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Prashant Kumar

MME (Master's in mathematics education)

Innovation & Education Philosophy

Transforming minds through mathematical innovation

"Innovation is the use of knowledge, experience and creativity to transform education"

Innovation is the use of knowledge, experience and creativity either to design or to transform products, processes and applications so that they provide comfortable, simplistic and better solutions to the problems both at the local and global levels.

नवाचार (इनोवेशन) का अर्थ है अपने ज्ञान, अनुभव व् रचनात्मकता का उपयोग करके उत्पादों, प्रक्रियाओं तथा अनुप्रयोगों में ऐसे नए बदलाव करना या उनके ऐसे डिज़ाइन बनाना जिससे हम जीवन की समस्याओं के ऐसे समाधान खोज पाएं की लोगों की जीवनशैली में सुधार हो व उनका जीवन आरामदायक हो सके।

Innovation in education acts like a nutrient that enhances the ability of learners manifold and sharpens their skills to provide solutions to problems faced by human beings in everyday life.

Out of box thinking and creativity are basic necessities for innovation. How differently one can think of solutions makes innovation a challenging but interesting process. Deep association with a problem usually necessitates a simple and universally acceptable solution.

Glasses on mathematics spreadsheet
Professor teaching mathematics Scientist writing formulas on chalkboard

Welcome to the world of innovations in mathematics and education!

Courses

Comprehensive mathematics education for all levels

B. Tech. (Mathematics & Computing)

Semester IV

Linear Algebra and Calculus

  • • Vector Spaces
  • • Eigenvalues & Differential Equations
  • • Multivariable Calculus

Generic Elective (GE)

Mathematics for All

Real-world applications

One Semester duration exploring practical concepts

Value Addition Course

Vedic Mathematics I & II

Ancient Indian techniques

Mental math, shortcuts, problem-solving

M. Sc. (Mathematics Education)

Innovation in Education

Modern pedagogical approaches

Semesters I & II innovative methodologies

Semester Long Projects

Guided research projects focusing on mathematical modeling, computational mathematics, and educational innovations

Academic teaching environment Modern teaching methods Educational exhibitions

Research

Advancing mathematical education through innovative research

Prof. Tyagi's Theorem: "The sum of digits of any number divisible by 9 is also divisible by 9, leading to generalized patterns in number theory."

Published Articles

📄 Writing Mathematical Theorems: Towards an Innovative Pedagogy - Indian Journal of Science and Technology

📄 Innovative Teaching Methods in Higher Mathematics - International Journal of Education

📄 Bridging Abstract Concepts with Real-World Applications - Mathematics Education Research

15+

Research Papers

8

Years of Research

Academic research papers Research study participation Historical academic documents

Projects

Innovative teaching models & student showcases

🎓 Mathematical Learning Aids

Developed low-cost models for visualizing complex mathematical concepts including 3D geometric shapes, graph theory models, and probability demonstrations.

View Gallery →

💡 Smart Classroom Innovations

Designed electronic attendance marking system using Arduino and RFID technology for efficient classroom management.

Learn More →

📊 Interactive IT Modules

Created interactive web-based modules for teaching calculus concepts, infinite series, and numerical methods with real-time visualization.

Explore Modules →

🔬 Student Research Projects

Mentoring students on innovative projects combining mathematics with technology, including machine learning applications, cryptography, and data science.

Mathematics teacher writing equations Professor writing formulas on chalkboard Female professor analyzing formulas

Pedagogy

Revolutionary teaching methods for modern mathematics

"Innovative pedagogy does not exist. It has to be developed by each individual."

Four Essential Changes for Innovative Teaching

  1. 1.
    From Abstract to Concrete: Begin with real-world problems and applications before introducing abstract mathematical concepts.
  2. 2.
    Hands-On Learning: Encourage students to build models, conduct experiments, and visualize mathematical principles through physical and digital tools.
  3. 3.
    Problem-Based Learning: Replace traditional lecture methods with collaborative problem-solving sessions where students discover concepts themselves.
  4. 4.
    Technology Integration: Utilize computational tools, simulations, and interactive software to make mathematics more accessible and engaging.
Friendly math teacher in classroom Woman teacher writing formulas on blackboard Female teacher working in math class

Updates

Latest news and announcements

📢

New Course Launched

Introducing "Computational Mathematics with Python" - A hands-on course combining mathematical theory with programming skills. Registration open for next semester.

🏆

Student Achievement

Our students won first prize in the National Mathematics Olympiad. Congratulations to all participants!

📚

New Research Paper

Latest research on "Innovative Teaching Methods in Online Mathematics Education" has been published. Read here →

🎥

Video Lectures Available

Resources

Learning materials and study aids

Video Lectures

  • • Advanced Calculus Series
  • • Linear Algebra Fundamentals
  • • Vedic Mathematics Techniques
Watch Now →

Course Materials

  • • B.Tech Study Guides
  • • Practice Problem Sets
  • • Research Methodology Papers
Download →

YouTube Channel

Subscribe for weekly mathematics tutorials and innovative teaching methods

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Contact

Academic office workspace
Clean office desk
Office with large window

Get in Touch

🏢 Office Location

Room 301, Department of Mathematics
[Your Institution Name]
[City, State - PIN]

📞 Phone

+91-XXX-XXX-XXXX

⏰ Office Hours

Monday - Friday: 2:00 PM - 4:00 PM
Or by appointment

Quick Contact

Response within 24 hours