| A | B |
| KG | MASS |
| SEC | TIME |
| meters | DISTANCE |
| KG * M/S IN A DIRECTION | MOMENTUM |
| M/S^2 IN A DIRECTION | ACCELERATION |
| M/S IN A DIRECTION | VELOCITY |
| 26.55 m/s^2 south | ACCELERATION |
| 75.32 kg*m/s down field | momentum |
| 9.80 m/s^2 down | acceleration due to gravity |
| 98.32 m/s up | velocity |
| 66.00 m | distance |
| product of an object's mass and velocity | MOMENTUM |
| kg * m/s in a direction | unit for momentum |
| force the pulls objects toward eachother | GRAVITY |
| speed in a definite direction | VELOCITY |
| rate at which velocity changes | ACCELERATION |
| scientific unit for time | SECONDS |
| scientific unit for distance | METERS |
| point from which movement is determined | FRAME OF REFERENCE |
| measurement from one point to the next | DISTANCE |
| scientific unit is meters | DISTANCE |
| change in velocity per unit of time | ACCELERATION |
| speed in a definite direction | VELOCITY |
| result of multiplying mass of an object and the object's velocity | MOMENTUM |
| units are seconds or hours | TIME |
| SCIENTIFIC UNIT IS KG * M/S | MOMENTUM |
| P = MV (MASS X VELOCITY) | MOMENTUM FORMULA |
| SCIENTIFIC UNITS IS M/S2 | ACCELERATION |
| VELOCITY OF OBJECT CHANGES WITH TIME | ACCELERATION |
| (FV - IV) / T | FORMULA FOR ACCELERATION |
| 22.33 kg*m/s south | MOMENTUM |
| 67.88 m/s to the store | VELOCITY |
| 3.33 m/s^2 up | ACCELERATION |