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To describe precisely the chemo-mechanical coupling behavior of hydrogels, a general form of free energy density function is presented by considering chain entanglements and functionality of junctions.
An expression for the neuron's activation function is presented.
Then, the line-integral Lyapunov function is presented for the stability analysis.
A simple and useful calculating technique for Jacobian elliptic function is presented.
Formulation of volume function is presented in terms of configuration tensors.
First, a novel nth-order smoothly switching function is presented, and then an energy-efficient controller is obtained.
First, a novel nth-order smoothly switching function is presented, and therefore an energy-efficient controller is obtained.
Also the performance of antenna types that can exploit metallic surface in their function is presented and analysed.
A new miniaturized ultra-wideband (UWB) monopole antenna with a broad band, sharp roll-off frequency notch function is presented.
A novel linear mapping function is presented to transform the complex-valued system into the real-valued system.
A control design method based on Lyapunov inequality minimizing a continuous-time quadratic cost function is presented.
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