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REFERENCE: https://docs.google.com/document/d/1Mt6-S5t8myuV7At5MshT-6PwLT3Mpn1n0r1ahznwgnk/edit?usp=drivesdk Navigate Now it is time for you to apply what you have learned. Write your answers (with complete solutions and diagrams) on a

REFERENCE: https://docs.google.com/document/d/1Mt6-S5t8myuV7At5MshT-6PwLT3Mpn1n0r1ahznwgnk/edit?usp=drivesdk

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Navigate Now it is time for you to apply what you have learned. Write your answers (with complete solutions and diagrams) on a clean sheet of paper. Follow your teacher's instructions regarding submission. 1. A 185-gram smartphone connected to its charging cable is playfully whirled in a horizontal circle where it completes one revolution in 0.667 s. (Again, don't try this at home, kids! ) Its rotation is clockwise when viewed from the top. If the radius of the circular path is 78.0 cm, what are the magnitudes of the smartphone's (a) tangential velocity and (b) centripetal force through the cable. m = 185 g = .185 kg V= ? F. = ? r = 78.0 cm = .780 m 1 revolution in 0.667 s Figure 4. A smartphone being whirled in a horizontal circle. 2. A motorcyclist travels at a constant speed of 14.0 m/'s as it navigates around a rotonda. The static friction allowing it to stay in that path is 150. N. If the motorcyclist instead travels 4.0 m/'s faster, what is the required static friction

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