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Zeolites and related molecular sieves have quickly become important pathways to new opportunities in the fields of oil processing and petrochemical synthesis. The signs of intense activity in both industry and academia are evident: burgeoning papers and patent applications; increasing numbers of industrial zeolite-based processes and their rapid expansion into organic chemicals manufacturing; recent progress in zeolite accessibility range, matrix behaviour, lattice components and satellite structures; and the recognition that zeolites, which are stable and can be regenerated, may be incorporat
Zeolites --- 541.1 --- 549.67 --- 549.67 Zeolites --- 541.1 Physical chemistry --- Physical chemistry --- Silicate minerals --- Surface chemistry. --- Chemistry, Surface --- Interfaces, Chemistry of --- Surface phenomena --- Surfaces (Chemistry) --- Chemistry, Physical and theoretical --- Capillarity --- Surface energy --- Surface tension --- Surfaces (Physics)
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541.1 --- Anorganische chemie --- Biochemie --- Organische chemie --- Scheikunde --- 485.4 --- 485.42 --- Didactiek --- Secundair onderwijs --- chemie --- Chemie: didactiek
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Physicochemistry --- fysicochemie --- Chemistry, Physical and theoretical --- Chimie physique et théorique --- Chemistry, Physical. --- 541.1 --- chemisch evenwicht --- chemische thermodynamica --- elektrochemie --- fysische chemie --- oefeningen --- Chemistry, Theoretical --- Physical chemistry --- Theoretical chemistry --- Chemistry --- Physical Chemistry --- Chemistries, Physical --- Physical Chemistries --- Chemistry, Physical and theoretical. --- 541.1 Physical chemistry --- Chimie physique et théorique --- Chemistry, Physical
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Physicochemistry --- fysicochemie --- Chemistry, Physical and theoretical --- Chemistry, Physical. --- 541.1 --- 544 --- Chemie --- Gas --- Moleculen --- Spectroscopie --- Thermodynamica --- chemisch evenwicht --- moleculaire structuur --- quantumtheorie --- thermodynamica --- chemische reactie --- moleculaire spectroscopie --- atoomstructuur --- fasediagram --- Fysische chemie --- Chemistry, Theoretical --- Physical chemistry --- Theoretical chemistry --- Chemistry --- Physical Chemistry --- Chemistries, Physical --- Physical Chemistries --- (zie ook: warmteleer) --- 541.1 Physical chemistry --- Chemistry, Physical --- 544 Physical chemistry --- Acqui 2006
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Chemistry, Physical and theoretical. --- Chimie physique et théorique --- 541.1 --- Chemistry, Physical and theoretical --- 544 --- chemisch evenwicht --- chemische kinetica --- colloïdchemie --- elektrolyten --- fysische chemie --- macromoleculen --- oppervlaktechemie --- quantummechanica --- spectroscopie --- thermodynamica --- vaste stoffen --- vloeistoffen --- Chemistry, Theoretical --- Physical chemistry --- Theoretical chemistry --- Chemistry --- 541.1 Physical chemistry --- Chimie physique et théorique
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Aiming to offer an accessible introduction to one of the most difficult for beginners areas of chemistry, this primer covers a wide range of material in a succinct, easy-to-understand format. The first two chapters cover the structure of atoms, ions, and molecules. The next few chapters discuss such important issues as chemical reactivity, kinetics, and equilibria, while the final chapter deals with more advanced subject matter, drawing on imaginative examples from the outside world. Aware of the fact that beginners are easily intimidated by complex mathematical formulas, the authors have striven to keep quantitative aspects to a mininmum throughout.
541.1 --- Chemistry, Physical and theoretical --- #WSCH:FYS3 --- 544 --- 544.3 --- 544.4 --- atoomstructuur --- chemisch evenwicht --- chemische kinetica --- chemische thermodynamica --- fysische chemie --- ionen --- molecuulstructuren --- Chemistry, Theoretical --- Physical chemistry --- Theoretical chemistry --- Chemistry --- chemische kynetica. Katalyse --- Chemistry, Physical and theoretical. --- 541.1 Physical chemistry
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The exceptional quality of previous editions has been built upon to make this new edition of Atkins' Physical Chemistry even more closely suited to the needs of both lecturers and students. Re-organised into discrete Topics, the text is more flexible to teach from and more readable for students. Now in its eleventh edition, the text has been enhanced with additional learning features and maths support to demonstrate the absolute centrality of mathematics to physical chemistry. Increasing the digestibility of the text in this new approach, the reader is brought to a question, then the maths is used to show how it can be answered and progress made. The expanded and redistributed maths support also includes a greatly increased number of 'Chemist's toolkits' which provide students with succinct reminders of mathematical concepts and techniques right where they need them. Checklists of key concepts at the end of each Topic add to the extensive learning support provided throughout the book, to reinforce the main take-home messages in each section. The coupling of the broad coverage of the subject with a structure and use of pedagogy that is even more innovative will ensure Atkins' Physical Chemistry remains the textbook of choice for studying physical chemistry.
