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Microscopy Jobs in Decatur, GA (NOW HIRING)

The incumbent will design and execute studies using a comprehensive and integrative experimental approach that includes pressure myography, Ca2+ imaging, advanced microscopy, flow cytometry, genetic ...

Post Doctoral Fellow

Atlanta, GA

$47K - $64K/yr

Experience with cellular analysis methods such as flow cytometry, immunostaining, fluorescence microscopy, ELISA, western blotting, qPCR, or related techniques. * Experience applying genetic ...

Post Doctoral Fellow

Atlanta, GA · On-site

$47K - $64K/yr

Experience with cellular analysis methods such as flow cytometry, immunostaining, fluorescence microscopy, ELISA, western blotting, qPCR, or related techniques. * Experience applying genetic ...

The incumbent will design and execute studies using a comprehensive and integrative experimental approach that includes pressure myography, Ca2+ imaging, advanced microscopy, flow cytometry, genetic ...

Post Doctoral Fellow

Atlanta, GA · On-site

$47K - $64K/yr

Cryogenic electron microscopy (cryoEM) cryoET, tomography structural biology. * An established publication record. * A strong background in cryoEM or cryoET is required. * Prior experience in RNA or ...

Post Doctoral Fellow

Atlanta, GA · On-site

$47K - $64K/yr

Cryogenic electron microscopy (cryoEM) cryoET, tomography structural biology. * An established publication record. * A strong background in cryoEM or cryoET is required. * Prior experience in RNA or ...

Microscopy/Analysis: Learn to properly align all optical components of the microscope to guarantee that the lamp is centered, and the condenser and field diaphragm are properly adjusted for Kohler ...

Postdoctoral Fellow

Atlanta, GA · On-site

$47K - $63K/yr

Proficiency in qPCR, Western blotting, ELISA, Luminex, flow cytometry, immunofluorescence microscopy, histology, cytokine analysis, and/or RNA sequencing. * Familiarity with HIV, ART exposure ...

Post Doctoral Fellow

Atlanta, GA · On-site

$47K - $64K/yr

Molecular biology methods (Western blot, microscopy, flow cytometry, ELISA) * Bioinformatics analysis (RNA-Seq analysis) * Assay development (biochemical, cell-based, medium- and high-throughput ...

Showing results 41-60

Microscopy information

See Decatur, GA salary details

$48.3K

$89.8K

$139.1K

How much do microscopy jobs pay per year?

As of Sep 12, 2026, the average yearly pay for microscopy in Decatur, GA is $89,840.00, according to ZipRecruiter salary data. Most workers in this role earn between $72,700.00 and $100,600.00 per year, depending on experience, location, and employer.

What is microscopy?

A Microscopy job involves using microscopes to analyze samples at a microscopic level for research, medical, or industrial purposes. Professionals in this field may work in laboratories, hospitals, or manufacturing settings, examining biological specimens, materials, or nanostructures. Responsibilities often include sample preparation, imaging, data analysis, and maintaining microscopy equipment. Depending on the industry, microscopy experts may assist in disease diagnosis, quality control, or scientific discovery. Strong attention to detail, technical skills, and knowledge of microscopy techniques are essential for success in this role.

What does a microscopy professional do?

As a microscopy professional, your daily responsibilities often include preparing samples, operating and calibrating microscopes, capturing high-quality images, and analyzing data using specialized software. You may collaborate with researchers, engineers, or clinicians to interpret imaging results and contribute to ongoing experiments or quality control processes. Documentation and reporting of findings, as well as maintaining and troubleshooting laboratory equipment, are also integral parts of the job. Depending on your specific work setting, you may be involved in developing new imaging protocols or training team members in proper microscopy techniques.

What are the key skills and qualifications needed to thrive in microscopy?

To thrive in a Microscopy role, you need a strong background in biological or materials sciences and hands-on experience with various microscopy techniques such as light, electron, or confocal microscopy. Familiarity with imaging analysis software, laboratory protocols, and advanced microscopy instruments is typically required, and certifications in laboratory or imaging techniques can be advantageous. Attention to detail, problem-solving ability, and strong collaboration skills help professionals excel when capturing and interpreting complex images. These competencies are essential to ensure high-quality research outcomes, accurate data analysis, and effective teamwork in laboratory or industrial settings.

What kind of jobs use microscopes?

Jobs that use microscopes include roles in research laboratories, healthcare such as histologists and microbiologists, quality control in manufacturing, and forensic analysis. These positions often require knowledge of microscopy techniques, attention to detail, and sometimes specialized certifications or training.

