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Question
- what are the two things you need to know in order to calculate an objects speed?
- everything on earth falls at what rate?
- what is inertia? the tendency for objects to remain in motion or stay at rest.
- if jupiter has the most gravity (24.79 m/s/s), and the moon has the least gravity (1.62 m/s/s), where would a rock fall the fastest? i
- what does newtons first law of motion state?
- what is another name for newtons first law?
- does newtons first law apply to objects that are in motion, at rest, or both?
- what is the formula for newtons 2nd law of motion?
- you should wear your seat belt because of which of newtons 3 laws?
Brief Explanations
- The formula for speed is \(v=\frac{d}{t}\), where \(v\) is speed, \(d\) is distance, and \(t\) is time. So, you need to know the distance an object travels and the time it takes to travel that distance.
- In the absence of air resistance, everything on Earth falls at an acceleration rate of approximately \(9.8\ m/s^{2}\) (due to Earth's gravity).
- Inertia is defined as the tendency for objects to remain in motion or stay at rest.
- The greater the gravitational acceleration, the faster an object will fall. Since Jupiter has a higher gravitational acceleration (\(24.79\ m/s^{2}\)) compared to the Moon (\(1.62\ m/s^{2}\)), a rock will fall fastest on Jupiter.
- Newton's first law of motion states that an object at rest will stay at rest and an object in motion will stay in motion with a constant velocity (in a straight line) unless acted upon by an unbalanced force.
- Another name for Newton's first law is the law of inertia.
- Newton's first law applies to both objects in motion and at rest. For objects at rest, they remain at rest (a state of zero velocity) unless a force acts. For objects in motion, they maintain their state of motion (constant velocity) unless a force acts.
- The formula for Newton's 2nd law of motion is \(F = ma\), where \(F\) is force, \(m\) is mass, and \(a\) is acceleration.
- You should wear your seat - belt because of Newton's first law. When a car suddenly stops (a force acts on the car), your body (due to inertia) will tend to keep moving forward. The seat - belt provides an unbalanced force to stop your body's forward motion.
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- Distance and time.
- Approximately \(9.8\ m/s^{2}\).
- The tendency for objects to remain in motion or stay at rest.
- On Jupiter.
- An object at rest will stay at rest and an object in motion will stay in motion with a constant velocity (in a straight line) unless acted upon by an unbalanced force.
- Law of inertia.
- Both.
- \(F = ma\).
- Newton's first law.