Q1/ Find the maxima, minima and saddle points for the following function and the value of the function at these points: f(x.y)-x^3+y^3-3xy

Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
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Q1/ Find the maxima, minima and saddle points for the following function and the value of
the function at these points: f(x.y)=x^3+y^3-3xy
02/ Using total differential to find the approximate of
(2.97)^2-cos(0.01)+e^0.02
Q3/ Find the directional derivative of the function f(x,y,2)=xy+yz+zx at the point Po(1,-1,2)
in the direction of the line (x-31/10-(y-2/11-(1-2)/2
Q4/ Using chain rule to find dw/dt if w=xy+2,
X cost, yesint and zet
Q5/ show that fxyrfyx
Axy)= e*y2-x3Iny
Q6/ Solve the following differential equation
dy
In y +
dx
In x +
II
>
Transcribed Image Text:%V l. h.w.pdf > Q1/ Find the maxima, minima and saddle points for the following function and the value of the function at these points: f(x.y)=x^3+y^3-3xy 02/ Using total differential to find the approximate of (2.97)^2-cos(0.01)+e^0.02 Q3/ Find the directional derivative of the function f(x,y,2)=xy+yz+zx at the point Po(1,-1,2) in the direction of the line (x-31/10-(y-2/11-(1-2)/2 Q4/ Using chain rule to find dw/dt if w=xy+2, X cost, yesint and zet Q5/ show that fxyrfyx Axy)= e*y2-x3Iny Q6/ Solve the following differential equation dy In y + dx In x + II >
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