Evolution of Web Development Techniques in Modern Technology
Commenced in January 2007
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Edition: International
Paper Count: 32807
Evolution of Web Development Techniques in Modern Technology

Authors: Abdul Basit Kiani, Maryam Kiani

Abstract:

The art of web development in new technologies is a dynamic journey, shaped by the constant evolution of tools and platforms. With the emergence of JavaScript frameworks and APIs, web developers are empowered to craft web applications that are not only robust but also highly interactive. The aim is to provide an overview of the developments in the field. The integration of artificial intelligence (AI) and machine learning (ML) has opened new horizons in web development. Chatbots, intelligent recommendation systems, and personalization algorithms have become integral components of modern websites. These AI-powered features enhance user engagement, provide personalized experiences, and streamline customer support processes, revolutionizing the way businesses interact with their audiences. Lastly, the emphasis on web security and privacy has been a pivotal area of progress. With the increasing incidents of cyber threats, web developers have implemented robust security measures to safeguard user data and ensure secure transactions. Innovations such as HTTPS protocol, two-factor authentication, and advanced encryption techniques have bolstered the overall security of web applications, fostering trust and confidence among users. Hence, recent progress in web development has propelled the industry forward, enabling developers to craft innovative and immersive digital experiences. From responsive design to AI integration and enhanced security, the landscape of web development continues to evolve, promising a future filled with endless possibilities.

Keywords: Web development, software testing, progressive web apps, web and mobile native application.

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References:


[1] Energy efficiency in cloud computing data centers: A survey on software technologies | SpringerLink. (n.d.). Retrieved October 1, 2023, from https://link.springer.com/article/10.1007/s10586-022-03713-0
[2] The Future of Highway and Bridge Construction: Digital Project Delivery Using Integrated Advanced Technologies Proceedings (2023) https://ascelibrary.org/doi/abs/10.1061/9780784484364.002
[3] Howcroft, D., & Carroll, J. (n.d.). A Proposed Methodology for Web Development.
[4] S, S., T, S., & V, L. (2023). Development Features Web-Applications. https://openarchive.nure.ua/handle/document/21600
[5] Energies | Free Full-Text | Multi-Objective Optimization Models to Design a Responsive Built Environment: A Synthetic Review. (n.d.). Retrieved October 1, 2023, https://www.mdpi.com/1996-1073/15/2/486
[6] Zou, Y., Yu, K., Heng, J., Zhang, Z., Peng, H., Wu, C., & Wang, X. (2023). Feasibility study of new GFRP grid web—Concrete composite beam. Composite Structures, 305, (2022) 116527. https://doi.org/10.1016/j.compstruct.2022.116527
[7] C.J. Torrecilla-Salinas, J. Sedeño, M.J. Escalona, M. Mejías, Agile, web engineering and capability maturity model integration: a systematic literature review, Inf. Softw. Technol. 71 (2016) 92–107.
[8] F.J. Domínguez-Mayo, M.J. Escalona, M. Mejías, M. Ross, y G. Staples, Quality evaluation for model-driven web engineering methodologies», Inf. Softw. Technol. 54 (n.o 11) (2012) 1265–1282.
[9] P. Nicolaescu, M. Rosenstengel, M. Derntl, R. Klamma, M. Jarke, Near real-time collaborative modeling for view-based web information systems engineering, Inf. Syst. 74 (2018) 23–39.
[10] J.M. Conejero, R. Rodríguez-Echeverría, F. Sánchez-Figueroa, M. Linaje, J.C. Preciado, P.J. Clemente, Re-engineering legacy web applications into RIAs by aligning modernization requirements, patterns and RIA features, J. Syst. Softw. 86 (no 12) (dic. 2013) 2981–2994.
[11] V. Garousi, A. Mesbah, A. Betin-Can, S. Mirshokraie, «A systematic mapping study of web application testing», Inf. Softw. Technol. 55 (no 8) (ago. 2013) 1374–1396.
[12] Y.-F. Li, P.K. Das, D.L. Dowe, Two decades of web application testing—a survey of recent advances, Inf. Syst. 43 (jul. 2014) 20–54.
[13] A. Tarhan, S.G. Yilmaz, Systematic analyses and comparison of development performance and product quality of incremental process and agile process, Inf. Softw. Technol. 56 (no 5) (2014) 477–494.
