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32.In this matrix, there are three species of organisms from the Allurian community: boreblasters, spotted gliders, and umbrella trees. boreblasters Potential Predators spotted gliders

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32.In this matrix, there are three species of organisms from the Allurian community: boreblasters, spotted gliders, and umbrella trees. boreblasters Potential Predators spotted gliders umbrella trees Potential Prey boreblasters spotted gliders umbrella trees Directions: For question 33, construct a food chain illustrating the flow of energy between each of the species in the matrix that you constructed above. Boxes will represent each species in the community, and arrows will indicate the direction that energy flows, from species of prey to species of predators. See the example below. Example: Using the example matrix from above, I know that bivalves are at the bottom of this food chain because they do not appear to eat any of the other species in this community. So, I place their population at the bottom of the food chain - this means that energy will flow from this population to the species that eat them - in this case cownose rays. That means that I should draw an arrow pointing from bivalves to cownose rays - energy is flowing from bivalves to cownose rays. Hence why the cownose ray population are positioned where they are. Lastly, shortfin mako sharks exclusively eat cownose rays. So, I'll again draw an arrow pointing from cownose rays to the shortfin mako sharks. The energy in the cownose ray populations is flowing to the shortfin mako sharks. Hence why I put the sharks where I did in this food chain. Note - I could draw this food chain horizontally or vertically - it would not matter. The common convention is to draw food chains vertically though, showing how energy moves up through the food chain.

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