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Genetic Engineering Jobs (NOW HIRING)

Viral Vector Engineer

Manhattan, NY · On-site

$90 - $130/hr

Using cutting edge genetic engineering and stem cell technology, we create "living bioreactors", which act as fully autonomous 3D biomolecular printers, operating on existing industrial-scale ...

Post Doctoral Fellow

Atlanta, GA · On-site

$47K - $64K/yr

This position will involve mass spectrometry-based analyses alongside cell culture, molecular biology, and genetic engineering approaches in mammalian systems. Primary responsibilities will include ...

Research Technician

Nashville, TN · On-site

$17.50 - $24/hr

Key activities will include CRISPR-based genetic engineering and culturing of adherent mammalian cell lines, biochemical purification and characterization of EVs, mouse tissue harvesting and ...

Basic understanding of genetics and genetic engineering * Good working knowledge of Microsoft Word and Excel. * Strong organizational skills and attention to detail. * Strong written and verbal ...

Post Doctoral Fellow

Atlanta, GA

$47K - $64K/yr

This position will involve mass spectrometry-based analyses alongside cell culture, molecular biology, and genetic engineering approaches in mammalian systems. Primary responsibilities will include ...

Post Doctoral Fellow

Atlanta, GA · On-site

$47K - $64K/yr

This position will involve mass spectrometry-based analyses alongside cell culture, molecular biology, and genetic engineering approaches in mammalian systems. Primary responsibilities will include ...

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genetic engineering information

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$46.5K

$146.9K

$174K

How much do genetic engineering jobs pay per year?

As of Aug 21, 2026, the average yearly pay for genetic engineering in the United States is $146,868.00, according to ZipRecruiter salary data. Most workers in this role earn between $116,500.00 and $173,000.00 per year, depending on experience, location, and employer.

What is genetic engineering?

Genetic engineering is a branch of biotechnology that involves directly manipulating an organism's DNA to alter its characteristics or introduce new traits. Scientists use various techniques, such as CRISPR or recombinant DNA technology, to add, remove, or modify specific genes within an organism. This technology is widely used in agriculture to create genetically modified crops, in medicine for gene therapy, and in research for understanding gene functions. Genetic engineering has the potential to address challenges in food production, disease treatment, and industrial biotechnology, but it also raises ethical and safety concerns.

What are the qualifications to get a genetic engineering job?

The qualifications needed for a genetic engineering job include at least a bachelor’s degree in genetics, biochemistry, or a related field. Many employers prefer several years of experience and a Ph.D., particularly for positions in research and development. Many individuals start their careers as members of a team working on a long-running experiment. To find a job at a university, you may need to publish your research in the scientific literature first to demonstrate your expertise. Excellent analytical and critical thinking skills are imperative. You also need patience and perseverance. Computer proficiency and a strong background in biostatics are essential for fulfilling your publishing responsibilities. Your duties also involve staying current by attending and presenting at conferences.

What are the key skills and qualifications needed to thrive as a genetic engineer, and why are they important?

To thrive as a Genetic Engineer, you need a solid background in molecular biology, genetics, and biotechnology, often supported by a degree in a related field. Familiarity with laboratory techniques such as CRISPR, PCR, DNA sequencing, and bioinformatics software is typically required. Strong analytical thinking, attention to detail, and effective communication are essential soft skills for interpreting data and collaborating with multidisciplinary teams. These skills and qualities are crucial for advancing research, ensuring experiment accuracy, and developing innovative solutions in genetic science.

What are some common challenges faced by professionals in genetic engineering roles?

Professionals in genetic engineering often face challenges such as staying updated with rapidly evolving technologies, adhering to strict regulatory and safety protocols, and troubleshooting unexpected experimental results. Collaboration is key, as genetic engineers frequently work with multidisciplinary teams including biologists, chemists, and bioinformaticians to achieve successful project outcomes. Additionally, balancing lab work with documentation and compliance requirements is essential for advancing both research and product development.

What is the difference between Genetic Engineering vs Molecular Biologist?

AspectGenetic EngineeringMolecular Biologist
Required CredentialsTypically a Bachelor's or Master's in Genetics, Biotechnology, or related fieldsUsually a Bachelor's, Master's, or Ph.D. in Molecular Biology or related disciplines
Work EnvironmentLaboratories, biotech companies, research institutionsResearch labs, academic institutions, healthcare settings
Employer & Industry UsageBiotech firms, pharmaceutical companies, agricultural companiesUniversities, research institutes, healthcare organizations

Genetic engineers focus on modifying DNA to develop new products or improve existing ones, often working on practical applications. Molecular biologists study the molecular mechanisms of biological processes, conducting fundamental research. While both roles require similar educational backgrounds and work environments, genetic engineering is more application-driven, whereas molecular biology emphasizes understanding biological systems.

Do genetic engineers make a lot of money?

Genetic engineers typically earn a competitive salary, with median annual wages in the biotechnology and pharmaceutical industries often exceeding the national average for science and engineering roles. Salaries can vary based on experience, education, location, and the complexity of projects, with advanced degrees and specialized skills increasing earning potential.

Is genetic engineering a good career?

Genetic engineering is a growing field that offers opportunities in research, biotechnology, and healthcare, often requiring strong backgrounds in biology, chemistry, and laboratory skills. Careers in this area can be rewarding but typically demand advanced degrees and continuous learning due to rapid technological advancements.

