(a) Show that for an R-L-C series circuit the power factor is equal to R / Z . ( Hint: Use the phasor diagram; see Figure 22.13b .) (b) Show that for any ac circuit, not just one containing pure resistance only, the average power delivered by the voltage source is given by P av = I 2 rms R.
(a) Show that for an R-L-C series circuit the power factor is equal to R / Z . ( Hint: Use the phasor diagram; see Figure 22.13b .) (b) Show that for any ac circuit, not just one containing pure resistance only, the average power delivered by the voltage source is given by P av = I 2 rms R.
(a) Show that for an R-L-C series circuit the power factor is equal to R/Z. (Hint: Use the phasor diagram; see Figure 22.13b.) (b) Show that for any ac circuit, not just one containing pure resistance only, the average power delivered by the voltage source is given by Pav = I2rmsR.
In a scene from The Avengers (the first one) Black Widow is boosted directly upwards by Captain America, where she then grabs on to a Chitauri speeder that is 15.0 feet above her and hangs on. She is in the air for 1.04 s. A) With what initial velocity was Black Widow launched? 1 m = 3.28 ft B) What was Black Widow’s velocity just before she grabbed the speeder? Assume upwards is the positive direction.
In Dark Souls 3 you can kill the Ancient Wyvern by dropping on its head from above it. Let’s say you jump off the ledge with an initial velocity of 3.86 mph and spend 1.72 s in the air before hitting the wyvern’s head. Assume the gravity is the same as that of Earth and upwards is the positive direction. Also, 1 mile = 1609 m. A) How high up is the the ledge you jumped from as measured from the wyvern’s head? B) What is your velocity when you hit the wyvern?
A) If Yoshi flings himself downwards at 9.76 miles per hour to hit an enemy 10.5 m below him, how fast is Yoshi traveling when he hits the enemy? 1 mile = 1609 m
Chapter 22 Solutions
College Physics Volume 1 (Chs. 1-16); Mastering Physics with Pearson eText -- ValuePack Access Card -- for College Physics (10th Edition)
College Physics: A Strategic Approach (3rd Edition)
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