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KonradZuse
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8.5 #2In Exercise 2, find the matrix for T relative to the basis B, and use Theorem 8.5.2 to compute the matrix for T relative
to the basis B'
> T: R^(2)> R^(2) is defined by; T[[[x1],[x2]]] = [[[x1 + 7 x2,],[3 x1  4 x2,]]] ;
B = (u1, u2) and B' = (v1,u1)
> u1 =[[[2],[2]]]; u2 = [[[4],[1]]]; v1 =[[[1],[3]]]; [[[1],[1]]];
 one year ago
 one year ago
KonradZuse Group Title
8.5 #2In Exercise 2, find the matrix for T relative to the basis B, and use Theorem 8.5.2 to compute the matrix for T relative to the basis B' > T: R^(2)> R^(2) is defined by; T[[[x1],[x2]]] = [[[x1 + 7 x2,],[3 x1  4 x2,]]] ; B = (u1, u2) and B' = (v1,u1) > u1 =[[[2],[2]]]; u2 = [[[4],[1]]]; v1 =[[[1],[3]]]; [[[1],[1]]];
 one year ago
 one year ago

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KonradZuse Group TitleBest ResponseYou've already chosen the best response.0
@Kainui @tkhunny @Hero
 one year ago

KonradZuse Group TitleBest ResponseYou've already chosen the best response.0
FInd me someone up to the task :).
 one year ago

KonradZuse Group TitleBest ResponseYou've already chosen the best response.0
herooooooooooooooooooooooo
 one year ago

KonradZuse Group TitleBest ResponseYou've already chosen the best response.0
aren't you supposed gto be the hero? TO save the day? KZ's day? :p
 one year ago

tkhunny Group TitleBest ResponseYou've already chosen the best response.0
I'm okay to do it, I just have some connection inconsistencies that I don't seem to be able to solve.
 one year ago
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