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Principles and Reactions of Protein Extraction Purification and Characterization

Intracellular Calcium-Dependent Proteolysis

Foods Nutrition and Sports Performance An international Scientific Consensus organized by Mars Incorporated with International Olympic Comm

Uses of Elemental Diets in Clinical Situations

Introduction to High Performance Computing for Scientists and Engineers

Introduction to High Performance Computing for Scientists and Engineers

Written by high performance computing (HPC) experts Introduction to High Performance Computing for Scientists and Engineers provides a solid introduction to current mainstream computer architecture dominant parallel programming models and useful optimization strategies for scientific HPC. From working in a scientific computing center the authors gained a unique perspective on the requirements and attitudes of users as well as manufacturers of parallel computers. The text first introduces the architecture of modern cache-based microprocessors and discusses their inherent performance limitations before describing general optimization strategies for serial code on cache-based architectures. It next covers shared- and distributed-memory parallel computer architectures and the most relevant network topologies. After discussing parallel computing on a theoretical level the authors show how to avoid or ameliorate typical performance problems connected with OpenMP. They then present cache-coherent non-uniform memory access (ccNUMA) optimization techniques examine distributed-memory parallel programming with message passing interface (MPI) and explain how to write efficient MPI code. The final chapter focuses on hybrid programming with MPI and OpenMP. Users of high performance computers often have no idea what factors limit time to solution and whether it makes sense to think about optimization at all. This book facilitates an intuitive understanding of performance limitations without relying on heavy computer science knowledge. It also prepares readers for studying more advanced literature. Read about the authors' recent honor: Informatics Europe Curriculum Best Practices Award for Parallelism and Concurrency.

GBP 180.00
1

Statistical Modeling and Machine Learning for Molecular Biology

Pharmacokinetic and Pharmacodynamic Data Analysis Concepts and Applications Second Edition

Receptor Phosphorylation

Organelle and Molecular Targeting

Organelle and Molecular Targeting

We have surpassed the omics era and are truly in the Age of Molecular Therapeutics. The fast-paced development of SARS-CoV-2 vaccines such as the mRNA vaccines encoding the viral spike protein demonstrated the need for and capability of molecular therapy and nanotechnology-based solutions for drug delivery. In record speed the SARS-CoV-2 viral RNA genome was sequenced and shared with the scientific community allowing the rapid design of molecular therapeutics. The mRNA vaccines exploit the host cell endoplasmic reticulum to produce viral spike proteins for antigen presentation and recognition by the innate and adaptive immune system. Lipid nanoparticles enable the delivery of the fragile degradation-sensitive nucleic acid payloads. Molecular-based therapeutics and nanotechnology solutions continue to drive the scientific and medical response to the COVID-19 pandemic as new mRNA DNA and protein-based vaccines are developed and approved and the emergency use approved vaccines are rapidly manufactured and distributed throughout the globe. The need for molecular therapies and drug delivery solutions is clear and as these therapies progress and become more specialized there will be important advancements in organelle targeting. For example using organelle targeting to direct lipid nanoparticles with mRNA payloads to the endoplasmic reticulum would increase the efficacy of mRNA vaccines reducing the required dose and therefore the biomanufacturing demand. Likewise improving the delivery of DNA therapeutics to the nucleus would improve efficacy. Organelles and molecules have always been drug targets but until recently we have not had the tools or capability to design and develop such highly specific therapeutics. Organelle targeting has far-reaching implications. For example mitochondria are central to both energy production and intrinsic apoptosis. Effectively targeting and manipulating mitochondria has therapeutic applications for diseases such as myopathies cancer neurodegeneration progerias diabetes and the natural aging process. The SARS-CoV-2 vaccines that exploit the endoplasmic reticulum (for mRNA vaccines) and the nucleic translational process (DNA vaccines) attest to the need for organelle and molecular therapeutics. This book covers the status demand and future of organelle- and molecularly targeted therapeutics that are critical to the advancement of modern medicine. Organelle and molecular targeting is the drug design and drug delivery approach of today and the future; understanding this approach is essential for students scientists and clinicians contributing to modern medicine.

