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The concept was verified by applying an established use case.
The effectiveness of this method was successfully verified by applying a wind turbine system.
The feasibility of the proposed algorithm is verified by applying it to several simulation examples.
The model is verified by applying it to components manufactured from aluminum alloy 6061-T6.
The suitability of this system was verified by applying to a real deep drawing product.
The reliability of the results obtained has been verified by applying the program POLAG.
Similar(13)
This result is easy to verify by applying the property (13) of mode‐n product G × n = 1 N T ( n ) - 1 × n = 1 N A ( n ) T ( n ) = G × n = 1 N A ( n ) T ( n ) T ( n ) - 1 = G × n = 1 N A ( n ).
It was verified that by applying a temperature gradient, the processing time could be significantly reduced.
The information obtained from the thermal probe, it is also possible to verify that by applying Eqs.
We verify by applying the Leibnitz formula that biglvert partial^{gamma}bigl(e^{pm ifrac{vert xi vert '}{vert xi vert }t} bigr) bigrvert leq Cvert xi vert ^{-gamma} bigl(max bigl{ vert Omega vert, N bigr} t+1 bigr)^{vert gamma vert } and biglvert partial^{gamma}bigl(e^{-nu vert xi vert ^{2}t} bigr) bigrvert leq Cvert xi vert ^{-gamma }e^{-frac{nu}{2}vert xi vert ^{2}t}.
We further verified the solution by applying the model to match with actual data of Well 314 (Al-Ahmadi and Wattenbarger 2011).
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