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In this textbook a combination of standard mathematics and modern numerical methods is used to describe a wide range of natural wave phenomena, such as sound, light and water waves, particularly in specific popular contexts, e.g. colors or the acoustics of musical instruments. It introduces the reader to the basic physical principles that allow the description of the oscillatory motion of matter and classical fields, as well as resulting concepts including interference, diffraction, and coherence. Numerical methods offer new scientific insights and make it possible to handle interesting cases that can’t readily be addressed using analytical mathematics; this holds true not only for problem...
Presents biophysical theory and computer code for modelling and interpreting extracellular electric and magnetic brain signals.
The book serves as a first introduction to computer programming of scientific applications, using the high-level Python language. The exposition is example and problem-oriented, where the applications are taken from mathematics, numerical calculus, statistics, physics, biology and finance. The book teaches "Matlab-style" and procedural programming as well as object-oriented programming. High school mathematics is a required background and it is advantageous to study classical and numerical one-variable calculus in parallel with reading this book. Besides learning how to program computers, the reader will also learn how to solve mathematical problems, arising in various branches of science an...
This book – specifically developed as a novel textbook on elementary classical mechanics – shows how analytical and numerical methods can be seamlessly integrated to solve physics problems. This approach allows students to solve more advanced and applied problems at an earlier stage and equips them to deal with real-world examples well beyond the typical special cases treated in standard textbooks. Another advantage of this approach is that students are brought closer to the way physics is actually discovered and applied, as they are introduced right from the start to a more exploratory way of understanding phenomena and of developing their physical concepts. While not a requirement, it is advantageous for the reader to have some prior knowledge of scientific programming with a scripting-type language. This edition of the book uses Python, and a chapter devoted to the basics of scientific programming with Python is included. A parallel edition using Matlab instead of Python is also available. Last but not least, each chapter is accompanied by an extensive set of course-tested exercises and solutions.
A techno-cognitive look at how new technologies are shaping the future of musicking. “Musicking” encapsulates both the making of and perception of music, so it includes both active and passive forms of musical engagement. But at its core, it is a relationship between actions and sounds, between human bodies and musical instruments. Viewing musicking through this lens and drawing on music cognition and music technology, Sound Actions proposes a model for understanding differences between traditional acoustic “sound makers” and new electro-acoustic “music makers.” What is a musical instrument? How do new technologies change how we perform and perceive music? What happens when compo...
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'A joyful, poetic hymn to spring... Dee is one of our greatest living nature writers' Observer One December, in midsummer South Africa, Tim Dee was watching swallows. They were at home there, but the same birds would soon begin journeying north to Europe, where their arrival marks the beginning of spring. Greenery recounts how Tim Dee tries to follow the season and its migratory birds, making remarkable journeys in the Sahara, the Straits of Gibraltar, Sicily, Britain, and finally by the shores of the Arctic Ocean in northern Scandinavia. On each adventure, he is in step with the very best days of the year - the time of song and nests and eggs, of buds and blossoms and leafing. 'A masterpiece... I can't imagine I'll ever stop thinking about it' Max Porter 'Fascinating, horizon-expanding, life-enhancing' Lucy Jones, author of Losing Eden
This book – specifically developed as a novel textbook on elementary classical mechanics – shows how analytical and numerical methods can be seamlessly integrated to solve physics problems. This approach allows students to solve more advanced and applied problems at an earlier stage and equips them to deal with real-world examples well beyond the typical special cases treated in standard textbooks. Another advantage of this approach is that students are brought closer to the way physics is actually discovered and applied, as they are introduced right from the start to a more exploratory way of understanding phenomena and of developing their physical concepts. While not a requirement, it is advantageous for the reader to have some prior knowledge of scientific programming with a scripting-type language. This edition of the book uses Matlab, and a chapter devoted to the basics of scientific programming with Matlab is included. A parallel edition using Python instead of Matlab is also available. Last but not least, each chapter is accompanied by an extensive set of course-tested exercises and solutions.
يراقب المؤلف طيور السُّنونو فتحرِّضه على الانطلاق في رحلةٍ من منزله في النصف الجنوبي من كيب تاون، يرافق فيها الربيعَ وهو يتحرك شمالًا، مصطحِبًا الطيورَ المهاجِرة من أفريقيا إلى أوروبا. يرتحل «تيم دي» مع السُّنونوات وغيرها من طيوره المُحبَّبة من جنوب أفريقيا، مرورًا بمحطاتِ توقُّفها في تشاد وإثيوبيا، ويجتاز الصحراءَ الكبرى الشاسعةَ وصولًا إلى أوروبا؛ ويحاول ألا يُرافِق في طريقه ...