Category Archives: Uncategorized

AN OVERVIEW OF AUTONOMOUS VEHICLE SENSOR

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Authors: Tejes theethan M, Akshaya R, Merlin Shiny j, Dharani M

 

Abstract: This work is the structure of an autonomous driving system. This paper aims to determine the current state of autonomous vehicles, their potential impacts, and the necessary preparation for smart urban mobility. Autonomous refers to the movement or the work done on its own. Autonomous driving systems are divided into several ways, such as Autonomous under- water vehicles, Autonomous airborne vehicles, and Autonomous land vehicles. The potential benefits of lane autonomous vehicles are to describe the importance of navigation algorithms, speed control methods, adoption factors, and the increased infrastruc- ture needs for Connected autonomous vehicles’ integration. The major key elements are based on sensors, navigation, radar, planning techniques, communication, and software. The results of this research have important implications for future research and the framework of autonomous vehicle technologies in road trans- portation. Index Terms—autonomous driving, sensor, RADAR, navigation, software

DOI: 10.61137/ijsret.vol.11.issue3.142

 

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Nanorobotics In Targeted Cancer Therapy

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Authors: Faiza Shaik

 

 

Abstract: The use of nanorobotics in cancer therapy represents a groundbreaking evolution in the field of biomedical sciences, offering precision, efficiency, and adaptability in targeting malignant cells. These nanometer-scale devices are engineered to perform complex tasks at the cellular and molecular levels, enabling the direct delivery of anticancer agents to tumors while minimizing damage to healthy tissue. This paper explores the foundational principles of nanorobotics, their diverse types, and the technological advancements enabling their application in oncology. It delves into the mechanisms through which nanorobots navigate biological environments, recognize cancerous cells, and administer therapeutic agents with unmatched specificity. Additionally, the paper addresses the integration of sensors, actuators, and logic gates within nanorobots to enhance decision-making and responsiveness in real-time conditions. Challenges such as biocompatibility, immune response, power sources, and regulatory hurdles are discussed in detail. Furthermore, current experimental studies, clinical trials, and future perspectives in the development of nanorobotics for cancer therapy are critically analyzed. The convergence of nanotechnology, robotics, and medicine through nanorobotics holds the promise of redefining cancer treatment paradigms with higher survival rates and lower side effects.

DOI: http://doi.org/

 

 

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Advancements In Nanotechnology For Targeted Cancer Therapies

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Authors: Raj Kumar

 

 

IJSRET_V9_issue2_196.pdf

Abstract: Nanotechnology has revolutionized the landscape of targeted cancer therapies by providing innovative tools to deliver therapeutic agents directly to tumor cells while minimizing damage to healthy tissues. This paper explores the latest advancements in nanotechnology applications for targeted cancer treatment, emphasizing the design and functionalization of various nanoparticle platforms, advanced drug delivery mechanisms, and tumor targeting strategies. It further discusses the integration of multifunctional nanoparticles enabling combination therapies, challenges related to biocompatibility, immune evasion, and clinical translation barriers. The paper concludes by highlighting future directions, including personalized nanomedicine and stimuli-responsive delivery systems, that promise to enhance therapeutic efficacy and patient outcomes in oncology.

DOI: http://doi.org/

 

 

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Development And Validation Of Sim Science

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Authors: Gerieliza C. Paano, Louchil A. Cajate

Abstract: This research presents the development and validation of a Supplemental Instructional Material (SIM) in Science for Grade 6, specifically focused on the Biology component of the curriculum. Prompted by the pressing need for contextually relevant and pedagogically sound instructional resources, especially in light of challenges experienced during the COVID-19 pandemic, the study employed a descriptive-developmental design. The SIM was evaluated by science education experts and top-performing students from elementary schools within the Borongan City Division, using established validation criteria such as usability, consistency, clarity of objectives, content quality, curriculum alignment, presentation, and evaluative effectiveness. Quantitative analysis utilizing weighted mean and paired t-tests revealed high levels of validity across all dimensions assessed. The results affirm the material's potential as a quality-assured learning tool that enhances concept retention and engagement in science learning. This study underscores the importance of localized, research-based instructional materials in improving science education outcomes.

 

 

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Nanorobotics In Targeted Cancer Therapy

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Authors: Faiza Shaik

 

 

Abstract: The use of nanorobotics in cancer therapy represents a groundbreaking evolution in the field of biomedical sciences, offering precision, efficiency, and adaptability in targeting malignant cells. These nanometer-scale devices are engineered to perform complex tasks at the cellular and molecular levels, enabling the direct delivery of anticancer agents to tumors while minimizing damage to healthy tissue. This paper explores the foundational principles of nanorobotics, their diverse types, and the technological advancements enabling their application in oncology. It delves into the mechanisms through which nanorobots navigate biological environments, recognize cancerous cells, and administer therapeutic agents with unmatched specificity. Additionally, the paper addresses the integration of sensors, actuators, and logic gates within nanorobots to enhance decision-making and responsiveness in real-time conditions. Challenges such as biocompatibility, immune response, power sources, and regulatory hurdles are discussed in detail. Furthermore, current experimental studies, clinical trials, and future perspectives in the development of nanorobotics for cancer therapy are critically analyzed. The convergence of nanotechnology, robotics, and medicine through nanorobotics holds the promise of redefining cancer treatment paradigms with higher survival rates and lower side effects.

