 4 months of winter with the outside temp of 10 and inside temp of 75? If the energy cost is $6.50 per million btus what is the average savings?

  • Q : Rod of a single crystal of pure aluminum....
    Civil Engineering :

    The goal is to produce a rod of a single crystal of pure aluminum, which has a critical resolved shear stress of 170 psi. The axial stress of 600 psi is applied and the rod deforms in a 450 directio

  • Q : Cyclic tension-compression stresses....
    Civil Engineering :

    Consider a metal component that is exposed to cyclic tension-compression stresses. If the fatigue lifetime of the part must be 1 x 107 cycles and it is known that the maximum initial surface crack l

  • Q : Calculate the elastic modulus of the steel....
    Civil Engineering :

    Question: Assuming that the deformation is entirely elastic, calculate the elastic modulus of the steel. Note: Please show guided help with steps and answer.

  • Q : Project the maximum daily demand for the wwtp....
    Civil Engineering :

    Question 1: Project the maximum daily demand for the WWTP after the new development is built. Question 2: If the WWTP must be able to meet the maximum daily demand, should its capacity be increased?

  • Q : Cyclic natural frequency of the system....
    Civil Engineering :

    Question: At what time (in seconds) would you expect the maximum velocity to occur if the cyclic natural frequency of the system is 5 Hz? Note: Please show the work not just the answer.

  • Q : Carbonaceous bod of the sample....
    Civil Engineering :

    Question 1: Estimate what the BOD5 should have been. Question 2: Estimate what the DO reading should have been on day 5. Question 3: Determine the ultimate carbonaceous BOD of the sample. Note: Provid

  • Q : Locate the point through the first partial derivatives....
    Civil Engineering :

    Develop a three-dimensional function with a saddle point, locate the point through the first partial derivatives, and confirm the point is a saddle by evaluating the Hessian matrix. Plot the functio

  • Q : Find the area and volume of the pipe....
    Civil Engineering :

    Question 1: Find the area and volume of the pipe and the amount of water the pipe can carry? Question 2: What is the total force of the water on the truss system of the building?

  • Q : Beginning with a general mass balance expression....
    Civil Engineering :

    Assuming the average influent pollutant concentration equals 45 mg/L and beginning with a general mass balance expression, derive a relationship describing pollutant concentrations in this system.

  • Q : Meaning of the hessian at the saddle point....
    Civil Engineering :

    Develop a three-dimensional function with a saddle point, locate the point through the first partial derivatives, and confirm the point is a saddle by evaluating the Hessian matrix. Plot the functio

  • Q : Calculate the flow rate....
    Civil Engineering :

    Question: If the total head lost through the pipe and nozzle is 5 m, calculate the flow rate in m3/s. Note: Please show guided help with steps and answer.

  • Q : Determining the amount of dirt....
    Civil Engineering :

    Question: Assuming side slopes of 1 to 1 what is the amount of dirt that will be excavated from the trench? Note: Show supporting computations in good form.

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