Gene mutation. Suppose that a gene in a chromosome is of type A or type B . Assume that the probability that a gene of type A will mutate to type B in one generation is 10 − 4 and that a gene of type B will mutate to type A is 10 − 6 . (A) What is the transition matrix? (B) After many generations, what is the probability that the gene will be of type A ? Of type B ? (Find the stationary matrix.)
Gene mutation. Suppose that a gene in a chromosome is of type A or type B . Assume that the probability that a gene of type A will mutate to type B in one generation is 10 − 4 and that a gene of type B will mutate to type A is 10 − 6 . (A) What is the transition matrix? (B) After many generations, what is the probability that the gene will be of type A ? Of type B ? (Find the stationary matrix.)
Gene mutation. Suppose that a gene in a chromosome is of type
A
or type
B
. Assume that the probability that a gene of type
A
will mutate to type
B
in one generation is
10
−
4
and that a gene of type
B
will mutate to type
A
is
10
−
6
.
(A) What is the transition matrix?
(B) After many generations, what is the probability that the gene will be of type
A
? Of type
B
? (Find the stationary matrix.)
Homework Let X1, X2, Xn be a random sample from f(x;0) where
f(x; 0) = (-), 0 < x < ∞,0 € R
Using Basu's theorem, show that Y = min{X} and Z =Σ(XY) are indep.
-
Homework Let X1, X2, Xn be a random sample from f(x; 0) where
f(x; 0) = e−(2-0), 0 < x < ∞,0 € R
Using Basu's theorem, show that Y = min{X} and Z =Σ(XY) are indep.
rmine the immediate settlement for points A and B shown in
figure below knowing that Aq,-200kN/m², E-20000kN/m², u=0.5, Depth
of foundation (DF-0), thickness of layer below footing (H)=20m.
4m
B
2m
2m
A
2m
+
2m
4m
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