DOI: http://doi.org/

 

 

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The Role Of Nanotechnology In Developing Next-Generation Vaccines

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Authors: Ravi Kumar

 

 

Abstract: – Nanotechnology has emerged as a transformative platform in the development of next-generation vaccines, enabling precise delivery of antigens and immunomodulatory agents to the immune system. By mimicking natural pathogens at the nanoscale, nanoparticle-based vaccines enhance antigen stability, promote targeted delivery to antigen-presenting cells, and improve immunogenicity. This paper explores various nanomaterial platforms used in vaccine development, including lipid nanoparticles, virus-like particles, polymeric and inorganic nanoparticles, and their role in overcoming limitations of traditional vaccines. Mechanisms of immune activation, strategies for improving vaccine stability and targeted delivery, and challenges in clinical translation and regulatory approval are discussed. The convergence of nanotechnology with immunology and bioinformatics is poised to revolutionize vaccine development, enabling rapid, safe, and highly effective vaccines against infectious diseases, cancers, and emerging pathogens.

DOI: http://doi.org/

 

 

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Personal Finance Management System Using Java Swing And MySQL

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Authors: Darshita Singh, Shreya Saini, Tanish Rashm, Anshu Rai, Punit Kumar

Abstract: This paper outlines the design and implementation of a Personal Finance Management System (PFMS) aimed at helping individuals manage their personal finances effectively. In this digital revolution era, sound financial planning and investment performance are crucial for individuals wanting to achieve long-term financial stability. Therefore, this study presents the design and implementation of an innovative Personal Finance Management and Investment System that allows users to track their incomes, expenditures, and individual investment portfolios and receive intelligent, data-driven personal finance recommendations. The System includes a modern web-based platform utilizing React.js for a complete user-experience interface, Node.js and Express.js for a robust backend service platform, and MongoDB for highly flexible data storage. The application uses machine learning capabilities, powered by Python algorithms to analyze user financial-related activities to propose heretofore unimaginable efficiency in budgeting and a variety of investment options. Finally, to give users value add insights, portfolios can include transaction monitoring, creating financial objectives, tax implications, and investment optimization through graphical dashboards. The proposed solution aims to increase financial literacy; develop saving behaviours with discipline; and a well-informed investment decision set; particularly for young earners, and those at post-secondary institutions.Along with providing instant feedback on financial activity, the system prioritizes usability, with a simple, easy-to-use interface that reduces the complexity normally present in financial programs. Through functionality, accessibility, and data-based insights, the PFMS will be an overall and useful tool for personal financial planning and management.

 

 

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Nanoparticle-Based Drug Delivery Systems: Overcoming Biological Barriers

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Authors: Nanditha Das

 

 

Abstract: Nanoparticle-based drug delivery systems represent a transformative innovation in modern pharmacology, providing novel solutions to long-standing challenges in medicine. These systems leverage the unique properties of nanoparticles to improve drug solubility, enhance bioavailability, and ensure targeted delivery, particularly across complex biological barriers. This paper explores the diverse types of biological barriers that impede therapeutic efficacy, such as the blood-brain barrier, gastrointestinal tract, and tumor microenvironment. It further delves into the various nanoparticle platforms developed to navigate these barriers, including liposomes, dendrimers, polymeric nanoparticles, and lipid-based systems. The role of surface modification techniques, targeting ligands, and stimuli-responsive mechanisms in improving delivery efficiency is analyzed in depth. Additionally, the paper evaluates the pharmacokinetics, biodistribution, and safety concerns associated with these systems, while discussing the latest clinical advances and translational hurdles. Ultimately, this comprehensive overview underscores how overcoming biological barriers using nanoparticles has opened new frontiers in precision medicine and is revolutionizing drug therapy paradigms.

DOI: http://doi.org/

 

 

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Data Analysis

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Authors: Dr.R.S Khatana, Rahul Yadav

 

 

Abstract: Abstract- Data analysis plays a crucial role in today’s data-driven world. It is the science of examining raw data to make conclusions, identify patterns, and support decision-making. This paper explores the definition, techniques, tools, and real-world applications of data analysis, especially in sectors like business, healthcare, education, and government. With the rising importance of big data, this study also discusses ethical considerations and challenges faced in data analysis.Data analysis is indispensable in the digital age. From simplifying operations to transforming entire industries, its potential is vast. However, with power comes responsibility. Ethical handling of data, maintaining quality, and using insights judiciously are key to unlocking the true potential of data analysis. Keywords-Data Analysis,Big Data,Decision-Making,Data-Driven,Analytical Techniques.

DOI: http://doi.org/

 

 

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Applications Of Nanotechnology In Regenerative Medicine

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Authors: Yasik Sharma

 

 

Abstract: – Regenerative medicine aims to restore or replace damaged tissues and organs, offering new therapeutic strategies for conditions previously considered incurable. Nanotechnology, through the manipulation of materials at the nanoscale, has emerged as a transformative tool in this field by enabling precise control over cellular behavior and tissue microenvironments. Nanomaterials such as nanoparticles, nanofibers, and nanotubes exhibit unique physicochemical properties that facilitate enhanced scaffold design, targeted drug delivery, and real-time monitoring of tissue regeneration. This paper reviews current advancements in applying nanotechnology to regenerative medicine, focusing on its role in tissue engineering, stem cell modulation, and biomolecular delivery. Key challenges including biocompatibility, toxicity, and scalability are discussed, alongside future prospects that suggest integration of nanotechnology with biofabrication and personalized medicine could revolutionize regenerative therapies.

DOI: http://doi.org/

 

 

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