What job categories do people searching Microscopy jobs in Decatur, GA look for?

The top searched job categories for Microscopy jobs in Decatur, GA are:

What cities near Decatur, GA are hiring for Microscopy jobs?

Cities near Decatur, GA with the most Microscopy job openings:

Infographic showing various Microscopy job openings in Decatur, GA as of September 2026, with employment types broken down into 79% Full Time, 18% Part Time, 1% Temporary, and 2% Contract. Highlights an 82% Physical, 2% Hybrid, and 16% Remote job distribution, with an average salary of $89,840 per year, or $43.2 per hour.

Principal Space Solar Mechanical Engineer

Atlanta, GA

Qcells
Clean Energy Semiconductors Manufacturing

Full-time

Posted 15 days ago


Qcells rating

6.8

Company rating: 6.8 out of 10

Based on 24 frontline employees who took The Breakroom Quiz


Job description

Description

 
 
POSITION DESCRIPTION: 

Hanwha Qcells is building its first U.S.-based Space Photovoltaic Systems R&D organization, co-located with Georgia Tech in Atlanta.  The Principal Space Solar Mechanical Engineer will determine how our perovskite-silicon tandem cells survive launch and live in orbit. You will own the mechanical architecture from substrate and bonding system design through structural qualification and lead the mechanical materials characterization that defines reliability margins for long-life space missions. 

The Principal Space Solar Mechanical Engineer is a principal-level individual contributor who sets the mechanical architecture. You will perform studies and work with partners to determine what substrates cells bond to, how they are bonded, how the structural assembly responds to launch loads, and how it stays intact across a mission lifetime. 

Qcells' perovskite-silicon tandem cells are thinner and more mechanically sensitive than conventional space cells, integrated on platforms ranging from rigid CFRP honeycomb to flexible polyimide or woven fabric. This work demands deep materials and structural engineering expertise — and the ability to build hardware and test it, not just model it. 

RESPONSIBILITIES: 

Substrate & Panel Architecture — Technical Ownership 

  • Define and own the substrate and panel mechanical architecture: evaluate, select, and qualify substrate platforms including rigid CFRP honeycomb, flexible polyimide/PEEK, and woven/fabric structures — assessing CTE compatibility, outgassing compliance (ASTM E595, NASA-STD-6016), radiation stability, and manufacturability 

  • Define the panel-level structural configuration: cell layout and density, panel frame and edge seal design, cover glass or protective layer integration, and mechanical interface to the spacecraft structure 

  • Establish and maintain mechanical design standards, design rules, and mass/stiffness/CTE budget frameworks for the module program 

Cell Bonding Systems — Technical Ownership 

  • Design and own the cell bonding system: select adhesive chemistry, define bond line geometry and cure process, specify inspection criteria, and lead trade studies across bonding approaches — silicone, epoxy, thin-film, lamination, and direct integration (welding, sintering) 

  • Develop and own the assembly process for cell integration: surface preparation protocols, adhesive dispensing and placement methods, cure monitoring, and process qualification documentation 

  • Establish bonding quality acceptance criteria and evaluation methods: shear and peel strength testing, cross-section analysis (optical, SEM), thermal cycling endurance, and adhesion retention testing 

Structural & Thermal-Mechanical Analysis 

  • Perform and own structural analysis for the full launch environment — random vibration, sinusoidal sweep, shock, and quasi-static accelerations; lead or directly execute FEA (ANSYS/Abaqus), define analysis methodology, and correlate models to test data 

  • Define and execute CTE mismatch and thermal-mechanical fatigue analysis for bonded cell-substrate systems: predict delamination risk, cycle life, and bond line stress evolution; develop mission-lifetime reliability predictions and test-to-analysis correlation plans 

  • Serve as the team's structural authority at design reviews, qualification reviews, and partner technical meetings 

Hardware Build & Environmental Test 

  • Design and build prototype and qualification test article hardware — personally executing cell bonding, coupon fabrication, and panel-level assembly at the bench; design test fixtures and environmental test configurations for TVAC, vibration, shock, and mechanical load campaigns 

  • Lead or provide senior technical direction for mechanical aspects of environmental test campaigns: test level derivation, data acquisition setup, real-time monitoring criteria, and post-test inspection protocol 

  • Lead failure analysis on mechanical anomalies: optical and electron microscopy, cross-section preparation and analysis, root cause determination, and corrective design or process development 

Radiation Degradation Research — Mechanical Materials Characterization 

  • Design and lead the mechanical materials characterization program for irradiated thin-film, perovskite, and polymeric materials: adhesion strength, fracture toughness, elastic modulus, interfacial bond integrity, and mechanical property changes in perovskite absorber layers and thin-film stack interfaces following proton, electron, or gamma irradiation 

