| Attribute | Detail |
|---|---|
| Format | Online (e-LMS) |
| Level | Advanced |
| Duration | 3 Weeks |
| Certification | e-Certification + e-Marksheet |
| Fee | ₹59 |
| Tools | Bioinformatics Tools Computational Chemistry Computational Drug Design CRISPR Drug Development Biotechnology Data Analysis Software Simulation Models |
About the Detecting Pollutants and Course (Specialized) Course
Detecting Pollutants and Course (Specialized) dives deep into Detecting Pollutants And (Specialized). Gain comprehensive expertise through our structured curriculum and hands-on approach.
Program Highlights
• Mentorship by industry experts and NSTC faculty.
• Hands-on projects using Bioinformatics Tools, Computational chemistry, Computational drug design.
• Case studies on emerging biotechnology innovations and trends.
• e-Certification + e-Marksheet upon successful completion.
Course Curriculum
Foundations of Detecting Pollutants And (Specialized) and Core Biological Principles
- Implement Bioinformatics Tools with Biotechnology for practical foundations of detecting pollutants and (specialized) and core biological principles applications and outcomes.
- Design Computational chemistry with Computational drug design for practical foundations of detecting pollutants and (specialized) and core biological principles applications and outcomes.
- Analyze CRISPR with Drug development for practical foundations of detecting pollutants and (specialized) and core biological principles applications and outcomes.
Laboratory Techniques, Protocols, and Data Collection
- Implement Bioinformatics Tools with Biotechnology for practical laboratory techniques, protocols, and data collection applications and outcomes.
- Design Computational chemistry with Computational drug design for practical laboratory techniques, protocols, and data collection applications and outcomes.
- Analyze CRISPR with Drug development for practical laboratory techniques, protocols, and data collection applications and outcomes.
Bioinformatics Tools and Computational Analysis
- Implement Bioinformatics Tools with Biotechnology for practical bioinformatics tools and computational analysis applications and outcomes.
- Design Computational chemistry with Computational drug design for practical bioinformatics tools and computational analysis applications and outcomes.
- Analyze CRISPR with Drug development for practical bioinformatics tools and computational analysis applications and outcomes.
Research Methodology and Experimental Design
- Implement Bioinformatics Tools with Biotechnology for practical research methodology and experimental design applications and outcomes.
- Design Computational chemistry with Computational drug design for practical research methodology and experimental design applications and outcomes.
- Analyze CRISPR with Drug development for practical research methodology and experimental design applications and outcomes.
Advanced Detecting Pollutants And (Specialized) Applications and Translational Research
- Implement Bioinformatics Tools with Biotechnology for practical advanced detecting pollutants and (specialized) applications and translational research applications and outcomes.
- Design Computational chemistry with Computational drug design for practical advanced detecting pollutants and (specialized) applications and translational research applications and outcomes.
- Analyze CRISPR with Drug development for practical advanced detecting pollutants and (specialized) applications and translational research applications and outcomes.
Regulatory Compliance, Bioethics, and Safety Standards
- Implement Bioinformatics Tools with Biotechnology for practical regulatory compliance, bioethics, and safety standards applications and outcomes.
- Design Computational chemistry with Computational drug design for practical regulatory compliance, bioethics, and safety standards applications and outcomes.
- Analyze CRISPR with Drug development for practical regulatory compliance, bioethics, and safety standards applications and outcomes.
Industry Applications, Career Pathways, and Case Studies
- Implement Bioinformatics Tools with Biotechnology for practical industry applications, career pathways, and case studies applications and outcomes.
- Design Computational chemistry with Computational drug design for practical industry applications, career pathways, and case studies applications and outcomes.
- Analyze CRISPR with Drug development for practical industry applications, career pathways, and case studies applications and outcomes.
Publication-Ready Research and Scientific Documentation
- Implement Bioinformatics Tools with Biotechnology for practical publication-ready research and scientific documentation applications and outcomes.
- Design Computational chemistry with Computational drug design for practical publication-ready research and scientific documentation applications and outcomes.
- Analyze CRISPR with Drug development for practical publication-ready research and scientific documentation applications and outcomes.
Capstone: End-to-End Detecting Pollutants And (Specialized) Research Project
- Implement Bioinformatics Tools with Biotechnology for practical capstone: end-to-end detecting pollutants and (specialized) research project applications and outcomes.
- Design Computational chemistry with Computational drug design for practical capstone: end-to-end detecting pollutants and (specialized) research project applications and outcomes.
- Analyze CRISPR with Drug development for practical capstone: end-to-end detecting pollutants and (specialized) research project applications and outcomes.
Tools, Techniques, or Platforms Covered
Bioinformatics Tools Computational Chemistry Computational Drug Design CRISPR Drug Development Biotechnology Data Analysis Software Simulation Models
Real-World Applications
- Apply Bioinformatics Tools to genomics research for impactful real-world solutions and tangible results.
- Apply Biotechnology to clinical diagnostics for impactful real-world solutions and tangible results.
- Apply Computational chemistry to pharmaceutical development for impactful real-world solutions and tangible results.
- Apply Computational drug design to agricultural biotechnology for impactful real-world solutions and tangible results.
- Apply CRISPR to environmental monitoring for impactful real-world solutions and tangible results.
Who Should Attend & Prerequisites
- Designed for Biotechnology students and researchers.
- Designed for Life science graduates.
- Designed for Lab technicians.
- Designed for Pharmaceutical professionals.
- Foundational knowledge of biotechnology and familiarity with core concepts recommended.
Certification

