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\pi_{[x]} = \frac{0.493 \alpha_{[y],\mathrm{max}} \alpha_{[z],\mathrm{max}}- 0.838 (\alpha_{[y],\mathrm{max}}+\alpha_{[z],\mathrm{max}})+ 0.352}{\beta}
\pi_{[x]} = \frac{0.493 \alpha_{[y],\mathrm{max}} \alpha_{[z],\mathrm{max}}- 0.8 (\alpha_{[y],\mathrm{max}}+\alpha_{[z],\mathrm{max}})+ 0.352}{\beta}
\pi_{[x]} = \frac{0.493 \alpha_{[y],\mathrm{max}} \alpha_{[z],\mathrm{max}}- 0.4 (\alpha_{[y],\mathrm{max}}+\alpha_{[z],\mathrm{max}})+ 0.352}{\beta}
\pi_{[x]} = \frac{0.493 \alpha_{[y],\mathrm{max}} \alpha_{[z],\mathrm{max}}- 0. (\alpha_{[y],\mathrm{max}}+\alpha_{[z],\mathrm{max}})+ 0.352}{\beta}
\pi_{[x]} = \frac{0.493 \alpha_{[y],\mathrm{max}} \alpha_{[z],\mathrm{max}}- 0.41 (\alpha_{[y],\mathrm{max}}+\alpha_{[z],\mathrm{max}})+ 0.352}{\beta}