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Given the Following Risk Solver Platform (RSP) Sensitivity Output How

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Given the following Risk Solver Platform (RSP) sensitivity output how much does the objective function coefficient for X2 have to increase before it enters the optimal solution at a strictly positive value?
 Final Reduced  Objective  Allowable  Allowable  Cell  Name  Value  Cost  Coefficient  Increase  Decrease $ B$4X19.52021001E+30350$C$4X20500.01899.99500.011E+30$D$4X310790105021037501\begin{array}{llrrrrr}&&\text { Final} & \text { Reduced } & \text { Objective } & \text { Allowable } & \text { Allowable }\\\text { Cell } & \text { Name } & \text { Value } & \text { Cost } & \text { Coefficient } & \text { Increase } & \text { Decrease } \\\hline \$ \mathrm{~B} \$ 4 & \mathrm{X} 1 & 9.52 & 0 & 2100 & 1 \mathrm{E}+30 & 350 \\\$ \mathrm{C} \$ 4 & \mathrm{X} 2 & 0 & -500.01 & 899.99 & 500.01 & 1 \mathrm{E}+30 \\\$ \mathrm{D} \$ 4 & \mathrm{X} 3 & 1079 & 0 & 1050 & 210 & 37501\end{array}


Definitions:

Electrically Neutral

A condition where an object or system has an equal number of positive and negative charges, leading to no net electrical charge.

Depolarization

A reversal in the electrical potential across a cell's plasma membrane, leading to the initiation of an action potential or nerve impulse.

Sodium Ions

Positively charged atoms of sodium, crucial for maintaining fluid balance and transmitting nerve impulses in the body.

Potassium Ions

Electrolytes with a positive charge found inside and outside of cells, essential for maintaining normal cell function including nerve impulse transmission and muscle contraction.

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