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Q^{\downarrow}_{nm} \ =
f^{\downarrow}_{G,nm} \ \cdot B_{go} \cdot Q^{\downarrow}_G
\ + \ f^{\downarrow}_{W,nm} \ \cdot B_w \cdot Q^{\downarrow}_W
\ + \ B_{go} \cdot Q^{\downarrow}_{GCAP} \
\ + \ B_w \cdot Q^{\downarrow}_{WAQ}
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\Delta Q_{nm} =
- f^{\uparrow}_{O,nm} \ \cdot B_{ob} \cdot \, Q^{\uparrow}_O
- f^{\uparrow}_{G,nm} \ \cdot B_{go} \cdot Q^{\uparrow}_G
- f^{\uparrow}_{W,nm} \ \cdot B_w \cdot Q^{\uparrow}_W
+ f^{\downarrow}_{G,nm} \ \cdot B_{go} \cdot Q^{\downarrow}_G  
+ f^{\downarrow}_{W,nm} \ \cdot B_w \cdot Q^{\downarrow}_W
+ B_{go} \cdot Q^{\downarrow}_{GCAP} \ \
+ B_w \cdot Q^{\downarrow}_{WAQ}
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| Q_m(t) = \int_0^t q_m(t) \, dt |
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| B_{og} = \frac{B_o - R_s \, B_g}{1- R_s \, R_v} |
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| B_{go} = \frac{ B_g - R_v \, B_o}{1- R_s \, R_v} |
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