3 1 A.) On a flat floor, a 0.96 kg toy car is moving in a circle with a radius of 1.76 m. The amount of static een the r

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3 1 A.) On a flat floor, a 0.96 kg toy car is moving in a circle with a radius of 1.76 m. The amount of static een the r

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3 1 A On A Flat Floor A 0 96 Kg Toy Car Is Moving In A Circle With A Radius Of 1 76 M The Amount Of Static Een The R 1
3 1 A On A Flat Floor A 0 96 Kg Toy Car Is Moving In A Circle With A Radius Of 1 76 M The Amount Of Static Een The R 1 (232.39 KiB) Viewed 27 times
3 1 A On A Flat Floor A 0 96 Kg Toy Car Is Moving In A Circle With A Radius Of 1 76 M The Amount Of Static Een The R 2
3 1 A On A Flat Floor A 0 96 Kg Toy Car Is Moving In A Circle With A Radius Of 1 76 M The Amount Of Static Een The R 2 (232.39 KiB) Viewed 27 times
3 1 A.) On a flat floor, a 0.96 kg toy car is moving in a circle with a radius of 1.76 m. The amount of static een the road & the tires is 264 N. Determine the how fast the toy car is going. 1 B.) On a flat frictionless surface, a 1.35 kg block attached to a 1000 N/m spring is moving 2 m/s in circle. The maximum amount the spring can stretch (without breaking) is 0.03 m. Determine the minimum radius that won't cause the spring to break. Rmin

3 1 A.) On a flat floor, a 0.96 kg toy car is moving in a circle with a radius of 1.76 m. The amount of static een the road & the tires is 264 N. Determine the how fast the toy car is going. 1 B.) On a flat frictionless surface, a 1.35 kg block attached to a 1000 N/m spring is moving 2 m/s in circle. The maximum amount the spring can stretch (without breaking) is 0.03 m. Determine the minimum radius that won't cause the spring to break. Rmin
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