WebJan 30, 2009 · 621. The radius of the sphere is sqrt (20). The center of the sphere is (4,3,-2). The farthest coordinate plane is the yz plane. The center of the sphere is 4 units away from that. sqrt (20)>4. They are all circles. Jan 29, 2009. WebMar 3, 2013 · Find the intersection with the y -axis. Set x = 0. You get f ( 0) = y which is equivalent to − 1 = y. Therefore the point in which the graph of the function intersects the y -axis is ( 0, − 1). x 3 + x 2 − x − 1 = ( x + 1) ( x 2 − 1) = ( x − 1) ( x + 1) 2. Though in this case the rational root test does find them all.
Solved Describe the shape of the AFC curve when fixed …
WebFeb 17, 2024 · Assume that this line intersects x axis at (-n, 0), where n is a +ve integer. As it is given that the given equation interest the x-axis on –ve side. Then 0 = AN/B – C/B AN = C A/C = N here n is +ve integer So either A> 0 & C > 0 or C< 0 & A<0> 0 So 2 alone is sufficient. Ans is B WebApr 17, 2024 · To have a horizontal tangent at the x-axis, wouldn't the graph have to have some local minimum or maximum at the x-axis, and thus the point would actually be … portland rescue mission shelter
AFS, AFF and AFC Focus Modes Explained - Graham
WebFeb 2, 2024 · The shape of afc is always negative like demand curve. it's elasticity with respect to output is equal to 1. as production of unit increases afc will be decrease that's why it's shape known as rectangular … WebDec 23, 2024 · Broadly, the answer to your question is it depends on the context. Generally, if you have some sort of functional form for the curves, you can tell whether they touch the axes by seeing if there is an intercept on either the P or Q axis (set P = 0 to see if there is a Q-intercept, and vice versa). WebOct 21, 2013 · why average fixed cost never touch at x-axis and y-axis? Share with your friends. Share 1. Average Fixed Curve does not touch the x-axis because that would mean that average fixed cost is zero which is not possible, as there is always some fixed cost at all levels of output. 6 ; View Full Answer About Us; Blog; Terms & Conditions ... optimum phone service area