Products related to Morphology:
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The New Science Encyclopedia : Chemistry • Physics • Biology
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Morphology : A Distributed Morphology Introduction
The first comprehensive morphology textbook written in the framework of Distributed Morphology, firmly grounded in cross-linguistic theory Distributed Morphology is the theoretical framework that views morphology as syntactic, proposing that there is no divide between the construction of words and the construction of sentences.The first text of its kind, Morphology: A Distributed Morphology Introduction provides a thorough overview of Distributed Morphology using data and problem sets from a diverse selection of the world's languages.Divided into two parts, this valuable resource begins by describing the basics of morphology and then moves into an exploration of more advanced topics in morphology including morphosyntactic operations, cyclic derivation, the Mirror Principle, and non-compositional language.Each chapter includes a glossary of key terms, learning objectives, further readings, and illustrative examples to reinforce learning.Exercises and problem sets encourage students to develop their understanding and build confidence in the application of theory to practice.Through this valuable text, students will develop comprehension in morphological parsing and glossing, the concept of the lexicon, the different types of morphemes, the idea of paradigms, the basic practice of morphological analysis, and more. Offering detailed yet accessible coverage of morphological theory from the perspective of Distributed Morphology, this textbook: Introduces the methodology used in morphology, the basic assumptions of Distributed Morphology, and key concepts from lexical grammatical approaches to languageCovers essential phonology, feature interaction, paradigms as linguistic objects, core ideas of syntax and syntactic derivation, and derivation and inflection in Distributed MorphologyIncludes a Quick Reference Guide with glossing abbreviations from the Leipzig Glossing Rules, a full IPA chart with instructions, and charts of phonological featuresProvides access to a companion website containing solutions to problem sets and additional instructor resources Morphology: A Distributed Morphology Introduction is the ideal textbook for advanced undergraduates and graduate students in morphology courses or with an interest in specializing in morphology.Offering students an unparalleled overview of this growing field of morphology, this text will ensure that developing morphologists are well-equipped to employ the latest methods in Distributed Morphology to their own research and study.
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Discover Biology, Chemistry & Physics
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Rethinking Morphology
Different theoretical positions can lead to conflicting restrictions on our understanding of what morphology is about.In this textbook, Laurie Bauer presents a new way of thinking about morphological structure one that will maximise our benefits from the existing disparate approaches available.Presenting a clear and critical overview, this book equips students with the tools to discuss morphological phenomena and to do so in relation to other linguistic contexts, including semantics, psycholinguistics and language change. Structured around the core areas of morphemic theory, word morphology, word syntax, the boundaries of morphology, and exemplars and resonances, each chapter discusses the limits, strengths and wider implications of existing theories and issues surrounding these facets of morphology.
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How can one describe crystal morphology?
Crystal morphology refers to the external shape and structure of a crystal. It can be described by the overall shape, size, symmetry, and surface features of the crystal. The morphology of a crystal is determined by its internal atomic arrangement and growth conditions. Different crystals can have unique and distinct morphologies, which can be observed and characterized using techniques such as microscopy and crystallography.
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What is the morphology of art?
The morphology of art refers to the study of the form and structure of artistic works. It encompasses the physical characteristics of art, such as color, shape, line, and texture, as well as the overall composition and arrangement of these elements. Understanding the morphology of art allows for a deeper appreciation and analysis of artistic expression, as it provides insight into the visual and tactile qualities that contribute to the overall aesthetic experience. By examining the morphology of art, one can gain a better understanding of how artists use these elements to convey meaning, emotion, and cultural significance in their work.
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How can one describe the crystal morphology?
Crystal morphology refers to the external shape and form of a crystal, which is determined by the arrangement of atoms or molecules within the crystal lattice. It can be described based on various characteristics such as the number of faces, angles between faces, and overall symmetry. Common terms used to describe crystal morphology include cubic, hexagonal, prismatic, tabular, and dendritic, among others. The study of crystal morphology is important in understanding the physical and chemical properties of crystals, as well as in various scientific and industrial applications.
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What is the difference between physiology and morphology?
Physiology is the study of how living organisms function and the processes that occur within their bodies, such as metabolism, respiration, and circulation. It focuses on the functions and activities of different parts of an organism. On the other hand, morphology is the study of the form and structure of organisms, including their external and internal physical characteristics. It focuses on the shape, size, and arrangement of different parts of an organism. In summary, physiology is concerned with the functions of living organisms, while morphology is concerned with their physical structure.
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Understanding Morphology
This new edition of Understanding Morphology has been fully revised in line with the latest research.It now includes 'big picture' questions to highlight central themes in morphology, as well as research exercises for each chapter. Understanding Morphology presents an introduction to the study of word structure that starts at the very beginning.Assuming no knowledge of the field of morphology on the part of the reader, the book presents a broad range of morphological phenomena from a wide variety of languages.Starting with the core areas of inflection and derivation, the book presents the interfaces between morphology and syntax and between morphology and phonology.The synchronic study of word structure is covered, as are the phenomena of diachronic change, such as analogy and grammaticalization. Theories are presented clearly in accessible language with the main purpose of shedding light on the data, rather than as a goal in themselves.The authors consistently draw on the best research available, thus utilizing and discussing both functionalist and generative theoretical approaches. Each chapter includes a summary, suggestions for further reading, and exercises.As such this is the ideal book for both beginning students of linguistics, or anyone in a related discipline looking for a first introduction to morphology.
