Linear Operators: Spectral operators |
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Page 2021
Equation ( 24 ) shows that | s | - - Â ( s ) is unitary for 8 + 0 . Thus ( 25 ) Å - 4 ( 6 ) =
( S ) 0 88 R2 and ( 26 ) Â ( ) ¥ ( ) = 18 / 14 ( s ) ] , SES , WE H2 . The equation Ap =
0 , being equivalent to the Cauchy - Riemann equation for the real and ...
Equation ( 24 ) shows that | s | - - Â ( s ) is unitary for 8 + 0 . Thus ( 25 ) Å - 4 ( 6 ) =
( S ) 0 88 R2 and ( 26 ) Â ( ) ¥ ( ) = 18 / 14 ( s ) ] , SES , WE H2 . The equation Ap =
0 , being equivalent to the Cauchy - Riemann equation for the real and ...
Page 2073
... and it follows from ( 28 ) that ( 31 ) e5 ( 9 + ) H + SH + , - 5 ( 9 + ) S H + . Now
suppose that the vectors x , y in H + satisfy the equation ( 22 ) , that is , ( 32 ) y = a
+ 3C and let us write this equation as ( 33 ) y = ax — P _ ax . Equations ( 30 ) and
...
... and it follows from ( 28 ) that ( 31 ) e5 ( 9 + ) H + SH + , - 5 ( 9 + ) S H + . Now
suppose that the vectors x , y in H + satisfy the equation ( 22 ) , that is , ( 32 ) y = a
+ 3C and let us write this equation as ( 33 ) y = ax — P _ ax . Equations ( 30 ) and
...
Page 2074
Now let y be an arbitrary vector in H . and define the vector x by the equation ( 36
) . Then ( 31 ) shows that x is in H . and equation ( 35 ) holds . This means that for
some vector 2 in H , we have 8569 - ) y = e - Be - 569 + 3x + 2 , and , using ( 30 )
...
Now let y be an arbitrary vector in H . and define the vector x by the equation ( 36
) . Then ( 31 ) shows that x is in H . and equation ( 35 ) holds . This means that for
some vector 2 in H , we have 8569 - ) y = e - Be - 569 + 3x + 2 , and , using ( 30 )
...
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