a mango of 3 g ia at a certain hight above the ground. the mango has a potential energy of 7J. suppose the mango falls.( take g= 9.8m/s2. determine the velosity of the mango
Q: A 42-kg pole vaulter running at 11 m/s vaults over the bar. Her speed when she is above the bar is…
A:
Q: 12. In the diagram below, if the mass of the car is 100 kg, R = 8 meters and h = 30 meters, then…
A: Mass of car: m = 100 kg Initial speed of car = 0 m/s Initial height of car: h = 30 m Final height of…
Q: 2. Larry and Moe carelessly lean against a 300 kg piano. It teeters off the edge of a 1.50 meter…
A:
Q: ) How much work must be done on a heavy object to lower it from a height where it has 4000 J of GPE…
A:
Q: A 54-kg pole vaulter running at 10 m/s vaults over the bar. Her speed when she is above the bar is…
A: Given:- mplayer= 50 kg vi= 10 m/s vf= 1.0 m/s yi= 0 m
Q: weight lifter hold 900N over his head. Is he doing work on weight? EXPLAIN.
A: The work done by the weight lifter can be given as, W=F.d Here, F denotes the force on the object is…
Q: Jacob is riding his bike down a tall hill. At the top of the hill, he has 2800J of potential energy.…
A: Whether the total amount of energy at the top is equal to the total amount of energy at the bottom…
Q: A 0.173-kg ball is thrown upward with an initial speed of 24 m/s, Calculate the gravitational…
A: At maximum height kinetic energy is equal to potential energy. Therefore, gravational Potential…
Q: Mary's gravitational potential energy is 1870 J when she sits 2.20 m above the ground in a sky…
A: In this question, we have to find the Mary weight. Please give a positive rating if the answer helps…
Q: .) If the iceboat started at rest, how much kinetic energy does the iceboat have at the end of the…
A:
Q: An 83kg man eats a banana of energy content 1.00x10^3 kcal. If all of the energy from the banana is…
A: Given that,Mass : m= 83 (kg)Energy : E =1×103 (kcal)Velocity : v0 = 0 (m/sec)Here we need to find…
Q: In calculating the work W necessary to stretch a spring from its natural length of 8 centimeters to…
A: SOlution: To calculate the work done on spring to stretch.
Q: Suppose a pendulum bob is swinging back and forth. If the highest point is 12.5 cm above the lowest…
A: Recall conservation of mechanical energy KEi+PEi=KEf+PEf
Q: 8. Conceptual question: An elastic spring requires work W in order to stretch it a distance x. In…
A: An elastic spring has a spring constant associated with it, which is a measure of the stiffness of…
Q: How much potential energy, in Joules, does a spring, with a spring constant of 328 N/m, have if it…
A:
Q: A 5.8 g marble is fired vertically upward using a spring gun. The spring must be compressed 9.7 cm…
A: Given: Mass of the marble = 5.8 g Compression in the spring = 9.7 cm Distance travelled by the…
Q: 1. Compare the forces needed to bring a 950 kg car to rest from a speed of 100 km/hr, in two…
A: Introduction: It is given that- Mass of the car m = 950 kg Initial speed of the car v = 100 km/h…
Q: You give a 5.0 kg box a quick shove up a ramp. It reaches a vertical height of 3.0 m before…
A: m = 5 kg h = 3 m vf = 0 m/s (Eth)f = 100 J g = 10 m/s2
Q: A 44-kg pole vaulter running at 10 m/s vaults over the bar. Her speed when she is above the bar is…
A: We must use conservation of energy in this question.
Q: A roller coaster is pulled up to a point A, 30.0 m above the ground where it and its screaming…
A:
Q: A 82 kg wooden block is pushed against a spring (not attached) compressing it through 25cm from its…
A:
Q: A 58-kg pole vaulter running at 10 m/s vaults over the bar. Her speed when she is above the bar is…
A:
Q: A 41-kg pole vaulter running at 11 m/s vaults over the bar. Her speed when she is above the bar is…
A: Given, Mass is 41 kg, Initial speed is 11 m/s and final speed is 1.5 m/s
Q: A roller coaster design is presented to you where the maximum speed of the car will be 9.00 meters…
A: according to the conservation of energy, the total mechanical energy at the lowest point of the…
Q: Ms. Dewitte's son, Theo, slides down a slide, from rest, with a length of 2.00 m at an incline of…
A: The height of the slide from the ground is, h = (length of slide)sin50° = 2sin50° = 1.53m Assuming…
Q: Melinda is pushing a chair along a 5 meter straight path through her living room. She is standing,…
A:
Q: 7. a) Use your energy equations to determine what height will a 0.042 kg baseball rise if it is…
A: a) Use your energy equations to determine what height will a O.042 kgbaseball rise if it is tossed…
Q: Some racetracks use "compression barriers" some of the energy of the impact when a car racecar hits…
A:
Q: x (m) The particle is released at x = 4.5 m with an initial speed of 6.0 m/s, headed in the negative…
A: Law of Conservation of Energy According to the law of conservation of energy, energy can neither be…
Q: A child of mass m = 16 kg slides down a slide of height h = 2.7 m without friction. Let…
A:
Q: 8. A spring is used to launch a small metal sphere of mass 100g vertically upward so that the ball…
A: Given:- ball mass = 100 g = 0.1 kg height…
a mango of 3 g ia at a certain hight above the ground. the mango has a potential energy of 7J. suppose the mango falls.( take g= 9.8m/s2. determine the velosity of the mango
![](/static/compass_v2/shared-icons/check-mark.png)
Step by step
Solved in 2 steps
![Blurred answer](/static/compass_v2/solution-images/blurred-answer.jpg)
- A hurricane wind blows across a 8m x 17m flat roof at a speed of 135 km/h. Calculate the force exerted on the roof. Hint: The thickness of the roof is small, so the change in potential energy between the inside of the house and the outside can be approximated to be zero. ρair =1. 28 kg/ m3 .You serve a volley ball with a mass of 2.1kg. The ball leaves your hand at 30m/s. The ball has _______ energy. Calculate it.. A pogo stick has a spring with a spring constant of 2.5×104N/m,, which can be compressed 12.0 cm. To what maximum height from the uncompressed spring can a child jump on the stick using only the energy in the spring, if the child and stick have a total mass of 40 kg?
- Discuss Potential Energy Diagrams Given Below: UpF Uc UB UA 0. 1 3. 4 6. 7 8 6. x (m)3. A crate of mass 10.0 kg is puiled up a rougn incine with an initial speed of 1.5 m/s the pulling force is 100 N parallel to the incline, which makes an angle of 20 with the horizontal. The coefficient of kinetic friction Is 04, and the crate is puiled 5.0 m (a) How much work is done by the gravitational force on the crate? (b) Determine the increase in internal energy of the crate-incline system owing to friction. (c) How much work is done by the 100-N force on the crate? (e) What is the speed of the crate after being pulled 5.0 m?