2. Fig. 19-11 shows a common-emitter stage driving a Darlington pair connected as an emitter follower. The B-values for the silicon transistors are B1 = 200, B2 = 100, and B3 = 100. Find Avs. %3D %3D %3D + 15 V 47 ka 3.3 k 5 ko 10 kn 10 0 Fig. 19-11
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- Q.1.(a) (i) Use Karnaugh map to minimize the following SOP expression and also implement the simplified expression. 04 Y = A'BC + A’B'C' + ABC' + AB'C'An aluminum wire having a cross-sectional area equal to 4.60 x 10-6 m? carries a current of 7.50 A. The density of aluminum is 2.70 g/cm³. Assume each aluminum atom supplies one conduction electron per atom. Find the drift speed of the electrons in the wire. 1.95E-4 The equation for the drift velocity includes the number of charge carriers per volume, which in this case is equal to the number of atoms per volume. How do you calculate that if you know the density and the atomic weight of aluminum? mm/sM D d T M. P- A circular shaft having diameters D and d and a groove of radius r (with M = 0 and P O) is made of steel with the allowable shear stress tall. Find the maximum torque I that can be transmitted by the shaft. Given: D = 28mm, d = 20mm, r = 4mm, and tall = 250 MPa. Please help with this question. The answer should be 157.1 Nm
- 7. A system is described by the following differential equation: dy +3- dr d²y dy dx d²x dx +5. +y=- +6- + &r dt dt3 dt2 dt Find the expression for the transfer function of the system, Y(s)/X(s). [Section: 2.3]6. Given the function F = [I(0, 1, 4, 6, 7,8,9) + Md(5, 10, 11,12) a. [10] Write the equation for F in reduced SOP form b. [10] Draw the circuit using AND gates, OR gates and INVERTERS. 0 c. [10] Draw the circuit using only NAND gates and INVERTERS.Q1) In the circuit of Fig. (1), if a copper wire of length 5 m and diameter 2 mm is used, find the resistivity of the wire. 20 V P=80mW R
- Ans [3.43A , 0.506 , 2.12A , 0.942] Q16/ The star-connected rotor of a 3-phase induction motor has a resistance and standstill reactance 0.4 Q/phase respectively. The e.m.f. induced between the slip rings at standstill is 80V, the stator being connected to a normal supply voltage. Find the rotor current and power factor at starting when the rings are (i) short-circuited (ii) joined to star-connected Ans [18.25A , 0.16,7.76 , 0.91] resistance of 52/phase.Example Question 1 A dynamometer-type AC ammeter made of moving coils and fixed coils with a shunt is used to measure current. The ammeter is designed to let 95% of the input curent flow through the shunt resistor. The moving coil's resistance is 10 2, and the shunt resistance is 0.004 2. The Table Q1 below gives the relation between the deflection and the mutual inductance of the ammeter. Table Q1 Deflection 2.44 (radian) (full- scale) 0.26 0.52 1.05 1.57 1.83 2.09 Mutual Inductance -325 -260 -180 180 263 325 373 (µH) If the input current that gives the full-scale deflection is = 6.7A, determine the following: (i) (ii) (iii) the current passing through the moving coil at full-scale deflection, the deflecting torque that gives full-scale deflection, the current passing through the fixed coil at half-scale deflection. (Hint: Plot the Mutual Inductance vs. Deflection graph based on the table above. Then, use the graph to solve parts (ii) and (iii))Problem 3(a-d) Please show work
- Problem 1 A beam AB is subjected to several vertical forces as shown. Write a computer program that can be used to determine the magnitude of the resultant of the forces and the distance x C to point C, the point where the line of action of the resultant intersects AB. - X,7 - X2- C A |BThe horizontal shaft AD is attached to a fixed base at D and is subjected to the torques as shown in Fig. 3. A 44-mm-diameter hole has been drilled into portion CD of the shaft. Knowing that the entire shaft is made of steel for which G = 77 GPa, determine the total angle of twist at end A. D 0.6m 60 mm 2000-m 1.2.m 250 №-m 30 mm 04mQ.1 Consider the logic circuit shown in Fig. below. Determine the Boolean expression at the circuit output X, simplify it using the simplified expression, and redraw the logic circuit. A O BO