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                <text>A Study of Simulated Working of A* and RRT* for Cargo Ship in ASVs</text>
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                <text>A*; ASVs; Path planning; RRT*</text>
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                <text>With the increased amount of algorithms for the path planning and collision avoidance of ASVs. The need for an unbiased protective path planning directs the need for decision in stochastic areas in the vast ocean for cargo ship. Autonomous surface vehicles should take appropriate decision on the path according to the dynamic environment and the obstacle that is before them. In some cases, environment, time, and size should be considered to acquire the fastest path and methods that could be suited for collision avoidance. This paper investigates the need for a well-known path planning method that has handled the situation based on the dynamic properties of the vehicle in the ocean. The simulated result shows a slight variation in their proposed path in terms of time and collision in terms of size. Therefore, using a realistic approach of the A* algorithm and the RRT*, we can handle the scenario of dynamic environment.  The Author(s), under exclusive license to Springer Nature Singapore Pte Ltd. 2024.</text>
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                <text>Daniel K.L.; Poonia R.C.</text>
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                <text>Lecture Notes in Networks and Systems, Vol-818, pp. 387-395.</text>
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                <text>ISSN: 23673370; ISBN: 978-981997861-8</text>
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                <text>Daniel K.L., Amity Institute of Information Technology, Amity University Rajasthan, Jaipur, 303002, India; Poonia R.C., Department of Computer Science, CHRIST (Deemed to be University), Delhi-NCR, New Delhi, 201003, India</text>
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                <text>An In-Depth Analysis of Collision Avoidance Path Planning Algorithms in Autonomous Vehicles</text>
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                <text>artificial intelligence; autonomous surface vehicle; collision avoidance; dynamic environment; Path planning; unmanned vehicle</text>
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                <text>Path planning is a way to define the motion of an autonomous surface vehicle (ASV) in any existing obstacle environment to enable the vehicle's movement by setting directions to avoid that can react to the obstacles in the vehicle's path. A good, planned path perceives the environment to the extent of uncertainty and tries to build or adapt its change in the path of motion. Efficient path planning algorithms are needed to alleviate deficiencies, that are to be modified using the deterministic path that leads the ASV to reach a goal or a desired location while finding optimal solution has become a challenge in the field of optimization along with a collision-free path, making path planning a critical thinker. The traditional algorithms have a lot of training and computation, making it difficult in a realistic environment. This review paper explores the different techniques available in path planning and collision avoidance of ASV in a dynamic environment. The objective of good path planning and collision avoidance for a dynamic environment is compared effectively with the existing obstacles movement of different vehicles. Different path planning technical approaches are compared with their performance and collision avoidance for unmanned vehicles in marine environments by early researchers. This paper gives us a clear idea for developing an effective path planning technique to overcome marine accidents in the dynamic ocean environment while choosing the shortest, obstacle-free path for Autonomous Surface Vehicles that can reduce risk and enhance the safety of unmanned vehicle movement in a harsh ocean environment.  2024 Bentham Science Publishers.</text>
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                <text>Recent Advances in Computer Science and Communications, Vol-17, No. 8, pp. 62-72.</text>
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                <text>ISSN: 26662558</text>
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                <text>Daniel K.L., Amity Institute of Information Technology, Amity University Rajasthan, Jaipur, 303002, India; Poonia R.C., Department of Computer Science, Christ (Deemed to be University), NCR, Delhi, 201003, India</text>
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                <text>Evaluating the effect of different ligands on the supercapacitance and hydrogen evolution reaction studies of Zn-Co MOF</text>
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              <elementText elementTextId="75718">
                <text>2,5-Dihydroxybenzoic acid; Benzene-1,2,4,5-tetracarboxylic acid; Hydrogen evolution reaction; Supercapacitor; Zn-Co MOF</text>
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                <text>Metal-Organic Frameworks (MOFs) have recently attracted a lot of interest because of their potential uses in energy storage and catalysis. In this study, we investigate the impact of various ligands on the electrochemical performance of Zn-Co MOFs for both energy storage and hydrogen evolution reaction (HER) studies. Specifically, Zn-Co MOFs are synthesized using different ligands, and their structural and electrochemical properties are characterized by a range of analytical techniques. 2,5-dihydroxybenzoic acid (DBA) and benzene-1,2,4,5-tetracarboxylic acid (BTC) are employed due to their distinct structural features and potential effects on MOF performance. Subsequently, electrochemical studies are conducted to assess the supercapattery performance and HER activity of these MOFs. The specific capacitance and overpotential value at 10 mA/cm2 of Zn-Co/DBA MOF is observed to be 1775.3 F/g and 186 mV, whereas that of Zn-Co/BTC MOF is found to be 136.6 F/g and 279 mV. The MOF synthesis using DBA as a ligand is more effective for energy-related applications. This study aims to report a multifunctional MOF composite for energy and environmental applications with better efficiency than other reported systems. Our findings provide insights into how the choice of ligand influences the structural properties and electrochemical behavior of Zn-Co MOFs, shedding light on the potential of these MOFs as versatile materials for energy storage and HER applications.  2024 Elsevier B.V.</text>
