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    +91 88943 57155
    Pune, Maharashtra, India

    Duration

    4 Years

    Agriculture

    Sankalchand Patel University Mehsana
    Duration
    4 Years
    Agriculture UG OFFLINE

    Duration

    4 Years

    Agriculture

    Sankalchand Patel University Mehsana
    Duration
    Apply

    Fees

    ₹8,00,000

    Placement

    95.0%

    Avg Package

    ₹6,00,000

    Highest Package

    ₹12,00,000

    OverviewAdmissionsCurriculumFeesPlacements
    4 Years
    Agriculture
    UG
    OFFLINE

    Fees

    ₹8,00,000

    Placement

    95.0%

    Avg Package

    ₹6,00,000

    Highest Package

    ₹12,00,000

    Seats

    120

    Students

    1,200

    ApplyCollege

    Seats

    120

    Students

    1,200

    Curriculum

    Comprehensive Course Structure

    The Agriculture program at Sankalchand Patel University Mehsana is structured to provide students with a comprehensive and progressive learning experience over four years. The curriculum is designed to build upon foundational knowledge and gradually introduce students to specialized areas of agriculture. The program is divided into eight semesters, with each semester comprising a combination of core courses, departmental electives, science electives, and laboratory sessions. The course structure is carefully planned to ensure that students develop both theoretical knowledge and practical skills necessary for a successful career in agriculture.

    SemesterCourse CodeCourse TitleCredit Structure (L-T-P-C)Pre-requisites
    1AG101Introduction to Agriculture3-0-0-3-
    1AG102Basic Biology3-0-0-3-
    1AG103Basic Chemistry3-0-0-3-
    1AG104Basic Physics3-0-0-3-
    1AG105Mathematics for Agriculture3-0-0-3-
    1AG106Introduction to Agricultural Sciences2-0-0-2-
    1AG107Basic Soil Science2-0-0-2-
    1AG108Basic Crop Production2-0-0-2-
    1AG109Introduction to Agricultural Engineering2-0-0-2-
    1AG110Basic Agronomy2-0-0-2-
    1AG111Basic Plant Physiology2-0-0-2-
    1AG112Introduction to Agricultural Economics2-0-0-2-
    1AG113Basic Agricultural Statistics2-0-0-2-
    1AG114Basic Agricultural Extension2-0-0-2-
    1AG115Introduction to Agricultural Informatics2-0-0-2-
    2AG201Plant Breeding and Genetics3-0-0-3AG102, AG103
    2AG202Soil Chemistry and Mineralogy3-0-0-3AG103
    2AG203Plant Pathology3-0-0-3AG102
    2AG204Entomology3-0-0-3AG102
    2AG205Agricultural Microbiology3-0-0-3AG102
    2AG206Agricultural Economics3-0-0-3AG112
    2AG207Basic Agricultural Engineering3-0-0-3AG109
    2AG208Agricultural Statistics3-0-0-3AG113
    2AG209Plant Physiology3-0-0-3AG111
    2AG210Basic Crop Management3-0-0-3AG108
    2AG211Basic Agronomy3-0-0-3AG110
    2AG212Introduction to Agricultural Biotechnology3-0-0-3AG102
    2AG213Basic Soil Science3-0-0-3AG107
    2AG214Introduction to Agricultural Extension3-0-0-3AG114
    2AG215Introduction to Agricultural Informatics3-0-0-3AG115
    3AG301Agricultural Biotechnology3-0-0-3AG212
    3AG302Precision Agriculture3-0-0-3AG201, AG202
    3AG303Sustainable Farming Practices3-0-0-3AG201, AG202
    3AG304Water Management in Agriculture3-0-0-3AG202, AG207
    3AG305Agro-Economics3-0-0-3AG206
    3AG306Soil Science and Environmental Management3-0-0-3AG213
    3AG307Crop Production and Management3-0-0-3AG210, AG211
    3AG308Plant Pathology and Entomology3-0-0-3AG203, AG204
    3AG309Agricultural Extension and Rural Development3-0-0-3AG214
    3AG310Agricultural Informatics3-0-0-3AG215
    3AG311Climate Resilient Agriculture3-0-0-3AG303, AG304
    3AG312Advanced Crop Management3-0-0-3AG307
    3AG313Advanced Soil Science3-0-0-3AG306
    3AG314Advanced Agricultural Biotechnology3-0-0-3AG301
    3AG315Advanced Agricultural Economics3-0-0-3AG305
    4AG401Research Methodology2-0-0-2-
    4AG402Advanced Agricultural Biotechnology3-0-0-3AG314
    4AG403Advanced Precision Agriculture3-0-0-3AG302
    4AG404Advanced Sustainable Farming Practices3-0-0-3AG303
    4AG405Advanced Water Management3-0-0-3AG304
    4AG406Advanced Agro-Economics3-0-0-3AG305
    4AG407Advanced Soil Science and Environmental Management3-0-0-3AG313
    4AG408Advanced Crop Production and Management3-0-0-3AG312
    4AG409Advanced Agricultural Extension and Rural Development3-0-0-3AG309
    4AG410Advanced Agricultural Informatics3-0-0-3AG310
    4AG411Climate Resilient Agriculture3-0-0-3AG311
    4AG412Capstone Project6-0-0-6AG401, AG301, AG302, AG303, AG304, AG305, AG306, AG307, AG308, AG309, AG310, AG311
    4AG413Internship6-0-0-6AG401, AG301, AG302, AG303, AG304, AG305, AG306, AG307, AG308, AG309, AG310, AG311

    Advanced Departmental Elective Courses

    The Agriculture program at Sankalchand Patel University Mehsana offers a range of advanced departmental elective courses that allow students to delve deeper into specialized areas of agriculture. These courses are designed to provide students with in-depth knowledge and practical skills in emerging fields of agriculture.