[14] F.K.Y. Chan, J.Y.L. Thong, Acceptance of agile methodologies: a critical review and conceptual framework, Decis. Support Syst. 46 (no 4) (2009) 803–814.
[15] M. Senapathi, M.L. Drury-Grogan, Refining a model for sustained usage of agile methodologies, J. Syst. Softw. 132 (2017) 298–316.
[16] K. Curcio, T. Navarro, A. Malucelli, S. Reinehr, Requirements engineering: a systematic mapping study in agile software development, J. Syst. Softw. 139 (2018) 32–50.
[17] A. Ginige, S. Murugesan, Web engineering: an introduction, IEEE MultiMedia 8 (no 1) (2001) 14–18.
[18] B. Kitchenham, O. Pearl Brereton, D. Budgen, M. Turner, J. Bailey, S. Linkman, «Systematic literature reviews in software engineering – A systematic literature review», Inf. Softw. Technol. 51 (no 1) (2009) 7–15.
[19] J. Gomez, C. Cachero, O. Pastor, Conceptual modeling of device-independent web applications, IEEE MultiMedia 8 (no 2) (2001) 26–39.
[20] H. Shore, Response modeling methodology (RMM)—maximum likelihood estimation procedures, Comput. Stat. Data Anal. 49 (no 4) (2005) 1148–1172.
[21] S. Ceri, P. Fraternali, A. Bongio, Web modeling language (WebML): a modeling language for designing web sites, Comput. Netw. 33 (no 1) (2000) 137–157.
[22] H. Lee, C. Lee, C. Yoo, A scenario-based object-oriented hypermedia design methodology, Inf. Manag. 36 (no 3) (1999) 121–138.
[23] K. Dikert, M. Paasivaara, C. Lassenius, Challenges and success factors for large-scale agile transformations: a systematic literature review, J. Syst. Softw. 119 (2016) 87–108.
[24] J. Byung-Kwon, K. Dong-Soo, Y. Seok-Min, S. Gyu-Sang, H. Chong-Sun, Development and application of a model for analysis and design phases of web-based system development, Sci. China Ser. F 46 (no 4) (2003) 241–249.
[25] J. Manhas, Initial framework for website design and development, Int. J. Inf. Tecnol. 9 (no 4) (2017) 363–375.
[26] E.-M. Schön, J. Sedeño, M. Mejías, J. Thomaschewski, M.J. Escalona, A metamodel for agile requirements engineering, J. Comput. Commun. 7 (ene. 2019) 1–22.
[27] Aesoft, «Aesoft | Sitio oficial de la Asociación Ecuatoriana de software,» (Online). Available: https://aesoft.com.ec/.
[28] P.-A. Muller, P. Studer, F. Fondement, J. Bezivin, Platform independent web application modeling and development with Netsilon, Softw. Syst. Model. 4 (no 4) (2005) 424–442.
[29] O. Pastor, J. Gómez, E. Insfrán, V. Pelechano, The OO-method approach for information systems modeling: from object-oriented conceptual modeling to automated programming, Inf. Syst. 26 (no 7) (2001) 507–534.
[30] P. Meso, G. Madey, M.D. Troutt, J. Liegle, The knowledge management efficacy of matching information systems development methodologies with application characteristics—an experimental study, J. Syst. Softw. 79 (no 1) (2006) 15–28.
[31] C. Lee, W. Suh, H. Lee, Implementing a community web site: a scenario-based methodology, Inf. Softw. Technol. 46 (no 1) (2004) 17–33.
[32] M.J. Escalona, y N. Koch, Requirements engineering for web applications: a comparative study», J. Web Eng. 2 (no 3) (2003) 193–212.
[33] J. Kim, W. Suh, H. Lee, Hypermedia modeling for linking knowledge to data warehousing system, Expert Syst. Appl. 24 (no 1) (2003) 103–114.
[34] D. Bolchini, P. Paolini, Goal-driven requirements analysis for hypermedia-intensive web applications, Requir. Eng. 9 (no 2) (2004) 85–103.
[35] C. Batini, D. Bolchini, S. Ceri, M. Matera, A. Maurino, P. Paolini, The UM-MAIS methodology for multi-channel adaptive web information systems, World Wide Web 10 (no 4) (2007) 349–385.
[36] C. Guerra-García, I. Caballero, M. Piattini, Capturing data quality requirements for web applications by means of DQ_WeBre, Inf. Syst. Front. 15 (no 3) (2013) 433–445.
