BOOKS - Molecular Machines: A Materials Science Approach
Molecular Machines: A Materials Science Approach - Giovanni Zocchi July 10, 2018 PDF  BOOKS
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Molecular Machines: A Materials Science Approach
Author: Giovanni Zocchi
Year: July 10, 2018
Format: PDF
File size: PDF 5.1 MB
Language: English



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Book Molecular Machines A Materials Science Approach Introduction: In today's world, technology is rapidly evolving, and it is crucial to understand the process of technological development to ensure the survival of humanity and unity among people. Molecular Machines: A Materials Science Approach presents a groundbreaking perspective on the physics of enzymes and DNA from the viewpoint of materials science. This book offers a comprehensive understanding of the complex molecules of life, focusing on their deformability, stretching, folding, and changing shapes. It covers various topics, including nonlinear deformability, supramolecular constructions, internal stress, nanorheology, viscoelasticity, Brownian motion, and barrier crossing. This innovative approach provides a wealth of knowledge for researchers in materials science, engineering, and nanotechnology. Chapter 1: Molecular Deformability The first chapter delves into the concept of molecular deformability, which is essential to understanding the behavior of biological molecules. The authors explore how proteins and DNA change shape under different conditions, highlighting their unique properties and interactions. They discuss the importance of studying these molecules from a materials science perspective, emphasizing the need to consider their dynamics and properties to develop new technologies. Chapter 2: Chemodynamic Cycle of Enzymes In this chapter, the authors examine the chemodynamic cycle of enzymes, which involves the conversion of chemical energy into mechanical work. They explain how enzymes perform specific functions within cells, such as catalyzing reactions and regulating metabolic pathways.
Book Molecular Machines A Materials Science Approach Введение: В современном мире технологии быстро развиваются, и очень важно понимать процесс технологического развития, чтобы обеспечить выживание человечества и единство среди людей. Молекулярные машины: материаловедческий подход представляет новаторский взгляд на физику ферментов и ДНК с точки зрения материаловедения. Эта книга предлагает всестороннее понимание сложных молекул жизни, фокусируясь на их деформируемости, растяжении, складывании и изменении форм. Он охватывает различные темы, включая нелинейную деформируемость, надмолекулярные конструкции, внутреннее напряжение, нанореологию, вязкоупругость, броуновское движение и пересечение барьеров. Этот инновационный подход предоставляет множество знаний для исследователей в области материаловедения, инженерии и нанотехнологий. Глава 1: Молекулярная деформируемость Первая глава углубляется в концепцию молекулярной деформируемости, которая необходима для понимания поведения биологических молекул. Авторы исследуют, как белки и ДНК меняют форму в разных условиях, подчеркивая их уникальные свойства и взаимодействия. Они обсуждают важность изучения этих молекул с точки зрения материаловедения, подчеркивая необходимость учитывать их динамику и свойства для разработки новых технологий. Глава 2: Хемодинамический цикл ферментов В этой главе авторы рассматривают хемодинамический цикл ферментов, который включает преобразование химической энергии в механическую работу. Они объясняют, как ферменты выполняют определенные функции в клетках, такие как катализирование реакций и регулирование метаболических путей.
Book Molecular Machines A Materials Science Approach Introduction : Dans le monde d'aujourd'hui, la technologie évolue rapidement et il est très important de comprendre le processus de développement technologique pour assurer la survie de l'humanité et l'unité entre les hommes. Machines moléculaires : l'approche de la science des matériaux présente une vision novatrice de la physique des enzymes et de l'ADN du point de vue de la science des matériaux. Ce livre offre une compréhension complète des molécules complexes de la vie, en se concentrant sur leur déformabilité, leur étirement, leur pliage et leur changement de forme. Il couvre divers sujets, y compris la déformabilité non linéaire, les constructions supra-moléculaires, la tension interne, la nanoréologie, la viscoélasticité, le mouvement brownien et l'intersection des barrières. Cette approche innovante fournit de nombreuses connaissances aux chercheurs dans les domaines de la science des matériaux, de l'ingénierie et de la nanotechnologie. Chapitre 1 : Déformabilité moléculaire premier chapitre explore la notion de déformabilité moléculaire, qui est essentielle pour comprendre le comportement des molécules biologiques. s auteurs étudient comment les protéines et l'ADN changent de forme dans différentes conditions, en soulignant leurs propriétés et interactions uniques. Ils discutent de l'importance d'étudier ces molécules du point de vue de la science des matériaux, soulignant la nécessité de tenir compte de leur dynamique et de leurs propriétés pour développer de nouvelles technologies. Chapitre 2 : Cycle chimodynamique des enzymes Dans ce chapitre, les auteurs examinent le cycle chimodynamique des enzymes, qui comprend la conversion de l'énergie chimique en un travail mécanique. Ils expliquent comment les enzymes exercent certaines fonctions dans les cellules, telles que la catalyse des réactions et la régulation des voies métaboliques.
