4) The combined resistance RT of three resistors R1, R2, and R3 in parallel is given by 1 RT 1 1 + + 1 R1 R2 R3 Create variables for the three resistors and store values in each, and then calculate the combined resistance.
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- 2.897 lb air is at 1 atm, 360 °R in a vertical piston-cylinder assembly. The air is compressed to state 2 at 111.6 atm, and 250.95 °R, and obeys the polytropic rule (pvn = constant). During the process, 170 Btu releases from the process in the form of heat transfer. Determine: The specific volume of the air at state 1 and state 2 in The work of the process in Btu. The specific internal energy of the air at state 2 in Btu/lb If the area of the piston is 5 in.2 and the mass of the piston is negligible, compute the force that exerts on the piston to maintain the pressure at state 2. Given that the atmospheric pressure is 1 atm.Q2(a) Classify different types of hazards that could occur in digital logic system. (b) Given a function, F (W, X, Y, Z) = Σ (2, 3, 5, 7, 8, 10, 12, 13, 14, 15) (i) Classify the type of hazard that occurs in the function and compute the free hazard function. (ii) Sketch a hazard-free combinational logic circuit by using NAND gate only.The following system of equations is designed to determine concentrations (the c.s in g/m3), c1, c2, and c3, in a series of coupled reactors as a function of the amount of mass input to each reactor (the right-hand sides in g/day): 15c1 − 3c2 − c3 = 3800 −3c1 + 18c2 − 6c3 = 1200 −4c1 − c2 + 12c3 = 2350 57 Determine the value of the concentrations using the Gauss-Seidel method and using 0 as initial values until the absolute relative error reaches less than 1% or it reaches the 10th iteration which comes first.
- 1) The adder–subtractor circuit of Fig. 4.13 has the following values for mode input M and data inputs A and B. M A B(a) 0 0111 0110(b) 0 1000 1001(c) 1 1100 1000(d) 1 0101 1010(e) 1 0000 0001In each case, determine the values of the four SUM outputs, the carry C, and overflow V.where is it demonstrated that the Hamiltonian circuit's tour length is, at most, 4/3 times that of the ideal TSP trip.5 Find the activity factor at the output of each gate if P at A, B and C are all equal to ½, and the OR gate if replace with a NOR followed by an inverter.
- A. Show that the maximum efficiency of Class B power amplifier is (78.5 %). B. Calculate the input power, output power, and efficiency of the amplifier circuit in Fig. 1 for an input voltage that results in a base current of 10 mA peak.Consider the synchronous state machine described by the attached ASM. For this machine: a) Define the type of flip-flop to use for the state memory.Justify your answer. b) Determine the minimum next state calculation function, for a declaration of state variables: JKL. Minimize functions directly from the Karnaugh Maps of entered variable (without de-entering variables) No include schematic diagram. c) Obtain the minimum output function of the machine in SDP form. Minimize functions directly from variable Karnaugh Maps entered (without de-entering variables).Includes schematic diagram.e maximum amplitude of a sine wave is 2 V, the minimum amplitude is -2 V. why?
- Q.4 Referring to the system shown in Figure Q4 determine the values of K and k such that the system has a damping ratio 0.8, and an undumped natural frequency equal 4 rad/secA spontaneous exothermic reaction at a constant temperature and pressure of 50∘C and 2.0 atm has an enthalpy decrease of 350 kJ. This reaction performs 150 kJ of useful work, which is 54% of the maximum work that could be done. What is the reaction’s change of entropy? Express your answer to two significant figures and include the appropriate units.Consider two coupled dielectric slab waveguides .The two waveguides are identical to one another and have coupling coefficient:C=C12=C21=500 m-1 a)Find the length of the coupled waveguide structure that allows for complete power transfer from waveguide 1 to waveguide 2.b)Now assume that light is launched into both waveguides at the same power P0 and the same phase,but with linear X polarization in waveguide 1 and linear Y polarization in waveguide 2.Write expressions for the power and the polarization (normalized Jones vector)of the light in each waveguide as a function of the distance traveled.Assume that propagation constants and coupling coefficients are the same for both X and Y polarizations.