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Hiring BS Life Sciences, Biotechnology Candidates For Scientist Post

LifeSciences Biotechnology Bachelors Job details are given below. We are provided with the detailed requirements of LifeSciences Biotechnology Bachelors Job. You can go through the same and apply now for LifeSciences Biotechnology Bachelors Job.

Job Title: Scientist I/II

Location: South San Francisco, CA 94080 (ONSITE)

Duration: 1 year

Job Summary:

  • We are seeking a highly motivated, skilled junior scientist with expertise in flow cytometry techniques and methodologies.
  • The ideal candidate should have 3-5 years hands-on experience in assay optimization, validation, and possess an understanding of Contract Research Organization (CRO) management.
  • The ideal candidate will be responsible for managing flow cytometry-related projects, from assay design, assay outsourcing, to data QC and analysis.

Key Responsibilities:

  • Flow Cytometry Assay Optimization and Validation:
  • Design, optimize, and validate flow cytometry assays for various research projects.
  • Implement best practices and protocols for sample preparation, staining, and data acquisition to ensure accurate and reproducible results.

CRO Management:

  • Collaborate with external Contract Research Organizations for outsourcing flow cytometry assays and projects.
  • Establish strong partnerships with CROs and ensure smooth communication and project execution.
  • Flow Cytometry Data QC and Analysis:
  • Perform quality control (QC) on flow cytometry data to ensure data integrity and accuracy.
  • Analyze flow cytometry data using appropriate software and statistical tools to extract meaningful insights.
  • Research Support and Collaboration:
  • Collaborate with cross-functional teams to provide flow cytometry expertise and support for ongoing research projects.
  • Stay up-to-date with the latest advancements in flow cytometry techniques and contribute to continuous improvement within the team.

Documentation and Reporting:

  • Maintain accurate and detailed experimental records, protocols, and reports.
  • Present findings and results in team meetings and contribute to scientific publications and conferences as appropriate.

Instrument Maintenance

  • Perform daily QC, scheduled (basic) maintenance and solve basic problems
  • Offer guidance on basic to expert level troubleshooting and resolve performance issues

Qualifications and Skills for LifeSciences Biotechnology Bachelors Job:

  • Bachelor”s in Life Sciences, Biotechnology, Immunology, or a related field.
  • Demonstrated experience in flow cytometry techniques, including assay optimization, validation, and high spectral panels is a plus.
  • Proficiency in flow cytometry data analysis using software such as FCS Express, OMIQ or similar tools.
  • Knowledge of CRO management and outsourcing of assays is a plus.
  • Strong problem-solving skills, attention to detail, and the ability to work independently and as part of a team.
  • Excellent communication and presentation skills.
  • Passion for scientific research and a drive to contribute to advancements in the field.

Apply now

Dear friends, we’ve compiled a set of interview questions and their corresponding answers that you may encounter during your interview. Take the time to prepare for these questions to ensure a successful performance in your upcoming interview for LifeSciences Biotechnology Bachelors Job.

Question 1: Can you describe your experience with flow cytometry assay optimization and validation? Give an example of a challenging project you’ve worked on in this regard.
Answer: I have 4 years of hands-on experience in flow cytometry assay optimization and validation. One challenging project involved optimizing a flow cytometry assay for a rare cell population detection. It required extensive protocol adjustments and iterative testing to achieve robust and reproducible results. Through careful optimization, we successfully identified the rare cell population, which was a critical milestone for the project.

Question 2: How do you ensure data integrity and accuracy when performing quality control on flow cytometry data?
Answer: Data integrity and accuracy are crucial in flow cytometry. I ensure this by implementing rigorous quality control checks, including instrument calibration and compensation controls. I also perform data gating to exclude artifacts or irrelevant events. Additionally, I use appropriate software tools to analyze data, and I always validate the results by cross-referencing them with control samples and known standards.

Question 3: Could you provide an example of your experience in managing flow cytometry-related projects involving Contract Research Organizations (CROs)?
Answer: Certainly. In a previous role, I managed a project where we outsourced a complex flow cytometry assay to a CRO. I initiated the collaboration, established clear communication channels, and defined project milestones. Regular meetings and progress tracking ensured the project stayed on schedule. The successful completion of this project highlighted my ability to effectively manage CRO partnerships and deliver quality results.

Question 4: How do you stay updated with the latest advancements in flow cytometry techniques and contribute to continuous improvement within your team?
Answer: Staying current is vital in this field. I subscribe to relevant scientific journals, attend conferences, and participate in online forums and webinars. I also engage in discussions with colleagues and seek opportunities for training. I regularly share new insights with my team and encourage the adoption of innovative techniques and best practices to enhance our workflow.

Question 5: Can you provide an example of a situation where you had to troubleshoot and resolve a technical issue related to flow cytometry instrumentation?
Answer: Certainly. There was a time when our flow cytometer was producing inconsistent results due to clogging in the fluidics system. I first performed basic maintenance, such as cleaning and verifying fluid levels. When the issue persisted, I consulted with technical support and implemented their guidance. Eventually, we identified a faulty valve, which was replaced, resolving the problem. This experience underscores my ability to troubleshoot and maintain flow cytometry instruments effectively.

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