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ASDIP Retain is a suite of modules specifically dedicated to the design of retaining walls, based on the latest IBC / ACI 318 specifications, that greatly simplifies the time-consuming calculations in any structural engineering office.

ASDIP Retain includes the design of the following two types of retaining walls: - Cantilever Retaining Walls: Design of a retaining wall supported only at the base under the combination of earth pressure, surcharge, wind and seismic loads. The module designs the wall per the load combinations of the ASCE 7. - Restrained Retaining Walls: Design of a retaining wall supported at the base and laterally restrained at the top, also known as a basement wall, under the combination of earth pressure, surcharge, wind and seismic loads. The module designs the wall per the load combinations of the ASCE 7.

Key Benefits of ASDIP RETAIN:
 Quickly model your retaining walls with the simple and efficient graphical user interface. + Confidently optimize your design and comply with design Code provisions. + Impress clients and plan-checkers with eye-catching condensed or detailed reports. + Extensive documentation, solved examples, and blog posts to guide you throughout the software. + Use your valuable time wisely while ASDIP RETAIN does the hard work for you. + Create, organize, manage, and store your electronic calculations safely.

Manuel Matos Fernandes ... 754 pages - Publisher: CRC Press; (August, 2020) ... Language: English - AmazonSIN: B08FGF5F8P.


Analysis and design of geotechnical structures combines, in a single endeavor, a textbook to assist students in understanding the behavior of the main geotechnical works and a guide for practising geotechnical engineers, designers, and consultants. The subjects are treated in line with limit state design, which underpins the Eurocodes and most North America design codes. Instructors and students will value innovative approaches to numerous issues refined by the experience of the author in teaching generations of enthusiastic students. Professionals will gain from its comprehensive treatment of the topics covered in each chapter, supplemented by a plethora of informative material used by consultants and designers. For the benefit of both academics and professionals, conceptual exercises and practical geotechnical design problems are proposed at the end of most chapters. A final annex includes detailed resolutions of the exercises and problems.

AutoCAD 2019 Course (2D drawing from A to Z) [Size: 2.00 GB] is going to be a full course which contains all of the subjects needed to work with 2D drawing using this software. The course is designed for beginners as well as experienced users. A beginner can start learning the software right from scratch by following the course along just from lecture one. A experienced AutoCAD user will also find this course very comprehensive. This course also contains practical examples and projects to work on. Anyone who wants to learn AutoCAD from scratch to professional level + People who may have used AutoCAD before and would like to brush up + People moving to AutoCAD from another drafting software type.

Peter J. Brockwell, Richard A. Davis ... 439 pages - Publisher: Springer; 3rd edition (August, 2016) - Language: English.

This book is aimed at the reader who wishes to gain a working knowledge of time series and forecasting methods as applied to economics, engineering and the natural and social sciences. It assumes knowledge only of basic calculus, matrix algebra and elementary statistics. This third edition contains detailed instructions for the use of the professional version of the Windows-based computer package ITSM2000, now available as a free download from the Springer Extras website. The logic and tools of time series model-building are developed in detail. Numerous exercises are included and the software can be used to analyze and forecast data sets of the user's own choosing. The book can also be used in conjunction with other time series packages such as those included in R. The programs in ITSM2000 however are menu-driven and can be used with minimal investment of time in the computational details.

The core of the book covers stationary processes, ARMA and ARIMA processes, multivariate time series and state-space models, with an optional chapter on spectral analysis. Many additional special topics are also covered. New to this edition: A chapter devoted to Financial Time Series - Introductions to Brownian motion, Lévy processes and Itô calculus - An expanded section on continuous-time ARMA processes.

Himansu Sekhar Behera, Janmenjoy Nayak, Bighnaraj Naik, Danilo Pelusi ... 829 pages - Publisher: Springer; (August, 2019) - Language: English.


This proceeding discuss the latest solutions, scientific findings and methods for solving intriguing problems in the fields of data mining, computational intelligence, big data analytics, and soft computing. This gathers outstanding papers from the fifth International Conference on “Computational Intelligence in Data Mining” (ICCIDM), and offer a “sneak preview” of the strengths and weaknesses of trending applications, together with exciting advances in computational intelligence, data mining, and related fields.

Hamid Reza Pourghasemi, Mauro Rossi ... 296 pages - Publisher: Springer; (December, 2018) - Language: English.

This edited volume assesses capabilities of data mining algorithms for spatial modeling of natural hazards in different countries based on a collection of essays written by experts in the field. The book is organized on different hazards including landslides, flood, forest fire, land subsidence, earthquake, and gully erosion. Chapters were peer-reviewed by recognized scholars in the field of natural hazards research. Each chapter provides an overview on the topic, methods applied, and discusses examples used. The concepts and methods are explained at a level that allows undergraduates to understand and other readers learn through examples. This edited volume is shaped and structured to provide the reader with a comprehensive overview of all covered topics. It serves as a reference for researchers from different fields including land surveying, remote sensing, cartography, GIS, geophysics, geology, natural resources, and geography. It also serves as a guide for researchers, students, organizations, and decision makers active in land use planning and hazard management.

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