[37] J.M. Rivero, J. Grigera, G. Rossi, E. Robles Luna, F. Montero, M. Gaedke, Mockup– Driven development: providing agile support for model-driven web engineering, Inf. Softw. Technol. 56 (no 6) (2014) 670–687.
[38] A. Cicchetti, D.D. Ruscio, L. Iovino, A. Pierantonio, Managing the evolution of data-intensive web applications by model-driven techniques, Softw. Syst. Model. 12 (no 1) (2013) 53–83.
[39] S. Ceri, P. Fraternali, M. Matera, Conceptual modeling of data-intensive web applications, IEEE Internet Comput. 6 (no 4) (2002) 20–30.
[40] R. Gitzel, A. Korthaus, M. Schader, Using established web engineering knowledge in model-driven approaches, Sci. Comput. Program. 66 (no 2) (abr. 2007) 105–124.
[41] P. Avgeriou, S. Retalis, CRITON: a hypermedia design tool, Multimed. Tools Appl. 27 (no 1) (2005) 5–21.
[42] D. Schwabe, L. Esmeraldo, G. Rossi, F. Lyardet, Engineering web applications for reuse, IEEE MultiMedia 8 (no 1) (2001) 20–31.
[43] R.E. Giachetti, Integrating hypermedia design concepts with a systems analysis and design methodology to develop manufacturing web applications, Int. J. Comput. Integrated Manuf. 18 (no 4) (2005) 329–340.
[44] P. Merialdo, P. Atzeni, G. Mecca, Design and development of data-intensive web sites: the Araneus approach, ACM Trans. Internet Technol. 3 (no 1) (2003) 49–92.
[45] C.J. Torrecilla-Salinas, J. Sedeño, M.J. Escalona, M. Mejías, Estimating, planning and managing Agile Web development projects under a value-based perspective, Inf. Softw. Technol. 61 (2015.) 124–144.
[46] E. Robles Luna, G. Rossi, I. Garrigós, WebSpec: a visual language for specifying interaction and navigation requirements in web applications, Requir. Eng. 16 (no 4) (2011) 297–321.
[47] A. Navarro, A. Fernández-Valmayor, B. Fernández-Manjón, J.L. Sierra, Characterizing navigation maps for web applications with the NMM approach, Sci. Comput. Program. 71 (no 1) (2008) 1–16.
[48] I. Garrigós, J. Gomez, G.-J. Houben, Specification of personalization in web application design, Inf. Softw. Technol. 52 (no 9) (2010) 991–1010.
[49] V. Torres, P. Giner, V. Pelechano, Developing BP-driven web applications through the use of MDE techniques, Softw. Syst. Model. 11 (no 4) (2012) 609–631.
[50] I. Torre, «Adaptive systems in the era of the semantic and social web, a survey», User Model User-Adap Inter. 19 (no 5) (2009) 433–486.
[51] User-centered Web Development. (n.d.). Retrieved October 1, 2023, from https://books.google.com/books/about/User_centered_Web_Development.html?id=wrIkWmtt-soC
[52] Beginning Programming with Python For Dummies—John Paul Mueller—Google Books. (n.d.). Retrieved October 1, 2023, from https://books.google.co.jp/books?hl=en&lr=&id=9-ubEAAAQBAJ&oi=fnd&pg=PA1&dq=web+development&ots=uWdXAaPc_o&sig=zeAvMDHEIKclw56zpAjxPz3bQVg&redir_esc=y#v=onepage&q=web%20development&f=false
[53] Kiani, A. B. (n.d.). Influence of Javascript Programming on the Development of Web and Mobile Application.