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                <text>Daniel N.K.; Varghese A.; Sunaja Devi K.R.; Chundattu S.J.; Sreekanth A.</text>
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                <text>Colloids and Surfaces A: Physicochemical and Engineering Aspects, Vol-703</text>
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                <text>Elsevier B.V.</text>
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                <text>2024-01-01</text>
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                <text>&lt;a href="https://doi.org/10.1016/j.colsurfa.2024.135177" target="_blank" rel="noreferrer noopener"&gt;https://doi.org/10.1016/j.colsurfa.2024.135177&lt;/a&gt;
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                <text>ISSN: 9277757; CODEN: CPEAE</text>
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                <text>Daniel N.K., Department of Sciences and Humanities, Christ University, Karnataka, Bangalore, 560029, India, Department of Chemistry, National Institute of Technology-Tiruchirappalli, Tamil Nadu, Tiruchirappalli, 620015, India; Varghese A., Department of Chemistry, Christ University, Karnataka, Bangalore, 560029, India; Sunaja Devi K.R., Department of Chemistry, Christ University, Karnataka, Bangalore, 560029, India; Chundattu S.J., Department of Sciences and Humanities, Christ University, Karnataka, Bangalore, 560029, India; Sreekanth A., Department of Chemistry, National Institute of Technology-Tiruchirappalli, Tamil Nadu, Tiruchirappalli, 620015, India</text>
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                <text>Effect of salt fingers on heat transfer for different non-uniform concentration profiles in a micropolar liquid</text>
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                <text>double-diffusive convection; heat tansfer; micropolar fluid; non-uniform concentration gradients; non-uniform temperature gradients; phase of concentration flow; salt fingers</text>
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                <text>Heat Transfer, Vol-51, No. 7, pp. 6450-6469.</text>
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                <text>Daniel N.M., Department of Mathematics, CHRIST (Deemed to be University), Bengaluru, India; Arun Kumar N., School of Engineering and Technology, CHRIST (Deemed to be University), Bengaluru, India; Lingamneni V., Department of Mathematics, Sir MV PU College, Karnataka, India; Tom T., Department of Mathematics, St. Francis College, Bangalore, India</text>
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                <text>The aim of the paper is to design, and simulate circular spike Coplanar Waveguide (CPW) fed antenna for wireless applications. The size of the antenna is very small occupying a space of 36mm 36mm including the substrate board. The antenna is designed using FR-4 substrate of thickness 1.6mm with dielectric permittivity of 4.4. The Coplanar Waveguide (CPW) fed system is used, so we can avoid double side printed board. This proposed antenna covers the bandwidth frequency range from 2.85GHz to 3.31GHZ and 5.09GHz to 5.65GHz for various wireless applications. The antenna design and performance are analyzed by using High Frequency Structure Simulator (HFSS) electromagnetic software for wireless applications according to frequency bands. The results of proposed antenna simulation on return loss, VSWR, gain and directivity are calculated.  2015 IEEE.</text>
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                <text>Daniel R.S.; Suganthi S.</text>
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                <text>Daniel R.S., ECE Department, Trichy Engineering College, India; Suganthi S., ECE Department, Christ University, Kengeri Campus, Bengaluru, India</text>
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                <text>Daniel, Emmanuel; Akkayasamy, Vigneshwaran Subbiah; Backia, Grace Anu; Varghese, Nisha; Pooja, S.; Souza, Greta D.</text>
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                <text>Enhancing Educational Engagement Among Kattunayakan Tribal Children Through Culturally Tailored Educational Activity Centres</text>
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                <text>Smart Business and Education in the Age of VUCA and BANI;pp.47-73</text>
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                <text>Daniel E., Christ University, India; Akkayasamy V.S., Christ University, India; Backia G.A., Christ University, India; Varghese N., Christ University, India; Pooja S., Indian Institute of Management, Rohtak, India; Souza G.D., Christ University, India</text>
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                <text>The deep forests of the Western Ghats are home to the aboriginal tribes Kattunayakans, Categorized under the Particularly Vulnerable Tribal Groups (PVTGs) in India. Despite various government schemes to improve their economic status, the literacy rates remain very low due to geographical isolation and traditional lifestyle. The main objective is to look into designing educational activity centres that exclusively cater to the needs of the Kattunayakan children, integrating indigenous knowledge and methods with teaching-learning sessions to promote lifelong learning. Technological progress and AI can be game changers for accessing quality education, including visual learning, language translation, and personalized methods while preserving cultural heritage. The research is based on a systematic narrative review, critically examining scholarly articles, policy and government reports. The outcome shows that these programs help improve academic skills while keeping them closer to their culture and identity.  2026 by IGI Global Scientific Publishing. All rights reserved.</text>
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                <text>Economic and Political Weekly;Volume;61;Issue;20;</text>
