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 The resistance y in ohms of 1000 feet of solid metal wire at 77F can be approximated by the \text { The resistance } y \text { in ohms of } 1000 \text { feet of solid metal wire at } 77 \circ \mathrm {F} \text { can be approximated by the }

Question 2

Multiple Choice

 The resistance y in ohms of 1000 feet of solid metal wire at 77F can be approximated by the \text { The resistance } y \text { in ohms of } 1000 \text { feet of solid metal wire at } 77 \circ \mathrm {F} \text { can be approximated by the } model y=10,000x20.57,5x100y = \frac { 10,000 } { x ^ { 2 } } - 0.57,5 \leq x \leq 100 , where xx is the diameter of the wire in mils ( 0.0010.001 in) . Use a graphing utility to graph the model y=10,000x20.57,5x100y = \frac { 10,000 } { x ^ { 2 } } - 0.57,5 \leq x \leq 100 .


A)
\text { The resistance } y \text { in ohms of } 1000 \text { feet of solid metal wire at } 77 \circ \mathrm {F} \text { can be approximated by the }  model  y = \frac { 10,000 } { x ^ { 2 } } - 0.57,5 \leq x \leq 100 , where  x  is the diameter of the wire in mils (  0.001  in) . Use a graphing utility to graph the model  y = \frac { 10,000 } { x ^ { 2 } } - 0.57,5 \leq x \leq 100 . A)     B)     C)     D)     E)

B)
\text { The resistance } y \text { in ohms of } 1000 \text { feet of solid metal wire at } 77 \circ \mathrm {F} \text { can be approximated by the }  model  y = \frac { 10,000 } { x ^ { 2 } } - 0.57,5 \leq x \leq 100 , where  x  is the diameter of the wire in mils (  0.001  in) . Use a graphing utility to graph the model  y = \frac { 10,000 } { x ^ { 2 } } - 0.57,5 \leq x \leq 100 . A)     B)     C)     D)     E)

C)
\text { The resistance } y \text { in ohms of } 1000 \text { feet of solid metal wire at } 77 \circ \mathrm {F} \text { can be approximated by the }  model  y = \frac { 10,000 } { x ^ { 2 } } - 0.57,5 \leq x \leq 100 , where  x  is the diameter of the wire in mils (  0.001  in) . Use a graphing utility to graph the model  y = \frac { 10,000 } { x ^ { 2 } } - 0.57,5 \leq x \leq 100 . A)     B)     C)     D)     E)

D)
\text { The resistance } y \text { in ohms of } 1000 \text { feet of solid metal wire at } 77 \circ \mathrm {F} \text { can be approximated by the }  model  y = \frac { 10,000 } { x ^ { 2 } } - 0.57,5 \leq x \leq 100 , where  x  is the diameter of the wire in mils (  0.001  in) . Use a graphing utility to graph the model  y = \frac { 10,000 } { x ^ { 2 } } - 0.57,5 \leq x \leq 100 . A)     B)     C)     D)     E)

E)
\text { The resistance } y \text { in ohms of } 1000 \text { feet of solid metal wire at } 77 \circ \mathrm {F} \text { can be approximated by the }  model  y = \frac { 10,000 } { x ^ { 2 } } - 0.57,5 \leq x \leq 100 , where  x  is the diameter of the wire in mils (  0.001  in) . Use a graphing utility to graph the model  y = \frac { 10,000 } { x ^ { 2 } } - 0.57,5 \leq x \leq 100 . A)     B)     C)     D)     E)

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