The.Hottest

Mehdi Rahmani-Andebili - 480 pages - Language: English - Publisher: ‎Springer; (December, 2024).


MATLAB Lessons, Examples, and Exercises: A Tutorial for Beginners and Experts is a book for anyone interested in learning MATLAB, a popular programming language used in mathematics, engineering, and science. Whether you’re a student, instructor, engineer, or technical professional, this book provides easy-to-follow lessons, examples, and exercises in each section of every chapter, emphasizing writing and executing code to help you become proficient in programming with MATLAB. Different colors make the code, outputs, and program descriptions more straightforward to read to improve reader comprehension.

The book covers all the essential functions of MATLAB that are needed in math, engineering, and science, and it explains the math behind each function so you can apply them to solve real-world problems. Whether you’re new to programming or an expert, this book offers clear explanations, diverse examples, and hands-on exercises to help you improve your MATLAB programming skills and understand how to use MATLAB in various fields.

A valuable hands-on and concise book covering all the necessary reference functions of MATLAB; Offers detailed lessons, a variety of examples and exercises, and clear explanations; A tutorial for beginners and professionals in mathematics, engineering, and science.

Microsoft Office Professional Plus 2021-2024 v2509 Build 19231.20216 [6.68 GB] ...
It is a suite of desktop productivity applications developed by Microsoft for Windows. It includes applications for word processing (Word), spreadsheets (Excel), presentations (PowerPoint), note-taking (OneNote), database management (Access), email (Outlook), and project management (Project). It is available in various editions, including Home & Student, Home & Business, Professional, and Professional Plus.

New features in Microsoft Office 2024: Real-time collaboration now supports real-time collaboration on Word, Excel, and PowerPoint documents. This means multiple users can work on the same document simultaneously, and their changes will be saved and visible to everyone else in real-time.

AI-powered insights: The software includes several AI-powered insights to help users be more productive. For example, Word can automatically suggest relevant content and images to users as they type, and Excel can automatically identify trends and patterns in data. Improved performance and stability: It has also been optimized for performance and stability. This means it should run faster and more reliably than previous versions of Office. Intuitive User Interface: One of the first things users will notice is the refreshed and modernized user interface. Microsoft has focused on simplifying navigation and improving the overall aesthetics. The ribbon interface, a hallmark of Office applications, has undergone a facelift to provide a more intuitive and visually appealing experience.

Enhanced Collaboration Tools: With enhanced co-authoring capabilities, multiple users can work on a document simultaneously, fostering real-time collaboration. This game-changer for teams working remotely or individuals seeking seamless cooperation on projects. Intelligent Assistance with AI IntegrationMicrosoft has integrated advanced AI capabilities into Office 2024, providing users intelligent assistance throughout their workflow. From smart suggestions in Word to predictive data trends in Excel, the AI features aim to make work more efficient and informed. New and Improved Applications: Each application within the Office suite has received updates. Word boasts new formatting options and improved writing assistance, while Excel introduces advanced data analysis tools. PowerPoint sees design and presentation features enhancements, making it easier to create visually stunning slideshows. Cross-Platform Compatibility: Recognizing the diverse ecosystem of devices today, Microsoft Office 2024 ensures seamless compatibility across Windows PCs, Macs, tablets, and mobile devices. This cross-platform functionality empowers users to switch between devices without compromising their work. Security and Compliance Features: The software introduces robust security and compliance features in an era where data security is paramount. Enhanced encryption, data loss prevention, and secure collaboration tools create a more secure digital workspace.

Yang H. Huang - 376 pages - Lamguage: English - Publisher: ‎American Society of Civil Engineers (ASCE); (February, 2014).


Slope Stability Analysis by the Limit Equilibrium Method: Fundamentals and Methods presents basic principles for the safe design of constructed or natural earth slopes. The limit equilibrium method is the most common approach for analyzing slope stability in both two and three dimensions. This method identifies potential failure mechanisms and derives factors of safety for a particular geotechnical situation. It is an appropriate choice for assessing the stability of retaining walls, shallow and deep foundations, earth and rock dams, surface mining sites, and potential landslides.

The fundamentals of slope stability encompass slope movements and methods for stability analysis, mechanics of slope failure and factors of safety, laboratory and field methods to determine the shear strength of soils, estimation of phreatic surfaces, and remedial measures for correcting slides. Methods of stability analysis cover simple formulas for determining the factor of safety for plane failures, stability charts, methods of slices for two-dimensional analysis, three-dimensional analysis techniques, and reliability of slope design.