[54] Prediction Cannot Be Directly Trained: An Extension to Jones and Westermann (2021) | Journal of Speech, Language, and Hearing Research. (n.d.). Retrieved October 1, 2023, from https://pubs.asha.org/doi/abs/10.1044/2022_JSLHR-22-00332
[55] Melanda, D., Surahman, A., & Yulianti, T. (2023). Pengembangan Media Pembelajaran IPA Kelas IV Berbasis Web (Studi Kasus: SDN 02 Sumberejo). Jurnal Teknologi Dan Sistem Informasi, 4(1), Article 1. https://doi.org/10.33365/jtsi.v4i1.2435
[56] Jalal, S., Yadav, D. K., & Negi, C. S. (2023). Web service discovery with incorporation of web services clustering. International Journal of Computers and Applications, 45(1), 51–62. https://doi.org/10.1080/1206212X.2019.1698131
[57] Backe, S., Skar, C., del Granado, P. C., Turgut, O., & Tomasgard, A. (2022). EMPIRE: An open-source model based on multi-horizon programming for energy transition analyses. SoftwareX, 17, 100877. https://doi.org/10.1016/j.softx.2021.100877
[58] Bhanarkar, N., Paul, A., & Mehta, A. (2023). Responsive Web Design and Its Impact on User Experience. In International Journal of Advanced Research in Science, Communication and Technology. https://doi.org/10.48175/IJARSCT-9259
[59] Kui, B., Pintér, J., Molontay, R., Nagy, M., Farkas, N., Gede, N., Vincze, Á., Bajor, J., Gódi, S., Czimmer, J., Szabó, I., Illés, A., Sarlós, P., Hágendorn, R., Pár, G., Papp, M., Vitális, Z., Kovács, G., Fehér, E., … Group, the H. P. S. (2022). EASY-APP: An artificial intelligence model and application for early and easy prediction of severity in acute pancreatitis. Clinical and Translational Medicine, 12(6), e842. https://doi.org/10.1002/ctm2.842
[60] Progressive Web Apps (PWAs)—Alternate to Mobile and Web | SpringerLink. (n.d.). Retrieved October 1, 2023, from https://link.springer.com/chapter/10.1007/978-981-19-4193-1_55
[61] "2014 Intenet trends," Kleiner Perkins Caufield Byers, Online. Available: http://www.kpcb.com/intenet-trends. Accessed 20 April 2017.
[62] K. D. Adam Lella, Andrew Lipsman, "2014 U.S. digital future in focus," 2015, Accessed 20 April 2017. Online. Available: http://www.comscore.com/Insights/Presentationsand-Whitepapers/ 2014/2014-US-Digital-Future-inFocus
[63] M. Fisch, "Mobile-friendly sites turn visitors into customers - google mobile ads blog," 2015, Accessed 20 April 2017. Online. Available: http://googlemobileads.blogspot.se/2012/ 09/mobile-friendly-sites-turn-visitors.html
[64] M. Vijayan, "3 Responsive Web Design Issues and Solutions" 2016, Accessed: 14-March-2017. Online. Available: http://www. ResponsiveWebDesign-Issues-and-Solutions.html
[65] S. Amatya and A. Kurti, "Cross-platform mobile development: Challenges and opportunities," ICT Innovations (2013) 219–229.
[66] P. Zervas, A. Trichos, D. Sampson, and N. Li, "A responsive design approach for supporting mobile access to virtual and remote laboratories," in IEEE 14th International Conference on Advanced Learning Technologies (ICALT), July 2014, pp. 11–13. Online. Available: https://www.computer.org/csdl/proceedings/icalt/20 14/4038/00/index. Accessed 20 April 2017
[67] The Role of Responsive Design in Web Development Webology, 14, Number 2, December, 2017. http://www.webology.org/2017/v14n2/a157.pdf.
[68] "Bootstrap - the world’s most popular mobile-first and responsive front-end framework." 2015, Accessed: 14-April-2017. Online. Available: http://getbootstrap.com/
[69] "Foundation - the most advanced responsive frontend framework from zurb," 2015, Accessed: 14- April-2017. Online. Available: http://foundation.zurb.com/index.html
[70] A. Team, "What are Frameworks? 22 Best Responsive CSS Frameworks for Web Design", Accessed: 14-April-2017. Online. Available: http://www.awwwards.com/what-are-frameworks22best-responsive-css-frameworks-for-webdesign.html
[71] "Responsive CSS Framework Comparison", Accessed: 14-March-2017. Online. Available: http://responsive.vermilion.com/compare.php
[72] "11 reasons why Responsive Design isn’t that cool!", Accessed: 14-March-2017. Online. Available: http://www.bypeople.com/11-reasonswhy-Responsive-Design-isnt-that-cool.html
[73] M. Schenker, "BootstrapBay -Bootstrap vs. Foundation: Which Framework is Better?" Accessed: 11-May-2017. Online. Available: https://www.bootstrapbay.com/blog/bootstrap-vsfoundationVerborgh,
[74] Razzaq, A., Sharif, A., Ozturk, I., & Skare, M. (2023). Asymmetric influence of digital finance, and renewable energy technology innovation on green growth in China. Renewable Energy, 202, 310–319. https://doi.org/10.1016/j.renene.2022.11.082
[75] Tata Sutabri, T. S. (2023). Design of A Web-Based Social Network Information System. International Journal of Artificial Intelligence Research, 6(1), Article 1.
