doc/min_cost_flow.dox
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    99 \f[ \min\sum_{uv\in A} f(uv) \cdot cost(uv) \f]
    99 \f[ \min\sum_{uv\in A} f(uv) \cdot cost(uv) \f]
   100 \f[ \sum_{uv\in A} f(uv) - \sum_{vu\in A} f(vu) =
   100 \f[ \sum_{uv\in A} f(uv) - \sum_{vu\in A} f(vu) =
   101     sup(u) \quad \forall u\in V \f]
   101     sup(u) \quad \forall u\in V \f]
   102 \f[ lower(uv) \leq f(uv) \leq upper(uv) \quad \forall uv\in A \f]
   102 \f[ lower(uv) \leq f(uv) \leq upper(uv) \quad \forall uv\in A \f]
   103 
   103 
   104 However if the sum of the supply values is zero, then these two problems
   104 However, if the sum of the supply values is zero, then these two problems
   105 are equivalent.
   105 are equivalent.
   106 The \ref min_cost_flow_algs "algorithms" in LEMON support the general
   106 The \ref min_cost_flow_algs "algorithms" in LEMON support the general
   107 form, so if you need the equality form, you have to ensure this additional
   107 form, so if you need the equality form, you have to ensure this additional
   108 contraint manually.
   108 contraint manually.
   109 
   109