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Remote Biomedical Engineering Fresh Graduate Jobs in New York

Remote Commitment: 15-20 hours/week Role Responsibilities * Design graduate-level computational ... Strong Python programming skills for writing problem setups and solution validators. * Ability to ...

Territory Sales Executive - Eastern NY

New York, NY · On-site +1

$85K - $95K/yr

  • Medical

  • Dental

  • Vision

  • Retirement

Best-in-class engineering, design and manufacturing combined with category-leading brands in ... Remote Work Arrangement: This role is fully remote. As a remote colleague, you may be required to ...

Territory Sales Executive - NYC/Long Island

New York, NY · On-site +1

$85K - $95K/yr

  • Medical

  • Dental

  • Vision

  • Retirement

Best-in-class engineering, design and manufacturing combined with category-leading brands in ... Remote Work Arrangement: This role is fully remote. As a remote colleague, you may be required to ...

You collaborate closely with cross-functional teams, including strategists, developers, and project ... You can work independently but are keen to collaborate across disciplines to design fresh brand ...

Showing results 41-60

Remote Biomedical Engineering Fresh Graduate information

What is the difference between Remote Biomedical Engineering Fresh Graduate vs Remote Biomedical Equipment Technician?

AspectRemote Biomedical Engineering Fresh GraduateRemote Biomedical Equipment Technician
Required CredentialsDegree in Biomedical Engineering or related fieldTechnical certification or associate degree in biomedical equipment technology
Work EnvironmentProject-based, research, or design tasks; collaboration with engineers and researchersEquipment troubleshooting, maintenance, and repair; often on-site or remote diagnostics
Employer & Industry UsageMedical device companies, research institutions, healthcare startupsHospitals, medical device manufacturers, service providers

The Remote Biomedical Engineering Fresh Graduate typically focuses on research, design, and development tasks within biomedical engineering, often requiring a degree in the field. In contrast, the Remote Biomedical Equipment Technician primarily handles maintenance and repair of medical devices, with certifications or technical training. Both roles are essential in healthcare technology, but they differ in responsibilities and work environment.

What are the key skills and qualifications needed to thrive as a remote biomedical engineering fresh graduate?

To thrive as a Remote Biomedical Engineering Fresh Graduate, you need a solid understanding of biomedical engineering principles, problem-solving abilities, and a relevant bachelor’s degree. Familiarity with CAD software, MATLAB, and biomedical device regulations, as well as experience with virtual collaboration tools, is typically expected. Effective communication, self-motivation, and adaptability are crucial soft skills for excelling in a remote environment and collaborating with diverse teams. These skills and qualifications are important for ensuring the successful design, analysis, and implementation of biomedical solutions while working efficiently from a remote setting.

What does a remote biomedical engineering fresh graduate do?

A Remote Biomedical Engineering Fresh Graduate typically assists in designing, developing, and testing medical devices or healthcare technology solutions while working from a remote location. Their tasks may include data analysis, supporting product development, writing technical reports, and collaborating with engineering teams online. They often use digital tools to communicate with colleagues, participate in virtual meetings, and contribute to projects related to healthcare innovation. This role is ideal for recent graduates with a background in biomedical engineering who are looking to gain practical experience in the field while enjoying the flexibility of remote work.

What are some common challenges faced by remote biomedical engineering fresh graduates, and how can they overcome them?

As a remote biomedical engineering fresh graduate, one common challenge is limited hands-on access to laboratory equipment and prototyping tools, which are often essential for product development and testing. To overcome this, it's important to actively seek virtual simulation tools, participate in remote collaborative projects, and communicate regularly with your team for guidance. Building strong digital communication skills and proactively reaching out to mentors can also help bridge the experiential gap and enhance your professional growth.

What are the most commonly searched types of Biomedical Engineering Fresh Graduate jobs in New York?

The most popular types of Biomedical Engineering Fresh Graduate jobs in New York are:

What job categories do people searching Remote Biomedical Engineering Fresh Graduate jobs in New York look for?

The top searched job categories for Remote Biomedical Engineering Fresh Graduate jobs in New York are:

Scientist- Bioinformatics R&D -REMOTE

SEMA4

Stamford, CT • On-site, Remote

Full-time

Re-posted 7 days ago


Job description

Sema4 is a patient-centered health intelligence company dedicated to advancing healthcare through data-driven insights. Sema4 is transforming healthcare by applying AI and machine learning to multidimensional, longitudinal clinical and genomic data to build dynamic models of human health and defining optimal, individualized health trajectories. Centrellis®, our innovative health intelligence platform, is enabling us to generate a more complete understanding of disease and wellness and to provide science-driven solutions to the most pressing medical needs. Sema4 believes that patients should be treated as partners, and that data should be shared for the benefit of all.
We are looking for a talented Scientist- Bioinformatics R&D tojoin our team. The Bioinformatics Scientist leads translational bioinformatics and product development for NGS pipelines as part of the R&D Bioinformatics department. This scientist is an integral part of an interdisciplinary team that develops computational methods and pipelines to interpret large-scale human genome and transcriptome sequencing data from reproductive health, cancer, and other diseases. As part of a development team of engineers and scientists, this scientist will translate research prototypes into production-quality, scalable pipeline products used by a variety of clinical diagnostics and research projects across many teams at Sema4. This scientist will serve as an authority in these products to other users and teams and optimize them to serve Sema4 data science needs.
RESPONSIBILITIES
  • Design, develop, and test NGS pipelines for clinical tests and research projects in oncology, reproductive health, and other indications.
  • Lead or support bioinformatics projects to translate NGS results, as well as public and internal genomic, phenotype, and clinical/EMR datasets, to features and optimizations of clinical utility.
  • Analyze and integrate heterogeneous NGS data (somatic and germline SNVs, indel variants, copy-number alterations, structural variants, gene fusions, transcript isoforms, RNA abundance, RNA editing and modification) from diverse next-generation sequencing assays (Illumina, Ion Torrent, Pacific Biosciences; targeted panels, whole-exome sequencing, whole-genome sequencing, RNA-Seq; bulk and single-cell) and microarrays.
  • Work with wet labs and clinical teams to plan and design experiments to generate such data, and analyze this data.
  • Communicate effectively with collaborators (computational and bioinformatics scientists on R&D and production teams, IT/HPC, clinical lab directors, knowledgebase and curation teams, wet lab staff) to understand and satisfy product and research analysis needs.

QUALIFICATIONS
  • PhD in Bioinformatics, Biomedical Informatics, Computational Biology, Genomics, or a related discipline requiring strong computational and analytical skills supplemented with biology background
  • Hands-on experience working with NGS tools with high proficiency, especially for sequence analysis and expression analysis
  • Strong coding proficiency in R, Python, and SQL programming languages in a Linux environment.
  • Well-versed in the art of effective communication on interdisciplinary teams (scientists, programmers, and clinicians), especially graphical communication about high-complexity datasets to scientific audiences from different backgrounds.
  • High self-motivation, great ability to work in both multiple-task and independent fashions.
  • Good understanding of molecular, cell, and developmental biology, especially where relevant to cancer genomics, oncology, or endocrine neoplasms, and especially molecular cloning and NGS library preparation methodologies.
  • Developing code using distributed version control tools (especially Git) and software issue tracking/management systems (especially Jira).
  • Using or developing genome browsers or other tools for visualization of genomic datasets.