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Erwin Charge Reaction Mashup

Mr. Grim Reaper doesn't smile [BL]

The tale of a grim reaper who hates humans and a human who fell in love with him. From a really young age, Asahi Sato had always been beside Akira's side. They grew up together and faced all hardships together. Akira thought their friendship would last a lifetime but he didn't expect his life to be cut so short by that very friend. Logically speaking, their friendship did last a lifetime but only for Akira. As if having a secret affair with Akira's fiance wasn't enough, Sato also went ahead and killed Akira in order to steal the company. For the first and the last time in his life, Akira felt what it was like to be betrayed by the one you trust the most and the feeling was certainly not that amusing. Even after death, when the Grim Reaper who was in charge of him gave him a wish, Akira didn't hesitate to waste that wish on Sato. "Help me solve my murder." "I want to understand where everything went wrong.” "I want to know why Sato suddenly turned on me and I want to know why my fiance joined him.” Unfortunately, for the poor fellow, the grim reaper in charge of him was not a man who liked to be troubled and it seemed that nobody had ever taught him how to smile. "Tch- So much extra work! Can't you just pass away in peace?" "..." Read on more to know how Akira uncovered the mysterious circumstances behind his death and begged God to change his beloved Grim reaper's fate. __________________________________________ I hope you enjoy!~ __________________________________________ BL||Romance||Grimreaper||Revenge||Fashion||CEO||Secondchance||Fantasy||Fluff||Mystery|| Art by: Cherlyswan.
cherlyswan · 107.7K Views

Abraham–Lorentz force

Book Blurb: Abraham–Lorentz Force Delve into the intricate world of electrodynamics with Abraham–Lorentz Force, a comprehensive exploration that spans over a century of scientific discovery. This book takes you on a journey from the foundational principles of classical electrodynamics, as established by Maxwell and Lorentz, through the early developments in radiation reaction and the formulation of the non-relativistic Abraham–Lorentz force. It then ventures into the realm of relativity with detailed analyses of the Abraham–Lorentz–Dirac equation and its modern extensions, including alternate formulations such as the Landau–Lifshitz approach. At its core, Abraham–Lorentz Force bridges the gap between theory and experiment. Readers will discover advanced theoretical perspectives, delve into experimental investigations that test these ideas, and explore how collective phenomena in plasmas and quantum theories converge to shape our understanding of self-interaction. The latter chapters address future directions and unresolved questions, challenging the reader to consider the classical–quantum transition, self-force problems in quantum gravity and string theory, and even the quest for a grand unified theory. Structured into twelve meticulously organized chapters, the book begins with: • Chapter 1: Foundations of Classical Electrodynamics – Laying the groundwork with Maxwell’s equations and the Lorentz force. • Chapter 2: Early Developments in Radiation Reaction – Tracing the pioneering work that first identified the self-interaction of accelerating charges. • Chapter 3: The Non-Relativistic Abraham–Lorentz Force – Analyzing the classical self-force in low-speed regimes. • Chapter 4: Relativistic Extensions and the Abraham–Lorentz–Dirac Equation – Extending the theory into the relativistic domain. • Chapter 5: Alternate Formulations and the Landau–Lifshitz Approach – Introducing pragmatic alternatives that avoid pathological predictions. • Chapter 6: Advanced Theoretical Perspectives – Exploring cutting-edge ideas that push the boundaries of current models. • Chapter 7: Experimental Investigations and Observations – Reviewing key experiments that validate and challenge theoretical predictions. • Chapter 8: Collective Phenomena in Plasmas – Examining how self-interaction affects the dynamics of complex plasma systems. • Chapter 9: Connections to Quantum Theories – Linking classical concepts to quantum electrodynamics and beyond. • Chapter 10: Future Directions and Unresolved Questions – Highlighting emerging research frontiers and ongoing challenges. • Chapter 11: Appendices – Providing essential mathematical identities, notational conventions, and historical documents. • Chapter 12: Analysis of References in Electrodynamics and Radiation Reaction – Evaluating the significance and impact of seminal works in the field. This book is an indispensable resource for PhD students, researchers, and professionals seeking to gain a deep, nuanced understanding of radiation reaction and self-interaction. It blends rigorous theory with practical insights, supported by extensive historical context and modern experimental evidence. With clear explanations, vivid analogies, and carefully structured content, Abraham–Lorentz Force not only encapsulates the evolution of electrodynamics but also illuminates the future directions of this dynamic field.
Andrew_Bardsley · 1.2K Views
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