![SOLVED:A mass of 100 grams is attached to a spring whose constant is 1600 dynes/cm. After the mass reaches equilibrium, its support oscillates according to the formula h(t)=sin8 t, where h represents SOLVED:A mass of 100 grams is attached to a spring whose constant is 1600 dynes/cm. After the mass reaches equilibrium, its support oscillates according to the formula h(t)=sin8 t, where h represents](https://cdn.numerade.com/previews/f000c7a6-ea66-481b-978c-0164d8389cf7_large.jpg)
SOLVED:A mass of 100 grams is attached to a spring whose constant is 1600 dynes/cm. After the mass reaches equilibrium, its support oscillates according to the formula h(t)=sin8 t, where h represents
![SOLVED: An object of mass 100 g is at rest. A net force of 2000 dynes is applied for 10 sec. What is the final velocity? How far will the object have SOLVED: An object of mass 100 g is at rest. A net force of 2000 dynes is applied for 10 sec. What is the final velocity? How far will the object have](https://cdn.numerade.com/ask_previews/295ae964-eee8-44ea-8636-a8c1109aebdb_large.jpg)
SOLVED: An object of mass 100 g is at rest. A net force of 2000 dynes is applied for 10 sec. What is the final velocity? How far will the object have
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In CGS system the magnitude ofvthe force is 100dyne IN another system where the fundamental physical quantites are kg meter and minutes the magnitude of the force i
![SOLVED: A force of 100 dynes acts on a mass of 5 gram for 10 sec. The velocity produced is (a) 2000 cm /sec (b) 200 cm /sec (c) 20 cm /sec (d) 2 cm /se SOLVED: A force of 100 dynes acts on a mass of 5 gram for 10 sec. The velocity produced is (a) 2000 cm /sec (b) 200 cm /sec (c) 20 cm /sec (d) 2 cm /se](https://cdn.numerade.com/ask_previews/7e43c580-329f-4a2b-ad82-3ee1228a4e2f_large.jpg)
SOLVED: A force of 100 dynes acts on a mass of 5 gram for 10 sec. The velocity produced is (a) 2000 cm /sec (b) 200 cm /sec (c) 20 cm /sec (d) 2 cm /se
![A particle moves on a line according to the law s = at^2 + bt + c . If the displacement after 1 sec is 16 cm, the velocity after 2 sec A particle moves on a line according to the law s = at^2 + bt + c . If the displacement after 1 sec is 16 cm, the velocity after 2 sec](https://dwes9vv9u0550.cloudfront.net/images/4946285/c7971543-4af7-4eb9-a25f-2aef772527d0.jpg)
A particle moves on a line according to the law s = at^2 + bt + c . If the displacement after 1 sec is 16 cm, the velocity after 2 sec
![SOLVED:In Problems 39-44, an object of mass m (in grams) attached to a coiled spring with damping factor b (in grams per second) is pulled down adistance a (in centimeters) from its SOLVED:In Problems 39-44, an object of mass m (in grams) attached to a coiled spring with damping factor b (in grams per second) is pulled down adistance a (in centimeters) from its](https://cdn.numerade.com/previews/fea48338-b253-48c9-8703-762176d2309f_large.jpg)