Upload detailed step-by-step calculations to get the Inverse Matrix. Hint from the book:
Let us generalize it here, all we need to do is to convert
[[m11, m12, m13, m14, 1, 0, 0, 0], [m21, m22, m23, m24, 0, 1, 0, 0], [m31, m32, m33, m34, 0, 0, 1, 0], [m41, m42, m43, m44, 0, 0, 0, 1]]
to
[[1, 0, 0, 0, m11', m12', m13', m14'], [0, 1, 0, 0, m21', m22', m23', m24'], [0, 0, 1, 0, m31', m32', m33', m34'], [0, 0, 0, 1, m41', m42', m43', m44']]
Then the matrix
[[m11', m12', m13', m14'], [m21', m22', m23', m24'], [m31', m32', m33', m34'], [m41', m42', m43', m44']]
is the inverse of M we are looking for.
Upload detailed step-by-step calculations to get the Inverse Matrix Hint from the book:
Let us generalize it here, all we need to do is to convert
m11 m12 m13 m14 0 m21 m22 m23 m24 0 0 0 m31 m32 m33 m34 0 0 0 m41 m42 m43 m44 0 0 1
to
0
0 0 m11 m12 m13 m14 0 0 0 m21 m22 m23 m24 0 0 0 m31 m32 m33 m34 0 0 0 m41 m42 m43 m44 0 0 1
Then the matrix
m11 m12 m13 m14 m21 m22 m23 m24 m31 m32 m33 m34 m41 m42 m43 m44
is the inverse of M we are looking for.