  • Define and execute test plans for radiation-induced changes in polymeric encapsulants and adhesives: mechanical embrittlement assessment, glass transition temperature characterization (DSC), outgassing changes, and optical property shifts 

  • Ensure radiation characterization findings are translated into updated material qualification criteria, design margins, and adhesive selection guidance 

REQUIRED QUALIFICATIONS:
  • M.S. or Ph.D. in mechanical engineering, materials science, aerospace engineering, or a closely related field; Ph.D. preferred for Staff-level placement 

  • 10+ years of hands-on hardware R&D in aerospace, defense, or advanced electronics/photovoltaics, with demonstrated ownership of major mechanical design decisions 

  • Proven technical leadership as an individual contributor: served as mechanical authority for a program, set structural design standards, and mentored other engineers 

  • Deep expertise in adhesive bonding and materials characterization: designed bonding systems, executed bond qualification programs, and interpreted failure analysis 

  • Proficiency in structural analysis for aerospace hardware: load derivation, FEA (ANSYS, Abaqus, or equivalent), and test-to-analysis correlation 

  • Hands-on hardware fabrication experience: building prototype and test articles, designing test fixtures, and leading or supporting environmental test campaigns (TVAC, vibration, shock) 

  • Strong understanding of thermomechanical fatigue and delamination mechanisms in bonded assemblies subjected to cyclic thermal loading 

PREFERRED QUALIFICATIONS: 
  • Experience with space-qualified panel or substrate design: lightweight composites, flexible PV substrates, or satellite structural hardware 

  • Familiarity with space PV packaging materials — encapsulants, adhesives, coverglass bonding, backsheets — and their behavior in the space environment 

  • Materials outgassing characterization and selection for vacuum/space applications (ASTM E595, NASA-STD-6016) 

  • Knowledge of space environmental effects on mechanical material properties: radiation-induced embrittlement, atomic oxygen erosion, UV degradation, and cryogenic behavior 

  • CAD proficiency (SolidWorks, NX, or equivalent) with experience producing complete drawing packages for precision hardware 

  • Materials characterization instrumentation: SEM/EDS, DSC, TGA, FTIR, nano-indentation, or equivalent 

  • Publications or presentations in space structures, PV packaging, or materials reliability 

  • Experience with ITAR-controlled technical programs 

COMPENSATION: 

In accordance with applicable pay transparency laws, the anticipated annual base salary for this position is: 

  • Zone 1 (Bay Area, NYC): $208,100 - $254,300   

  • Zone 2 (CA, NJ, NY): $190,700 - $233,100   

  • Zone 3 (All others): $173,400 - $211,900   

The applicable salary range is based on the employee’s primary work location. Individual compensation will be determined based on qualifications, relevant experience, education, skills, internal equity, and other business-related factors. 

Hanwha Q CELLS Technologies, Inc. a subsidiary of Hanwha Q CELLS, one of the world´s largest and most recognized photovoltaic manufacturers for its high-performance, high-quality solar cells and modules. It is headquartered in Seoul, South Korea (Global Executive HQ) Talheim, Germany (Technology & Innovation HQ) and Santa Clara, CA, USA (HW and SW Product Development HQ). Through its growing global business network spanning Europe, North America, Asia, South America, Africa, and the Middle East, the company provides excellent services and long-term partnerships to its customers in the utility, commercial, government, and residential markets. Hanwha Q CELLS is a flagship company of Hanwha Group, a FORTUNE Global 500 firm and a Top 7 business enterprise in South Korea.        

PHYSICAL, MENTAL & ENVIRONMENTAL DEMANDS: 

To comply with the Rehabilitation Act of 1973 the essential physical, mental and environmental requirements for this job are listed below. These are requirements normally expected to perform regular job duties. Incumbent must be able to successfully perform all of the functions of the job with or without reasonable accommodation.  

Mobility 

Standing 

20% of time  

Sitting 

70% of time  

Walking 

10% of time  

Strength 

Pulling 

up to 10 Pounds  

Pushing 

up to 10 Pounds  

Carrying 

up to 10 Pounds  

Lifting 

up to 10 Pounds  

Dexterity (F = Frequently, O = Occasionally, N = Never) 

Typing 

Handling 

Reaching 

Agility (F = Frequently, O = Occasionally, N = Never) 

Turning 

Twisting 

Bending 

Crouching 

Balancing 

Climbing 

Crawling 

Kneeling 


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