Exact(7)
This algorithm can be implemented by a computerized system and easily and promptly utilized by field managers without the need for substantial knowledge.
This algorithm can be implemented easily by software on the MICAz and N@L platforms.
This algorithm can be implemented with as few as two multiplications and two additions per node point plus (2n) additions per computed contour coordinate.
This algorithm can be implemented easily since it computes projections onto half-spaces and has no need to know a priori the norm of the bounded linear operator.
Once proven successful, this algorithm can be implemented to solve real problems in neurology and bioinformatics.
As soon as one is provided with initial condition, this algorithm can be implemented easily.
Similar(53)
And the algorithm can be implemented in Simulink environment.
The controller validation results show that the algorithm can be implemented in real-time with a steady-state RMS error of less than 2°.
Moreover, the algorithm can be implemented in any chemical informatics toolkit that supports SMARTS pattern matching.
Due to the linearized semi-implicit property, the algorithm can be implemented more effectively.
We now show that the algorithm can be implemented to run in O ( z n 2 log n ) time.
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