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A must-have for any weekend bartender or mixologist! This bundle of four great cocktail books spans the entire Mini Bar series and includes: Vodka, Whiskey, Rum, and Tequila. Each is filled with more than 50 traditional and original recipes that pack a punch. Find recipes for a Traditional Southern-Style Mint Julep, the Perfect Manhattan, a Fig Leaf Fizz, a sophisticated Martini, and even a Frozen Watermelon Daiquiri. Each title in this bundle describes the history and distinct characteristics of its particular alcohol.
It’s a system, a tool kit, a recipe book. Beginning with one irresistible idea--a complete home bar of just 12 key bottles--here’s how to make more than 200 classic and unique mixed drinks, including sours, slings, toddies, and highballs, plus the perfect Martini, the perfect Manhattan, and the perfect Mint Julep. It’s a surprising guide--tequila didn’t make the cut, and neither did bourbon, but genever did. And it’s a literate guide--describing with great liveliness everything from the importance of vermouth and bitters (the “salt and pepper” of mixology) to the story of a punch bowl so big it was stirred by a boy in a rowboat.
From the classic Margarita to the Love Byte, "Cocktail Chameleon" is award-winning designer and producer Mark Addison's invitation to join him as he dresses up twelve cocktails in twelve unique variations for 144 signature takes on the classics. Mr. Addison tantalizes with molecular mixology to create the Anti-Gravity, instructs on how to reinvent the beloved Bloody Mary with sake, and invokes the famed royal rose garden with the Versailles. Inspiring the creative mixologist in everyone, Cocktail Chameleon will become an instant ally for hosts looking to elevate an occasion, or a much-needed friend to help unwind and end the day on a high note!
The response of concrete under tensile loading is crucial for most applications because concrete is much weaker in tension than in compression. Understanding the response mechanisms of concrete under tensile conditions is therefore key to understanding and using concrete in structural applications. Understanding the Tensile Properties of Concrete Second Edition summarises key recent research in this important subject area. After an introduction to concrete, the book is divided into two parts: part one on static response and part two on dynamic response. Part one starts with a summary chapter on the most important parameters that affect the tensile response of concrete. Chapters show how multi scale modelling is used to relate concrete composition to tensile properties. Part two focuses on dynamic response and starts with an introduction to the different regimes of dynamic loading, ranging from the low frequency loading by wind or earthquakes up to the extreme dynamic conditions due to explosions and ballistic impacts. Following chapters review dynamic testing techniques and devices that deal with the various regimes of dynamic loading. Later chapters highlight the dynamic behaviour of concrete from different viewpoints, and the book ends with a chapter on practical examples of how detailed knowledge on tensile properties is used by engineers in structural applications. Drawing on the work of some of the leading experts in the field, the book is fully updated and will be a valuable reference for civil and structural engineers as well as those researching this important material. - Presents recent research in the areas of understanding the response mechanisms of concrete under tensile conditions - Provides a summary of the most important parameters that affect the tensile response of concrete and shows how multi scale modeling is used to relate concrete composition to tensile properties - Highlights the dynamic behavior of concrete from different viewpoints and provides practical examples of how detailed knowledge on tensile properties is used by engineers in structural applications - Presents recent advancements in tensile strength determination under static and dynamic loading conditions for concrete structures - Covers HSFRC and FRHSC - Presents new work on non-local models and damage modeling, the dynamic increase factor for tensile strength, fracture energy and anchors, and slop stabilization
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