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Remote Computational Biochemistry Jobs in Colorado

Remote micro1 is engaging Computational Biology & Cheminformatics Experts to contribute their ... Advanced expertise in Computational Biology, Cheminformatics, Medicinal Chemistry, Biochemistry, or ...

Remote micro1 is engaging Computational Biology & Cheminformatics Experts to contribute their ... Advanced expertise in Computational Biology, Cheminformatics, Medicinal Chemistry, Biochemistry, or ...

Remote micro1 is engaging Computational Biology & Cheminformatics Experts to contribute their ... Advanced expertise in Computational Biology, Cheminformatics, Medicinal Chemistry, Biochemistry, or ...

Remote micro1 is engaging Computational Biology & Cheminformatics Experts to contribute their ... Advanced expertise in Computational Biology, Cheminformatics, Medicinal Chemistry, Biochemistry, or ...

Remote micro1 is engaging Computational Biology & Cheminformatics Experts to contribute their ... Advanced expertise in Computational Biology, Cheminformatics, Medicinal Chemistry, Biochemistry, or ...

Showing results 41-52

Remote Computational Biochemistry information

What is remote computational biochemistry?

Remote computational biochemistry is a scientific field where researchers use computer-based methods to study biochemical processes and molecular interactions, often from locations outside of traditional laboratories. Professionals in this area use specialized software and simulations to investigate the structure, dynamics, and functions of biological molecules like proteins and nucleic acids. Working remotely, they can collaborate with global teams, analyze large datasets, and contribute to research in drug discovery, enzyme design, and other areas. This approach allows for flexible work environments and leverages advances in cloud computing and high-performance computing resources.

How do remote computational biochemists typically collaborate with experimental teams and other researchers?

Remote computational biochemists often work closely with experimental scientists, data analysts, and other computational researchers through digital collaboration tools. Regular virtual meetings, shared data repositories, and project management platforms are commonly used to coordinate research objectives, share simulation results, and integrate computational findings with laboratory data. Clear communication and documentation are essential to align on project goals and troubleshoot challenges, especially since time zones and remote settings can make real-time collaboration less frequent. Building strong virtual relationships and maintaining open channels for feedback enhances teamwork and project outcomes.

What are the key skills and qualifications needed to thrive as a remote computational biochemist, and why are they important?

To thrive as a Remote Computational Biochemist, you need a strong foundation in biochemistry, molecular biology, and computational modeling, typically with a relevant advanced degree (MSc/PhD). Proficiency in molecular dynamics software (such as GROMACS or AMBER), programming languages (like Python or R), and experience with high-performance computing environments are essential. Strong problem-solving skills, attention to detail, and the ability to communicate complex results clearly are critical soft skills in this field. These qualifications enable accurate simulation and analysis of biological systems, driving discoveries and collaboration in remote, interdisciplinary research settings.

What are popular job titles related to Remote Computational Biochemistry jobs in Colorado?

For Remote Computational Biochemistry jobs in Colorado, the most frequently searched job titles are:

What job categories do people searching Remote Computational Biochemistry jobs in Colorado look for?

The top searched job categories for Remote Computational Biochemistry jobs in Colorado are:

What cities in Colorado are hiring for Remote Computational Biochemistry jobs?

Cities in Colorado with the most Remote Computational Biochemistry job openings:

Bioinformatics Software Engineer

micro1 AI

Boulder, CO • Remote

$80 - $110/hr

Part-time

Posted 14 days ago


Job description

Role Title: Computational Biology & Cheminformatics Expert


Role Type: Contractor


Location: Remote


micro1 is engaging Computational Biology & Cheminformatics Experts to contribute their expertise to a customer’s computational drug discovery project. In this role, you'll apply your expertise to help train next-generation AI systems. Your work will shape how models learn, reason, and perform through high-quality, real-world input. No prior experience in AI is required — your domain knowledge is what matters.


Scope of Work

  1. Analyze and interpret small-molecule and drug discovery datasets using advanced computational biology, bioinformatics, and cheminformatics methods.
  2. Curate, annotate, and validate chemical and biological datasets (e.g., ChEMBL, PubChem, DrugBank) to support AI-driven discovery platforms.
  3. Evaluate compound-target interactions, ADMET properties, and lead optimization strategies by integrating chemical, biological, and clinical data sources.
  4. Provide expert insights on structure-activity and structure-property relationships (SAR/SPR), medicinal chemistry approaches, and experimental design considerations.
  5. Build and implement code-based benchmark tasks (e.g., terminal/CLI-based environments) that reflect realistic computational drug discovery scenarios.
  6. Develop reproducible environments (e.g., using Docker) and automated testing pipelines to ensure task correctness and solvability.
  7. Assess and review AI-generated outputs for scientific rigor, accuracy, and practical relevance, delivering detailed written feedback and recommendations.


Preferred Qualifications

  1. Advanced expertise in Computational Biology, Cheminformatics, Medicinal Chemistry, Biochemistry, or related fields; advanced degree (PhD, MSc, PharmD) highly valued but not strictly required.
  2. Strong coding proficiency in Python (beyond analysis scripts), with hands-on experience building tools, pipelines, or testable code; familiarity with Git, GitHub, and Docker.
  3. Extensive experience with cheminformatics toolkits and platforms such as RDKit, KNIME, Schrödinger, OpenEye, or MOE.
  4. Proven track record in small-molecule drug discovery, SAR/QSAR evaluation, ADMET prediction, or virtual screening workflows.
  5. Comfort working with public chemical and bioactivity databases and integrating diverse datasets for scientific analysis.
  6. Demonstrated ability to clearly communicate complex chemical and biological concepts in written feedback and reports.
  7. Experience participating in multidisciplinary and/or remote projects; familiarity with AI-assisted coding tools is a plus.