Скачать книгу - Wrapping with Fabric



Wrap anything from a wine bottle to a yoga mat with this practical Japanese fabric-wrapping book. Long before today's eco-friendly philosophy of «reduce, reuse, recycle» entered America's collective consciousness, furoshiki—the Japanese method of wrapping things with fabric—flourished as a time-honored and practical art form. In Wrapping With Fabric , Etsuko Yamada—born into a long-line of furoshiki makers in Kyoto—explains the "one cloth, many uses" ideology behind the craft, the etiquette of color and the craft's fascinating history. From there, she shares the myriad ways in which a few basic techniques can transform a simple square of cloth into an elegant wrapper. Use your folded fabrics to: Gift-wrap anything from books to flowers Bundle up a picnic Tote items around Use as a handbag or backpack Make into a pillow covering Create decorative coverings for vases, tissue boxes, and moreA quiet reminder that opportunities for artistry are everywhere around you, Wrapping With Fabric is the craft book that makes it easy to bring a touch of grace and ingenuity to everyday life—and help preserve the environment, too.


The dyeing of textile fabrics The dyeing of textile fabrics

Автор: John Hummel

Год издания: 

Полный вариант заголовка: «The dyeing of textile fabrics / By J. J. Hummel».


Stones of the Temple; Or, Lessons from the Fabric and Furniture of the Church Stones of the Temple; Or, Lessons from the Fabric and Furniture of the Church

Автор: Field Walter

Год издания: 



Fabricated. The New World of 3D Printing Fabricated. The New World of 3D Printing

Автор: Melba Kurman

Год издания: 

Fabricated tells the story of 3D printers, humble manufacturing machines that are bursting out of the factory and into schools, kitchens, hospitals, even onto the fashion catwalk. Fabricated describes our emerging world of printable products, where people design and 3D print their own creations as easily as they edit an online document. A 3D printer transforms digital information into a physical object by carrying out instructions from an electronic design file, or 'blueprint.' Guided by a design file, a 3D printer lays down layer after layer of a raw material to 'print' out an object. That's not the whole story, however. The magic happens when you plug a 3D printer into today’s mind-boggling digital technologies. Add to that the Internet, tiny, low cost electronic circuitry, radical advances in materials science and biotech and voila! The result is an explosion of technological and social innovation. Fabricated takes the reader onto a rich and fulfilling journey that explores how 3D printing is poised to impact nearly every part of our lives. Aimed at people who enjoy books on business strategy, popular science and novel technology, Fabricated will provide readers with practical and imaginative insights to the question 'how will this technology change my life?' Based on hundreds of hours of research and dozens of interviews with experts from a broad range of industries, Fabricated offers readers an informative, engaging and fast-paced introduction to 3D printing now and in the future.


Superconductivity in Nanowires. Fabrication and Quantum Transport Superconductivity in Nanowires. Fabrication and Quantum Transport

Автор: Alexey Bezryadin

Год издания: 

The importance and actuality of nanotechnology is unabated and will be for years to come. A main challenge is to understand the various properties of certain nanostructures, and how to generate structures with specific properties for use in actual applications in Electrical Engineering and Medicine. One of the most important structures are nanowires, in particular superconducting ones. They are highly promising for future electronics, transporting current without resistance and at scales of a few nanometers. To fabricate wires to certain defined standards however, is a major challenge, and so is the investigation and understanding of these properties in the first place. A promising approach is to use carbon nanotubes as well as DNA structures as templates. Many fundamental theoretical questions are still unanswered, e.g. related to the role of quantum fluctuations. This work is tackling them and provides a detailed analysis of the transport properties of such ultrathin wires. It presents an account of theoretical models, charge transport experiments, and also conveys the latest experimental findings regarding fabrication, measurements, and theoretical analysis. In particular, it is the only available resource for the approach of using DNA and carbon nanotubes for nanowire fabrication. It is intended for graduate students and young researchers interested in nanoscale superconductivity. The readers are assumed to have knowledge of the basics of quantum mechanics and superconductivity.


Introduction to Microfabrication Introduction to Microfabrication

Автор: Sami Franssila

Год издания: 

This accessible text is now fully revised and updated, providing an overview of fabrication technologies and materials needed to realize modern microdevices. It demonstrates how common microfabrication principles can be applied in different applications, to create devices ranging from nanometer probe tips to meter scale solar cells, and a host of microelectronic, mechanical, optical and fluidic devices in between. Latest developments in wafer engineering, patterning, thin films, surface preparation and bonding are covered. This second edition includes: expanded sections on MEMS and microfluidics related fabrication issues new chapters on polymer and glass microprocessing, as well as serial processing techniques 200 completely new and 200 modified figures more coverage of imprinting techniques, process integration and economics of microfabrication 300 homework exercises including conceptual thinking assignments, order of magnitude estimates, standard calculations, and device design and process analysis problems solutions to homework problems on the complementary website, as well as PDF slides of the figures and tables within the book With clear sections separating basic principles from more advanced material, this is a valuable textbook for senior undergraduate and beginning graduate students wanting to understand the fundamentals of microfabrication. The book also serves as a handy desk reference for practicing electrical engineers, materials scientists, chemists and physicists alike. www.wiley.com/go/Franssila_Micro2e