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                <text>Lance Larsens poem captures a particular kind of parental dissonance: the desire to honour ones child as they are now, while occasionally startled by a past that appears in mundane momentscontrasting the experiences of transpeople in a collective home in Bhopal.  2026, Economic and Political Weekly. All rights reserved.</text>
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                <text>Khasi hills is situated in the northern part of India. Many issues of domestic issues are reported in this area. The reasons, intensity or frequency of domestic violence varies according to the cultural background and socio-economic class. In many societies, women face a lot of issues associated with the culture and traditional practices of that community. According to certain traditional practices followed in societies, women are expected to conduct herself according to what has been taught and practice for generations. Violations of those norms lead to severe consequences. Domestic violence is also an outcome of such norms followed in the society. Therefore, the present study focuses on understanding the traditional practices followed in the Khasi community and its effect on domestic violence. For the study, the researcher selected 150 women from East Khasi Hills Districts. A descriptive research design is used for the study. Convenient sampling method was used along with a close-ended questionnaire for gathering information. Descriptive statistics, Man-Whitney test, Chi-Square, Spearman Correlation were used for analysis of the different traditional practices and type of domestic violence. The research finding indicates that women in the Khasi hills faced physical and psychological violence, in which psychological violence is found to be more prominent. Inheritance is one of the factors that have a significant impact on domestic violence. The traditional practices followed by the Khasi community is a reason for women being abused by their spouse. Effective intervention programme and Capacity Building for different Stakeholders on the different causes and preventive measures on incidence of domestic violence can bring about positive change in matters related to domestic violence towards women in the state of Meghalaya.</text>
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                <text>Machine Learning's Transformative Role in Human Activity Recognition Analysis</text>
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                <text>Activity Recognition; Artificial In telligence (AI); Computer Vision; Deep Learning; Human-Computer Interaction (HCI); Machine Learning; Motion Analysis; Pattern Recognition; Video Surveillance</text>
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                <text>Human action recognition (HAR) is a burgeoning field of computer vision that seeks to automatically understand and classify the intricate movements performed by humans. From the graceful leaps of a ballerina to the decisive strides of a surgeon, HAR aims to decipher the language of motion, unlocking a plethora of potential applications. This abstract delves into the core of HAR, highlighting its key challenges and promising avenues for advancement. We begin by outlining the various modalities used for action recognition, such as RGB videos, depth sensors, and skeletal data, each offering unique perspectives on the human form. Next, we delve into the diverse set of algorithms employed for HAR, ranging from traditional machine learning techniques to the burgeoning realm of deep learning. We explore the strengths and limitations of each approach, emphasizing the crucial role of feature extraction and model selection in achieving accurate recognition. Challenges in Human Action Recognition (HAR), such as intra-class variations, inter-class similarities, and environmental factors. Ongoing efforts include robust feature development and contextual integration. The paper envisions HAR's future impact on healthcare, robotics, video surveillance, and augmented reality, presenting an invitation to explore the transformative world of human action recognition and its potential to enhance our interaction with technology.   2024 IEEE.</text>
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                <text>Darshan R.; Janmitha S.N.; Deekshith S.; Kulkarni P.; Rajesh T.M.; Gurudas V.R.</text>
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                <text>Proceedings of InC4 2024 - 2024 IEEE International Conference on Contemporary Computing and Communications</text>
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            <description>An entity responsible for making the resource available</description>
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              <elementText elementTextId="165092">
                <text>Institute of Electrical and Electronics Engineers Inc.</text>
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                <text>&lt;a href="https://doi.org/10.1109/InC460750.2024.10649391" target="_blank" rel="noreferrer noopener"&gt;https://doi.org/10.1109/InC460750.2024.10649391&lt;/a&gt;
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            <description>Information about rights held in and over the resource</description>
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              <elementText elementTextId="165095">
                <text>Restricted Access</text>
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              <elementText elementTextId="165096">
                <text>ISBN: 979-835038365-2</text>
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            <description>A language of the resource</description>
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              <elementText elementTextId="165098">
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            <description>The spatial or temporal topic of the resource, the spatial applicability of the resource, or the jurisdiction under which the resource is relevant</description>
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              <elementText elementTextId="165100">
                <text>Darshan R., Dayananda Sagar university, Department of CSE, Bengaluru, India; Janmitha S.N., Dayananda Sagar university, Department of CSE, Bengaluru, India; Deekshith S., Dayananda Sagar university, Department of CSE, Bengaluru, India; Kulkarni P., Dayananda Sagar university, Department of CSE, Bengaluru, India; Rajesh T.M., Dayananda Sagar university, Department of CSE, Bengaluru, India; Gurudas V.R., CHRIST University, Department of CSE, Bangalore, India</text>
