Engineering Circuit Analysis 9th Edition
1. Convert the following to engineering notation: (a) 0.045 W 45103 W = 45 mW (b) 2000 pJ 2000 1012 2 109 J = 2 nJ (c) 0.1 ns 0.1109 100 1012 s = 100 ps (d) 39,212 as = 3.9212×104×10-18 = 39.212×10-15 s = (f) 18,000 m 18 103m= 18 km (g) 2,500,000,000,000 bits 2.51012 bits = 2.5 terabits 1015 atoms 102 cm 3 (h) 1021 atoms/m3 (it’s unclear what a “zeta atom” is) cm3 1 m 39.212 fs 2. Convert the following to engineering notation: (a) 1230 fs 1.23103 1015 1.231012 s = 1.23 ps (b) 0.0001 decimeter 1104 101 10106 m (c) 1400 mK 1.4 103 103 1.4 K = 10 m (d) 32 nm 32 109 m = (e) 13,560 kHz 1.356 104 103 13.56 106 Hz = (f) 2021 micromoles 2.021103 106 2.021103moles = (g) 13 deciliters 13101 1.3 liters (h) 1 hectometer 100 meters 2.021 millimoles 13.56 MHz 32 nm 3. Express the following in engineering units: (a) 1212 mV = 1.121 V (b) 1011 pA = 1011×10-12= 100 mA (c) 1000 yoctoseconds 1103 1024 11021 seconds = 1 zs (e) 13,100 attoseconds 1.311015 s = 1.31 fs (f) 10−14 zettasecond=10-14×1021=107=10×106 s = 10 Ms (g) 10−5 second 10106 seconds = (h) 10−9 Gs109 109 1 second (d) 33.9997 zeptoseconds 10 s 4. Expand the following distances in simple meters: (a) 1 Zm 11021 m (b) 1 Em 11018 m (c) 1 Pm 11015 m (d) 1 Tm 11012 m (e) 1 Gm 1109 m (f) 1 Mm 1106 m (c) 0 K 5. Convert the following to SI units, taking care to employ proper engineering notation: (a) 212F 212 32 5 273.15 373.15 K 9 (b) 0F 0 32 5 273.15 255.37 K 9 (d) 200 hp 200 745.7 W 1 hp 1.4914 105 W 149.14 103 W = 149.14 kW (e) 1 yard 0.9144 m 914.4 mm (f) 1 mile 1 1760 yards 0.9144 m 1,609.3 m 1.6093 km 1 mile 1 yard (a) 373.15 K (c) 4.2 K 6. Convert the following to SI units, taking care to employ proper engineering notation: (b) 273.15 K (already in SI) (d) 150 hp 150 745.7 W 1 hp 1.11855 105 W 111.855 103 W = 111.855 kW (e) 500 Btu 5001055 J 5.275 105 J 527.5 103 J 527.5 kJ 1 Btu (f) 100 J/s 100 W 7. It takes you approximately 2 hours to finish your homework on thermodynamics. Since it feels like it took forever, how many galactic years does this correspond to? (1 galactic year = 250 million years) 2 hours 1 day 24 hours 1 year 365 days galactic years 250 106 years 913.24 1015 galactic years (or, 913.24 femto-galactic-years!) 8. A certain krypton fluoride laser generates 15 ns long pulses, each of which contains 550 mJ of energy. (a) Calculate the power using the pulse energy over the 15 ns duration. p w t 550 mJ 15 ns 550 103 J 7 15109 s 3.6667 10 W 36.667 MW (b) If up to 100 pulses can be generated per second, calculate the maximum average power output of the laser. In this case, look at the total energy of 100 pulses over the one second duration. p w 100 pulses 550 mJ 55 W t 1 s 9. Your recommended daily food intake is 2,500 food calories (kcal). If all of this energy is efficiently processed, what would your average power output be? 2500 103 cal 4.187 J 10.4675 106 J cal p w t 10.4675 106 J 24 h / day60 min / h60 s / min 121.15 W 10. An electric vehicle is driven by a single motor rated at 40 hp. If the motor is run continuously for 3 h at maximum output, calculate the electrical energy consumed. Express your answer in SI units using engineering notation. w pt 40 hp 745.7 W 3 h 3600 s 3.2214 108 J 322.14 106 J 1 hp 1 h = 322.14 Mj
Escuela, estudio y materia
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- Nursing pharmacology
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- Nursing pharmacology
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- Subido en
- 15 de noviembre de 2023
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- 2023/2024
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engineering circuit analysis 9th edition
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engineering circuit analysis 9th edition
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engineering circuit analysis 9th edition
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engineering circuit analysis 9th edit
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engineering circuit analysis 9th editio