By Allan H. Robbins, Wilhelm C Miller
MultiSim and PSpice are built-in in examples through the textual content, with step by step directions and full-color display photos to assist scholars build circuits, attach meters, and try circuit operation utilizing refined computing device simulations.
More than 1,200 full-color images, diagrams, and illustrations support make clear and extend on center bankruptcy fabric, making even advanced techniques more straightforward to understand and offering amazing help for visible learners.
Nearly 1,600 perform difficulties, studying tests, and end-of-chapter routines inspire scholars to interact actively with the fabric, whereas permitting them to safely verify their knowing and establish components for extra reinforcement.
The textual content accommodates calculus as non-compulsory fabric to supply extra intensity and element, however it is brought steadily and provided rigorously to prevent intimidating scholars with a weaker arithmetic heritage.
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Additional resources for Circuit Analysis Theory and Practice
5 ϫ 104 volts to kilovolts c. 47 kW to watts f. 000 035 7 amps to microamps Determine the values to be inserted in the blanks. a. 150 kV ϭ ___ ϫ 103 V ϭ ___ ϫ 106 V b. 330 W ϭ ___ ϫ 10Ϫ3 W ϭ ___ ϫ 10Ϫ5 W Perform the indicated operations and express the answers in the units indicated. a. 4 mA ϭ ___ A ϭ ___ mA b. 600 MW ϩ 300 ϫ 104 W ϭ ___ MW Perform the indicated operations and express the answers in the units indicated. a. 2 ϫ 103 V ϭ ___ V b. 15 ϫ 105 V. What is its voltage in kV? Copyright 2012 Cengage Learning.
5 ϫ 10Ϫ4] d. 0045)2 ϫ (729)1ր3 i. 00872) ϫ (47)3] Ϫ 356 e. 8)2 27. For the following, a. convert numbers to power of ten notation, then perform the indicated computation, b. perform the operation directly on your calculator without conversion. What is your conclusion? 0352 ii. 007 91 28. Express each of the following in conventional notation. a. 9 ϫ 104 d. 97 ϫ 10Ϫ2 i. 0014 b. 1 ϫ 100 e. 97 ϫ 10Ϫ1 c. 6 ϫ 10Ϫ4 f. 97 ϫ 10Ϫ5 29. One coulomb (Chapter 2) is the amount of charge represented by 6 240 000 000 000 000 000 electrons.
65 Ϫ3 b. (1400)(27 ϫ 10 ) e. 01) 6 Ϫ4 c. 15 ϫ 10 )(14 ϫ 10 ) f. 001) 23. Repeat the directions in Question 22 for each of the following. 125 3 ϫ 104 a. ᎏᎏ c. 8 ϫ 106) b. ᎏᎏ d. 2)(12 ϫ 10Ϫ5) 24. Determine the answers for the following. a. 05 ϩ 1259 ϫ 10Ϫ3 c. 95 ϫ 102 Ϫ 383 b. 3 ϫ 10Ϫ2 ϩ 1 ϫ 10Ϫ3 d. 01) 25. Convert the following to power of ten notation and, without using your calculator, determine the answers. 5 ϫ 106)(6000) a. 05)2 d. 2 ) 2 b. 05)2 e. ᎏᎏ (23 ϩ 1 )0 ϫ10Ϫ3 2 (3 ϫ 2 ϫ 10) c. ᎏᎏ (2 ϫ 5 ϫ 10Ϫ1) 26.
Circuit Analysis Theory and Practice by Allan H. Robbins, Wilhelm C Miller