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Mechanics

Across
The reluctance of any body to change its state of motion. Mass is the measure of inertia.
Any influence that tends that tends to accelerate an object; a push or pull; measured in newtons. A vector quantity
The force that acts to resist the relative motion (or attempted motion) of objects or materials that are in contact.
The fundamental SI unit of mass. One kilogram is the amount of mass in one liter of water at 4 degrees Celsius.
Any object that moves through the air or through space, acted on by gravity (and air resistance, if any)
is the rate at which velocity is changing with respect to time.
is the rate at which distance is covered, and it is measured in units of distance divided by time.
In general a state of balance. Example, the state of a body on which no net force acts
The process of resolving a vector into components. In optics, a measure of how well closely adjacent optical images are distinguished.
A quantity in physics, such as mass, volume, and time, that can be completely specified by its magnitude and has no direction.
The vector sum of two or more component vectors.
The force on a body due to the gravitational attraction of another body (commonly Earth)
Down
Speed together with the direction of motion.
one of the vectors, often mutually perpendicular, whose sum is a resultant vector. Any resultant vector may be regarded as the combination of two or more components
The moving of something from its place or position
An object that falls around Earth or some other body rather than falling into it.
A quantity in physics, such as force that has both magnitude and direction.
A measure of an object’s inertia; also a measure of the amount of matter in an object. Depends only on the amount of and kind of particles that compose an object-not on its location as weight does).
in physics, how fast something happens, or how much something changes per unit of time; a change in quantity divided by the time it takes for the change to occur.
SI unit of force. One newton (N) is the force applied to a one-kilogram mass that will produce an acceleration of one meter per second per second.