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Daily Archives: July 29, 2025

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Transforming Beauty And Wellness: A Case Study Of TikishNutra’s E-Commerce Model

Authors: Abhishek Baghel, Usha Dhankar Vicky Mona

Abstract: The beauty and wellness industry is undergoing a dynamic transformation driven by changing consumer behaviors increased digital engagement and rising demand for natural and personalized solutions. As traditional retail models struggle to keep pace with these evolving expectations e-commerce has emerged as a critical enabler of growth and accessibility. This research focuses on the conceptualization and development of an e-commerce solution specifically tailored to the beauty and wellness sector. The study aimed to address the need for seamless product discovery transparency and convenience by integrating modern design practices with personalized shopping experiences. A user-centric approach was adopted to incorporate features such as secure payment systems high-speed delivery services product transparency and user reviews. The platform emphasizes accessibility for a diverse consumer base and delivers intuitive navigation and personalized recommendations to support informed decision-making. Additionally the inclusion of virtual assistance and educational features helps users better understand product ingredients usage and wellness practices. The methodology involved analyzing current market challenges identifying user needs and designing a scalable modular system architecture supported by modern web technologies. Results demonstrate the potential of digital platforms in building trust improving customer retention and delivering a holistic shopping experience in a competitive market. The study concludes by showcasing a case implementation that reflects these design and functionality goals offering a practical example of how digital transformation can reshape customer engagement in the beauty and wellness domain

DOI: https://doi.org/10.5281/zenodo.16595853

 

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Structural Evaluation Of Tall Buildings Using Ferroconcrete And Steel-Timber Hybrid Systems Under Lateral Loads In ETABS

Authors: Pavan Patel, Rahul Kumar Satbhaiya

 

Abstract: In a densely populated and rapidly urbanizing country like India, the construction of multistorey buildings is essential to meet increasing housing and infrastructure demands. These structures are often subjected to lateral forces, which act horizontally and can significantly affect their performance. Such forces primarily include wind loads and seismic activity, both of which can cause structural deflection, instability, or even failure if not adequately addressed. To ensure buildings can withstand these lateral effects, advanced structural analysis tools like ETABS are employed. ETABS is a comprehensive software used for modeling, analysis, and design of buildings in compliance with national and international codes. It provides accurate simulations of how structures respond to various loading conditions, making it ideal for evaluating complex buildings. Hybrid structural systems, which combine different construction materials, are gaining popularity for enhancing structural performance. One common and effective hybrid combination is steel and concrete, which leverages the tensile strength of steel and the compressive strength of concrete. Steel is especially favoured for its high load-carrying capacity and fast construction capabilities, and when integrated with other materials such as timber or ferrocement, it helps overcome limitations inherent to individual materials. This study investigates a G+7 storey steel-timber hybrid building reinforced with ferroconcrete (wire mesh embedded in concrete). A three-dimensional static analysis is performed using ETABS to assess the building’s structural behavior. The study focuses on key parameters such as maximum nodal displacement, bending moment, shear force, axial force, and storey drift to evaluate the effectiveness of the hybrid system under lateral loading conditions

DOI: https://doi.org/10.5281/zenodo.16595886

 

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Structural Evaluation Of Tall Buildings Using Ferroconcrete And Steel-Timber Hybrid Systems Under Lateral Loads In ETABS: A Review_655

Authors: Pavan Patel, Rahul Kumar Satbhaiya

Abstract: This paper reviews the structural evaluation of tall buildings using Ferro concrete (reinforced concrete) and steel-timber hybrid systems under lateral loads, emphasizing seismic and wind forces. With the growing need for sustainable and high-performance building materials, steel-timber hybrids present a viable alternative to conventional RCC systems. Using insights from past research and simulation tools like ETABS, the study analyses lateral load performance, energy dissipation, environmental benefits. The review highlights key developments, identifies research gaps, and suggests future directions for adopting hybrid systems in Indian structural design

 

 

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