Exclude variable from e-function in sum

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I have the following problem.



I have the following equation and I want to exclude the $beta$.



$$p_ij~=~fracA^alpha_jcdot e^-d_ijcdotbetasum_j=1^n A^alpha_jcdot e^-d_ijcdotbeta$$



How can I get the $beta$ in front of the fraction?



Help would be greatly appreciated!







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  • In the given case you can't. Do you have some information about $d_ij$? That might help. You might be able to make a Taylor series expansion.
    – Andrei
    Jul 30 at 18:12














up vote
0
down vote

favorite












I have the following problem.



I have the following equation and I want to exclude the $beta$.



$$p_ij~=~fracA^alpha_jcdot e^-d_ijcdotbetasum_j=1^n A^alpha_jcdot e^-d_ijcdotbeta$$



How can I get the $beta$ in front of the fraction?



Help would be greatly appreciated!







share|cite|improve this question





















  • In the given case you can't. Do you have some information about $d_ij$? That might help. You might be able to make a Taylor series expansion.
    – Andrei
    Jul 30 at 18:12












up vote
0
down vote

favorite









up vote
0
down vote

favorite











I have the following problem.



I have the following equation and I want to exclude the $beta$.



$$p_ij~=~fracA^alpha_jcdot e^-d_ijcdotbetasum_j=1^n A^alpha_jcdot e^-d_ijcdotbeta$$



How can I get the $beta$ in front of the fraction?



Help would be greatly appreciated!







share|cite|improve this question













I have the following problem.



I have the following equation and I want to exclude the $beta$.



$$p_ij~=~fracA^alpha_jcdot e^-d_ijcdotbetasum_j=1^n A^alpha_jcdot e^-d_ijcdotbeta$$



How can I get the $beta$ in front of the fraction?



Help would be greatly appreciated!









share|cite|improve this question












share|cite|improve this question




share|cite|improve this question








edited Jul 30 at 17:23









mrtaurho

660117




660117









asked Jul 30 at 17:19









ViktorG

857




857











  • In the given case you can't. Do you have some information about $d_ij$? That might help. You might be able to make a Taylor series expansion.
    – Andrei
    Jul 30 at 18:12
















  • In the given case you can't. Do you have some information about $d_ij$? That might help. You might be able to make a Taylor series expansion.
    – Andrei
    Jul 30 at 18:12















In the given case you can't. Do you have some information about $d_ij$? That might help. You might be able to make a Taylor series expansion.
– Andrei
Jul 30 at 18:12




In the given case you can't. Do you have some information about $d_ij$? That might help. You might be able to make a Taylor series expansion.
– Andrei
Jul 30 at 18:12















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