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  <item itemId="15506" public="1" featured="0">
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          <elementContainer>
            <element elementId="50">
              <name>Title</name>
              <description>A name given to the resource</description>
              <elementTextContainer>
                <elementText elementTextId="64">
                  <text>Articles</text>
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    <itemType itemTypeId="19">
      <name>Article</name>
      <description>Faculty Publications -Articles</description>
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        <elementContainer>
          <element elementId="50">
            <name>Title</name>
            <description>A name given to the resource</description>
            <elementTextContainer>
              <elementText elementTextId="113832">
                <text>Role of Silk Fiber Loading on Physico-Mechanical Properties of Epoxy Composites</text>
              </elementText>
            </elementTextContainer>
          </element>
          <element elementId="49">
            <name>Subject</name>
            <description>The topic of the resource</description>
            <elementTextContainer>
              <elementText elementTextId="113833">
                <text>flexural properties; fractography; impact strength; interlaminar shear strength; Silk fiber reinforced biocomposites; tensile properties</text>
              </elementText>
            </elementTextContainer>
          </element>
          <element elementId="41">
            <name>Description</name>
            <description>An account of the resource</description>
            <elementTextContainer>
              <elementText elementTextId="113834">
                <text>Researchers have suggested the usage of lightweight materials in the automotive and other engineering components which has proven to be one of the potential ways to meet demand for fuel efficiency and eliminate greenhouse gas emissions generated by the manufacturing industries. In this study, silk fiber (Bombyx-mori) reinforced epoxy biocomposites were fabricated by hand layup method with different loadings of fiber and their physico-mechanical properties were studied following acceptable ASTM standards. The properties of the epoxy matrix were significantly enhanced with the silk fiber loading, displaying optimum properties at 50wt. % silk fiber loading. The findings also led that morphology of silk fiber and surface adhesion with the epoxy matrix affects the properties of biocomposites. Such findings provide perspective into the benefits of fiber reinforcements to the physio-mechanical performance of the epoxy resin. The mechanism of failure and consequently the adhesion between fibers and matrix were analyzed by observing the photomicrographs of the damaged coupons.  2021 Taylor &amp;amp; Francis.</text>
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          </element>
          <element elementId="39">
            <name>Creator</name>
            <description>An entity primarily responsible for making the resource</description>
            <elementTextContainer>
              <elementText elementTextId="113835">
                <text>Darshan S.M.; Suresha B.</text>
              </elementText>
            </elementTextContainer>
          </element>
          <element elementId="48">
            <name>Source</name>
            <description>A related resource from which the described resource is derived</description>
            <elementTextContainer>
              <elementText elementTextId="113836">
                <text>Journal of Natural Fibers, Vol-19, No. 13, pp. 6377-6388.</text>
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          <element elementId="45">
            <name>Publisher</name>
            <description>An entity responsible for making the resource available</description>
            <elementTextContainer>
              <elementText elementTextId="113837">
                <text>Taylor and Francis Ltd.</text>
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            <name>Date</name>
            <description>A point or period of time associated with an event in the lifecycle of the resource</description>
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              <elementText elementTextId="113838">
                <text>2022-01-01</text>
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            <name>Identifier</name>
            <description>An unambiguous reference to the resource within a given context</description>
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              <elementText elementTextId="113839">
                <text>&lt;a href="https://doi.org/10.1080/15440478.2021.1921654" target="_blank" rel="noreferrer noopener"&gt;https://doi.org/10.1080/15440478.2021.1921654&lt;/a&gt;
&lt;br /&gt;&lt;br /&gt;&lt;a href="https://www.scopus.com/inward/record.uri?eid=2-s2.0-85108255172&amp;amp;doi=10.1080%2F15440478.2021.1921654&amp;amp;partnerID=40&amp;amp;md5=c2e9d75f32bffd8ef22262da0552ee4f" target="_blank" rel="noreferrer noopener"&gt;https://www.scopus.com/inward/record.uri?eid=2-s2.0-85108255172&amp;amp;doi=10.1080%2f15440478.2021.1921654&amp;amp;partnerID=40&amp;amp;md5=c2e9d75f32bffd8ef22262da0552ee4f&lt;/a&gt;</text>
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            <name>Rights</name>
            <description>Information about rights held in and over the resource</description>
            <elementTextContainer>
              <elementText elementTextId="113840">
                <text>Restricted Access</text>
              </elementText>
            </elementTextContainer>
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                <text>ISSN: 15440478</text>
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            <name>Format</name>
            <description>The file format, physical medium, or dimensions of the resource</description>
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                <text>Online</text>
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            <description>A language of the resource</description>
            <elementTextContainer>
              <elementText elementTextId="113843">
                <text>English</text>
              </elementText>