    1. Agricultural Biotechnology: This course provides students with advanced knowledge of biotechnology applications in agriculture. Students learn about genetic engineering, plant biotechnology, microbial biotechnology, and bioinformatics. The course emphasizes hands-on laboratory work and research projects that involve developing new crop varieties, improving disease resistance, and enhancing nutritional value through biotechnological interventions.

    2. Precision Agriculture: This course focuses on the application of technology in farming. Students learn about GPS mapping, remote sensing, data analytics, and automation in agriculture. The course emphasizes the use of advanced technologies to optimize crop production, reduce resource consumption, and improve sustainability.

    3. Sustainable Farming Practices: This course explores environmentally friendly and economically viable farming methods. Students learn about organic farming, conservation agriculture, integrated pest management, and soil conservation. The course emphasizes the development of sustainable farming practices that reduce the environmental impact of agriculture while maintaining productivity and profitability.

    4. Water Management in Agriculture: This course focuses on the efficient use of water resources in farming. Students learn about irrigation systems, water conservation, drought management, and water quality. The course emphasizes the design and implementation of water management strategies that maximize productivity while minimizing water wastage.

    5. Agricultural Economics: This course examines the economic aspects of agriculture. Students learn about market analysis, farm management, agricultural policy, and rural development. The course emphasizes the analysis of agricultural markets, evaluation of farm profitability, and development of strategies for sustainable economic growth in the agricultural sector.

    6. Soil Science and Environmental Management: This course focuses on the study of soil properties and their impact on agricultural productivity. Students learn about soil fertility, soil chemistry, environmental impact assessment, and sustainable land use. The course emphasizes the assessment of soil health, development of soil management strategies, and mitigation of environmental risks.

    7. Crop Production and Management: This course covers the entire process of crop cultivation from seed selection to harvest. Students learn about crop physiology, nutrient management, pest and disease control, and post-harvest handling. The course emphasizes practical experience in managing different types of crops and optimizing their production.

    8. Agricultural Extension and Rural Development: This course emphasizes the role of extension services in rural communities. Students learn about farmer education, community development, agricultural marketing, and rural entrepreneurship. The course emphasizes the design and implementation of extension programs that support rural development and improve the livelihoods of farmers.

    9. Climate Resilient Agriculture: This course focuses on developing farming practices that can withstand the impacts of climate change. Students learn about climate adaptation strategies, drought-resistant crop varieties, and sustainable farming practices. The course emphasizes the development of climate-resilient agricultural systems that ensure food security in the face of changing climatic conditions.

    10. Agricultural Informatics: This course introduces students to the application of information technology in agriculture. Students learn about agricultural data management, decision support systems, and digital agriculture. The course emphasizes the use of technology to improve agricultural productivity and sustainability.

    11. Advanced Plant Pathology and Entomology: This course provides in-depth knowledge of plant diseases and pests. Students learn about disease identification, pest management strategies, and integrated pest management. The course emphasizes hands-on laboratory work and field research to understand the complex interactions between plants, pathogens, and pests.

    12. Advanced Agricultural Biotechnology: This course focuses on advanced biotechnological applications in agriculture. Students learn about gene editing, transgenic crops, and biotechnology in crop improvement. The course emphasizes research projects and laboratory work that involve developing innovative biotechnological solutions for agricultural challenges.

    13. Advanced Precision Agriculture: This course builds upon the foundational knowledge of precision agriculture. Students learn about advanced data analytics, machine learning applications, and automated farming systems. The course emphasizes the development of smart farming technologies that optimize resource use and improve agricultural productivity.

    14. Advanced Sustainable Farming Practices: This course explores advanced sustainable farming methods and their implementation. Students learn about regenerative agriculture, carbon sequestration, and sustainable nutrient management. The course emphasizes the development of farming practices that enhance soil health and biodiversity while maintaining productivity.

    15. Advanced Water Management: This course focuses on advanced water management techniques and technologies. Students learn about water recycling, smart irrigation systems, and water-efficient farming practices. The course emphasizes the design and implementation of water management strategies that address water scarcity and climate change impacts.

    Project-Based Learning Philosophy

    The Agriculture program at Sankalchand Patel University Mehsana embraces a project-based learning approach that integrates theoretical knowledge with practical application. This approach is designed to develop students' problem-solving skills, critical thinking abilities, and hands-on experience with real-world agricultural challenges.

    Mini-Projects: Throughout the program, students are required to complete several mini-projects that allow them to apply their knowledge to specific agricultural problems. These projects are typically completed in small groups and involve research, data collection, analysis, and presentation. Mini-projects are designed to be completed within a semester and are evaluated based on their technical merit, innovation, and practical relevance.

    Final-Year Thesis/Capstone Project: The capstone project is a significant component of the program that requires students to undertake an in-depth research project under the guidance of a faculty mentor. The project is typically completed over the final two semesters and involves extensive research, experimentation, and analysis. Students are expected to demonstrate their ability to work independently, solve complex problems, and contribute original knowledge to the field of agriculture.

    Project Selection Process: Students select their projects based on their interests and career aspirations. The selection process involves a proposal submission, faculty mentor allocation, and project approval. Students are encouraged to choose projects that align with their specialization and have practical applications in the agricultural sector.

    Evaluation Criteria: Projects are evaluated based on several criteria, including technical depth, innovation, relevance to agricultural challenges, research methodology, and presentation skills. Students are also evaluated on their ability to work collaboratively, manage time effectively, and communicate their findings clearly.