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Skills

  • Algorithms
  • Analytics
  • Bioinformatics
  • Data Analysis
  • Data Management
  • Data Modeling
  • Data Visualization
  • Machine Learning
  • Microsoft Excel
  • R Programming
  • Statistical Analysis

Services

  • analysist

    $5/hr Starting at $25 Ongoing

    Dedicated Resource

    “I am an student in Bioinformatics. enthusiastic and highly motivated in Bioinformatics  with expertise in Scientific Writing. I have studied Machine Learning and Data Science and also have an interest...

    AlgorithmsAnalyticsBioinformaticsData AnalysisData Management

About

skilled in data science using Python libraries NumPy, Pandas, and Matplotlib to write code that's cleaner, more concise, and runs faster.

I am an enthusiastic and highly motivated in Bioinformatics and student in Bioinformatics with expertise in Scientific Writing,. I have studied Machine Learning and Data Science and also have an interest in Metagenomics .I've also learned how to use the Python libraries NumPy, Pandas, and Matplotlib to write code that's cleaner, more concise, and runs faster.
Looking forward to work in an organization where my capabilities are recognized and provide me with ample scope of growth so that I can excel in the working environment and accomplish career as well as personal goals.

Work Terms

- Certificate in Biology Meets Programming: Bioinformatics for Beginners
an online non-credit course authorized by University of California San Diegoand offered
through Coursera.
-Certificate Python for Genomic Data Science
an online non-credit course authorized by Johns Hopkins University and offered through
Coursera.
-Introduction to Genomic Technologies
an online non-credit course authorized by Johns Hopkins University and offered through
Coursera
-Certificate Introduction to Metagenomics
Short Course Description: Metagenomics is the study of genetic information shared by microbiological communities. Through sequencing technology (Next Generation Sequencing or NGS) it is now possible to align, map and annotate genomes to a reference database in order to begin to
understand factors that regulate behaviors and interactions among these microbial communities. The information we collect studying bacteria, archaea, microbial eukaryotes and viruses found in these habitats provide examples of how the collective and
often complex genotypes sustain life within these environmental communities.
at Î PINE.BIO