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When Mila's brother disappears, she believes he's been taken by the Bear, a hooded stranger of legend who sought shelter at their home. Mila and her sisters follow his trail into the frozen north, determined to find a way past winter and bring their brother home.
Internationally recognized coach and New York Times bestselling author Cheryl Richardson has toured the world empowering others to make lasting change. But when Richardson’s own life no longer worked as it once had, a persistent, inner voice offered unmistakable guidance: it was time to reevaluate her life to uncover what really mattered. Waking Up in Winter is the candid and revelatory account of how at midlife, Richardson found renewed contentment and purpose through a heroic, inward journey. The unfolding story, told through intimate journal entries, follows Richardson from the first, gentle nudges of change to a thoughtfully reimagined life – a soulful, spring awakening. With an expe...
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A chilling story of the Allies' narrow escape from defeat at the hands of Nazi submarines in the North Atlantic.
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This book explores fundamental aspects of geometric network optimisation with applications to a variety of real world problems. It presents, for the first time in the literature, a cohesive mathematical framework within which the properties of such optimal interconnection networks can be understood across a wide range of metrics and cost functions. The book makes use of this mathematical theory to develop efficient algorithms for constructing such networks, with an emphasis on exact solutions. Marcus Brazil and Martin Zachariasen focus principally on the geometric structure of optimal interconnection networks, also known as Steiner trees, in the plane. They show readers how an understanding of this structure can lead to practical exact algorithms for constructing such trees. The book also details numerous breakthroughs in this area over the past 20 years, features clearly written proofs, and is supported by 135 colour and 15 black and white figures. It will help graduate students, working mathematicians, engineers and computer scientists to understand the principles required for designing interconnection networks in the plane that are as cost efficient as possible.