Question: Please help me. I really need help with this today. Please, please. I will really appreciate it. Thank you so much for helping. :) Comparing

Please help me. I really need help with this today. Please, please. I will really appreciate it. Thank you so much for helping. :)

Please help me. I really need help with this
Comparing the Force of Gravity Gravity is the force of attraction between two objects. This force varies in our solar system. For example, the Moon's diameter is about one-fourth of Earth's diameter, so the Moon's gravity is much less than Earth's. A measure of the strength of gravity is the value g, which is the acceleration (or rate of change of velocity) of a freely falling object. One strategy for calculating g is to drop an object and time its fall to the ground. These tables show the time that an object takes to fall from a height of 10 m on both Earth and the Moon. Earth Time (s) 0.0 0.2 0.4 0.6 0.8 1.0 1.2 1.4 Height (m) 10.0000 9.8038 9.2152 8.2342 6.8608 5.0950 2.9368 0.3862 Moon Time (s) 0.0 0.5 1.0 1.5 2.0 2.5 3.0 3.5 Height (m) 10.0000 9.7975 9.1900 8.1775 6.7600 4.9375 2.7100 0.0775 A. Create a scatter plot for each data set and draw a curve of good fit (don't just connect the dots!!) B. Estimate the location of the vertex, the axis of symmetry, and the zeros for both data sets C. Determine the equation of the curve of good fit for Earth in factored form D. Whatet asformations were done to the graph ofy = to make this equation? E. Determine the equation of the curve of good fit for the Moon in vertex form F. What transformations were done to the graph of y = x to make this equation? G. Determine both equations in standard form by expanding and simplifying H. What do these graphs and equations tell you about gravity on Earth vs the Moon? Checklist: Did you label your graphs? Did you use a consistent scale? Did you include your calculations? Did you explain your thinking clearly

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