There were 27 deer in a park on January 1, 2000. Six months later there were 38 deer in the same park. Assume the number of deer in the park with respect to the number of months since January 1, 2000 can be modeled by an exponential function. Determine the 6-month growth factor. Determine the 6-month percent change.% Determine the 1-month growth factor. Determine the 1-month percent change.% Define a function, g that relates the number of deer in the park reserve in terms of the number of months that have elapsed since January 1, 2000, n . (Assume the number of deer continues to increase by the same percent each month).
Unitary Method
The word “unitary” comes from the word “unit”, which means a single and complete entity. In this method, we find the value of a unit product from the given number of products, and then we solve for the other number of products.
Speed, Time, and Distance
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Profit and Loss
The amount earned or lost on the sale of one or more items is referred to as the profit or loss on that item.
Units and Measurements
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There were 27 deer in a park on January 1, 2000. Six months later there were 38 deer in the same park. Assume the number of deer in the park with respect to the number of months since January 1, 2000 can be modeled by an exponential function.
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Determine the 6-month growth factor.
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Determine the 6-month percent change.
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Determine the 1-month growth factor.
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Determine the 1-month percent change.
% -
Define a function, g that relates the number of deer in the park reserve in terms of the number of months that have elapsed since January 1, 2000, n . (Assume the number of deer continues to increase by the same percent each month).
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