[76] Gao, S. (2023). Advanced health information sharing with web-based GIS. https://unbscholar.lib.unb.ca/handle/1882/14932
[77] Le, D. M., Nguyen, A. P., Tran, L. Q., Le, H. T., & Tong, H. V.-A. (2022). Generating Multi-platform Single Page Applications: A Hierarchical Domain-Driven Design Approach. Proceedings of the 11th International Symposium on Information and Communication Technology, 344–351. https://doi.org/10.1145/3568562.3568566
[78] Llanes, J. E. Z. (2022). Java Prolog Interface (arXiv:2203.17134). arXiv. https://doi.org/10.48550/arXiv.2203.17134
[79] Masaeid, T. A., Alzoubi, H. M., Khatib, M. E., Ghazal, T. M., Alshurideh, M., Al-Dmour, N. A., & Sattar, O. (2022). Futuristic Design & Development of Learning Management System including Psychological Factors Resolution. Journal for ReAttach Therapy and Developmental Diversities, 5(2s), Article 2s.
[80] Vincze, D., & Niitsuma, M. (2022). What-You-See-Is-What-You-Get Indoor Localization for Physical Human-Robot Interaction Experiments. 2022 IEEE/ASME International Conference on Advanced Intelligent Mechatronics (AIM), 909–914. https://doi.org/10.1109/AIM52237.2022.9863359
[81] M. A. Kiani, M. Kiani "Powering Profits: A Dynamic Approach to Sales Marketing and Electronics" International Journal of Economics and Management Engineering 17:11 (2023)
[82] M. A. Kiani, A. B. Kiani, M. Kiani "Powering Connections: Synergizing Sales and Marketing for Electronics Engineering with Web Development. International Journal of Economics and Management Engineering 17:11 (2023)
[83] M.A. Kiani, M.Kiani "Power of Sales and Marketing in Electronics Engineering with E-commerce: Connecting the Circuits"International Journal of Social and Business Sciences 17:12 (2023)
[84] A. B. Kiani, M. Kiani "Designing of Content Management Systems (CMS) for Web Development" International Journal of Computer and Information Engineering 18:1 (2024)
[85] A.B. Kiani "Software Development to Empowering Digital Libraries with Effortless Digital Cataloging and Access International Journal of Electrical and Computer Engineering 17:11 (2023)
[86] Schmutz, S., Sonderegger, A., Sauer, J.: Implementing recommendations from web accessibility guidelines: would they also provide benefits to nondisabled users. Hum. Factors 58(4), 611–629 (2016)
[87] Buß, R., Kreichgauer, U., Meixner, C., Rangott, A.-M.: Barrierefreiheit effizient gestalten. In: Proceedings of Mensch und Computer Conference (2016)
[88] EN 17161: Design for All - Accessibility following a Design for All approach in products, goods and services - Extending the range of users, Beuth (2019)
[89] EN 301 549 V2.1.2 (2018-08): Accessibility requirements for ICT products and services. European Telecommunications Standards Institute (ETSI) (2018)
[90] Garaj V, Pokinko T, Hemphill C, et al. (2019) Inclusive design of the immersive reality: eliciting user perspectives. In: The 7th International Conference for Universal Design (UD2019). International Association for Universal Design (IAUD), Bangkok, Thailand
[91] Garzotto F, Gelsomini M, Matarazzo V et al (2017) XOOM: an end-user development tool for web-based wearable immersive virtual tours. In: Cabot J, De Virgilio R, Torlone R (eds) Web engineering. Springer International Publishing, Cham, pp 507–519
[92] Garzotto F, Gelsomini M, Occhiuto D, et al. (2017b) Wearable immersive virtual reality for children with disability: a case study. In: Proceedings of the 2017 Conference on Interaction Design and Children. ACM, Stanford California USA, pp 478–483, https://doi.org/10.1145/3078072.3084312
[93] Garzotto F, Matarazzo V, Messina N, et al. (2018) Improving museum accessibility through storytelling in wearable immersive virtual reality. In: Proceedings of the 2018 3rd Digital Heritage International Congress, Digital Heritage 2018 - Held jointly with the 2018 24th International Conference on Virtual Systems and Multimedia, VSMM 2018, https://doi.org/10.1109/DigitalHeritage.2018.8810097
