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:: Artificial intelligence and ceramic tools: experimental study, modeling and optimizing
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:: Effect of process parameters and synthesis method on the performance of thermoelectric ceramics: a novel simulation
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:: Self-ignited synthesis of nanocomposite powders induced by Spex mills; modeling and optimizing
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:: Ignition time of nanopowders during milling: a novel simulation
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:: Rapid synthesis of nanopowders in high energy ball milling; optimization of milling parameters
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:: Modeling Seebeck coefficient of Ca3− xMxCo4O9 (M= Sr, Pr, Ga, Ca, Ba, La, Ag) thermoelectric ceramics
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:: Optimization of process parameters to maximize hardness of metal/ceramic nanocomposites produced by high energy ball milling
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:: A new predictive model for the bond strength of FRP‐to‐concrete composite joints
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:: Laminating; the best way to improve Charpy impact energy of nanocomposites
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:: A new predictive model for the bond strength of FRP‐to‐concrete composite joints
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:: Laminating; the best way to improve Charpy impact energy of nanocomposites
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:: The use of artificial bee colony algorithm to speed up the nanopowders synthesis during high energy ball milling
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:: The best conditions for minimizing the synthesis time of nanocomposites during high energy ball milling: modeling and optimizing
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:: A novel technology for minimizing the synthesis time of nanostructured powders in planetary mills
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:: A new approach to solve differential equations arising in fluid mechanics
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:: A Method for Solving Fredholm Integral Equation of the First Kind Based on Chebyshev Wavelets
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:: Numerical Solution of Integro-Differential Equation by using Chebyshev Wavelet Operational Matrix of Integration
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:: Numerical Solution of Fredholm and Volterra Integral Equations of the First Kind Using Wavelets bases
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:: Numerical Solution of Fredholm Integral Equation of the First Kind using Legendre, Chebyshev and CAS wavelets
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:: A Method for Solving Fredholm Integral Equation
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