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Summer Atomic Force Microscopy Jobs (NOW HIRING)

... Atomic Force Microscopy (AFM) and polymer rheology · Knowledge of modern plastic manufacturing processes, including injection molding, blow molding, thermoforming, film extrusion/lamination, and ...

Atomic Force Microscopy (AFM) * X-ray diffraction (XRD) and related X-ray characterization techniques * Electrical and electromechanical characterization of functional ceramics * Impedance ...

Sr Polymer Chemist

Fullerton, CA · On-site

$120K - $130K/yr

... Atomic Force Microscopy (AFM) and polymer rheology · Knowledge of modern plastic manufacturing processes, including injection molding, blow molding, thermoforming, film extrusion/lamination, and ...

Hands-on experience with advanced microscopy imaging techniques, including Atomic Force Microscopy (AFM), Scanning Electron Microscopy (SEM), Fluorescence, and Confocal microscopy. * Proficient in ...

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Summer Atomic Force Microscopy information

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How much do summer atomic force microscopy jobs pay per hour?

As of Aug 22, 2026, the average hourly pay for summer atomic force microscopy in the United States is $26.33, according to ZipRecruiter salary data. Most workers in this role earn between $18.51 and $31.73 per hour, depending on experience, location, and employer.

What is a summer atomic force microscopy position?

A Summer Atomic Force Microscopy (AFM) position is a temporary research or internship role, often offered to students or early-career scientists, focused on learning and applying AFM techniques during the summer months. Individuals in this position typically assist with experiments that use AFM to image and analyze surfaces at the nanoscale. The role may involve sample preparation, data collection, and interpretation of results under the supervision of experienced researchers. Such positions provide practical experience in nanotechnology and materials science while contributing to ongoing research projects.

What types of projects or experiments can a summer atomic force microscopy intern expect to work on, and how are tasks typically structured within the research team?

As a Summer Atomic Force Microscopy (AFM) intern, you will likely assist with preparing and analyzing nanoscale samples, conducting surface imaging experiments, and interpreting data under the supervision of senior researchers. Tasks are often structured as part of ongoing research projects, meaning you'll collaborate closely with postdocs, graduate students, and lab managers. You may be responsible for setting up equipment, running AFM scans, troubleshooting minor issues, and documenting results. This hands-on experience helps develop both technical and analytical skills, while regular team meetings and mentorship offer valuable opportunities for learning and professional growth.

What are the key skills and qualifications needed to thrive as a summer atomic force microscopy researcher, and why are they important?

To thrive as a Summer Atomic Force Microscopy Researcher, you need a solid background in physics, materials science, or engineering, often supported by relevant coursework or laboratory experience. Familiarity with AFM instrumentation, image analysis software, and basic data processing tools such as MATLAB or Python is commonly required. Attention to detail, problem-solving skills, and effective communication abilities help researchers excel when conducting experiments and presenting findings. These skills ensure accurate data collection, effective troubleshooting, and successful collaboration in research environments.

What is the difference between Summer Atomic Force Microscopy vs Summer Nanotechnology Intern?

AspectSummer Atomic Force MicroscopySummer Nanotechnology Intern
CredentialsUndergraduate or graduate in physics, materials science, or engineeringSimilar educational background, often in nanotech or related fields
Work EnvironmentLaboratories focusing on surface analysis and microscopyResearch labs or industry settings working on nanotech projects
Industry UsageUsed for surface characterization at nanoscaleApplied in nanotech research and development

Both roles typically require a background in science or engineering and involve working in laboratory environments. While Summer Atomic Force Microscopy focuses specifically on surface imaging techniques, Summer Nanotechnology Interns may work across various nanotech projects, including microscopy, synthesis, and device fabrication. The roles are closely related, with the main difference being the specific focus on microscopy techniques in the Atomic Force Microscopy role.

What can summer atomic force microscopy be used for?