541.1 --- Chemistry, Physical and theoretical --- 541.1 Physical chemistry --- Physical chemistry --- Problems, exercises, etc --- Chimie physique et théorique --- Chimie physique et théorique. --- Study and teaching (Higher) --- Etude et enseignement (supérieur) --- Basic Sciences. Chemistry -- Physical Chemistry --- ALLW. --- Physicochemistry --- fysicochemie --- Basic Sciences. Chemistry -- Physical Chemistry. --- Chemistry, Physical and theoretical. --- Chimie physique et théorique.
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"Principal Facts and Ideas. Problem solving is the principal tool for learning physical chemistry. Problem solving can be approached in a systematic way. Many problems involve numerical calculations involving measurable quantities. A measured quantity consists of a number and a unit of measurement. The SI units have been officially adopted by international organizations of physicists and chemists. Consistent units must be used in any calculation. The factor-label method can be used to convert from one unit of measurement to another. Reported values of all quantities should be rounded so that insignifi- cant digits are not reported. Objectives After you have studied the chapter, you should be able to: analyze a problem and design a procedure for solving the problem; 4 1. Problem Solving and Numerical Mathematics carry out the numerical procedures use in solving a simple problem; use numbers and units correctly to express measured quantities; understand the relationship of uncertainties in measurements to the use of significant digits; use consistent units, especially the SI units, in equations and formulas; use the factor-label method to convert from one unit of measurement to another. 1.1 Problem Solving Techniques of problem solving are applicable to many intellectual areas. There is a useful little book on problem solving by G. Polya, 1 and much of our discussion of problem solving is based on this book. Most physical chemistry problems are stated verbally, like the so-called 'word problems' of elementary school. The information contained in the statement of the problem generally includes a statement of the physical system involved, some information about the state of the system, and a statement of the desired outcome"--
Chemistry, Physical and theoretical --- Mathematics. --- 51-7 --- 541.1 --- 541.1 Physical chemistry --- Physical chemistry --- 51-7 Mathematical studies and methods in other sciences. Scientific mathematics. Actuarial mathematics. Biometrics. Econometrics etc. --- Mathematical studies and methods in other sciences. Scientific mathematics. Actuarial mathematics. Biometrics. Econometrics etc. --- Mathematics
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Zuurstof is nodig om te ademen, neon gebruiken we om de straat te verlichten, chroom doet uw bumpers glimmen, arseen zit in uw telefoon, rhodium is handig voor het montuur van uw bril. Het zijn maar een paar van de vele elementen die in dit rijk geïllustreerde boek aan de orde komen. Alles om u heen bestaat namelijk uit elementen. Sterker nog, u bestaat er zelf ook uit. Dit boek zet alle bekende elementen op een rij, vertelt over hun samenstelling en over de mensen die de elementen hebben ontdekt. Dat de elementen geordend kunnen worden in een periodiek systeem, geldt als een van de grootste uitvindingen van de mensheid. Dit boek maakt u deelgenoot van deze uitvinding. Het vertelt over de chemische en fysische eigenschappen van de elementen en over de manier waarop deze elementen uw dagelijkse bestaan bepalen.
As (arsenicum) --- elementen (chemie) --- Cr (chroom) --- Chemistry --- Nobelprijs --- atomen --- chemie --- periodiek systeem --- 541.1 --- Atomen --- Chemie --- Nobelprijzen --- Periodiek systeem --- Geschiedenis --- Elementen (chemie) --- Periodiek systeem der elementen --- Wetenschappen --- Element (chemie) --- Wetenschap --- Geneeskunde --- Techniek (wetenschap) --- Atlas --- Museum --- Grafische sector --- Voorlichting
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Chemical Thermodynamics: Principles and Applications presents a thorough development of the principles of thermodynamics--an old science to which the authors include the most modern applications, along with those of importance in developing the science and those of historical interest. The text is written in an informal but rigorous style, including anecdotes about some of the great thermodynamicists (with some of whom the authors have had a personal relationship), and focuses on ""real"" systems in the discussion and figures, in contrast to the generic examples that are often use
536.7 --- Thermodynamics --- 536 --- 541.1 --- 544 --- 547 --- Chemische thermodynamica --- Chemistry, Physical and theoretical --- Dynamics --- Mechanics --- Physics --- Heat --- Heat-engines --- Quantum theory --- 536.7 Thermodynamics. Energetics --- Thermodynamics. Energetics --- Thermodynamics. --- Chemistry, Physical and theoretical. --- Chemistry --- Physical Sciences & Mathematics --- Physical & Theoretical Chemistry
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