Physics, 26.09.2019 22:30 jessicad8776
Ahawk flying at 13 m/s at an altitude of 156 m accidentally drops its prey. the parabolic trajectory of the falling prey is described by the equation y = 156 − x2 39 until it hits the ground, where y is its height above the ground and x is its horizontal distance traveled in meters. calculate the distance traveled by the prey from the time it is dropped until the time it hits the ground. express your answer correct to the nearest tenth of a meter.
Answers: 3
Physics, 22.06.2019 14:00, batmanmarie2004
Awater balloon launcher uses an elastic band with a spring constant of 115 n/m to use thee launcher you stretch thee band back with a balloon n it the water balloons have a mass of 1.3 kg a) if you stretch the band by 0.8 m, what elastic force will the band exert? b) with the band stretched 0.8 m, how much elastic potential energy is stored in the spring? c) if you release the band, it pushes forward. what is the kinetic energy of the balloon when it reaches the natural length of the band? d) what is the speed of the balloon when it reaches the natural length of the band?
Answers: 1
Physics, 22.06.2019 16:40, sabrinarea041904
Which are true about beta reactions? there will be more than one answer. a. it has no change b. it doesn't change the mass of the number c. it has a mass of 0.0005 atoms d. it causes transmutation.
Answers: 3
Physics, 22.06.2019 18:50, jtsizemore
An insulated thermos contains 148 g of water at 72.7 ˚c. you put in a 11.7 g ice cube at 0.00 ˚c to form a system of ice + original water. the specific heat of liquid water is 4190 j/kg•k; and the heat of fusion of water is 333 kj/kg. what is the net entropy change of the system from then until the system reaches the final (equilibrium) temperature?
Answers: 2
Ahawk flying at 13 m/s at an altitude of 156 m accidentally drops its prey. the parabolic trajectory...
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