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Self Paced

Carbon Nanoparticles For Antimicrobial & Cytotoxicity Efficacy

Empowering Innovation in Healthcare: Carbon Nanoparticles for Enhanced Treatment Efficacy

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MODE
Online/ e-LMS
TYPE
Self Paced
LEVEL
Moderate
DURATION
1 Month
VIDEO LENGTH
1

About

The Carbon Nanoparticles for Antimicrobial & Cytotoxicity Efficacy workshop aims to educate participants on the use of carbon nanoparticles for enhanced efficacy in antimicrobial and cytotoxicity applications. The workshop covers topics such as the synthesis and characterization of carbon nanoparticles, their unique properties, and their applications in antimicrobial and cytotoxicity efficacy. Participants will learn about the latest research and techniques in the field, as well as the challenges and opportunities associated with the use of carbon nanoparticles for efficacy solutions.

Aim

Explore the synthesis and application of carbon nanoparticles to develop effective antimicrobial and cytotoxic solutions. This course aims to equip participants with cutting-edge knowledge and practical skills in nanotechnology, focusing on enhancing the efficacy of antimicrobial treatments and evaluating cytotoxic impacts in various applications.

Program Objectives

  • Understand the fundamental principles of nanotechnology with a focus on carbon nanoparticles.
  • Synthesize and characterize carbon nanoparticles in laboratory settings.
  • Assess the antimicrobial and cytotoxic effects of nanoparticles.
  • Explore real-world applications in pharmaceuticals and healthcare.
  • Analyze the regulatory environment and safety standards related to nanomaterials.

Program Structure

  •  Introduction to carbon nanoparticles
  •  Synthesis of carbon nanoparticles (CNP) in the kitchen
  • Scaling up synthesis
  • Characterization of CNP
  •  Sensing of common organic solvents using C
  • Carbon nanoparticles as bio stimulant in agriculture
  • Antimicrobial properties of CNP

Participant’s Eligibility

Ideal for professionals and students in domains such as Microbiology, Pharmaceutical Sciences, Chemical Engineering, and Materials Science.

Program Outcomes

  • Mastery in synthesizing carbon nanoparticles.
  • Proficiency in evaluating antimicrobial and cytotoxic properties.
  • Insights into application-specific challenges and solutions.
  • Enhanced understanding of regulatory and safety considerations.
  • Practical skills for real-world application in biomedicine and pharmaceuticals.

Mentor Profile

Fee Structure

Standard Fee:           INR 4,998           USD 110

Discounted Fee:       INR 2499             USD 55

We are excited to announce that we now accept payments in over 20 global currencies, in addition to USD. Check out our list to see if your preferred currency is supported. Enjoy the convenience and flexibility of paying in your local currency!

List of Currencies

Batches

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Key Takeaways

Program Deliverables

  • Access to e-LMS
  • Real Time Project for Dissertation
  • Project Guidance
  • Paper Publication Opportunity
  • Self Assessment
  • Final Examination
  • e-Certification
  • e-Marksheet

Future Career Prospects

  • Nanotechnology Research Specialist
  • Pharmaceutical Development Scientist
  • Healthcare Product Manager
  • Biomedical Engineer
  • Regulatory Affairs Coordinator
  • Academic Researcher in Nanoscience

Job Opportunities

Graduates can find opportunities in pharmaceutical companies, healthcare product manufacturing, biomedical research institutions, and academic settings, focusing on innovation in drug delivery systems and antimicrobial treatments.

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Publication Opportunity
Potentially earn a place in our coveted Hall of Fame.

Centre of Excellence
Join the esteemed Centre of Excellence.

Networking and Learning
Network with industry leaders, access ongoing learning opportunities.

Hall of Fame
Get your groundbreaking work considered for publication in a prestigious Open Access Journal (worth ₹20,000/USD 1,000).

Achieve excellence and solidify your reputation among the elite!


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