Book Molecular Machines A Materials Science Approach Introducción: En el mundo actual, la tecnología evoluciona rápidamente y es muy importante comprender el proceso de desarrollo tecnológico para asegurar la supervivencia de la humanidad y la unidad entre los seres humanos. Máquinas moleculares: el enfoque científico de los materiales presenta una visión innovadora de la física enzimática y del ADN en términos de ciencia de los materiales. Este libro ofrece una comprensión integral de las moléculas complejas de la vida, centrándose en su deformabilidad, estiramiento, plegamiento y cambio de formas. Abarca una variedad de temas, incluyendo deformabilidad no lineal, diseños supramoleculares, tensión interna, nanorreología, viscoelasticidad, movimiento browniano y cruce de barreras. Este enfoque innovador proporciona muchos conocimientos a los investigadores en ciencia de materiales, ingeniería y nanotecnología. Capítulo 1: Deformabilidad molecular primer capítulo profundiza en el concepto de deformabilidad molecular, esencial para entender el comportamiento de las moléculas biológicas. autores investigan cómo las proteínas y el ADN cambian de forma en diferentes condiciones, destacando sus propiedades e interacciones únicas. Discuten la importancia de estudiar estas moléculas desde el punto de vista de la ciencia de los materiales, destacando la necesidad de tener en cuenta sus dinámicas y propiedades para desarrollar nuevas tecnologías. Capítulo 2: Ciclo quimiodinámico de enzimas En este capítulo, los autores consideran el ciclo quimodinámico de enzimas, que implica la conversión de energía química en trabajo mecánico. Explican cómo las enzimas cumplen ciertas funciones en las células, como catalizar reacciones y regular las vías metabólicas.
Book Molecular Máquinas A Materials Science Approach Introdução: No mundo atual, a tecnologia evolui rapidamente, e é muito importante compreender o processo de desenvolvimento tecnológico para garantir a sobrevivência da humanidade e a unidade entre as pessoas. Máquinas moleculares: A abordagem de materiais apresenta uma visão inovadora da física das enzimas e do DNA em termos de ciência de materiais. Este livro oferece uma compreensão completa das moléculas complexas da vida, focando em sua deformidade, estiagem, dobrabilidade e alteração de formas. Ele abrange vários temas, incluindo deformidade não linear, construções supramoleculares, tensão interna, nanorreologia, viscosidade, movimento brouniano e cruzamento de barreiras. Esta abordagem inovadora oferece muitos conhecimentos para pesquisadores de ciência de materiais, engenharia e nanotecnologia. Capítulo 1: Deformidade molecular O capítulo 1 aprofunda-se no conceito de deformidade molecular, essencial para compreender o comportamento das moléculas biológicas. Os autores investigam como as proteínas e o DNA mudam de forma em diferentes ambientes, enfatizando suas propriedades e interações únicas. Eles discutem a importância de estudar essas moléculas em termos de ciência de materiais, enfatizando a necessidade de considerar suas dinâmicas e propriedades para desenvolver novas tecnologias. Capítulo 2: Ciclo hemodinâmico de enzimas Neste capítulo, os autores abordam o ciclo hemodinâmico das enzimas, que inclui a conversão da energia química em trabalho mecânico. Eles explicam como as enzimas desempenham certas funções nas células, como catalisar reações e regular caminhos metabólicos.