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          </element>
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            <description>The nature or genre of the resource</description>
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                <text>Article</text>
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              <elementText elementTextId="113845">
                <text>Darshan S.M., Department of Mechanical Engineering, The National Institute of Engineering, Mysuru, India, Department of Mechanical Engineering, CHRIST (Deemed to Be University), Bengaluru, India; Suresha B., Department of Mechanical Engineering, The National Institute of Engineering, Mysuru, India</text>
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              <description>A name given to the resource</description>
              <elementTextContainer>
                <elementText elementTextId="51377">
                  <text>Conference Papers</text>
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          <element elementId="50">
            <name>Title</name>
            <description>A name given to the resource</description>
            <elementTextContainer>
              <elementText elementTextId="181823">
                <text>Effect of Halloysite Nanotubes on Physico-Mechanical Properties of Silk/Basalt Fabric Reinforced Epoxy Composites</text>
              </elementText>
            </elementTextContainer>
          </element>
          <element elementId="49">
            <name>Subject</name>
            <description>The topic of the resource</description>
            <elementTextContainer>
              <elementText elementTextId="181824">
                <text>Flexural properties; HNTs; Impact energy; Mechanical Testing; SF-BF/Ep composites</text>
              </elementText>
            </elementTextContainer>
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          <element elementId="41">
            <name>Description</name>
            <description>An account of the resource</description>
            <elementTextContainer>
              <elementText elementTextId="181825">
                <text>Natural fiber reinforced polymer composites have become more attractive due to their high specific strength, light weight and environmental concern. However, some limitations such as low modulus and poor moisture resistance were reported. This paper presents the role of halloysite nanotubes (HNTs) on physico-mechanical properties of bidirectional silk and basalt fiber reinforced epoxy (SF-BF/Ep) hybrid composites. Vacuum bagging and ultra-sonication method were used for the fabrication of hybrid composite slabs. The effect of HNT loadings (1.5, 3 and 4.5 wt. %) on physico-mechanical characteristics like density, hardness, flexural and impact properties of SF-BF/Ep composites were determined according to ASTM standards. Experimental results revealed that the incorporation of HNTs improves the mechanical properties. The impact strength of SF-BF/Ep is predominant at 3 wt. % HNT loading where the impact strength surges to 568.67 J/m, which may render HNT filled SF-BF/Ep desirable for various toughness-critical structural applications. The test results demonstrated that SF-BF/Ep-3HNT coded composites exhibited improved mechanical properties among the all composites.  2022 Trans Tech Publications Ltd, Switzerland.</text>
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              <elementText elementTextId="181826">
                <text>Darshan S.M.; Suresha B.</text>
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            <description>A related resource from which the described resource is derived</description>
            <elementTextContainer>
              <elementText elementTextId="181827">
                <text>Materials Science Forum, Vol-1048 MSF, pp. 21-32.</text>
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            <name>Publisher</name>
            <description>An entity responsible for making the resource available</description>
            <elementTextContainer>
              <elementText elementTextId="181828">
                <text>Trans Tech Publications Ltd</text>
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            <description>A point or period of time associated with an event in the lifecycle of the resource</description>
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              <elementText elementTextId="181829">
                <text>2022-01-01</text>
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                <text>&lt;a href="https://doi.org/10.4028/www.scientific.net/MSF.1048.21" target="_blank" rel="noreferrer noopener"&gt;https://doi.org/10.4028/www.scientific.net/MSF.1048.21&lt;/a&gt;
&lt;br /&gt;&lt;br /&gt;&lt;a href="https://www.scopus.com/inward/record.uri?eid=2-s2.0-85123378914&amp;amp;doi=10.4028%2Fwww.scientific.net%2FMSF.1048.21&amp;amp;partnerID=40&amp;amp;md5=872635a1a2e7c8f924d3f05270c79065" target="_blank" rel="noreferrer noopener"&gt;https://www.scopus.com/inward/record.uri?eid=2-s2.0-85123378914&amp;amp;doi=10.4028%2fwww.scientific.net%2fMSF.1048.21&amp;amp;partnerID=40&amp;amp;md5=872635a1a2e7c8f924d3f05270c79065&lt;/a&gt;</text>
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            <name>Rights</name>
            <description>Information about rights held in and over the resource</description>
            <elementTextContainer>
              <elementText elementTextId="181831">
                <text>Restricted Access</text>
              </elementText>
            </elementTextContainer>
          </element>
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              <elementText elementTextId="181832">
                <text>ISSN: 2555476; ISBN: 978-303571268-1; CODEN: MSFOE</text>
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            <name>Format</name>
            <description>The file format, physical medium, or dimensions of the resource</description>
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              <elementText elementTextId="181833">
                <text>Online</text>
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            <name>Language</name>
            <description>A language of the resource</description>
            <elementTextContainer>
              <elementText elementTextId="181834">
                <text>English</text>
              </elementText>
