Question

According to the principle of conservation of energy, the potential energy of the fizz at the...

According to the principle of conservation of energy, the potential energy of the fizz at the top of the flight is equal to the kinetic energy of the fizz when it emerges from the bottle. Write the equation for the kinetic energy of an object in terms of its mass and speed.

Starting Mass 4.6 lbs

Max height 41 inches

Time of Eruption 3.35 sec

Final Mass after Eruption: 1.7 lbs

Amount of Mass that left the bottle during Eruption 2.9lbs

Please help me answer the above question with the results from the experiment.

0 0
Add a comment Improve this question Transcribed image text
Answer #1

Thank you. If you need morw detailed please wrote comment. Thanks. Please like the answer .ASAP

Add a comment
Know the answer?
Add Answer to:
According to the principle of conservation of energy, the potential energy of the fizz at the...
Your Answer:

Post as a guest

Your Name:

What's your source?

Earn Coins

Coins can be redeemed for fabulous gifts.

Not the answer you're looking for? Ask your own homework help question. Our experts will answer your question WITHIN MINUTES for Free.
Similar Homework Help Questions
  • Power in the rate at which work is done or energy is transformed. That is, Power=...

    Power in the rate at which work is done or energy is transformed. That is, Power= Energy/Time Use the energy found above and the time measured during the demonstration to calculate the power developed in the eruption. Starting Mass 4.6 lbs Max height 41 inches Time of Eruption 3.35 sec Final Mass after Eruption: 1.7 lbs Amount of Mass that left the bottle during Eruption 2.9lbs Please help me answer the above question with the results from the experiment.

  • Question 4 -Work-Energy Theorem Roller coasters operate on the principle of energy transformation Inbaly the system is at down the track a) What is the energy stored in the system? e the Potenti...

    Question 4 -Work-Energy Theorem Roller coasters operate on the principle of energy transformation Inbaly the system is at down the track a) What is the energy stored in the system? e the Potential Energy? Kinetic Energy, and Total Mechanical Energy, for each poghon A B. C. D. E.F. Gin the toure Postion Ais a height H above the ground,postion D is at a height t c) Use the conservation of energy to determine t d) White the equation for the...

  • Problem: Learning to fly In this example, we will apply conservation of energy, including potential energy,...

    Problem: Learning to fly In this example, we will apply conservation of energy, including potential energy, together with Newton’s laws and the expression for the acceleration in the radial direction of an object moving on a circular path. A young fledgling bird of mass m is sat at the very top of a dome, which is circular in cross section of radius R. Starting with an initial velocity of zero, the bird starts to slide down the dome. There is...

  • Based on your results. did all of the initial gravitational potential energy convert into kinetic energy?...

    Based on your results. did all of the initial gravitational potential energy convert into kinetic energy? If there is a difference between the gravitational potential energy and the kinetic energy, what do you think caused the difference? Did the angle of the track or the mass of the cart have any effect on the data? Explain What were the sources of error m this experiment? How did your hypothesis compare to your conclusion? Hypothesis in winter ski jumping, how would...

  • OAL Combine the concepts of conservation of energy and conservation of momentum in inelastic collisions. In...

    OAL Combine the concepts of conservation of energy and conservation of momentum in inelastic collisions. In figure a, a bullet and a wooden block are shown in two configurations. In the first configuration, the block, labeled m2, hangs vertically from a ceiling. A bullet, labeled m1, approaches the block horizontally from the left. A rightward arrow points from the bullet and is labeled vector v1i. A rightward arrow, shorter than the first, points from the block and is labeled vector...

  • Energy of a Tossed Ball In this experiment, we will study energy changes using a Motion...

    Energy of a Tossed Ball In this experiment, we will study energy changes using a Motion Detector. OBJECTIVES: • Measure the change in the kinetic and potential energies as a ball moves in free fall. • See how the total energy of the ball changes during free fall. MATERIALS: Computer Lab Pro Logger Pro Vernier Motion Detector Basketball PRELIMINARY QUESTIONS (PHY2048): For each question, consider the free-fall portion of the motion of a ball tossed straight upward, starting just as...

  • Question 1 1 pts What is the kinetic energy of a man who weighs 980N who...

    Question 1 1 pts What is the kinetic energy of a man who weighs 980N who is riding in a car traveling 40 km per hour? Express your answer in Joules, but don't type the unit in the answer box. Round to the nearest whole number. (Careful with the units) 1 pts Astudent slides her 80.0-kg desk across the level floor of her dormitory room a distance 4.00 m at constant speed. If the coefficient of kinetic friction between the...

  • TRIAL 1 600 2.610 9.91 o.2 0.39 2.62 43 Average Result: The average speed of the given ball is ve...

    TRIAL 1 600 2.610 9.91 o.2 0.39 2.62 43 Average Result: The average speed of the given ball is velas hralels 1) Pull the penduum to the side, insert the ball into the gun, and compress and latch the gun spring Release the pendulum so that it hangs vertically 2) Fire the gun. The pendulum will latch near the highest point of its swing. Measure ne height ha·the vertical distance from the pendulum platform to the center of the ball...

ADVERTISEMENT
Free Homework Help App
Download From Google Play
Scan Your Homework
to Get Instant Free Answers
Need Online Homework Help?
Ask a Question
Get Answers For Free
Most questions answered within 3 hours.
ADVERTISEMENT
ADVERTISEMENT
ADVERTISEMENT