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3.5 HW W 3.4 HW-MATH1044, section 001, 002, 005, Spring... W 3.5 HW-MATH1044, section 001, 002, 005, Spring... Mail - Martin, Jaida (marti8j7) -
3.5 HW W 3.4 HW-MATH1044, section 001, 002, 005, Spring... W 3.5 HW-MATH1044, section 001, 002, 005, Spring... Mail - Martin, Jaida (marti8j7) - Outlook The number of males of a species of whale in Antarctic feeding grounds is w(x) when x million squid are present. Squid availability in the feeding grounds changes according to the surface temperature of the water so that the number of available squid is x(t) when the water is tF. In December, when water temperature is near 32F, there are an estimated 790 million deep-water squid in the feeding grounds, with the number of squid increasing by approximately 2 million squid per degree. At the same time, there are 8,000 adult male whales in the Antarctic feeding grounds, with the number of male whales increasing by 3 whales per million squid. Evaluate each of the following expressions when the surface temperature of the ocean is 32F, and write a sentence interpreting each value. (a) Evaluate x(t). x(32) = million squid Write a sentence interpreting the value. When water temperature is near 32F, the squid population is million squid. (b) Evaluate w(x). w(790) = whales Write a sentence interpreting the value. When there are 790 million squid there are adult male whales in the Antarctic feeding grounds. (c) Evaluate dx dt dx million squid per degree dt t=32 Write a sentence interpreting the value. When water temperature is near 32F, the squid population is increasing by dw (d) Evaluate dx" dw = whales per million squid million squid per degree. dx lx = 790 Write a sentence interpreting the value. When there are 790 million squid, the adult male whale population in the Antarctic feeding grounds is increasing by (e) Evaluate dw dw dt whales per million squid.
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