09/01/2010, 02:42 PM
one more thing i forgot :
i mentioned analytic with respect to w3 and w4.
but i didnt explain analytic w4 ;
sum w4(z) g^[z/h](x)
can be generalized to
sum w4(z/h) g^[z/h](x)
and
sum (w4(z/h) g^[z/h](x))/Y(h)
and even lim h -> 0
giving
integral[-oo,oo,z] w4(z) g^[z](x) dz
and now w4 can be analytic and 1 periodic.
another question occurs :
sum (w4_1(z/h) g^[z/h](x))/Y(h) = integral[-oo,oo,z] w4_2(z) g^[z](x) dz
is always solvable ??
regards
tommy1729
i mentioned analytic with respect to w3 and w4.
but i didnt explain analytic w4 ;
sum w4(z) g^[z/h](x)
can be generalized to
sum w4(z/h) g^[z/h](x)
and
sum (w4(z/h) g^[z/h](x))/Y(h)
and even lim h -> 0
giving
integral[-oo,oo,z] w4(z) g^[z](x) dz
and now w4 can be analytic and 1 periodic.
another question occurs :
sum (w4_1(z/h) g^[z/h](x))/Y(h) = integral[-oo,oo,z] w4_2(z) g^[z](x) dz
is always solvable ??
regards
tommy1729

