Topic: Maxima and Minima Problem with Answer
Not finding your answer? Try searching the web for Maxima and Minima Problem with Answer
Answers to Common Questions
How can you answer this Math problem (Maxima and Minima Problems)...
Money @10p=10*12,000 cost of ticket if raised by a multiple of 1/2p=10+k/2 number of people if ticket raised by a multiple of 1/2p=12000-k*240 income=cost per tkt * # people= (10+k/2)*(12000-k*240) take deriv with respect to k: 3600k-120k^2... Read More »
Source: http://answers.yahoo.com/question/index?qid=20091204230203AA93oRb
How do i find the relative maxima and relative minima for this pr...
Take the first derivative of the function and set it equal to 0. Then solve that equation for x and those will be your x-values for your relative max and mins. Plug x's into the orignal function to get y-values. f'(x) = [(1+ x^2) - 2x^2] / ... Read More »
Source: http://answers.yahoo.com/question/index?qid=20111015205135AA4aWr5
How do I solve this word problem through application of Maxima an...
area of a rectangular figure is maximum when it is a square for example a square with dimension 4X4 area = 16, and rectangle with dimension 5 X 3 area = 15 so we know the semicircle is surmounted upon a square let the dimension of square = ... Read More »
Source: http://answers.yahoo.com/question/index?qid=20100210045659AAvO4qf
More Common Questions
Answers to Other Common Questions
http://www.youtube.com/results?search_qu… youtube videos are very helpful!
Read More »
Source: http://answers.yahoo.com/question/index?qid=20090822192447AAyK5VA
There are several ways to approach this: 1. Sketch the graph of this function: choose value of t that start at t = 0. Compute h and plot the point (t, h). You will see that the highest point is reached at t = 10 seconds and h = 100 m. 2. Id...
Read More »
Source: http://au.answers.yahoo.com/question/index?qid=20110310020953AAwa...
f ( x , y , z ) = x 2 + 3 y 2 + 6 z 2 − 3 x y + 4 y z . (10) f ( x , y ) = − x 3 − y 3 + 3 x y .
Read More »
Source: http://www.economics.utoronto.ca/osborne/MathTutorial/GOPX1.HTM