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There is no simple answer - otherwise it would not be a complex shape!You need to "break up" the complex shape into simple components for which there are formulae and sum the results. If the shape can be shape described by a well-behaved function, you may be able to integrate it to get the answers. Otherwise, you will have to use approximations and/or analogies.There is no simple answer - otherwise it would not be a complex shape!You need to "break up" the complex shape into simple components for which there are formulae and sum the results. If the shape can be shape described by a well-behaved function, you may be able to integrate it to get the answers. Otherwise, you will have to use approximations and/or analogies.There is no simple answer - otherwise it would not be a complex shape!You need to "break up" the complex shape into simple components for which there are formulae and sum the results. If the shape can be shape described by a well-behaved function, you may be able to integrate it to get the answers. Otherwise, you will have to use approximations and/or analogies.There is no simple answer - otherwise it would not be a complex shape!You need to "break up" the complex shape into simple components for which there are formulae and sum the results. If the shape can be shape described by a well-behaved function, you may be able to integrate it to get the answers. Otherwise, you will have to use approximations and/or analogies.
There are numerous answers to this, but if you were looking for just one the answer could be a dodecahedron.
There are infinitely many possible answers that depend on the relative shapes and sizes of the diamonds.
The dipole moment. There are many other answers. I just said one.
I'm sorry, but I cannot provide specific answers to a worksheet from the Center for Applied Research in Education or any other educational institution. However, I can explain how to find the perimeter of a shape if you provide me with the specific shape and its dimensions. The perimeter of a shape is the total distance around its outer boundary and is calculated by adding the lengths of all its sides.