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          </element>
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            <description>The spatial or temporal topic of the resource, the spatial applicability of the resource, or the jurisdiction under which the resource is relevant</description>
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              <elementText elementTextId="181836">
                <text>Darshan S.M., Centre for Composite Material Research, Department of Mechanical Engineering, The National Institute of Engineering, Karnataka, Mysuru, 570 008, India, Department of Mechanical Engineering, CHRIST (Deemed to be University), Karnataka, Bengaluru, 560 029, India; Suresha B., Centre for Composite Material Research, Department of Mechanical Engineering, The National Institute of Engineering, Karnataka, Mysuru, 570 008, India</text>
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            <element elementId="50">
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              <description>A name given to the resource</description>
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                <elementText elementTextId="51377">
                  <text>Conference Papers</text>
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      <name>Conference Paper</name>
      <description>Faculty Publications- Conference Papers</description>
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        <description>The Dublin Core metadata element set is common to all Omeka records, including items, files, and collections. For more information see, http://dublincore.org/documents/dces/.</description>
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          <element elementId="50">
            <name>Title</name>
            <description>A name given to the resource</description>
            <elementTextContainer>
              <elementText elementTextId="185792">
                <text>Effect of basalt fiber hybridization on mechanical properties of silk fiber reinforced epoxy composites</text>
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              <elementText elementTextId="185793">
                <text>Failure mechanisms; Hybrid composites; Mechanical properties; Microstructure; Silk/basalt fiber</text>
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                <text>Poor mechanical properties and constraints on production presently limit the utilization of bio-based reinforcing agents to non-structural and structural automotive elements. The conjugation of natural fibre with volcanic rock fibre provides a way to improve the mechanical properties of composites over natural fibre alone. In this study, physico-mechanical properties of hybrid fibre (silk and basalt) reinforced epoxy composites were found by experimentation following acceptable ASTM standards. Hybrid composites were produced by combining silk/basalt fibres in the ratio of 50:0, 25:25 and 30:20, whereas overall weight fraction was maintained at 0.5. The experimental results showed that the performance of combined fibres were superior compared to that of silk fibre bolstered epoxy composites. Among the 2 varieties of hybrids, the silk/basalt (25:25 by weight ratio) combination offered the very best hardness, strength, modulus, and toughness to the epoxy matrix owing to the similar modulus and synergistic interaction between the two reinforcing fibres. The results also steered that the morphology and surface adhesion affected the strength of the hybrid composites. These observations give insight into the advantages of various fibre reinforcements to the mechanical performance of epoxy matrix which is considered to be brittle. The failure mechanisms and the adhesion between fibres and matrix were studied by analysing the photomicrographs of broken coupons.  2020 Elsevier Ltd.</text>
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              <elementText elementTextId="185795">
                <text>Darshan S.M.; Suresha B.</text>
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              <elementText elementTextId="185796">
                <text>Materials Today: Proceedings, Vol-43, pp. 986-994.</text>
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                <text>&lt;a href="https://doi.org/10.1016/j.matpr.2020.07.618" target="_blank" rel="noreferrer noopener"&gt;https://doi.org/10.1016/j.matpr.2020.07.618&lt;/a&gt;
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                <text>ISSN: 22147853</text>
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                <text>Darshan S.M., Department of Mechanical Engineering, National Institute of Engineering, Mysuru, 570008, India, Department of Mechanical Engineering, CHRIST Deemed to Be University, Bengaluru, 560029, India; Suresha B., Department of Mechanical Engineering, National Institute of Engineering, Mysuru, 570008, India</text>
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            <elementTextContainer>
              <elementText elementTextId="187321">
                <text>Mechanical and abrasive wear behaviour of waste silk fiber reinforced epoxy biocomposites using taguchi method</text>
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          <element elementId="49">
            <name>Subject</name>
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            <elementTextContainer>
              <elementText elementTextId="187322">
                <text>Epoxy biocomposites; Specific wear rate; Taguchi technique; Wear</text>
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            </elementTextContainer>
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          <element elementId="41">
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            <description>An account of the resource</description>
            <elementTextContainer>
              <elementText elementTextId="187323">
                <text>The aim of this research article is to study the static mechanical properties and abrasive wear behavior of epoxy biocomposites reinforced with different weight percentage of waste silk fibers. The effect of parameters such as velocity (A), load (B), fiber loading (C) and abrading distance (D) on abrasive wear has been considered using Taguchi's L25 orthogonal array. The objective is to examine parameters which significantly affect the abrasive wear of biocomposites. The addition of silk fiber has resulted in improved flexural properties of the epoxy matrix. The results of ANOVA indicated that the parameter which played a significant role was abrading distance followed by fiber loading, load and sliding velocity.  2019 Trans Tech Publications Ltd, Switzerland.</text>
