Exact(2)
Various details are left unspecified in the problem; equivalent formulations of it fill in the details in different ways.
Note that the problem equivalent to (17) is (mathrm {F} (q) = mathop {max }limits _{mathbf {P}} {{R_{text {tot}}}({mathbf {P}}) - q{P_{text {tot}}}({mathbf {P}})} ), as defined in Theorem 1.
Similar(58)
In Section 2, we present a basic result that lays the foundation for defining a fixed point problem equivalent to the given problem (1.1 - 1.2).
In Section 2, we establish a basic result that lays the foundation for defining a fixed point problem equivalent to the given problem (1.1 - 1.2 1.1 - 1.2
A mathematical transformation renders the transient, forced convection problem equivalent to a steady-state convection problem.
The Cambridge students not only showed that it is possible, but they also came up with an ingenious solution: they showed that the problem was equivalent to calculating the electrical resistance in a network of circuits.
The problem becomes equivalent to the multi-user power allocation problem (P6).
The problem is equivalent to a two-dimensional 'quasi-plane' piezoelectric medium containing a 2D inclusion.
If and also only one weighting function is considered, the problem is equivalent to Steiner minimal tree problem (SMT).
At the interface, the problem is equivalent to Bernoulli's equation consisting of mappings from potential/velocity to velocity/pressure.
Therefore, the problem is equivalent to the maximization of the following metric P ( s k | r ) = P ( r | s k ).
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Justyna Jupowicz-Kozak
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