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The Best of Everything after 50 provides top-dollar advice in an affordable format. When Barbara Grufferman turned fifty, she wanted to know how to be - and stay - a vibrant woman after the half-century mark. She went in search of a What to Expe...
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This concise manual serves the practical purposes of anyone who requires a solid, working knowledge of DOS. Its step-by-step instruction and clear, hands-on approach cover all essential commands for operating in both floppy- and hard-disk DOS environments.
Drawn from original research, this work takes an international perspective of the subject of marketing to the 50 and over demographic and includes insight into how leading multinationals view the 50-plus market.
PCMag.com is a leading authority on technology, delivering Labs-based, independent reviews of the latest products and services. Our expert industry analysis and practical solutions help you make better buying decisions and get more from technology.
This fifth edition of the highly regarded family of titles that first published in 1965 is now a three-volume set and over 3,000 pages. All chapters have been revised and expanded, either by the fourth edition authors alone or jointly with new co-authors. Chapters have been added on the physical metallurgy of light alloys, the physical metallurgy of titanium alloys, atom probe field ion microscopy, computational metallurgy, and orientational imaging microscopy. The books incorporate the latest experimental research results and theoretical insights. Several thousand citations to the research and review literature are included. - Exhaustively synthesizes the pertinent, contemporary developments within physical metallurgy so scientists have authoritative information at their fingertips - Replaces existing articles and monographs with a single, complete solution - Enables metallurgists to predict changes and create novel alloys and processes
With a history that reaches back some 90 years, the Hume-Rothery rules were developed to provide guiding principles in the search for new alloys. Ultimately, the rules bridged metallurgy, crystallography, and physics in a way that led to the emergence of a physics of the solid state in 1930s, although the physical implications of the rules were nev