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3. Use the data above to solve for the index of diversity by using this equation: index of diversity = index of diversity . index

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3. Use the data above to solve for the index of diversity by using this equation: index of diversity = index of diversity . index of diversity 4. Assume that the illustration is our actual field trip location. Let's imagine the area to be 200 m3. Solve for the population density for each type of population in the illustration. You can use this formula: no. of Individuals density = size of area 5. Count the total number for each population present in the area.Let me help you! The number of runs refers to the existence of a certain species in a continuous range until a new species is observed. This can be computed by marking X on the first tree. The next tree will also be marked X when it is of the same species as the previous. Once you encounter another kind of tree, use now O as a mark. Then X again if it's another type. Just continue until all trees are marked. This is what I marked: Xxxxxooxoxxoxoxxxxo = 12 runsPOPULATION NO. OF OROARIENS DENSITYLet me help you! The of runs refers to the existent certain species in a continuous range until a new species is observed. This can be computed by marking X on the first tree. The next tree will also be marked X when it is of the same species as the previous. Once you encounter another kind of tree, use now O as a mark. Then X again if it's another type. Just continue until all trees are marked. This is what I marked: Figure 2 Marked Species XXXoxxooxoxxoxoxxxxo = 12 runs

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