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Item 360° Rotating Solar Tracking System(2025-04-28) Keneisedelie suohu; Keviselhou solo; Mhaler sekhose; Thejangulie soloConverting solar energy into electrical energy represent one the most suitable and challenging energetic technologies, in continuous development, being clean, silent,and reliable,with very low maintenance costs and minimal ecological impact .A photovoltaic panel is a device used to capture the sun’s radiation. These panels consist of an array of cells comprising of silicon(derived from sand ). The cells are connected together forming a complete photovoltaic (solar) panel. When the sunlight strikes the solar cells , the photovoltaic effect enables converting solar energy to electrical energy. The efficiency of this process depends significantly on the orientation of the panel relative to the sun. Stationary mounted photovoltaic (PV) panels are only perpendicular to the sun, during the day. To maximize energy capture throughout the day , tracking systems are employed , enabling solar panels to follow the sun’s movement , There are four types of tracking methods:active , passive , chronological and manual systems.Item Analysis and design of residential building by REVIT software(2025-04-28) VISHAL H R; NITHIN M; ANKUSH B SStructural engineering is a specialized branch of civil engineering that focuses on the design and analysis of structures such as buildings, bridges, dams, and other infrastructure. Structural engineers are responsible for ensuring the safety, stability, and durability of these structures by applying principle of physics, mathematics, and material science. They work closely with architects, contractors, and other professionals to create innovative and cost-effective solutions that meet the needs of clients while adhering to building codes and regulations. Structural engineering plays a crucial role in shaping the built environment and ensuring the integrity of our infrastructure.Item Analysis, Modeling And Design Of Swing(2025-04-28) M KARUN; DHANUSH; BHARATH SIMHA REDDY; MOHAN RAJ M; B SOORYA PRAKASHSwing bridges are a type of movable bridge that rotate around a central point to allow vessels to pass through while maintaining the flow of road traffic. Unlike lift or bascule bridges, which raise or tilt, rotary swing bridges pivot horizontally to open and close, providing a compact solution for locations with limited space. These bridges are particularly useful in areas where waterways need to accommodate large vessels without disrupting road traffic for extended periods. This project focuses on the design, function, and applications of rotary swing bridges, examining the mechanical and structural systems that enable their rotation. Key components of the bridge include a central pivot, support bearings, and a power system, which can be operated through hydraulic, electric, or mechanical means. The project explores the challenges involved in the design of these bridges, including the durability of rotating components, the safety protocols for both pedestrians and vehicles, and the control systems required for efficient operation.Item Basic Applied Mathmetics -II(NHCE, 2024)Item C# and .NET -22ISE451(NHCE, 2024)Item Computer Organization (ISE45)(2020-05-08T07:49:07Z) New Horizon College of EngineeringItem Database Management Systems(2021-05-08T10:30:47Z) New Horizon College of EngineeringItem Database Management Systems(2020-05-08T05:15:56Z) New Horizon College of EngineeringItem Database Management Systems - 22ISE42(NHCE, 2024)Item Design and Analysis of Algorithms(2012-09-28T07:19:54Z)Item Discrete Mathematics and Graph Theory(2020-05-07T07:31:58Z) New Horizon College of EngineeringItem Discrete Mathematics and Graph Theory (22MAC41)(NHCE, 2025) NHCEItem Discrete Mathematics and Graph Theory (All Modules)(2021-07-16T11:46:37Z) New Horizon College of EngineeringItem Environmental Science and Awareness (All Modules)(2021-07-15T07:10:15Z) New Horizon College of EngineeringItem Formation of floor Tiles from Plastic Wastage(2025-04-28) FEROZ AHMAD; GAURAV THAPA; MOHAMMED SHAFAN AHMED; MOHAMMAD MUSHARAF PARRAY; SAI DHARSHAN MThe goal of the current study is to create floor tiles without the use of cement by combining waste plastic in various amounts with sand and comparing the results to those of regular cement tiles. The finding has implications for polypropylene-based polymers. Tests such as water absorption, transverse resistance, impact resistance, and abrasion resistance were performed on the plastic tile in accordance with IS criteria in order to assess various mechanical and physical attributes. The outcomes of these tests were then contrasted with those of regular cement tiles. When compared to regular cement tiles, the results obtained have demonstrated superior performance. According to this study, it may be possible to make floor tiles using plastic waste as a binding material rather than cement. Nowadays, the majority of the plastic is wasted in garbage which causes lot of pollution to environment, To reduce this we can reuse plastic waste as plastic tiles.Item Healthcare Chatbot(NHCE, 2024) Rahul S 1NH21IS122 Shetty Atharva Manjunath 1NH21IS144 GANAPATHI C K 1NH21EC058 NAVISH V 1NH21EC108Item Life Skills for Engineers(2020-05-18T05:29:28Z) New Horizon College of EngineeringItem Microprocessors (ISE44)(2020-05-08T07:45:21Z) New Horizon College of EngineeringItem Mitigating coastal soil erosion using hdpe net and Bulb pile footing(2025-04-28) AJAY V; SRUJAN S K; SUDARSHAN S G; Y P SHIVARAJ NAIK; OWAIS AZIZ WANIGlobally, ecosystems, infrastructure, and livelihoods are all seriously threatened by coastal soil erosion. The origins, effects, and mitigation strategies of soil erosion in coastal regions are investigated in this study. We evaluate how well beach replenishment, coastal engineering structures, plant restoration, and sustainable land-use planning reduce erosion by combining field observations, remote sensing, and GIS analysis. The findings demonstrate that soil loss may be successfully reduced, biodiversity can be preserved, and ecosystem services can be supported by a mix of natural and manmade solutions. examines land deterioration, soil erosion, and hydroclimatic changes. Increased hazards of soil erosion are found, especially in metropolitan areas, and policy modifications are recommended to improve resistance to hydroclimatic oscillations. emphasizes the use of adaptable methods for environmental stewardship, uses CSLE and GIS/RS technology to quantify soil erosion, finds that wooded regions have superior soil and ability to conserve water. Agronomic, agnotological, and mechanical procedures are identified in this systematic assessment of control methods used in Asian agricultural land. It also urges further study and useful strategies to lessen soil erosion. emphasizes the value of adaptable strategies for environmental stewardship.Item Object Oriented Programming with java(2021-05-08T10:18:43Z) New Horizon College of Engineering
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