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  1. Perspectives in Multiscale Materials Modeling

    The research area of computational science and multiscale modeling of materials has not completely come to age yet. The prevalent procedure in...
    Chapter 2022
  2. Computational Methods on Mesoscopic/Macroscopic Scale

    The meso- and macroscopic scales, due to their complexity and the difficulties to prepare systems in reproducible initial conditions is usually...
    Chapter 2022
  3. Computational Methods on Atomistic/Microscopic Scale

    On the atomistic and microscopic scale, the possible conformations (the spatial arrangements) of particles—besides their energy—begins to play a...
    Chapter 2022
  4. Computational Multiscale Modeling of Fluids and Solids Theory and Applications

    The expanded 3rd edition of this established textbook offers an updated overview and review of the computational physics techniques used in materials...

    Martin Oliver Steinhauser in Graduate Texts in Physics
    Textbook 2022
  5. Introduction to Multiscale Modeling

    In this introduction we are first going to discuss the different length and time scales on which we seek a description of nature. Then, in Sect. 1.2...
    Chapter 2022
  6. Mathematical and Physical Prerequisites

    We begin in this chapter with an introductory Sect. 3.1 in which we consider different notions of the concept of space that play a fundamental role...
    Chapter 2022
  7. Multiscale Computational Materials Science

    In this chapter we start with a discussion of a fundamental assumption on the nature of matter, namely the idea of particles as basic constituents...
    Chapter 2022
  8. Fundamentals of Numerical Simulation

    In this chapter we discuss the prerequisites that are necessary to understand how problems in the natural sciences are formulated using...
    Chapter 2022
  9. Computational Methods on Electronic/Atomistic Scale

    After an introduction in Sect. 5.1 we begin with a discussion of basic ab initio methods in Sect. 5.2, which are designed to solve the many-particle...
    Chapter 2022
  10. Atmospheric Rivers

    This book is the standard reference based on roughly 20 years of research on atmospheric rivers, emphasizing progress made on key research and...

    F. Martin Ralph, Michael D. Dettinger, ... Duane E. Waliser
    Book 2020
  11. Recent Trends in Environmental Hydraulics 38th International School of Hydraulics

    This book presents an overview of current research problems and advances in theoretical and applied aspects of environmental hydraulics. The rapid...
    Monika B. Kalinowska, Magdalena M. Mrokowska, Paweł M. Rowiński in GeoPlanet: Earth and Planetary Sciences
    Conference proceedings 2020
  12. Dynamical Characteristics of Inertia-Gravity Waves in the Antarctic Mesosphere Analyses Combining High-Resolution Observations and Modeling

    This book examines the origins and dynamical characteristics of atmospheric inertia-gravity waves in the Antarctic mesosphere. Gravity waves are...
    Ryosuke Shibuya in Springer Theses
    Book 2020
  13. Microseismic Data Interpretation

    We review the value of information retrieved from microseismic data sets in the unconventional resource development. We explain the key information...
    Chapter 2020
  14. Survey Design and Microseismic Data Acquisition

    This chapter explains the common objectives and planning aspects of a microseismic survey. We will see how the information gathered from the...
    Chapter 2020
  15. Frequency and Time Domain SSA for 2D Seismic Data Denoising

    After Fx-Eigen image method/Frequency domain Cadzow, there is another significant advancement in the SVD based seismic data processing. This...
    Chapter 2020
  16. Structure, Process, and Mechanism

    Questions this chapter tries to answer include: how do ARs work, why are there ARs, and what is their place in global water and energy cycles? Sect....
    Harald Sodemann, Heini Wernli, ... Andreas Stohl in Atmospheric Rivers
    Chapter 2020
  17. Observing and Detecting Atmospheric Rivers

    How do we observe and detect ARs? Observing systems provide ground truth of the main AR ingredients, such as water vapor and wind, and process...
    F. Martin Ralph, Allen B. White, ... Jonathan J. Rutz in Atmospheric Rivers
    Chapter 2020
  18. Atmospheric River Modeling: Forecasts, Climate Simulations, and Climate Projections

    Research in recent years has highlighted the significance of ARs to the occurrence and modulation of weather and hydrology extremes, as well as the...
    Duane E. Waliser, Jason M. Cordeira in Atmospheric Rivers
    Chapter 2020
  19. The Future of Atmospheric River Research and Applications

    This volume’s four co-editors look toward the future of AR scholarship and applications, offering individual perspectives on what comes next. Gaps in...
    F. Martin Ralph, Duane E. Waliser, ... William Neff in Atmospheric Rivers
    Chapter 2020
  20. Time and Frequency Domain Eigen Image and Cadzow Noise Filtering of 2D Seismic Data

    Singular Value Decomposition of matrix is a powerful mathematical technique developed in late seventies. This technique is extensively used in...
    Chapter 2020
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