A light-year is how astronomers measure distance in space. It’s defined by how far a beam of light peregrinates in one year – a distance of six trillion miles. Cerebrate of it as the more sizably voluminous, badder cousin of the inch, the mile, the kilometer, and the furlong. If you relish to keep up with what’s going on in astronomy, it’s worth spending scarcely of time understanding what the deal is with this hysterical unit of quantification. Your answer is C 6 x 10 12
Answer:
Check the explanation
Step-by-step explanation:
1) Algorithm for finding the new optimal flux: 1. Let E' be the edges eh E for which f(e)>O, and let G = (V,E). Find in Gi a path Pi from s to u and a path
, from v to t.
2) [Special case: If
, and
have some edge e in common, then Piu[(u,v)}uPx has a directed cycle containing (u,v). In this instance, the flow along this cycle can be reduced by a single unit without any need to change the size of the overall flow. Return the resulting flow.]
3) Reduce flow by one unit along 
4) Run Ford-Fulkerson with this sterling flow.
Justification and running time: Say the original flow has see F. Lees ignore the special case (4 After step (3) Of the elgorithuk we have a legal flaw that satisfies the new capacity constraint and has see F-1. Step (4). FOrd-Fueerson, then gives us the optimal flow under the new cePacie co mint. However. we know this flow is at most F, end thus Ford-Fulkerson runs for just one iteration. Since each of the steps is linear, the total running time is linear, that is, O(lVl + lEl).
Slope is 7/4 y intercept is -10
Answer:
6/11
Step-by-step explanation:
2/11 x 3/11