Q1 // You are given a matrix u = [2;1;1;1] , in Matlab and a second matrix v = [0.5;1;0;0]. We now perform the matrix- by - matrix product " u times vī ", w = u(vT) . (1),where recall that Tdenotes transpose. (choose 10 only) 1- The size of the matrix w is А. 1х1 В. 1x4 С. 4x4 D. 4x 1 2- The operation of equation (1) is implemented in Matlab as

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Q1 // You are given a matrix u = [2;1;1;1] , in Matlab and a second matrix v =
[0.5;1;0;0)]. We now perform the matrix- by - matrix product " u times vT ", w =
u(vT) .. (1) ,where recall that Tdenotes transpose.
(choose 10 only)
1- The size of the matrix w is
А. 1 х 1
В. 1 х4
С. 4х 4
D. 4 x 1
2- The operation of equation (1) is implemented in Matlab as
A. w = u."v
B. w = v. *u
C. w = u'*v
D. w = u*v'
3- The value of w(1,1) is
А. О.5
В. 1.0
С. 2.5
D. 2.0
4- The size of the matrixu is
А. 1х1
В. 1 х4
С. 4x 4
D. 4 x 1
We now perform the matrix - by - matrix product "uT times v ", z = (uT)v .. (2),
where again T denotes transpose.
5- The size of the matrix z is
А. 1х 1
В. 1 х 4
C. 4 x 4
D. 4 x 1
6- The operation of equation (2) is implemented in Matlab as
A. Z = u.*v
B. Z = v.*u
C. z = u'*v
D. z = u*v
Transcribed Image Text:Q1 // You are given a matrix u = [2;1;1;1] , in Matlab and a second matrix v = [0.5;1;0;0)]. We now perform the matrix- by - matrix product " u times vT ", w = u(vT) .. (1) ,where recall that Tdenotes transpose. (choose 10 only) 1- The size of the matrix w is А. 1 х 1 В. 1 х4 С. 4х 4 D. 4 x 1 2- The operation of equation (1) is implemented in Matlab as A. w = u."v B. w = v. *u C. w = u'*v D. w = u*v' 3- The value of w(1,1) is А. О.5 В. 1.0 С. 2.5 D. 2.0 4- The size of the matrixu is А. 1х1 В. 1 х4 С. 4x 4 D. 4 x 1 We now perform the matrix - by - matrix product "uT times v ", z = (uT)v .. (2), where again T denotes transpose. 5- The size of the matrix z is А. 1х 1 В. 1 х 4 C. 4 x 4 D. 4 x 1 6- The operation of equation (2) is implemented in Matlab as A. Z = u.*v B. Z = v.*u C. z = u'*v D. z = u*v
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