Slide 1
... Motion that is caused by an external force. For example, i. the motion of a cart pulled by a horse and ii. the motion of an arrow by a stretched bow. ...
... Motion that is caused by an external force. For example, i. the motion of a cart pulled by a horse and ii. the motion of an arrow by a stretched bow. ...
Newton`s Laws - Northern Highlands
... • An object at rest will remain at rest unless acted on by an outside force • An object in motion will continue in motion unless acted on by an outside force. • An object in motion will continue to move in a straight line unless acted on by an outside force. • Newton’s 1st law is also called the Law ...
... • An object at rest will remain at rest unless acted on by an outside force • An object in motion will continue in motion unless acted on by an outside force. • An object in motion will continue to move in a straight line unless acted on by an outside force. • Newton’s 1st law is also called the Law ...
Physics 1.3.2
... Analyze a force vs. time graph; compare the area under the graph to a calculated change in momentum. Analyze real world examples including the use of airbags in cars, time of contact and “followthrough” in throwing, catching, kicking, and hitting objects in sports, and bending your knees when you ju ...
... Analyze a force vs. time graph; compare the area under the graph to a calculated change in momentum. Analyze real world examples including the use of airbags in cars, time of contact and “followthrough” in throwing, catching, kicking, and hitting objects in sports, and bending your knees when you ju ...
ROUND ALL NUMERICAL ANSWERS TO 3 SIGNIFICANT
... A. Inertia B. Mass C. Speed D. Velocity E. Acceleration 4. If two masses have the same kinetic energy, the ratio of their momenta are: A. proportional to the ratio of their masses. B. proportional to the ratio of the squares of their masses. C. proportional to the ratio of the square roots of their ...
... A. Inertia B. Mass C. Speed D. Velocity E. Acceleration 4. If two masses have the same kinetic energy, the ratio of their momenta are: A. proportional to the ratio of their masses. B. proportional to the ratio of the squares of their masses. C. proportional to the ratio of the square roots of their ...
Study Guide for Physics Final Exam—1st semester
... to be the first woman to land on the moon, where the gravitational pull is 1/6 as much as earth’s. What would Betty’s mass be on the moon? Mass is not affected by gravity it is the “STUFF” in an object. Betty has just as much junk in her trunk on the moon as she has on Earth, so her mass is the same ...
... to be the first woman to land on the moon, where the gravitational pull is 1/6 as much as earth’s. What would Betty’s mass be on the moon? Mass is not affected by gravity it is the “STUFF” in an object. Betty has just as much junk in her trunk on the moon as she has on Earth, so her mass is the same ...
Momentum
... The quantity of motion is called the linear momentum and is equal to the product of mass times velocity. ...
... The quantity of motion is called the linear momentum and is equal to the product of mass times velocity. ...
Student Notes
... - An object in motion tends to stay in motion unless outsides forces act upon it - Sometimes referred to as the “Law of Inertia” - INTERTIA ...
... - An object in motion tends to stay in motion unless outsides forces act upon it - Sometimes referred to as the “Law of Inertia” - INTERTIA ...
Forces and Motion
... Newton’s 1st Law of Motion • Law of Inertia • An object at rest will stay at rest unless acted on by an unbalanced force. • An object in motion will stay in motion at the same speed and direction unless acted on by an unbalanced force. ...
... Newton’s 1st Law of Motion • Law of Inertia • An object at rest will stay at rest unless acted on by an unbalanced force. • An object in motion will stay in motion at the same speed and direction unless acted on by an unbalanced force. ...
Ch. 8. Energy
... 21. Define mass, weight & volume. What are their units. Refer to your textbook. 22. Would an object of mass 20 kg have greater weight on the Moon, Earth or Jupiter? Jupiter, as it has the greatest value of g. It would weigh the least on the Moon. 23. If an object weighs 400 N, what is its mass ? Mas ...
... 21. Define mass, weight & volume. What are their units. Refer to your textbook. 22. Would an object of mass 20 kg have greater weight on the Moon, Earth or Jupiter? Jupiter, as it has the greatest value of g. It would weigh the least on the Moon. 23. If an object weighs 400 N, what is its mass ? Mas ...
Reporting Category 2 Answer Key
... When a car suddenly stops at a red light, a book lying on the car seat slides forward. Why does the book continue to move forward? A. B. C. D. ...
... When a car suddenly stops at a red light, a book lying on the car seat slides forward. Why does the book continue to move forward? A. B. C. D. ...
By Newton`s second law
... zero, it will continue to move in a straight line with constant speed. Does the skateboard keep moving with constant speed after it leaves your hand? Why or why not? ...
... zero, it will continue to move in a straight line with constant speed. Does the skateboard keep moving with constant speed after it leaves your hand? Why or why not? ...
Kreutter: Linear Dynamics 7 Newton`s Second Law: Quantitative I
... . In this situation, if we increase c and keep b constant, than a will decrease. If we decrease c and keep b constant, than a will increase. Think about how this is different than if we increase or decrease b. Newton’s Second Law of Motion: We choose a particular object (objects) as our object of in ...
... . In this situation, if we increase c and keep b constant, than a will decrease. If we decrease c and keep b constant, than a will increase. Think about how this is different than if we increase or decrease b. Newton’s Second Law of Motion: We choose a particular object (objects) as our object of in ...
5. Forces and Motion-I Newton's First Law:
... P Newton's Law is valid only in an inertial reference frame, a frame that is not accelerating, e.g. a powerless spacecraft far away from all planets (good example) or close to the surface of the Earth (good approximation). Any frame that ...
... P Newton's Law is valid only in an inertial reference frame, a frame that is not accelerating, e.g. a powerless spacecraft far away from all planets (good example) or close to the surface of the Earth (good approximation). Any frame that ...
Forces and The Laws of Motion
... • Weight: the force on a mass caused by gravity, direction is down Fg = mg • Weight depends on location, mass is independent of gravity • Normal: a supporting force from a surface, always perpendicular to the surface Fn • Tension: the force supplied by a supporting rope, rod, cable, always in the sa ...
... • Weight: the force on a mass caused by gravity, direction is down Fg = mg • Weight depends on location, mass is independent of gravity • Normal: a supporting force from a surface, always perpendicular to the surface Fn • Tension: the force supplied by a supporting rope, rod, cable, always in the sa ...