Respuesta :
Use half the fencing in each direction: 3 segments in one direction, 2 in the other.Â
W * L = 24 millionÂ
3 W = 2 LÂ
W * 3 W / 2 = 24 millionÂ
W^2 = 16 millionÂ
W = 4000Â
L = 6000Â
This shortcut (3 W = 2 L)Â
is derived from total fencing = 3W + 2LÂ
and W*L = 24 millionÂ
total fencing = 3W + 2 * 24 million / WÂ
and taking the derivative, setting to 0, and solving for W
W * L = 24 millionÂ
3 W = 2 LÂ
W * 3 W / 2 = 24 millionÂ
W^2 = 16 millionÂ
W = 4000Â
L = 6000Â
This shortcut (3 W = 2 L)Â
is derived from total fencing = 3W + 2LÂ
and W*L = 24 millionÂ
total fencing = 3W + 2 * 24 million / WÂ
and taking the derivative, setting to 0, and solving for W
The lengths of sides of the rectangular field will be "6 and 4".
Let,
- Length = x
- Width = y
Area of field,
→ [tex]A = xy[/tex]
 [tex]xy = 24[/tex]
  [tex]y = \frac{24}{x}[/tex]...(equation 1)
Required fencing will be:
→ [tex]S = 2x+3y[/tex]
   [tex]= 2x+\frac{3\times 24}{x}[/tex]
   [tex]= 2x+\frac{72}{x}[/tex]...(equation 2)
Differentiate with respect to "x", we get
→ [tex]\frac{dS}{dx} = 2-\frac{72}{x^2}[/tex]
To minimize the cost of fence, we get
→ [tex]\frac{dS}{dx} =0[/tex]
  [tex]2-\frac{72}{x^2} =0[/tex]
     [tex]x^2=36[/tex]
      [tex]x =6 \ million \ feet[/tex]
and,
→ [tex]y=\frac{24}{6}[/tex]
   [tex]=4[/tex]
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