Data was collected from twenty-two mountain ash trees of different sizes. A graph of the data values shows that a power model of the form A(d)=c*d^2.99 is an appropriate model, where the (A) is the leaf area of the tree in square meters and (d) is the stem diameter at breast height in centimeters. Use the data point (d, A) = (31, 83), compute the value of (c), and write the model for the leaf area. Round the parameter (c) to five decimal places. 1) A(d) = ?
Data was collected from twenty-two mountain ash trees of different sizes. A graph of the data values shows that a power model of the form A(d)=c*d^2.99 is an appropriate model, where the (A) is the leaf area of the tree in square meters and (d) is the stem diameter at breast height in centimeters.
Use the data point (d, A) = (31, 83), compute the value of (c), and write the model for the leaf area. Round the parameter (c) to five decimal places.
1) A(d) = ?
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Data was collected from twenty-two mountain ash trees of different sizes. A graph of the data values shows that a power model of the form A(d)=c*d^2.99 is an appropriate model, where the (A) is the leaf area of the tree in square meters and (d) is the stem diameter at breast height in centimeters.
Use the data point (d, A) = (31, 83), compute the value of (c), and write the model for the leaf area. Round the parameter (c) to five decimal places.
1) A(d) =
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