



AG Using equation - V and figure below, draw schematic free energy-pressure curves for pure Fe at...
Using the Ag-Cu phase diagram shown below. Draw schematically
the Gibbs free energy curves of all phases at 900 C, 779 C, and 700
C.
1100 Liquid 1000 .9619. 900 Eutectic temperature 779 800ra 92% 8% 700 600 500 400 10 20 60 70 80 90 100 Cv AG Weight percent copper
5. Three steels with a composition of Fe-0.2 wt.% C, Fe-0.76 wt.% C and Fe-1.1 wt.% C are produced by melting and slowly cooling down to room temperature. By referring the phase diagram provided in figure 3, what would you expect in terms of phase changes (solidification sequence) in all three alloys as the temperature of the alloys reduces from melting temperature to room temperature? What will be the approximate weight fraction of each of those micro constituents at room...
Thermodynamics
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CALCULATIONS Question 1. Write the complete expression for the free energy change of the L = V equilibrium reaction for pure water (equation 2) at 100 bars and 300-C using the following data: Gy = -210330 joules/mole GL = -210330 joules/mole Recall that the right side (water vapor) of the reaction is the product side and left side (water liquid) of the reaction is the reactant side, Recall that we always calculate...
1) A and B are volatile liquids. In the figure below, the partial pressure of A and B in a liquid solution of these two substances (at T = 40.°C) is plotted against Xx, the mole fraction of A in the liquid solution. 400. P (tor) Pa 300 200 100 pa 0.0 0.2 0.4 0.8 1.0 0.6 mole fraction A a) Do A and B form an ideal liquid solution (yes/no)? [4 points) b) What is the value for paº,...
urgent
1) A and B are volatile liquids. In the figure below, the partial pressure of A and B in a liquid solution of these two substances (at T = 40.°C) is plotted against XX, the mole fraction of A in the liquid solution. 400 I p(tore) 300 200 100 0 0.0 0.2 04 0.8 1.0 0.6 mole fraction A a) Do A and B form an ideal liquid solution (yes/no)? [4 points) b) What is the value for psº,...
Tutorial Problem Draw the free-body diagram and derive the equation of motion in terms of 0 using Newton's second law of motion of the systems shown in Figure below. Derive the equation of motion using the principle of conservation of energy Pulley, mas moment of inertia at)
Tutorial Problem Draw the free-body diagram and derive the equation of motion in terms of 0 using Newton's second law of motion of the systems shown in Figure below. Derive the equation of...
e ana the gradient IV.1 The level curves of the function z fix, y) are sketched in the figure below: 20 50 100 10 150 10 20 30 Let u= (l,-) and v=죠(1,1) Estimate the derivatives at the indicated point: DJい IV.2 (The Directional Derivative) Compute the derivative of the function f(x,y,z)-sin(2x-y)+ cos(2y-2) Ft%r,-r) in the direction of the vector". (-2,-1, 2) at the point
e ana the gradient IV.1 The level curves of the function z fix, y) are...
b. At TR, calculate the number of free electrons (n) per mº for Ag assuming the electron mobility of Ag is; He. Ag = 0.012 m?NV-S c. For the same number of free electrons determined in b., if you were able to purify the Ag material and increase the electron mobility to 0.15 m²N - S, what is the new conductivity of Ag, Ag? Would this conductivity be greater or lesser than for the Ag in b.? LAANI UJ points...
Test 3-ENT 371 Electric Machines-Ch 7,8,9 Name: 04- Chapter 8 Synchronous Motors Referring to the V curves in Figure 8.13, the machine is at 50% load with a Unity Power Factor. Mark the operating point on the V-curve and estimate or determine: (a) The excitation voltage to maintain unity power factor is the machine is loaded to 50%? (b) If the load is increased to 100% and the field current is not changed, will the machine pull out of synchronism?...
A cantilever beam is shown in the figure below. Using the second-order integration method (moment-curvature equation): (a) Determine the equation of the deflection curve v(x) and draw the curve (6) Determine the deflection ve and the slope OB at B. Consider Young's Modulus E = 210x10° Pa. 2N А 200 mm B > 10 m 100 mm