Mav Mark 10/17/11 - Madison County Schools
... About how fast does Earth rotate? Remember, circumference = 24,000 miles. ...
... About how fast does Earth rotate? Remember, circumference = 24,000 miles. ...
9-1 Simple Rotations of a Rigid Body
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... This work is protected by United States copyright laws and is provided solely for the use of instructors in teaching their courses and assessing student learning. Dissemination or sale of any part of this work (including on the World Wide Web) will destroy the integrity of the work and is not permit ...
Unit 5 Notes
... Force is in Newtons. Remember that a Newton is a kilogram meter per second squared: 1N = 1kgm/s2 If we multiply the unit Newton by the unit seconds, we get a kilogram meter per second. This is the same as the unit for momentum. Therefore, the impulse delivered to an object is equal to the change in ...
... Force is in Newtons. Remember that a Newton is a kilogram meter per second squared: 1N = 1kgm/s2 If we multiply the unit Newton by the unit seconds, we get a kilogram meter per second. This is the same as the unit for momentum. Therefore, the impulse delivered to an object is equal to the change in ...
Newton`s Laws of Motion Practice Test 1. Which of Newton`s Three
... 1. Which of Newton's Three Laws does the following statement satisfy? The relationship between an object's mass (m), its acceleration (a), and the applied force F is F=ma. Acceleration and force are vectors. This law requires that the direction of the acceleration vector is in the same direction as ...
... 1. Which of Newton's Three Laws does the following statement satisfy? The relationship between an object's mass (m), its acceleration (a), and the applied force F is F=ma. Acceleration and force are vectors. This law requires that the direction of the acceleration vector is in the same direction as ...
Class Set: Use your own paper! Forces and Laws of Motion A 80
... speed of 15 km/h relative to the truck in the direction opposite to the tuck’s motion. One observer is stationary on the side of the road and another observer is traveling in a car that is moving in the same direction as the truck but passing the truck at a faster speed. 12. What is the velocity of ...
... speed of 15 km/h relative to the truck in the direction opposite to the tuck’s motion. One observer is stationary on the side of the road and another observer is traveling in a car that is moving in the same direction as the truck but passing the truck at a faster speed. 12. What is the velocity of ...
File
... 1. A line runs through (1, -5) and (5, 10) in the Cartesian plane. Which of the following represents the slope of that line? ...
... 1. A line runs through (1, -5) and (5, 10) in the Cartesian plane. Which of the following represents the slope of that line? ...
Dynamics: Inverted pendulum on a cart
... The following is a step-by-step process for calculating a simple angular velocity Nω B : • Identify a unit vector λ that is fixed in both N and B • Identify a vector n⊥ that is fixed in N and perpendicular to λ • Identify a vector b⊥ that is fixed in B and perpendicular to λ • Identify the angle θ bet ...
... The following is a step-by-step process for calculating a simple angular velocity Nω B : • Identify a unit vector λ that is fixed in both N and B • Identify a vector n⊥ that is fixed in N and perpendicular to λ • Identify a vector b⊥ that is fixed in B and perpendicular to λ • Identify the angle θ bet ...
Newton`s Laws of Motion - Tamalpais Union High School District
... • The law of inertia states that no force is required to maintain motion. Why, then, do you have to keep pedaling your bicycle to maintain motion? • A space probe may be carried by a rocket into outer space. What keeps the probe going after the rocket no longer pushes it? • Your friend says that ine ...
... • The law of inertia states that no force is required to maintain motion. Why, then, do you have to keep pedaling your bicycle to maintain motion? • A space probe may be carried by a rocket into outer space. What keeps the probe going after the rocket no longer pushes it? • Your friend says that ine ...
1. Finding the equation of a line. 1. Find two points (x1 ,y1 ), (x2 ,y2
... 1. Maximum profit occurs when M R = M C. If the profit function is a quadratic, we can also find the vertex of the profit function. 2. The quantity where profit is zero is call the break even point. That is when T R = T C. 3. The break even price (BEP) is the lowest y-value of y = AC(x). It is also ...
... 1. Maximum profit occurs when M R = M C. If the profit function is a quadratic, we can also find the vertex of the profit function. 2. The quantity where profit is zero is call the break even point. That is when T R = T C. 3. The break even price (BEP) is the lowest y-value of y = AC(x). It is also ...
Gravitation PowerPoint
... points. A line drawn from the Sun to any planet sweeps out equal areas in equal time intervals. The square of the orbital period of any planet is proportional to cube of the average distance from the Sun to the planet. ...
... points. A line drawn from the Sun to any planet sweeps out equal areas in equal time intervals. The square of the orbital period of any planet is proportional to cube of the average distance from the Sun to the planet. ...
THINGSYOUNEEDTOKNOWFORCE
... 5.1lMASS AND WEIGHT ARE DIFFERENT!-KNOW THE DIFFS! See full page hand out given to you. 5.1m- Spring Force is a good linear/direct relationship, often tested in graph form. Watch out for axis labels though. If F is on y-axis, then the slope is equal to spring constant, k (N/m) Don’t look for spring ...
... 5.1lMASS AND WEIGHT ARE DIFFERENT!-KNOW THE DIFFS! See full page hand out given to you. 5.1m- Spring Force is a good linear/direct relationship, often tested in graph form. Watch out for axis labels though. If F is on y-axis, then the slope is equal to spring constant, k (N/m) Don’t look for spring ...
6th Grade Science
... Laws of Motion. This unit provides a good opportunity to introduce controlled experimentation, as well as the concept of measurement errors and how to address them in data interpretation. Newton’s Laws of Motion explain movement, direction, speed, and forces that can and do influence objects in natu ...
... Laws of Motion. This unit provides a good opportunity to introduce controlled experimentation, as well as the concept of measurement errors and how to address them in data interpretation. Newton’s Laws of Motion explain movement, direction, speed, and forces that can and do influence objects in natu ...
1 EXPERIMENT 5 CONSERVATION OF LINEAR MOMENTUM
... Linear momentum is a vector quantity because it equals the product of a scalar quantity m and a vector quantity v. Its direction is along v, it has dimensions ML/T, and its SI unit is kg · m/s. Using Newton’s second law of motion, we can relate the linear momentum of a particle to the resultant forc ...
... Linear momentum is a vector quantity because it equals the product of a scalar quantity m and a vector quantity v. Its direction is along v, it has dimensions ML/T, and its SI unit is kg · m/s. Using Newton’s second law of motion, we can relate the linear momentum of a particle to the resultant forc ...
lecture 3
... – An object continues in its initial state of rest or motion with uniform velocity unless it is acted on by an unbalanced, or net external, force. (Physics 3rd Ed., Tipler, p. 77) – This may seem to be a counterintuitive thought. For example, push a book so that it slides freely along the surface of ...
... – An object continues in its initial state of rest or motion with uniform velocity unless it is acted on by an unbalanced, or net external, force. (Physics 3rd Ed., Tipler, p. 77) – This may seem to be a counterintuitive thought. For example, push a book so that it slides freely along the surface of ...