Book Molecular Machine A Materials Science Approach Introduzione: Nel mondo moderno la tecnologia sta evolvendo rapidamente ed è molto importante comprendere il processo di sviluppo tecnologico per garantire la sopravvivenza dell'umanità e la coesione tra le persone. Macchine molecolari: l'approccio alla scienza dei materiali rappresenta una visione innovativa della fisica degli enzimi e del DNA in termini di scienza dei materiali. Questo libro offre una comprensione completa delle molecole complesse della vita, focalizzandosi sulla loro deformità, distensione, piegatura e cambiamento delle forme. Esso comprende diversi argomenti, tra cui deformità non lineare, costruzioni sommolecolari, tensione interna, nanoreologia, viscosità, movimento brouno e attraversamento delle barriere. Questo approccio innovativo fornisce numerose conoscenze ai ricercatori nel campo della scienza dei materiali, dell'ingegneria e della nanotecnologia. Capitolo 1: Deformità molecolare Il primo capitolo approfondisce il concetto di deformità molecolare necessario per comprendere il comportamento delle molecole biologiche. Gli autori studiano come le proteine e il DNA cambiano forma in diverse condizioni, sottolineando le loro proprietà e interazioni uniche. Discutono dell'importanza di studiare queste molecole dal punto di vista della scienza dei materiali, sottolineando la necessità di prendere in considerazione le loro dinamiche e le loro proprietà per sviluppare nuove tecnologie. Capitolo 2: Ciclo chemodinamico degli enzimi In questo capitolo gli autori affrontano il ciclo chemodinamico degli enzimi, che include la trasformazione dell'energia chimica in lavoro meccanico. Spiegano come gli enzimi svolgono determinate funzioni nelle cellule, come la catalizzazione delle reazioni e la regolazione dei percorsi metabolici.
Book Molecular Machines A Materials Science Approach Einleitung: In der heutigen Welt entwickelt sich die Technologie rasant und es ist sehr wichtig, den Prozess der technologischen Entwicklung zu verstehen, um das Überleben der Menschheit und die Einheit unter den Menschen zu gewährleisten. Molekulare Maschinen: Der materialwissenschaftliche Ansatz bietet aus materialwissenschaftlicher cht eine wegweisende Perspektive auf die Physik von Enzymen und DNA. Dieses Buch bietet einen umfassenden Einblick in die komplexen Moleküle des bens und konzentriert sich auf ihre Verformbarkeit, Dehnung, Faltung und Formveränderung. Es deckt eine Vielzahl von Themen ab, darunter nichtlineare Verformbarkeit, supramolekulare Strukturen, innere Spannung, Nanorheologie, Viskoelastizität, Brownsche Bewegung und das Überschreiten von Barrieren. Dieser innovative Ansatz bietet eine Fülle von Wissen für Forscher in den Bereichen Materialwissenschaften, Ingenieurwesen und Nanotechnologie. Kapitel 1: Molekulare Deformierbarkeit Das erste Kapitel befasst sich mit dem Konzept der molekularen Deformierbarkeit, das notwendig ist, um das Verhalten biologischer Moleküle zu verstehen. Die Autoren untersuchen, wie Proteine und DNA ihre Form unter verschiedenen Bedingungen verändern und ihre einzigartigen Eigenschaften und Wechselwirkungen hervorheben. e diskutieren die Bedeutung der Untersuchung dieser Moleküle aus materialwissenschaftlicher cht und betonen die Notwendigkeit, ihre Dynamik und Eigenschaften für die Entwicklung neuer Technologien zu berücksichtigen. Kapitel 2: Chemodynamischer Enzymzyklus In diesem Kapitel untersuchen die Autoren den chemodynamischen Enzymzyklus, bei dem chemische Energie in mechanische Arbeit umgewandelt wird. e erklären, wie Enzyme bestimmte Funktionen in Zellen ausführen, wie zum Beispiel Reaktionen zu katalysieren und Stoffwechselwege zu regulieren.
