Описание: Dream in a Suitcase unravels a fast-paced journey of survival, resilience, and the power of love. It is the first English language memoir of a female Romanian-American survivor of the worst communist dictatorship behind the Iron Curtain. The story offers a rich multicultural mosaic of a life divided not only between two cultures and languages, that of the heroine`s native Romania and her adoptive US but also between Chicago`s urban culture and that of a small town in Virginia marked by a heavy confederate history. This book is deeply relevant for our times as it offers an opportunity for American-born audiences to develop a deeper understanding for all those who arrived in this country as refugees in search of freedom, peace, and different versions of the American Dream. ENDORSEMENTS: "An extraordinary memoir of fortitude and freedom, a narrative that is vibrant and lyrical. Radulescu takes us from Romania`s dark dictatorial past to the world of literature and beauty, back to the landscapes of her beloved native country, then to her new home in America, and always to the geography of the earth. This is an extraordinary read and a covenant to the power of truth and words." Marjorie Agosin, award-winning author of I Lived on Butterfly Hill. "Domnica Radulescu is a courageous writer. Dream in a Suitcase, like her other novels, is a breathless read." Andrei Codrescu, NPR commentator, award-winning poet, and filmmaker.
Written chemical formulas, such as C2H6O, can tell us the constituent atoms a molecule contains but they cannot differentiate between the possible geometrical arrangements (isomers) of these models. Yet the chemical properties of different isomers can vary hugely. Therefore, to understand the world of chemistry we need to ask what kind of isomers can be produced from a given atomic composition, how are isomers converted into each other, how do they decompose into smaller pieces, and how can they be made from smaller pieces? The answers to these questions will help us to discover new chemistry and new molecules. A potential energy surface (PES) describes a system, such as a molecule, based on geometrical parameters. The mathematical properties of the PES can be used to calculate probable isomer structures as well as how they are formed and how they might behave.
Exploration on Quantum Chemical Potential Energy Surfaces focuses on the PES search based on quantum chemical calculations. It describes how to explore the chemical world on PES, discusses fundamental methods and specific techniques developed for efficient exploration on PES, and demonstrates several examples of the PES search for chemical structures and reaction routes.
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