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In question 9.12, how much would profit increase if the materials costs are reduced by $200,000?
question 9.12
Given the following data, calculate the gross margin and the net income.
a nozzle is attached to a horizontal pipe and discharges water into the atmosphere as shown in the figure. the inflow
you have a kiln where theinterior is a cube with an edge length of 30 cm. the walls of the kiln are made of an
An alloy contains 105.0 kg of iron, 0.2 kg of carbon, and 1.0 kg of chromium. Calculate the alloy composition in weight percent. Calculate the alloy composition in atom percent.
Discuss in detail how the various thermal, visual and auditory factors can affect the comfort of the users of these spaces. State clearly any acceptable parameters that are relevant in your discussion. Justify the values you have stated.
A solid circular shaft made of 304 stainless steel uniformly tapers from a diameter of 1.5 inches to a diameter of 1.0 inches over a length of 3 feet. Objective: If the shaft transmits 100 hp at 2000 RPM, determine the maximum shear stress in the sha..
Consider the truss shown in(Figure 1).Suppose thatF=5.5kN. Determine the force in member EF,CF,BC and state if the member is in tension or compression.
To what extent have the objectives of the project been achieved? Where the objectives have not been fully achieved : why is this ?What do your results or findings tell you, what conclusions can you draw from these?
Write a term paper on Tooling design for composite manufacturing - how tooling is designed for different applications to make composite airplane parts and such.
For the preliminary design a power of 0.5kW/m^3 volume is to be used. Calculate the dimensions of the agitation system, rpm, and kW power.
determine the ocean depth at which the water becomes supercritical. assume the density of the water is that of fresh
a reversible heat engine receives heat from a heat source at 1000oc and has a thermal efficiency of 45. the heat engine
Derive an expression for the acceleration for the base motion from the velocity equation above. Derive an expression for z(t) using equation and the acceleration term you have calculated for the base
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