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1
Membranes Materials, Simulations, and Applications /
Baskı/Yayın Bilgisi Springer International Publishing : Imprint: Springer, 2017.İçindekiler: “…1 Poly (Hexahydrotriazine) Membranes Prepared By Coupling Reaction between Diamines and Aldehydes -- 2 Preparation and Characterization of Hybrid Membranes Based on Poly(Ether-B-Amide) -- 3 Preparation of Membranes Based on PolySulfone (PSU) and Graphene Oxide (GrO) by Electrospinning -- 4 Ceramic Crossflow Filtration in Food and Dairy Applications -- 5 Sulfated TiO2-ZrO2 Membrane as-synthesized by Sol-Gel Method: Application in the Olefin Oligomerization -- 6 CO2/N2 Separation in Postcombustion Processes by Means of Alumina-Supported-Ionic-Liquid Membranes -- 7 Synthesis of Catalytic Membranes for the Oxidation of Organic Pollutants in Wastewater -- 8 Ion Transport through Biomimetic Nanochannel Membranes -- 9 Synergies between Pulsatile Flow and Spacer Filaments in Reverse Osmosis Modules -- 10 Obtaining the Tortuosity Factor as a Function of Crystallinity in Polyethylene Membranes -- 11 Three Dimensional Modelling, and Simulation of Multilayer Spacers for Spiral Wound Membrane Modules.-12 Biofouling Studies on Thin Film Composite Membranes in Reverse Osmosis Desalination Processes -- 13 Photo-Oxidation Treatment of the Reject Stream of a Nanofiltration Membrane System -- 14 Cleaning Strategies for a Membrane Bioreactor to Produce Permeate with a Quality Suitable for Indirect Reuse -- 15 Effect of the Transport Properties on the Design of a Plant and on the Economy of The Sweetening Process of Natural Gas Using Membranes -- 16 Fouling Modeling and Optimization of Membrane Module Design for Brackish and Sea Water Desalination in the Mexican Pacific Coast - Project Description and Progress -- 17 Research on Polymer Membranes and Teaching Performed in Unam Campus Morelia.…”
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2
Polystyrene : synthesis, characteristics, and applications /
Baskı/Yayın Bilgisi Nova Publishers, [2014]İçindekiler: “…Introduction and Background; 2. Preparation of Gigaporous Polystyrene Microspheres.…”
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3
Deep Learning with Python, Second Edition.
Baskı/Yayın Bilgisi Manning Publications Co. LLC, 2021.İçindekiler: “…4.1.5 Using a trained model to generate predictions on new data -- 4.1.6 Further experiments -- 4.1.7 Wrapping up -- 4.2 Classifying newswires: A multiclass classification example -- 4.2.1 The Reuters dataset -- 4.2.2 Preparing the data -- 4.2.3 Building your model -- 4.2.4 Validating your approach -- 4.2.5 Generating predictions on new data -- 4.2.6 A different way to handle the labels and the loss -- 4.2.7 The importance of having sufficiently large intermediate layers -- 4.2.8 Further experiments -- 4.2.9 Wrapping up -- 4.3 Predicting house prices: A regression example -- 4.3.1 The Boston housing price dataset -- 4.3.2 Preparing the data -- 4.3.3 Building your model -- 4.3.4 Validating your approach using K-fold validation -- 4.3.5 Generating predictions on new data -- 4.3.6 Wrapping up -- Summary -- 5 Fundamentals of machine learning -- 5.1 Generalization: The goal of machine learning -- 5.1.1 Underfitting and overfitting -- 5.1.2 The nature of generalization in deep learning -- 5.2 Evaluating machine learning models -- 5.2.1 Training, validation, and test sets -- 5.2.2 Beating a common-sense baseline -- 5.2.3 Things to keep in mind about model evaluation -- 5.3 Improving model fit -- 5.3.1 Tuning key gradient descent parameters -- 5.3.2 Leveraging better architecture priors -- 5.3.3 Increasing model capacity -- 5.4 Improving generalization -- 5.4.1 Dataset curation -- 5.4.2 Feature engineering -- 5.4.3 Using early stopping -- 5.4.4 Regularizing your model -- Summary -- 6 The universal workflow of machine learning -- 6.1 Define the task -- 6.1.1 Frame the problem -- 6.1.2 Collect a dataset -- 6.1.3 Understand your data -- 6.1.4 Choose a measure of success -- 6.2 Develop a model -- 6.2.1 Prepare the data -- 6.2.2 Choose an evaluation protocol -- 6.2.3 Beat a baseline -- 6.2.4 Scale up: Develop a model that overfits.…”
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