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Page 1: cpb-us-e1.wpmucdn.com · Polynomial Application Problems DIAMONDS The weight of an ideal round-cut diamond can be modeled by IV = 0.0071d3 - 0.0908 + 0.48d where w is the diamond's
Page 2: cpb-us-e1.wpmucdn.com · Polynomial Application Problems DIAMONDS The weight of an ideal round-cut diamond can be modeled by IV = 0.0071d3 - 0.0908 + 0.48d where w is the diamond's
Page 3: cpb-us-e1.wpmucdn.com · Polynomial Application Problems DIAMONDS The weight of an ideal round-cut diamond can be modeled by IV = 0.0071d3 - 0.0908 + 0.48d where w is the diamond's
Page 4: cpb-us-e1.wpmucdn.com · Polynomial Application Problems DIAMONDS The weight of an ideal round-cut diamond can be modeled by IV = 0.0071d3 - 0.0908 + 0.48d where w is the diamond's
Page 5: cpb-us-e1.wpmucdn.com · Polynomial Application Problems DIAMONDS The weight of an ideal round-cut diamond can be modeled by IV = 0.0071d3 - 0.0908 + 0.48d where w is the diamond's
Page 6: cpb-us-e1.wpmucdn.com · Polynomial Application Problems DIAMONDS The weight of an ideal round-cut diamond can be modeled by IV = 0.0071d3 - 0.0908 + 0.48d where w is the diamond's
Page 7: cpb-us-e1.wpmucdn.com · Polynomial Application Problems DIAMONDS The weight of an ideal round-cut diamond can be modeled by IV = 0.0071d3 - 0.0908 + 0.48d where w is the diamond's
Page 8: cpb-us-e1.wpmucdn.com · Polynomial Application Problems DIAMONDS The weight of an ideal round-cut diamond can be modeled by IV = 0.0071d3 - 0.0908 + 0.48d where w is the diamond's

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