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Kitap Moleküler Makineler Bir Malzeme Bilimi Yaklaşımı Giriş: Günümüz dünyasında teknoloji hızla gelişmektedir ve insanlığın hayatta kalmasını ve insanlar arasında birliği sağlamak için teknolojik gelişme sürecini anlamak esastır. Moleküler makineler: Malzeme bilimi yaklaşımı, malzeme bilimi perspektifinden enzim ve DNA fiziğine yenilikçi bir bakış açısı sunar. Bu kitap, yaşamın karmaşık molekülleri hakkında kapsamlı bir anlayış sunar, onların deforme olma, gerilme, katlanma ve yeniden şekillendirilmesine odaklanır. Doğrusal olmayan deforme olma, supramoleküler yapılar, iç stres, nanorheoloji, viskoelastisite, Brownian hareketi ve bariyer geçişi gibi çeşitli konuları kapsar. Bu yenilikçi yaklaşım, malzeme bilimi, mühendislik ve nanoteknoloji alanındaki araştırmacılar için zengin bir bilgi birikimi sağlar. Bölüm 1: Moleküler Deformasyon İlk bölüm, biyolojik moleküllerin davranışını anlamak için gerekli olan moleküler deformasyon kavramını ele almaktadır. Yazarlar, proteinlerin ve DNA'nın farklı koşullar altında nasıl şekil değiştirdiğini araştırıyor, benzersiz özelliklerini ve etkileşimlerini vurguluyor. Bu molekülleri malzeme bilimi perspektifinden incelemenin önemini tartışıyorlar, yeni teknolojiler geliştirmek için dinamiklerini ve özelliklerini göz önünde bulundurma ihtiyacını vurguluyorlar. Bölüm 2: Enzimlerin Kemodinamik Döngüsü Bu bölümde, yazarlar kimyasal enerjinin mekanik işe dönüştürülmesini içeren enzimlerin kemodinamik döngüsünü ele alırlar. Enzimlerin hücrelerde, reaksiyonları katalize etmek ve metabolik yolları düzenlemek gibi belirli işlevleri nasıl yerine getirdiğini açıklarlar.
كتاب الآلات الجزيئية مقدمة نهج علوم المواد: التكنولوجيا تتطور بسرعة في عالم اليوم، ومن الضروري فهم عملية التطور التكنولوجي لضمان بقاء البشرية والوحدة بين الناس. الآلات الجزيئية: يقدم نهج علم المواد نظرة مبتكرة للإنزيم وفيزياء الحمض النووي من منظور علم المواد. يقدم هذا الكتاب فهمًا شاملاً للجزيئات المعقدة للحياة، مع التركيز على تشوهها وتمددها وطيها وإعادة تشكيلها. يغطي موضوعات مختلفة بما في ذلك التشوه غير الخطي، والإنشاءات فوق الجزيئية، والإجهاد الداخلي، وعلم الأرواح النانوية، ومرونة اللزوجة، والحركة البراونية، وعبور الحاجز. يوفر هذا النهج المبتكر ثروة من المعرفة للباحثين في علوم المواد والهندسة وتكنولوجيا النانو. الفصل 1: التشوه الجزيئي يتعمق الفصل الأول في مفهوم التشوه الجزيئي، وهو أمر ضروري لفهم سلوك الجزيئات البيولوجية. يبحث المؤلفون في كيفية تغيير شكل البروتينات والحمض النووي في ظل ظروف مختلفة، مما يسلط الضوء على خصائصها وتفاعلاتها الفريدة. يناقشون أهمية دراسة هذه الجزيئات من منظور علم المواد، ويسلطون الضوء على الحاجة إلى النظر في ديناميكياتها وخصائصها لتطوير تقنيات جديدة. الفصل 2: دورة الإنزيمات الكيميائية الديناميكية في هذا الفصل، ينظر المؤلفون في الدورة الديناميكية الكيميائية للإنزيمات، والتي تتضمن تحويل الطاقة الكيميائية إلى عمل ميكانيكي. يشرحون كيف تؤدي الإنزيمات وظائف محددة في الخلايا، مثل تحفيز التفاعلات وتنظيم مسارات التمثيل الغذائي.

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