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              <elementText elementTextId="187324">
                <text>Darshan S.M.; Suresha B.</text>
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            <name>Source</name>
            <description>A related resource from which the described resource is derived</description>
            <elementTextContainer>
              <elementText elementTextId="187325">
                <text>Materials Science Forum, Vol-969 MSF, pp. 787-793.</text>
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            <elementTextContainer>
              <elementText elementTextId="187326">
                <text>Trans Tech Publications Ltd</text>
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                <text>&lt;a href="https://doi.org/10.4028/www.scientific.net/MSF.969.787" target="_blank" rel="noreferrer noopener"&gt;https://doi.org/10.4028/www.scientific.net/MSF.969.787&lt;/a&gt;
&lt;br /&gt;&lt;br /&gt;&lt;a href="https://www.scopus.com/inward/record.uri?eid=2-s2.0-85072949384&amp;amp;doi=10.4028%2Fwww.scientific.net%2FMSF.969.787&amp;amp;partnerID=40&amp;amp;md5=858e8cfeefb796790ec26e7a257a4338" target="_blank" rel="noreferrer noopener"&gt;https://www.scopus.com/inward/record.uri?eid=2-s2.0-85072949384&amp;amp;doi=10.4028%2fwww.scientific.net%2fMSF.969.787&amp;amp;partnerID=40&amp;amp;md5=858e8cfeefb796790ec26e7a257a4338&lt;/a&gt;</text>
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              <elementText elementTextId="187329">
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              <elementText elementTextId="187330">
                <text>ISSN: 2555476; ISBN: 978-303571432-6; CODEN: MSFOE</text>
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                <text>English</text>
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                <text>Darshan S.M., Department of Mechanical Engineering, The National Institute of Engineering, Mysuru, 570 008, Karnataka, India, Department of Mechanical Engineering, CHRIST University, Bengaluru, 560 029, Karnataka, India; Suresha B., Department of Mechanical Engineering, The National Institute of Engineering, Mysuru, 570 008, Karnataka, India</text>
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                <elementText elementTextId="44496">
                  <text>Book Chapter</text>
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          <element elementId="50">
            <name>Title</name>
            <description>A name given to the resource</description>
            <elementTextContainer>
              <elementText elementTextId="153346">
                <text>Mechanical and Wear Behavior of Halloysite Nanotubes Filled Silk/Basalt Hybrid Composites Using Response Surface Methodology</text>
              </elementText>
            </elementTextContainer>
          </element>
          <element elementId="49">
            <name>Subject</name>
            <description>The topic of the resource</description>
            <elementTextContainer>
              <elementText elementTextId="153347">
                <text>Box-Behnken design; HNTs; Mechanical properties; Response surface methodology; SF + BF/Ep hybrid composites; Wear; Wear mechanisms</text>
              </elementText>
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          </element>
          <element elementId="41">
            <name>Description</name>
            <description>An account of the resource</description>
            <elementTextContainer>
              <elementText elementTextId="153348">
                <text>The aim of this study is to develop bio-friendly light weight polymer nanocomposites for load bearing applications and to evaluate the influence of halloysite nanotubes (HNTs) on mechanical as well as wear behavior of silk fiber (SF) and basalt fiber (BF) reinforced epoxy (Ep) composites. HNT filled biocomposites were fabricated using vacuum bagging technique. The Box-Behnken design (BBD) of experiment with Response surface methodology (RSM) was used to conduct the dry-sliding wear tests on a pin on disc apparatus. Tribo-mechanical properties and worn surface micrographs of hybrid composite samples were analyzed. Hardness, tensile strength and wear resistance behavior of SF + BF/Ep hybrid composites were substantially improved with the incorporation of HNTs. It was observed from the confirmation test that there is a strong agreement between the experimental findings as well as the predicted values, with a minimum reported error of &amp;lt;5% for HNT-SF + BF/Ep hybrid nanocomposites. SEM micrographs of the worn-out surface of HNT filled SF + BF/Ep composite exhibited fiber breakage, pulverized matrix, good interfacial bonding and fractured fibers. The novelty of the current research work is the development of eco-friendly polymeric composites for wear resistant and structural applications. The effect of hybridization (fiberssilk and basalt, fillersHNTs) on the tribo-mechanical properties of polymeric composites were investigated for the first time. The study showed that the mechanical as well as the tribological properties of SF and BF reinforced epoxy composites were enhanced with the addition of nanofiller.  The Author(s), under exclusive license to Springer Nature Singapore Pte Ltd. 2023.</text>
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            <elementTextContainer>
              <elementText elementTextId="153349">
                <text>Darshan S.M.; Suresha B.; Harshavardhan B.; Vanarotti M.B.; Waddar S.; Thomas S.; Xavier L.F.</text>
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              <elementText elementTextId="153350">
                <text>Springer Proceedings in Materials, Vol-32, pp. 387-402.</text>
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            <description>An entity responsible for making the resource available</description>
            <elementTextContainer>
              <elementText elementTextId="153351">
                <text>Springer Nature</text>
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              <elementText elementTextId="153352">
                <text>2023-01-01</text>
