
Name: Class Pd Date: Broad neck Physics Student Exploration: Fan Cart Physics Vocabulary: acceleration, force, friction, mass, newton, Newtons first law, Newtons second law, Newtons third law, velocity.
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Follow the steps to successfully complete the form.
- Click the ‘Get Form’ button to obtain the form, which will open for you to begin entering your information.
- Start by filling in your name and class period at the top of the form. This ensures that your answers can be correctly attributed to you.
- Next, enter the date of completion in the designated space. Accurate dates help track submissions and progress.
- Move on to the Prior Knowledge Questions section. Carefully read each question and provide thoughtful responses based on your understanding of physics concepts.
- Proceed to the Gizmo Warm-up section. Follow the instructions to interact with the Fan Cart Physics Gizmo™ and respond to the observations about the cart's movement.
- In Activity A, ensure you set up the Gizmo as instructed and document your hypotheses, predictions, and experimental observations.
- Continue with Activity B, focusing on how mass and force affect acceleration. Complete the experiments as described and analyze your findings in the provided spaces.
- Once you have filled out all sections of the form and reviewed your answers, save your changes. You may also choose to download, print, or share the completed document.
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How does a fan cart work physics?
In blowing the air to the left, the fan exerts a leftward force on the air, which must in turn exert an equal rightward force on the fan. Since the fan is rigidly mounted to the cart, this rightward force on the fan accelerates the cart to the right.
How does the fan cart achieve constant acceleration?
Do not give the cart a push to get it moving. Rather, turn on the fan and orient it so that the cart moves way from the motion detector speeding up as it goes. Since the fan exerts a constant force on a constant mass, the acceleration of the cart is constant.
What vertical forces act on the cart fan?
In this situation, there ends up being two forces exerted on the cart: the air pushing backward on the fan, and the air pushing forward on the sail. These two forces balance each other, and the cart doesn't move.
How does a fan cart illustrate Newton's third law?
0:10 3:26 1H10.20 - Fan Cart - YouTube YouTube Start of suggested clip End of suggested clip Direction. We have a track for the car to travel. Along. And we have a sail that we can put onto ourMoreDirection. We have a track for the car to travel. Along. And we have a sail that we can put onto our cart in the stream of the airflow. To see how the sail will affect the motion of our cart.
How does the acceleration of the cart depend on the force pulling it?
Newton's second law states that the acceleration is proportional to the net force acting on the object. Newton's Second Law also states that the acceleration is inversely proportional to the mass. The acceleration of an object depends on the net applied force and the object's mass.
Why can't a fan cart accelerate?
In this situation, there ends up being two forces exerted on the cart: the air pushing backward on the fan, and the air pushing forward on the sail. These two forces balance each other, and the cart doesn't move.
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