Assume that f is a twice continuously differentiable function of n variables in an optimzation with no constraints. In order for (x,x2, ..., x) to yield a the following two conditions must be satisfied: local ƒi (x1, x2, ..., x ) = 0 for i=1, 2, ...,n where f; represents first order partial derivative of f with respect to ï¿ AND the Hessian matrix of second order partial derivatives be maximum, positive definite maximum, negative definite minumum, indefinite minimum, negative definite maximum, indefinite
Assume that f is a twice continuously differentiable function of n variables in an optimzation with no constraints. In order for (x,x2, ..., x) to yield a the following two conditions must be satisfied: local ƒi (x1, x2, ..., x ) = 0 for i=1, 2, ...,n where f; represents first order partial derivative of f with respect to ï¿ AND the Hessian matrix of second order partial derivatives be maximum, positive definite maximum, negative definite minumum, indefinite minimum, negative definite maximum, indefinite
Calculus For The Life Sciences
2nd Edition
ISBN:9780321964038
Author:GREENWELL, Raymond N., RITCHEY, Nathan P., Lial, Margaret L.
Publisher:GREENWELL, Raymond N., RITCHEY, Nathan P., Lial, Margaret L.
Chapter9: Multivariable Calculus
Section9.3: Maxima And Minima
Problem 30E: Let f(x,y)=y22x2y+4x3+20x2. The only critical points are (2,4), (0,0), and (5,25). Which of the...
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