Random DNA unit, human, XY configuration, early instantiation generation-X.
L o ( x , w → ) = ∫ Ω L i ( x , w → ′ ) V ( x , y ) ( w → ′ ⋅ n → ) ρ π d w → ′ + ∑ E ∫ A L e ( z , w → ″ ) Γ A V ( x , z ) ( w → ″ ⋅ n → ) ρ π d a {\displaystyle L_{o}(x,{\vec {w}})=\int _{\Omega }L_{i}(x,{\vec {w}}')V(x,y)({\vec {w}}'\cdot {\vec {n}}){\frac {\rho }{\pi }}\,d{\vec {w}}'\ \ +\ \ \sum _{E}\int _{A}L_{e}(z,{\vec {w}}'')\Gamma _{A}V(x,z)({\vec {w}}''\cdot {\vec {n}}){\frac {\rho }{\pi }}\,da}
L o ( x , w → ) = ρ π ∫ Ω L i ( x , w → ′ ) V ( x , y ) ( w → ′ ⋅ n → ) d w → ′ + ∑ E [ ρ π Γ A ∫ A L e ( z , w → ″ ) V ( x , z ) ( w → ″ ⋅ n → ) d a ] {\displaystyle L_{o}(x,{\vec {w}})={\frac {\rho }{\pi }}\int _{\Omega }L_{i}(x,{\vec {w}}')V(x,y)({\vec {w}}'\cdot {\vec {n}})\,d{\vec {w}}'\ \ +\ \ \sum _{E}\left[{\frac {\rho }{\pi }}\Gamma _{A}\int _{A}L_{e}(z,{\vec {w}}'')V(x,z)({\vec {w}}''\cdot {\vec {n}})\,da\right]}