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Introduction
The book by Angel and Shreiner (2014) introduces the reader to such common phenomena of the modern digital world as graphic design, 3D modeling, animation of objects, and other concepts. First, the authors mention the basics of graphics systems by describing the hardware involved and the underlying architectures and introducing WebGL as a key library for rendering 3D graphics (Angel & Shreiner, 2014). This platform is used in various fields, for instance, as Liu et al. (2021) note, in the aviation industry for safe and efficient runway simulation. The basics of working with tools are presented, such as managing color solutions, displaying and combining elements, rendering, and other working mechanisms. The chapter in which Angel and Shreiner (2014) describe animation lists the key set of devices needed to create moving objects and the basic commands involved in this process. For programmers, these clarifications are of great importance as a detailed guideline to getting started with 3D modeling from scratch.
Discussion
By categorizing the tools involved, the model building and display options are demonstrated. The authors describe various features of digital interfaces, which allow for compiling viewing techniques into modes that correctly display the components engaged (Angel & Shreiner, 2014). As an individual discussion part, the nuances of framing following light and shadow characteristics are given. The effectiveness of individual approaches to creating light models is considered, and the principles of illumination of graphic elements are presented from a geometric perspective. One of the main conclusions that Angel and Shreiner (2014) make during their analysis is that WebGL is a convenient library for structuring images and samples, thereby allowing for building appropriate layouts in a multitexture environment. The characteristics of the distinctive rendering types complement the discussion and help compare the principles of structural model formation.
As one becomes familiar with the basic tools and techniques of 3D modeling, more advanced concepts, and practices are described. Angel and Shreiner (2014) propose to evaluate the distinctive algorithms for moving individual graphic components, their sorting, as well as color matrices to optimize the display. The way WebGL works in a browser environment is viewed through different image formats, which, as Hristov and Petkov (2018) argue, is a natural option for this digital library. As a result, by describing every aspect of working in 3D modeling step by step, clear instructions allow for obtaining a comprehensive picture of working with modern interfaces and tools.
Conclusion
The topics covered in this book allow help to dive deep into the 3D modeling environment, and studying them in detail is a mechanism to acquire valuable skills in graphic design. Step-by-step instructions may contribute to learning each aspect separately, thereby consolidating the knowledge gained and applying it in practice. In a professional career, this manual is a handy guideline a person can rely on to collect all the necessary data about the tools to use. In addition, by taking into account Angel and Shreiner’s (2014) findings, the 3D modeler can expand their understanding of the deeper foundations of graphic design, which are typically overlooked in individual training. The completest picture of all the features of work in this area can help not only implement standard design tasks but also develop personal approaches to modeling. Such a perspective is particularly important when developing creative solutions is a critical job responsibility. Therefore, this manual has a high theoretical and practical value.
References
Angel, E., & Shreiner, D. (2014). Interactive computer graphics. A top-down approach with WebGL (7th ed.). Pearson.
Hristov, P., & Petkov, E. (2018). Approach for mesh optimization and 3d web visualization. Eastern Academic Journal, 3, 46-52.
Liu, Z., Gu, X., Dong, Q., Tu, S., & Li, S. (2021). 3D visualization of airport pavement quality based on BIM and WebGL integration. Journal of Transportation Engineering Part B Pavements, 147(3), 04021024.
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