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Taschenbuch. Zustand: Neu. Neuware - To say Hannah Thatcher-Miles loathes Liam Park is an understatement. He is arrogant, rude, and much to her dismay-completely irresistible. For the most part he has been avoidable, until she finds herself desperate and has to accept a position at his father's law firm.as his assistant.Liam has begun taking on more responsibility at Baker & Park. With new responsibility comes a new assistant, but Liam could have never predicted that it would be none other than the life-long bane of his existence and the daughter of his dad's best friend, Hannah.Now that they're both in Hannah's brother's wedding and have to spend every day together at work, it's impossible to escape one another. With tensions at an all-time high, Liam is realizing that maybe he doesn't hate Hannah as much as he used to, if he ever really did at all.Temptation leads to crossed lines, leaving Hannah and Liam with an impossible question to answer. Are love and loathing really just a sliver apart Mostly Loathing You is a fun story about falling in love with the person you'd least expect, the person you detest. However, it does dive into topics surrounding self esteem and complicated parental relationships. This story also includes bully romance elements.
Taschenbuch. Zustand: Neu. Mostly Loathing You | Nicole Ryan | Taschenbuch | Englisch | 2024 | NRC Publishing | EAN 9798987730478 | Verantwortliche Person für die EU: Libri GmbH, Europaallee 1, 36244 Bad Hersfeld, gpsr[at]libri[dot]de | Anbieter: preigu.
Sprache: Englisch
Verlag: Canadian Science Publishing (NRC Research Press), 1998
ISBN 10: 0660176378 ISBN 13: 9780660176376
Anbieter: AwesomeBooks, Wallingford, Vereinigtes Königreich
EUR 113,08
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In den Warenkorbpaperback. Zustand: Very Good. Physiological Changes Associated with the Diadromous Migration of Salmonids This book is in very good condition and will be shipped within 24 hours of ordering. The cover may have some limited signs of wear but the pages are clean, intact and the spine remains undamaged. This book has clearly been well maintained and looked after thus far. Money back guarantee if you are not satisfied. See all our books here, order more than 1 book and get discounted shipping. .
Sprache: Englisch
Verlag: Canadian Science Publishing (NRC Research Press) -, 1998
ISBN 10: 0660176378 ISBN 13: 9780660176376
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In den Warenkorbpaperback. Zustand: Very Good. Shipped within 24 hours from our UK warehouse. Clean, undamaged book with no damage to pages and minimal wear to the cover. Spine still tight, in very good condition. Remember if you are not happy, you are covered by our 100% money back guarantee.
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Erstausgabe
Softcover. Zustand: Good. First Edition. Publication of 455 pages. The wraps are a little shelf rubbed. From pages 1 to 157 the bottom edges are wavy due to damp marks. All pages are clear, intact and presentable. The text is legible. The binding is excellent. GK. Our orders are shipped using tracked courier delivery services.
Sprache: Englisch
Verlag: Canadian Science Publishing (NRC Research Press), 1995
ISBN 10: 0660162105 ISBN 13: 9780660162102
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Zustand: Sehr gut. Zustand: Sehr gut | Seiten: 242 | Sprache: Englisch | Produktart: Bücher | Keine Beschreibung verfügbar.
Sprache: Englisch
Verlag: Canadian Science Publishing (NRC Research Press), 1996
ISBN 10: 0660165066 ISBN 13: 9780660165066
Anbieter: CSG Onlinebuch GMBH, Darmstadt, Deutschland
Gebundene Ausgabe. Zustand: Gut. Gebraucht - Gut.
Sprache: Englisch
Verlag: Springer, Berlin, Springer International Publishing, NRC Kurchatov Institute, Moscow, Russia, Springer, 2016
ISBN 10: 3319357115 ISBN 13: 9783319357119
Anbieter: AHA-BUCH GmbH, Einbeck, Deutschland
Taschenbuch. Zustand: Neu. Druck auf Anfrage Neuware - Printed after ordering - In this monograph the author presents the Canonical Profile Transport Model or CPTM as a rather general mathematical framework to simulate plasma discharges.The description of hot plasmas in a magnetic fusion device is a very challenging task and many plasma properties still lack a physical explanation. One important property is plasma self-organization.It is very well known from experiments that the radial profile of the plasma pressure and temperature remains rather unaffected by changes of the deposited power or plasma density. The attractiveness of the CPTM is that it includes the effect of self-organization in the mathematical model without having to recur to particular physical mechanisms.The CPTM model contains one dimensional transport equations for ion and electron temperatures, plasma density and toroidal rotation velocity. These equations are well established and in fact are essentially a reformulation the laws of energy, particle and momentum conservation. But the expressions for the energy and particle fluxes, including certain critical gradients, are new. These critical gradients can be determined using the concept of canonical profiles for the first time formulated in great detail in the book. This concept represents a totally new approach to the description of transport in plasmas. Mathematically, the canonical profiles are formulated as a variational problem. To describe the temporal evolution of the plasma profiles, the Euler equation defining the canonical profiles is solved together with the transport equations at each time step. The author shows that in this way it is possible to describe very different operational scenarios in tokamaks (L-Mode, H-Mode, Advanced Modes, Radiating Improved Modes etc.), using one unique principle.The author illustrates the application of this principle to the simulation of plasmas on leading tokamak devices in the world (JET, MAST, T-10, DIII-D, ASDEX-U, JT-60U). In all casesthe small differences between the calculated profiles for the ion and electron temperatures and the experimental is rather confirm the validity of the CPTM. In addition, the model also describes the temperature and density pedestals in the H-mode and non steady-state regimes with current and density ramp up. The proposed model therefore provides a very useful mathematical tool for the analysis of experimental results and for the prediction of plasma parameters in future experiments.