I. Introduction- From the beginning of time people have tried to find how an object will behave when nether the object of gravity alone. Galileo preformed an examine similar to our experiment. He used a alloy ramp, a eggs and an elevated surface and estimated where the ball would even down based on calculations he had derived from previous experiments. (Anslem Encyclopedia) For our experiment we had a ball roll down an inclined plane, thence onto a table, through two ikon gates which clocked the time, and the in conclusion rack up the table. Our reason for doing this experiment was to determine whether it is workable to accurately bid the concluding position of an object under only the motor of gravity, using the laws of projectile motion. X= The final position of the ball. H= The height of the table The equations we used to look for the final position ar as follows; X=X0+V0+at2 V=V0+at Then we shake off the tuition we k new, and the information we had to solve for in a list. X Y . X0- 0 X0- .0 X-? X- .775 V0 -? V0 - 0m/s V-? V-? A-0m/s2 A - -9.8m/s2 T-? T ?

II. Experiment. For our experiment we fixed a wooden rule at an arbitrary fish against the paries on top of a table. Then we repair up the photo gates about a fanny from the locate of contact between the ruler and the table. We set up the photo gates in a way that the laser on each gate was ten centimeters away from the laser on the other photo gate, giving the ball mountain of way to roll in betwe en. Next, using brief calculations, we hypot! hesized where they ball would land, out front placing the ball at the point of connection of the ruler and the wall, allow go of the ball, and allowing it to roll as seen in the infra diagram. tether Data. Table 1.1 The velocities over the...If you want to get a salutary essay, order it on our website:
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