GBP 200.00
1

Self Assembly The Science of Things That Put Themselves Together

Bioactive Peptides Production Bioavailability Health Potential and Regulatory Issues

Bioactive Peptides Production Bioavailability Health Potential and Regulatory Issues

Bioactive peptides have been receiving attention recently due to their applications as health-promoting agents. Derived from food proteins and other natural sources they exhibit various beneficial effects such as preventing diseases or modulating physiological systems once absorbed. As the market for nutraceuticals and functional foods continues to expand consumer interest has also grown and there are many common foods that have shown an abundance of bioactive peptides including dairy products cereal legumes meat and numerous other sources. In this newest addition to the series Nutraceuticals: Basic Research and Clinical Applications Bioactive Peptides: Production Bioavailability Health Potential and Regulatory Issues provides a comprehensive review of the current state of knowledge in the field of food protein hydrolysates and bioactive peptides their food sources bioavailability production applications functionalities health potentials and regulatory issues governing their use. Features Discusses different methodologies employed for scaling up bioactive peptides commercially Provides information on optimizing the production process Explains various bioactive properties exerted by different types of bioactive peptides Explores the application of metabolomics to the study of bioactive peptides With over 20 chapters written by established subject matter experts in their field this book provides timely information and discusses the latest developments of bioactive peptides. It will be useful for researchers academics and industry experts and can serve as an excellent resource for anyone interested in enhancing their knowledge in the field of bioactive peptides. | Bioactive Peptides Production Bioavailability Health Potential and Regulatory Issues

GBP 190.00
1

Commercialization Secrets for Scientists and Engineers

Frontiers of Civil Engineering and Disaster Prevention and Control SET Proceedings of the 3rd International Conference on Civil Architectur

Advances in Frontier Research on Engineering Structures SET Proceedings of the 6th International Conference on Civil Architecture and Struct

Advances in Civil Engineering and Environmental Engineering SET Proceedings of the 4th International Conference on Civil Engineering and Env

Applied Optimal Control Optimization Estimation and Control

Analytical Method Development and Validation

The Public Productivity and Performance Handbook

Philosophic Classics Volume III Modern Philosophy

A Concise Introduction to Pure Mathematics

CRC Handbook of Chemistry and Physics

CRC Handbook of Chemistry and Physics

High Quality Science requires High Quality Data! Today more than ever the CRC Handbook of Chemistry and Physics is critical in ensuring that researchers educators and students have the highest quality data for chemical compounds and physical particles. Available both in print and online the Handbook covers 390 chemistry physics and related subjects organized in easy-to-find well-organized tables. Every year new reported data and new scientific areas are added making the Handbook the largest comprehensive physical science data source available anywhere. The 104th Edition of the Handbook has been completely reorganized to meet the needs of today’s scientists. The first section has property data on the elements organic and inorganic compounds water bio-medical compounds and polymers. Other sections focus on applications of chemical and physical data data of importance in laboratory work and information of units and nomenclature. The purpose of the reorganization is to make sure users can easily find all data on related subjects. Handbook features include: All data reviewed and evaluated by subject matter experts Standardized chemical names structures property names and property units Important information on subjects such as chemical and laboratory safety and nomenclature Chemical and physical data critical for fields such as environmental science bio-medical chemistry organic and inorganic chemistry materials innovation geo- and astrophysics and solid-state science Digital tools in our Online Edition to analyze graph process and exploit our data content

GBP 180.00
1

Getting Started in ZBrush An Introduction to Digital Sculpting and Illustration

Getting Started in ZBrush An Introduction to Digital Sculpting and Illustration

Getting Started in ZBrush is a gentle introduction to ZBrush today‘s premier digital sculpting program. Beginning with the fundamentals of digital sculpting as well as a thorough introduction to the user interface Getting Started in ZBrush will have you creating a variety of professional-level 3D models in no-time. More than just another button-pushing manual this comprehensive guide is packed with start-to-finish projects that ease you into the workflow of the program while at the same time providing tips and tricks that will allow you to achieve certain tasks much more quickly. After progressing through the tutorials you will be shown how to customize brushes materials scripts and the interface so that you can utilize these tools to their full advantage. Special consideration is given to ZBrush‘s integration plug-ins with Maya and 3ds Max allowing you to properly import and export your models in all programs. Texturing painting mapping decimation baking and topology are also fully covered so your Zbrush creations can come to life without sacrificing that high-resolution look. Ease your way into this complex subject with this straight-forward approach to ZBrush Perfect your technique with step-by-step tutorials that allow you to create high res models from start to finish. Expand your knowledge by visiting the companion website which features video demonstrations project files texture and model files scripts customized menus brushes and additional resources. | Getting Started in ZBrush An Introduction to Digital Sculpting and Illustration

GBP 180.00
1