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Mathematical optimization
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=== Optimal input arguments === {{Main|Arg max}} Consider the following notation: :<math>\underset{x\in(-\infty,-1]}{\operatorname{arg\,min}} \; x^2 + 1,</math> or equivalently :<math>\underset{x}{\operatorname{arg\,min}} \; x^2 + 1, \; \text{subject to:} \; x\in(-\infty,-1].</math> This represents the value (or values) of the [[Argument of a function|argument]] {{mvar|x}} in the [[interval (mathematics)|interval]] {{math|(ββ,β1]}} that minimizes (or minimize) the objective function {{math|''x''<sup>2</sup> + 1}} (the actual minimum value of that function is not what the problem asks for). In this case, the answer is {{math|''x'' {{=}} β1}}, since {{math|''x'' {{=}} 0}} is infeasible, that is, it does not belong to the [[feasible set]]. Similarly, :<math>\underset{x\in[-5,5], \; y\in\mathbb R}{\operatorname{arg\,max}} \; x\cos y,</math> or equivalently :<math>\underset{x, \; y}{\operatorname{arg\,max}} \; x\cos y, \; \text{subject to:} \; x\in[-5,5], \; y\in\mathbb R,</math> represents the {{math|{''x'', ''y''<nowiki>}</nowiki>}} pair (or pairs) that maximizes (or maximize) the value of the objective function {{math|''x'' cos ''y''}}, with the added constraint that {{mvar|x}} lie in the interval {{math|[β5,5]}} (again, the actual maximum value of the expression does not matter). In this case, the solutions are the pairs of the form {{math|{5, 2''k''{{pi}}<nowiki>}</nowiki>}} and {{math|{β5, (2''k'' + 1){{pi}}<nowiki>}</nowiki>}}, where {{mvar|k}} ranges over all [[integer]]s. Operators {{math|arg min}} and {{math|arg max}} are sometimes also written as {{math|argmin}} and {{math|argmax}}, and stand for ''argument of the minimum'' and ''argument of the maximum''.
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