[94] Gerling K, Buttrick L (2014) Last tank rolling: exploring shared motion-based play to empower persons using wheelchairs. In: Proceedings of the first ACM SIGCHI annual symposium on Computer-human interaction in play. Association for Computing Machinery, Toronto, Ontario, Canada, CHI PLAY ’14, pp 415–416, https://doi.org/10.1145/2658537.2661303
[95] Gerling K, Spiel K (2021) A critical examination of virtual reality technology in the context of the minority body. In: Proceedings of the 2021 CHI Conference on Human Factors in Computing Systems. Association for Computing Machinery, New York, NY, USA, CHI ’21, pp 1–14, https://doi.org/10.1145/3411764.3445196
[96] Gerling K, Dickinson P, Hicks K, et al. (2020) Virtual reality games for people using wheelchairs. In: Proceedings of the 2020 CHI Conference on Human Factors in Computing Systems. Association for Computing Machinery, New York, NY, USA, CHI ’20, pp 1–11, https://doi.org/10.1145/3313831.3376265
[97] Gerling KM, Mandryk RL, Miller M et al (2015) Designing wheelchair-based movement games. ACM Trans Access Comput 6(2):6:1-6:23. https://doi.org/10.1145/2724729
[98] Giaconi C, Ascenzi A, Del Bianco N et al (2021) Virtual and augmented reality for the cultural accessibility of people with autism spectrum disorders: a pilot study. Int J Incl Mus 14(1):95–106
[99] Glaser N, Schmidt M, Schmidt C (2022) Learner experience and evidence of cybersickness: design tensions in a virtual reality public transportation intervention for autistic adults. Virtual Real. https://doi.org/10.1007/s10055-022-00661-3
[100] Goldberg A, Tetreault S (2021) Live from the Metaverse: virtual XR Performances for Audiences on-Stage, Online, in-Game, and in-VR. In: ACM SIGGRAPH 2021 Production Sessions. Association for Computing Machinery, New York, NY, USA, SIGGRAPH ’21, https://doi.org/10.1145/3446368.3452125
[101] Guedes L, Marques L, Vitório G (2020) Enhancing interaction and accessibility in museums and exhibitions with augmented reality and screen readers. Lecture Notes in Computer Science (including subseries Lecture Notes in Artificial Intelligence and Lecture Notes in Bioinformatics) 12376 LNCS:157–163. https://doi.org/10.1007/978-3-030-58796-3_20
[102] Guerrero G, Gomez L, Achig J (2020) Holonote: Text editor of augmented reality oriented to people with motor disabilities. In: Iberian Conference on Information Systems and Technologies, CISTI, https://doi.org/10.23919/CISTI49556.2020.9140857
[103] Guitton P, Sauzéon H, Cinquin PA (2019) Accessibility of immersive serious games for persons with cognitive disabilities. In: 2019 IEEE International Symposium on Mixed and Augmented Reality Adjunct (ISMAR-Adjunct), pp 443–447, https://doi.org/10.1109/ISMAR-Adjunct.2019.00051
[104] Hansen J, Trudslev A, Harild S, et al. (2019) Providing access to VR through a wheelchair. In: Conference on Human Factors in Computing Systems-Proceedings, https://doi.org/10.1145//3290607.3299048
[105] Hedvall P (2009) Towards the era of mixed reality: accessibility meets three waves of HCI. Lecture Notes in Computer Science (including subseries Lecture Notes in Artificial Intelligence and Lecture Notes in Bioinformatics) 5889 LNCS:264–278. https://doi.org/10.1007/978-3-642-10308-7_18
[106] Herskovitz J, Wu J, White S, et al. (2020) Making mobile augmented reality applications accessible. In: ASSETS 2020-22nd International ACM SIGACCESS Conference on Computers and Accessibility, https://doi.org/10.1145/3373625.3417006
[107] N. Shinde, P. KulkarniCyber incident response and planning: a flexible approach Computer Fraud & Security (2021)14-19
[108] Alaattin Parlakkiliç “Evaluating the effects of responsive design on the usability of academic websites in the pandemic” Education and Information Technologies 27(2022) 1307–1322
[109] A. B. Kiani, M. Kiani “Web Development in Information Technology with Javascript, Machine Learning and Artificial Intelligence” International Journal of Computer and Systems Engineering 17:10 (2023)