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A hollow, conducting sphere with an outer radius of 0.260 mm and an inner radius of 0.200 mm has a uniform surface charge density of +6.67 ×× 10−6−6 C/m2C/m2. A charge of -0.800 μCμC is now introduced into the cavity inside the sphere. What is the electric flux through a spherical surface in the cavity just inside the inner surface of the sphere?What is the electric flux through a spherical surface in the cavity just inside the inner surface of the sphere?

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Derive a CMOS complex gate (CMOS implementation) for the Boolean logic function f = AB + CD. How many transistors would that take? How many transistors would it take if you only used AND, OR, and INV gates, and then replaced them with standard CMOS implementations of those gates? How many transistors if you were only allowed to use NAND gates?

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19. If you're going to make a long splice in a 1-inch wire rope, what's the least amount of rope that you'll need? A. 40 feet B. 35 feet C. 45 feet D. 30 feet 20. Your inspection of a wire rope shows two parallel paths of broken wires. What would you list in your report as the primary cause of the damage? A. Failure of core support B. Operation over small sheaves under heavy loads C. The rope jumping a sheave D. The rope running through an undersize groove

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Please solve all parts of the question. Thank you, will rate up!! 3. Transient response of a first-order RL circuit Assumptions: 1. i_z<0=0, i.e. the inductor current for <0 is 0A. Question(s): a. 5 points Determine i_t=0 b. 5 points Determine I_sc, the short circuit current. Hint: determine the Norton equivalent circuit. c. 5 points Determine R_g, the equivalent resistance seen by L. d. 5 points Determine i_for >0 e. 5 points Determine i_zt= 5 points Determine v for >0. g. 5 points Determine v_t=0*-v_t=0, i.e. the spike in r_t at t=0.

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CH$_3$CHO$(g)$ ? CH$_4$ $(g)$ + CO $(g)$\newlineTrial $[CH_3CHO]$ mol/L Rate $\frac{?[CH_3CHO]}{?t}$ \newline1 1.75 x 10$^{-3}$ 2.06 x 10$^{-11}$ \newline2 3.50 x 10$^{-3}$ 8.24 x 10$^{-11}$ \newline3 7.00 x 10$^{-3}$ 3.30 x 10$^{-10}$ \newlineDetermine the order of reaction for both reactants and write the Rate Law: \newlineCalculate the rate constant (k)

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An unknown sample is analyzed by X-ray diffraction. An iron X-ray tube is used ($K_\alpha$=1.54Ã…). The following data are obtained. Complete the table using Bragg's Law ($I/I_o$ is the intensity/intensity of strongest peak expressed as a percent). $\theta$ Intensity (cps) 2.9 12481 8.8 12541 9.8 9406 13.3 15677 18.2 9249 20.2 6270 26.6 3135 d(Ã…) $(I/I_o) \times 100$

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Question 8 If someone modifies the field type in a table of a database, it is the audit for • logon • DDL • SQL • XML • DML 2 pts

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Question 19 If we are presented with a task that we would rather not do, it helps to have ____ motivation. extrinsic intrinsic autonomy purpose 0.5 pts

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Question 1 of 55 Case 408 462 324 608 The Everything Show 1828 Rve 1829 Ce $12,762.00 372 Oxford 82 Eer 725 282 Columbus 28 Lakeview Answer the question below using the Customer Table: Display the Customer Name of all customers (in ascending order) whose Rep number (RepNum) is equal to 65 and all customers that have a balance ranging from 3000 to 10000. (Note: do not include the $ and comma symbols in your answer)

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A lowpass IIR digital filter is required to have a 1 dB ripple in the passband of 0.24 and at least 60 dB of attenuation in the stopband of 0.3. (a) Determine the required filter order for a digital Butterworth filter. (5 points) (b) Determine the required filter order for a digital Chebyshev filter. (5 points)

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