An appendix provides a preview of a companion product, LEAME Software and Users Manual: Analyzing Slope Stability by the Limit Equilibrium Method, a computer program for performing the slope stability analysis presented in this work. The clear presentation of the principles of slope stability analysis ensures that this work will be a frequently consulted reference for practicing engineers. The wealth of worked examples and problem sets make this a suitable textbook for senior and graduate students in soil mechanics and geotechnical engineering.

Munir Hamad - 1059 pages - Language: English - Publisher: Mercury Learning; (July, 2024).

This book is the most comprehensive book you will find on AutoCAD 2025 – 2D Drafting. Covering all of the 2D concepts, it uses both metric and imperial units to illustrate the myriad drawing and editing tools for this popular application. Use the companion disc to set up drawing exercises and projects and see all of the book’s figures in color. 

AutoCAD 2025 Beginning and Intermediate includes over 100 exercises or “mini-workshops,” that complete small projects from concept through actual plotting. Solving all of the workshops will simulate the creation of three projects (architectural and mechanical) from beginning to end, without overlooking any of the basic commands and functions in AutoCAD 2025.

The major engineering categories of soil are gravel, sand, silt, and clay. There is not unanimous agreement on the exact division between each of these major soil types, but gravel and sand are universally considered coarse-grained soil, for the individual particles are large enough to be distinguished without magnification. Silts and clays are considered fine-grained soil because of their small particles—too small, for the most part, to be seen unaided.

The most commonly used divisions for classifying soils for engineering and construction purposes are shown in the table. On a comparative basis, the division sizes between gravel and sand (4.76 mm or 2.00 mm) and between sand and silt–clay (0.074 mm or 0.05 mm) are actually quite close. As a result, lack of agreement on these division sizes normally does not cause serious problems.

Particle Size Classification
Particles larger than gravel are commonly referred to as cobbles or boulders. Again, no unanimous agreement exists on the range of sizes. When gravel extends up to the 200 mm (8 in.) size, anything larger would be termed a boulder. Where the 80 mm (3 in.) size, or thereabouts, is taken as the upper size for gravel, the sizes between 80 mm and 200 mm may be designated as cobbles, and anything larger than 200 mm (8 in.) as boulders. However, 150 mm or 300 mm (6 in. or 12 in.) may also be taken as the division between cobbles and boulders. As for sands and gravels, these discrepancies usually do not cause serious problems. Conventionally, when a construction project requires a particular material, it has become standard practice to indicate the soil or aggregate requirements on the basis of size instead of, or in addition to, classification.

In conclusion, particle size serves as the basis for classification of sands, gravels, cobbles, and boulders.

The classification of a fine-grained soil as either a silt or a clay is not done on the basis of particle size but, rather, is based on the plasticity or nonplasticity of the material. Clay soil is plastic over a range of water content; that is, the soil can be remolded or deformed without causing cracking, breaking, or change in volume, and will retain the remolded shape. The clays are frequently “sticky.” When dried, a clay soil possesses very high strength (resistance to crushing). A silt soil possesses little or no plasticity and, when dried, has little strength. If a small sample of moist silt is shaken easily but rapidly in the palm of the hand, water will appear on the surface of the sample but disappear when the shaking stops. This is referred to as dilatancy. When a sample of moist clay is similarly shaken, the surface will not become wetted.

The reason for the difference in behavior between clay and silt relates to the difference in mineralogical composition of the soil types and particle shape. Silt soils are very small particles of disintegrated rock, as are sands and gravels, and possess the same general shape and mineralogical composition as sands and gravels (which are nonplastic). The clay minerals, however, represent chemical changes that have resulted from decomposition and alteration of the original rock minerals. The effect is that their size and shape are significantly different from those of other types of soil particles. This is discussed further in a following section.

Naturally occurring soil deposits most generally include more than one soil type. When they are classified, all the soil types actually present should be indicated, but the major constituent soil type should dominate the description, while the soils of lesser percentage are used as modifying terms; for example, a material that is mostly sand but includes silt would be classified as a silty sand, whereas a silt–clay mixture with mostly clay would be termed a silty clay.

Although a soil may be predominantly coarse-grained, the presence of silt or clay can have a significant effect on the properties of the mixture. Where the amount of finegrained material exceeds about one-third of the total soil, the mixture behaves more like a fine-grained soil than a coarse-grained soil.

The condition also exists where small fragments of decomposed vegetation are mixed with the soil, particularly fine-grained soils. Organic material mixed with the nonorganic soil can have striking detrimental effects on the strength and compressibility properties of the material. The presence of organic material should be carefully considered. A foul odor is characteristically though not always associated with such soils, as is a blackish or dark gray color. Soils in this category are designated as organic (e.g., organic silt or organic clay) in comparison to a nonorganic designation for soil free of decomposed vegetation.

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