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                <text>&lt;a href="https://doi.org/10.1007/978-981-99-5567-1_29" target="_blank" rel="noreferrer noopener"&gt;https://doi.org/10.1007/978-981-99-5567-1_29&lt;/a&gt;
&lt;br /&gt;&lt;br /&gt;&lt;a href="https://www.scopus.com/inward/record.uri?eid=2-s2.0-85174944072&amp;amp;doi=10.1007%2F978-981-99-5567-1_29&amp;amp;partnerID=40&amp;amp;md5=e1ce6df1ce0f22917d3a4f2a01f6ab3b" target="_blank" rel="noreferrer noopener"&gt;https://www.scopus.com/inward/record.uri?eid=2-s2.0-85174944072&amp;amp;doi=10.1007%2f978-981-99-5567-1_29&amp;amp;partnerID=40&amp;amp;md5=e1ce6df1ce0f22917d3a4f2a01f6ab3b&lt;/a&gt;</text>
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              <elementText elementTextId="153355">
                <text>ISSN: 26623161</text>
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              <elementText elementTextId="153357">
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                <text>Darshan S.M., Department of Mechanical Engineering, School of Engineering and Technology, CHRIST (Deemed to be University), Bengaluru, 570008, India; Suresha B., Department of Mechanical Engineering, The National Institute of Engineering, Mysuru, 570008, India; Harshavardhan B., Department of Mechanical Engineering, The National Institute of Engineering, Mysuru, 570008, India; Vanarotti M.B., Department of Mechanical Engineering, Kolhapur Institute of Technologys, College of Engineering, Kolhapur, 416234, India; Waddar S., Department of Mechanical Engineering, MVJ College of Engineering, Bengaluru, 560067, India; Thomas S., Department of Mechanical Engineering, School of Engineering and Technology, CHRIST (Deemed to be University), Bengaluru, 570008, India; Xavier L.F., Department of Mechanical Engineering, School of Engineering and Technology, CHRIST (Deemed to be University), Bengaluru, 570008, India</text>
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          <elementContainer>
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          <element elementId="50">
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            <description>A name given to the resource</description>
            <elementTextContainer>
              <elementText elementTextId="111900">
                <text>Optimization of Abrasive Wear Parameters of Halloysite Nanotubes Reinforced Silk/Basalt Hybrid Epoxy Composites using Taguchi Approach</text>
              </elementText>
            </elementTextContainer>
          </element>
          <element elementId="49">
            <name>Subject</name>
            <description>The topic of the resource</description>
            <elementTextContainer>
              <elementText elementTextId="111901">
                <text>Basalt fibre; HNTs; Hybrid nanocomposites; Silk fibre; Taguchi method; Three body abrasive wear</text>
              </elementText>
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          </element>
          <element elementId="41">
            <name>Description</name>
            <description>An account of the resource</description>
            <elementTextContainer>
              <elementText elementTextId="111902">
                <text>The demand for environmentally friendly and sustainable materials for nonstructural and structural applications grows by the day. Polymeric composites reinforced with fillers and fibres are considered to have increased strength and desirable wear resistance. Abrasive wear of industrial and agricultural based components are currently one of the most serious issue. Therefore, the current research reports on the influence of Halloysite-Nanotubes (HNTs) loading on the three body abrasive behavior of bi-directional silk fibre (SF) and basalt fibre (BF) reinforced epoxy (Ep) composites. Rubber wheel with dry sand abrasion testing in accordance with ASTM G65-16e1 was performed with four control parameters such as filler content, load, abrading distance and silica sand size. The tests were planned as per orthogonal array of Taguchi (L27). Significant impact of control factors were identified using ANOVA (Analysis of variance). The results demonstrated that adding HNTs to SF-BF/Ep nanocomposites significantly improved the wear resistance and the combination of A2, B1, C3 and D1 control factors yields the lower specific wear rate (SWR). Findings exhibit that the load and abrading distance were the most significant parameters affecting the abrasive wear of SF-BF/Ep nanocomposites followed by filler content and silica sand size. Microstructural features were observed via scanning-electron-microscopy (SEM).  2022 Published by Faculty of Engineering.</text>
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              <elementText elementTextId="111903">
                <text>Darshan S.M.; Suresha B.; Jamadar I.M.</text>
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              <elementText elementTextId="111904">
                <text>Tribology in Industry, Vol-44, No. 2, pp. 253-267.</text>
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                <text>Darshan S.M., Centre for Composite Material Research, Department of Mechanical Engineering, The National Institute of Engineering, Karnataka, Mysuru, 570008, India, Department of Mechanical Engineering, CHRIST (Deemed to be University), Karnataka, Bengaluru, 570008, India; Suresha B., Centre for Composite Material Research, Department of Mechanical Engineering, The National Institute of Engineering, Karnataka, Mysuru, 570008, India; Jamadar I.M., Centre for Composite Material Research, Department of Mechanical Engineering, The National Institute of Engineering, Karnataka, Mysuru, 570008, India</text>
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                <text>Comprehensive Analytical Chemistry, Vol-107, pp. 183-230.</text>
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                <text>Darshan T.G., Department of Chemistry, CHRIST University, Bengaluru, India; Monicashree K.V., Department of Chemistry, CHRIST University, Bengaluru, India; Bhat B., Department of Chemistry, CHRIST University, Bengaluru, India; Bathinapatla A., Department of Chemistry, CMR Institute of Technology, Bengaluru, India, Centre of Excellence Materials &amp;amp; Sensors, CMR Institute of Technology, Bengaluru, India; Kanchi S., Department of Chemistry, CHRIST University, Bengaluru, India</text>
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