What cities are hiring for Genetic Engineering jobs?

Cities with the most Genetic Engineering job openings:

What are the most commonly searched types of Genetic Engineering jobs?

The most popular types of Genetic Engineering jobs are:

What states have the most Genetic Engineering jobs?

States with the most job openings for Genetic Engineering jobs include:

Infographic showing various Genetic Engineering job openings in the United States as of August 2026, with employment types broken down into 62% Full Time, 13% Temporary, and 25% Contract. Highlights an 100% In-person job distribution, with an average salary of $146,868 per year, or $70.6 per hour.

PMPDPP Tutor - Federal Work Study - Fall 2026/Spring 2027

Seton Hall University

South Orange, NJ • On-site

Part-time

Re-posted 15 days ago


Job description

PMPDPP Tutor - Federal Work Study - Fall 2026/Spring 2027

Apply now Job no: 497387
Full time/Part time: Part-time
Location: South Orange
Categories: Student Employment

JOB SUMMARY

Provide fall and spring academic year tutoring to Pre-Medical/Pre-Dental Plus Program students, in the disciplines outlined below.

DUTIES & RESPONSIBILITIES

Provide academic tutorial assistance to academic year Pre-Medical/Pre-Dental Plus Program (PMPDPP) students, review course assignments and relevant course materials presented in class, and provide members of the PMPDPP staff with appropriate feedback on the progress of participating students.

REQUIRED QUALIFICATIONS

Must be a current EOF student with FWS (Federal Work-study) at Seton Hall University

Must be a current student at Seton Hall University who has completed at least 30 credits at Seton Hall University

Be in good standing with the EOF Programs and Seton Hall University

Minimum cumulative GPA of 3.00 and minimum B+ in the courses being tutored

Excellence in provision of tutorial assistance for the below course content, good communication and problem solving skills, and high level of responsibility. Express willingness to promote and encourage high academic achievement of students.

  • Biology I & II: Introduction to taxonomy, phylogeny, evolution of organisms, structure and function of bodily systems to maintain homeostasis, genetics, the cellular basis of life forms, as well as the structures and functions of biologically important molecules. Covers cellular and molecular aspects of operation of bodily systems that are treated more descriptively in Biology I (e.g., kidney function, nerve cell function, muscle contraction, hormone action and cellular recognition in immunity). Also includes microscopy, permeability, molecular modeling, enzyme studies, spectrophotometry, statistics and data analysis.
  • Genetics: Simple inheritance patterns, cytogenetics, DNA replication, protein synthesis, regulatory mechanisms, genetic engineering and behavioral genetics. Problems of human genetics as related to genetic counseling and genetic engineering. Laboratory experiments illustrate principles of genetics using various organisms. Introduction to statistics and computers as applied to genetics.
  • Cell Biology: Study of cell morphology and cell physiology, including diversity of cell types resulting from cell specialization, the intracellular and intercellular mechanisms by which cells communicate, reproduce, and develop. Experimental approaches and methodology are emphasized, a well as the cell's fundamental importance in medicine and disease. Laboratory exercises emphasize experimental design and execution, as well as data collection, analysis and presentation. Quantitative problem solving is emphasized throughout the lecture and laboratory components
  • Chemistry I and II: Introduction to the principles of chemistry and the chemistry lab, principally for biology and allied health majors.
  • Organic Chemistry I-II and lab: Principal classes of aliphatic and aromatic compounds. Emphasis on structural theory, reaction mechanisms, organic syntheses. Experimental work emphasizes basic organic laboratory techniques and includes an introduction to qualitative organic analysis and Experimental organic chemistry.
  • General Physics I-II: Mechanics, sound and heat, elementary electricity and magnetism, optics and elementary modern physics.
  • Calculus I & II: Real numbers, functions, elements of plane analytic geometry, limits, continuity, derivatives, differentiation of algebraic functions, applications of the derivative, antiderivatives, definite integral and Fundamental Theorem of Calculus. Applications using computer software packages. Applications and techniques of integration. Differentiation of trigonometric and exponential functions and their inverses. . Improper integrals, indeterminate forms, polar coordinates and vectors. Applications using computer software packages.
  • Intermediate Algebra: The real number system, algebraic manipulations, solving equations and inequalities, exponents and radicals, functions and graphing.
  • Pre-Calculus Mathematics Algebra and Trigonometry: The real number system, functions, polynomial functions and equations, exponential and logarithmic functions, trigonometric functions (graphs, applications, identities and equations), analytic geometry. Proficient understanding in the use of Mathematica software and completion of Mathematica assignments.
  • Statistics for Science Majors: Oriented toward direct applications to research problems in the sciences. Collecting and organizing data, design of experiments, standard distributions, statistical tests and procedures used in hypothesis testing. A discursive treatment of the probability theory necessary to understand statistical tests is included but minimized. Emphasis on statistical inference and developing an awareness of statistical methods in a given situation.
DESIRED QUALIFICATIONS

Proficient understanding in the applicable discipline(s).

CONTACT

Cassandra Graham

FEDERAL WORK STUDY ELIGIBILITY

YES - 2026/27 Federal Work Study eligibility required (check your Financial Aid Offer on the University Portal)

Seton Hall University is committed to programs of Equal Employment Opportunity (EEO).

Advertised: 06 Jul 2026 Eastern Daylight Time
Applications close: 02 Oct 2026 Eastern Daylight Time

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