An objective function and a system of linear inequalites representing constraints are given. Complete parts a through e Objective Function z= Ox+y Constraints x20, y20 4x+3ys30 x+y23 a. Graph the system of inequalities representing the constraints. Use the graphing tool to graph the system. b. Find the value of the objective function at each corner of the graphed region 12.54,3.18 (Use a comma to separate answers as needed.) c. Use the values in part (b) to determine the maximum value of the objective function and the values of x and y at which the maimum oocurs The maimum value of the objective function is 54 Find the values of x and y at which the maomum.cccurs
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A family of curves is a group of curves that are each described by a parametrization in which one or more variables are parameters. In general, the parameters have more complexity on the assembly of the curve than an ordinary linear transformation. These families appear commonly in the solution of differential equations. When a constant of integration is added, it is normally modified algebraically until it no longer replicates a plain linear transformation. The order of a differential equation depends on how many uncertain variables appear in the corresponding curve. The order of the differential equation acquired is two if two unknown variables exist in an equation belonging to this family.
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In order to understand XZ plane, it's helpful to understand two-dimensional and three-dimensional spaces. To plot a point on a plane, two numbers are needed, and these two numbers in the plane can be represented as an ordered pair (a,b) where a and b are real numbers and a is the horizontal coordinate and b is the vertical coordinate. This type of plane is called two-dimensional and it contains two perpendicular axes, the horizontal axis, and the vertical axis.
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Geometry is the branch of mathematics that deals with flat surfaces like lines, angles, points, two-dimensional figures, etc. In Euclidean geometry, one studies the geometrical shapes that rely on different theorems and axioms. This (pure mathematics) geometry was introduced by the Greek mathematician Euclid, and that is why it is called Euclidean geometry. Euclid explained this in his book named 'elements'. Euclid's method in Euclidean geometry involves handling a small group of innately captivate axioms and incorporating many of these other propositions. The elements written by Euclid are the fundamentals for the study of geometry from a modern mathematical perspective. Elements comprise Euclidean theories, postulates, axioms, construction, and mathematical proofs of propositions.
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What is x= and y =
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An objective function and a system of linear inequalities representing constraints are given. OComplete parts a, through c.
Objective Funetion
Constraints
z= 8x+y
15
x20, y20
12
4x+3y&36
x+y23
a. Graph the system of inequalities representing the constraints.
Use the graphing tool to graph the system.
6. Find the value of the objective function at each corner of the graphed region.
12,54,3,18
12
(Use a comma to separate answers as needed.)
16
c. Use the Values in part (b) to determine the maximum value of the objective function and the values of x andy at which the maximum occurs.
The maximum value of the objective function is 54
Find the values of x and y at which the maximum occurs.
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