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To find the maximum value of the function P=2X + 3Y within the feasibility region, we first need to identify the corner points of the region. Next, we substitute the coordinates of each corner point into the objective function P=2X + 3Y to determine the value at each point. The maximum value of P will be the highest value obtained among all corner points. This method, known as the corner point method, is commonly used in linear programming to optimize objective functions within a feasible region.
Oh, what a delightful question, friend! To find the maximum value of the function P=2X + 3Y within the feasibility region, we need to look for the highest point where the function reaches its peak. By analyzing the constraints of the feasibility region and finding the intersection points, we can determine the optimal values of X and Y that will give us the maximum P. Just like adding a happy little tree to a painting, we can find the perfect balance to achieve the best outcome.
B- It is a many-to-one function
The maximum number of feet that a safety net can be placed directly below the working surface is 30 feet. However, closer is better and the net should be closer if possible.
The class interval is the maximum possible value in the class less the maximum possible value in the class below. The second is equivalent to the minimum possible value in the class.
Discriminant = 116; Graph crosses the x-axis two times
A cubic.