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Introducing Morphology
A lively introduction to morphology, this textbook is intended for undergraduates with relatively little background in linguistics.It shows students how to find and analyze morphological data and presents them with basic concepts and terminology concerning the mental lexicon, inflection, derivation, morphological typology, productivity, and the interfaces between morphology and syntax on the one hand and phonology on the other.By the end of the text students are ready to understand morphological theory and how to support or refute theoretical proposals.Providing data from a wide variety of languages, the text includes hands-on activities designed to encourage students to gather and analyse their own data. The third edition has been thoroughly updated with new examples and exercises.Chapter 2 now includes an updated detailed introduction to using linguistic corpora, and there is a new final chapter covering several current theoretical frameworks.
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Plasma Science and Technology : Lectures in Physics, Chemistry, Biology, and Engineering
Plasma Science and Technology An accessible introduction to the fundamentals of plasma science and its applications In Plasma Science and Technology: Lectures in Physics, Chemistry, Biology, and Engineering, distinguished researcher Dr. Alexander Fridman delivers a comprehensive introduction to plasma technology, including fulsome descriptions of the fundamentals of plasmas and discharges.The author discusses a wide variety of practical applications of the technology to medicine, energy, catalysis, coatings, and more, emphasizing engineering and science fundamentals.Offering readers illuminating problems and concept questions to support understanding and self-study, the book also details organic and inorganic applications of plasma technologies, demonstrating its use in nature, in the lab, and in both novel and well-known applications.Readers will also find: A thorough introduction to the kinetics of excited atoms and molecules Comprehensive explorations of non-equilibrium atmospheric pressure cold discharges Practical discussions of plasma processing in microelectronics and other micro-technologies Expert treatments of plasma in environmental control technologies, including the cleaning of air, exhaust gases, water, and soil Perfect for students of chemical engineering, physics, and chemistry, Plasma Science and Technology will also benefit professionals working in these fields who seek a contemporary refresher in the fundamentals of plasma science and its applications.
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What is Morphology?
Provides a critical introduction to the central ideas and perennial problems of morphology, fully revised and updated in a new edition What is Morphology? is a concise, student-friendly introduction to the fundamentals of contemporary morphological theory and practice.Requiring only a basic knowledge of linguistics, this popular textbook describes morphological phenomena and their interactions with phonology, syntax, and semantics while familiarizing students with the importance of linguistic morphology as a subject of research.Each chapter contains engaging examples and student-friendly explanations to support the development of the skills necessary to analyze a wealth of classic morphological problems.The third edition is fully updated to reflect the current state of the field, featuring a new chapter on morphology’s intersections with typology and computational linguistics.Expanded coverage of morphological productivity and processing is supported by additional exercises, examples, and further reading suggestions.Thoroughly revised chapters cover essential topics including morphemes, the lexicon, phonology, inflection, syncretism, and derived lexemes.This accessible textbook: Introduces fundamental phenomena with a descriptive theme and minimal theoryUses cross-linguistic data to explain and clarify new conceptsProvides new and revised chapters written by prominent experts in their respective areas Includes answers to all exercises via a companion instructor’s websiteThe latest edition of What is Morphology? remains the ideal textbook for undergraduate and graduate linguistics students, researchers and scholars unfamiliar with linguistic morphology, and professionals involved in industrial applications of linguistics such as speech recognition, natural language understanding, machine translation, text-to-speech, and natural language generation.
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What is the best natural science: Math, Physics, Biology, Chemistry, or Computer Science?
It is subjective to determine the "best" natural science as each field has its own unique contributions to our understanding of the natural world. Math provides the foundation for understanding and solving problems in all the other sciences. Physics explores the fundamental laws of nature and the behavior of matter and energy. Biology studies living organisms and their interactions with the environment. Chemistry focuses on the composition, structure, and properties of matter. Computer Science deals with the theory and practice of computation and information. Each of these sciences is valuable in its own right and contributes to our understanding of the world around us.
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Which subject should be removed: Chemistry, Biology, Physics, or Computer Science?
It is not advisable to remove any of these subjects as they all play a crucial role in providing a well-rounded education. Each subject offers unique perspectives and skills that are valuable for students' academic and professional development. Instead of removing a subject, it would be more beneficial to ensure that all students have access to a diverse range of subjects and resources to support their learning in each area.
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Physics or Chemistry or Biology?
It ultimately depends on personal interests and career goals. Physics deals with the study of matter, energy, and the fundamental forces of the universe. Chemistry focuses on the composition, structure, properties, and changes of matter. Biology is the study of living organisms and their interactions with each other and their environment. Each field offers unique perspectives and opportunities for exploration and discovery.
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Which subjects are Chemistry, Physics, or Biology?
Chemistry, Physics, and Biology are all subjects within the field of science. Chemistry focuses on the composition, structure, properties, and changes of matter. Physics deals with the study of matter, energy, motion, and force. Biology is the study of living organisms, their structure, function, growth, evolution, and distribution.
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