Detect and measure environmental pollutants.
Detecting Pollutants (Specialized) focuses on the science and technology of finding contamination in the environment. You learn the analytical and sensing methods used to detect and quantify pollutants across air, water and soil โ from lab techniques to field sensors โ and how to interpret the results for monitoring and compliance. The course connects detection methods to real environmental-protection and public-health decisions. You finish able to reason about detecting and measuring a target pollutant. A verified e-Certificate of competency and e-Marksheet from the Deep Science & Technology Consortium.
This specialized course covers detecting pollutants โ the methods and technologies to identify, measure and monitor pollutants in air, water and soil.
1. Survey pollutant-detection methods.
2. Apply analytical and sensor techniques.
3. Detect pollutants in air, water and soil.
4. Interpret results for monitoring.
5. Connect detection to protection and compliance.
โข Environmental scientists and analysts
โข Monitoring and compliance professionals
โข Analytical chemists
โข Students of environmental science
โข An understanding of pollutant detection.
โข An environmental-monitoring perspective.
โข A detection-methods foundation.
โข A verified e-Certificate of competency and e-Marksheet from the Deep Science & Technology Consortium.
Implement Bioinformatics Tools with Biotechnology for practical foundations of detecting pollutants and (specialized) and core biological principles applications and outcomes. โข Design Computational chemistry with Computational drug design for practical foundations of detecting pollutants and (specialized) and core biological principles applications and outcomes. โข Analyze CRISPR with Drug development for practical foundations of detecting pollutants and (specialized) and core biological principles applications and outcomes.
Implement Bioinformatics Tools with Biotechnology for practical laboratory techniques, protocols, and data collection applications and outcomes. โข Design Computational chemistry with Computational drug design for practical laboratory techniques, protocols, and data collection applications and outcomes. โข Analyze CRISPR with Drug development for practical laboratory techniques, protocols, and data collection applications and outcomes.
Implement Bioinformatics Tools with Biotechnology for practical bioinformatics tools and computational analysis applications and outcomes. โข Design Computational chemistry with Computational drug design for practical bioinformatics tools and computational analysis applications and outcomes. โข Analyze CRISPR with Drug development for practical bioinformatics tools and computational analysis applications and outcomes.
Implement Bioinformatics Tools with Biotechnology for practical research methodology and experimental design applications and outcomes. โข Design Computational chemistry with Computational drug design for practical research methodology and experimental design applications and outcomes. โข Analyze CRISPR with Drug development for practical research methodology and experimental design applications and outcomes.
Implement Bioinformatics Tools with Biotechnology for practical advanced detecting pollutants and (specialized) applications and translational research applications and outcomes. โข Design Computational chemistry with Computational drug design for practical advanced detecting pollutants and (specialized) applications and translational research applications and outcomes. โข Analyze CRISPR with Drug development for practical advanced detecting pollutants and (specialized) applications and translational research applications and outcomes.
Implement Bioinformatics Tools with Biotechnology for practical regulatory compliance, bioethics, and safety standards applications and outcomes. โข Design Computational chemistry with Computational drug design for practical regulatory compliance, bioethics, and safety standards applications and outcomes. โข Analyze CRISPR with Drug development for practical regulatory compliance, bioethics, and safety standards applications and outcomes.
Implement Bioinformatics Tools with Biotechnology for practical industry applications, career pathways, and case studies applications and outcomes. โข Design Computational chemistry with Computational drug design for practical industry applications, career pathways, and case studies applications and outcomes. โข Analyze CRISPR with Drug development for practical industry applications, career pathways, and case studies applications and outcomes.
Implement Bioinformatics Tools with Biotechnology for practical publication-ready research and scientific documentation applications and outcomes. โข Design Computational chemistry with Computational drug design for practical publication-ready research and scientific documentation applications and outcomes. โข Analyze CRISPR with Drug development for practical publication-ready research and scientific documentation applications and outcomes.
Implement Bioinformatics Tools with Biotechnology for practical capstone: end-to-end detecting pollutants and (specialized) research project applications and outcomes. โข Design Computational chemistry with Computational drug design for practical capstone: end-to-end detecting pollutants and (specialized) research project applications and outcomes. โข Analyze CRISPR with Drug development for practical capstone: end-to-end detecting pollutants and (specialized) research project applications and outcomes.
| Parameter | Requirement |
|---|---|
| Covered Tool / Platform | Bioinformatics Tools |
| Covered Tool / Platform | Computational Chemistry |
| Covered Tool / Platform | Computational Drug Design |
| Covered Tool / Platform | CRISPR |
| Covered Tool / Platform | Drug Development |
| Covered Tool / Platform | Biotechnology |
| Covered Tool / Platform | Data Analysis Software |
| Covered Tool / Platform | Simulation Models |
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