Let Y₁, Y2, Y3, Y4 ~ N(ßo, 0²), Y's independent. = Given the vector Y₁x1 = [Y₁, Y2, Y3, Y4] and the orthonormal coordinate system U₁ U₂ = ½ [1, 1, −1, −1]T, U3 = ½ [1, −1, 1, −1]ª, and U4 = ½ [1, −1, −1, 1]ª. First, find the constants C₁, C₂, C3, C4 for which Y = C₁ U₁ + C₂U₂ + C3U3 + C₁U4. The distribution of ++ is 0² OT distribution F distribution O Chi-square O Normal [1,1,1,1]¹

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Let Y₁, Y2, Y3, Y4~ N(Bo, o²), Y's independent.
Given the vector Y4x1
[Y₁, Y2, Y3, Y4] and the orthonormal coordinate system U₁
U₂ = [1, 1, -1, -1]T, U3 = ½ [1, −1, 1, −1]ª, and U₁ = [1, −1, −1, 1]ª.
First, find the constants C₁, C2, C3, C4 for which Y = C₁ U₁ + C₂ U₂ + C3 U3 + C₁U4.
c²+²+²
0²
The distribution of
O T distribution
F distribution
O Chi-square
Normal
=
is
=
[1,1, 1, 1],
Transcribed Image Text:Let Y₁, Y2, Y3, Y4~ N(Bo, o²), Y's independent. Given the vector Y4x1 [Y₁, Y2, Y3, Y4] and the orthonormal coordinate system U₁ U₂ = [1, 1, -1, -1]T, U3 = ½ [1, −1, 1, −1]ª, and U₁ = [1, −1, −1, 1]ª. First, find the constants C₁, C2, C3, C4 for which Y = C₁ U₁ + C₂ U₂ + C3 U3 + C₁U4. c²+²+² 0² The distribution of O T distribution F distribution O Chi-square Normal = is = [1,1, 1, 1],
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