Summer atomic force microscopy is used to analyze surface topography, measure nanoscale features, and study material properties at the atomic level. It is commonly employed in research laboratories for materials science, biology, and nanotechnology applications, requiring skills in microscopy operation and data analysis.
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Infographic showing various Summer Atomic Force Microscopy job openings in the United States as of August 2026, with employment types broken down into 1% As Needed, 82% Full Time, 14% Part Time, and 3% Contract. Highlights an 95% Physical, 1% Hybrid, and 4% Remote job distribution, with an average salary of $54,762 per year, or $26.3 per hour.

Molecular Design & DNA Nanotechnology Lead

Astera

Emeryville, CA • On-site

$180K - $200K/yr

Full-time

Posted 29 days ago


Job description

About Astera
Astera is a private foundation on a mission to steer science and technology toward an abundant future. We believe the coming years will bring an era of unprecedented scientific and technological advancement as exponential progress in AI converges with central advances in other fields to dramatically accelerate innovation. This inflection point provides an unparalleled opportunity to fundamentally rethink the institutions, systems, and tools that drive scientific progress.
Unlike traditional non-profit research organizations, projects supported by Astera operate like high-velocity startups, allowing us to focus on ambitious goals, match structure to problem, and attract strong technical talent and leadership. You can read more about our mission, vision, and programming here.
Position Summary
The Astera Institute is seeking a Molecular Design & DNA Nanotechnology Lead to lead the design and wet-lab fabrication of a DNA-origami electrostatic actuator - a charged origami plate/polymer/electrode stack that, driven by an applied field, produces controlled nanometer-scale motion through a force-transmitting linkage. This position reports to Dr. Jeremy Barton (Astera Institute Resident, Project Lead). This is a full-time position.
Responsibilities
  • Design the DNA-origami actuator mechanism - the charged drive plate, the force-transmitting structure, and the amplifying lever or four-bar linkage - that turns a small electrostatic deflection of the plate into a larger, controlled output displacement within a sub-200-nanometer footprint.
  • Use coarse-grained molecular-dynamics simulation (e.g., oxDNA) to predict the mechanism's mechanical behavior - stiffness, compliance, and thermal stability of its motion - and iterate the design.
  • Fold and optimize the DNA origami in the wet lab (annealing, buffer, and magnesium conditions), and design the site-specific chemistry that anchors the plate and mechanism to the device surface.
  • Own folding yield and quality control, and prepare structures for characterization by atomic-force microscopy (AFM), cryo-electron microscopy, and single-molecule fluorescence.
  • Lead a small, interdisciplinary founding team and collaborate closely with device-physics, controls, and computational colleagues.

Qualifications and Experience
  • PhD in structural DNA nanotechnology, biophysics, bioengineering, chemistry, or a related field, with demonstrated DNA-origami design and folding experience.
  • Proficiency with DNA-nanostructure design tools and coarse-grained molecular-dynamics simulation (e.g., caDNAno, oxDNA).
  • Hands-on wet-lab command of folding, gel and AFM quality control, and purification.
  • A track record of taking nanoscale structures from design through to characterized, functional devices.
  • Ability to lead a small interdisciplinary team and communicate across disciplines.

Location
This position is on site at our office in Emeryville, CA. Some travel may be required from time-to-time for in-person collaboration and work.
Compensation
The posted salary range is based on location in the Bay Area. The successful candidate will receive a competitive compensation package, commensurate with their experience and location.
  • See the Benefits Summary.

Cultural Alignment
  • Bias to action - you launch and iterate on thoughtful experiments rather than waiting for perfect plans, and you're energized by novel problems.
  • Flexible by default - you don't draw hard lines around your job description and expect your role to evolve significantly over 6-12 months.
  • High standards, internally driven - you hold yourself to the bar of building world-class public goods without benchmarking against others.
  • Operate with the highest levels of integrity, judgment, and stewardship - you treat residents, peers, and vendors with genuine respect for their time and contributions.
  • Embrace the tools that define great work today - Astera is building for an AI-driven future and equips the team accordingly; we see these as genuine force multipliers, not optional extras.