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This Faraday Discussions volume addresses the challenges in both fundamental and applied nanoelectrochemistry, where new concepts and new knowledge play key roles.
Bright, humorous and engaging, Marcet's best-selling 1805 book was designed to introduce women to scientific ideas.
From the multi-award-winning and bestselling author of The Night Watch and Fingersmith comes an astonishing novel about love, loss, and the sometimes unbearable weight of the past. In a dusty post-war summer in rural Warwickshire, a doctor is called to see a patient at lonely Hundreds Hall. Home to the Ayres family for over two centuries, the once grand house is now in decline, its masonry crumbling, its garden choked with weeds. All around, the world is changing, and the family is struggling to adjust to a society with new values and rules. Roddie Ayres, who returned from World War II physically and emotionally wounded, is desperate to keep the house and what remains of the estate together for the sake of his mother and his sister, Caroline. Mrs. Ayres is doing her best to hold on to the gracious habits of a gentler era and Caroline seems cheerfully prepared to continue doing the work a team of servants once handled, even if it means having little chance for a life of her own beyond Hundreds. But as Dr. Faraday becomes increasingly entwined in the Ayreses’ lives, signs of a more disturbing nature start to emerge, both within the family and in Hundreds Hall itself. And Faraday begins to wonder if they are all threatened by something more sinister than a dying way of life, something that could subsume them completely. Both a nuanced evocation of 1940s England and the most chill-inducing novel of psychological suspense in years, The Little Stranger confirms Sarah Waters as one of the finest and most exciting novelists writing today.
A unique and timely book providing an overview of both the methodologies and applications of computational materials design.
This volume will focus on the chemistry, physics and material sciences contributions toward the rapidly evolving field of artificial water channels. The development of synthetic biomimetic artificial water-channels and pores is key for a better understanding of the natural function of protein channels. It is hoped to offer new strategies to generate highly selective, advanced materials for water purification systems. While synthetic chemists have produced sophisticated architectures able to confine water clusters, most water channel based work is being conducted with natural protein channels as selectivity components, embedded in the diverse arrays of bio-assisted artificial systems. Experimental results have demonstrated that natural biomolecules can be used as bio-assisted building blocks for the construction of highly selective water transport through artificial channels. Moving to simpler water-channel systems offers a chance to better understand mechanistic and structural behaviours and to uncover novel interactive water channels that might parallel those in biomolecular systems. In this volume the topics covered include: Structure and function of natural proteins for water transport Biomimetic water channels The modelling and enhancement of water hydrodynamics Applications to water transport systems tic and structural behaviours and to uncover novel interactive water channels that might parallel those in biomolecular systems. In this volume the topics covered include: Structure and function of natural proteins for water transport Biomimetic water channels The modelling and enhancement of water hydrodynamics Applications to water transport systems
The story of two brilliant nineteenth-century scientists who discovered the electromagnetic field, laying the groundwork for the amazing technological and theoretical breakthroughs of the twentieth century Two of the boldest and most creative scientists of all time were Michael Faraday (1791-1867) and James Clerk Maxwell (1831-1879). This is the story of how these two men - separated in age by forty years - discovered the existence of the electromagnetic field and devised a radically new theory which overturned the strictly mechanical view of the world that had prevailed since Newton's time. The authors, veteran science writers with special expertise in physics and engineering, have created a lively narrative that interweaves rich biographical detail from each man's life with clear explanations of their scientific accomplishments. Faraday was an autodidact, who overcame class prejudice and a lack of mathematical training to become renowned for his acute powers of experimental observation, technological skills, and prodigious scientific imagination. James Clerk Maxwell was highly regarded as one of the most brilliant mathematical physicists of the age. He made an enormous number of advances in his own right. But when he translated Faraday's ideas into mathematical language, thus creating field theory, this unified framework of electricity, magnetism and light became the basis for much of later, 20th-century physics. Faraday's and Maxwell's collaborative efforts gave rise to many of the technological innovations we take for granted today - from electric power generation to television, and much more. Told with panache, warmth, and clarity, this captivating story of their greatest work - in which each played an equal part - and their inspiring lives will bring new appreciation to these giants of science.
This volume brings together internationally leading researchers to identify the open questions and challenges in the field of nanoporous framework materials as well as the best ways to address them.
Proceedings of the NATO Advanced Study Institute, Glasgow, U.K., September 6-18, 1981
This volume includes 28 contributions to the Toyoichi Tanaka Memorial Symposium on Gels which took place at Arcadia Ichigaya on September 10th-12th, 2008. The contributions from leading scientists cover a broad spectrum of topics concerning: Structure and Functional Properties of Gels - Swelling of Gels - Industrial and Biomedical Application. The symposium was held in the style of Faraday Discussions, which stimulated the active discussion. After the symposium, each manuscript was rewritten based on the discussion and the critical review. Since the research on gels is becoming more and more important both for academia and industry, this book will be an essential source of information.