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Work Study Teen Computer Science Jobs in Santa Rosa, CA

Master's degree in Computer Science, Data Science, Computational Biology, Bioinformatics, Applied ... Ability to work independently, rapidly prototype solutions, and solve ambiguous technical problems ...

Scientific Data Engineer

Bodega Bay, CA · On-site

$135K - $163K/yr

Demonstrated ability to work effectively as part of a cross-disciplinary team. Desired skills/knowledge: * Master's or PhD in Computer Science or related field, with 5 or more years of professional ...

Scientific Data Engineer

Bodega Bay, CA

$135K - $163K/yr

Demonstrated ability to work effectively as part of a cross-disciplinary team. Desired skills/knowledge: * Master's or PhD in Computer Science or related field, with 5 or more years of professional ...

Showing results 21-40

Work Study Teen Computer Science information

See Santa Rosa, CA salary details

$61.8K

$90.9K

$107.1K

How much do work study teen computer science jobs pay per year?

As of Sep 14, 2026, the average yearly pay for work study teen computer science in Santa Rosa, CA is $90,865.00, according to ZipRecruiter salary data. Most workers in this role earn between $84,700.00 and $102,200.00 per year, depending on experience, location, and employer.

What is a Work Study Teen Computer Science?

A Work Study Teen Computer Science position is a part-time job opportunity for high school or college students, typically supported by a school's work-study program, where students gain hands-on experience in computer science fields. These roles often include tasks like assisting with coding projects, providing technical support, or helping with IT-related duties in educational or nonprofit settings. It allows teens to earn money while learning valuable technical skills and gaining exposure to real-world computer science work environments.

What types of projects or tasks can I expect to work on as a Work Study Teen Computer Science?

As a Work Study Teen Computer Science employee, you can expect to assist with basic coding assignments, help maintain computer labs, support software or hardware troubleshooting, and participate in team projects such as simple app or website development. You may also be asked to assist fellow students with programming concepts or collaborate with staff on technology initiatives. The role often provides hands-on experience in both technical tasks and teamwork, making it an excellent stepping stone for further studies or careers in computer science.

What are the key skills and qualifications needed to thrive as a Work Study Teen Computer Science, and why are they important?

To excel as a Work Study Teen in Computer Science, you need a basic understanding of programming concepts, problem-solving abilities, and a strong academic standing in math or related coursework. Familiarity with common programming languages (like Python or Java), office productivity software, and possibly introductory coding platforms is helpful. Initiative, effective time management, and the ability to collaborate or seek guidance are standout soft skills for this role. These abilities allow you to contribute meaningfully to projects, learn quickly, and gain valuable experience for future computer science opportunities.

What is the difference between Work Study Teen Computer Science vs Work Study Teen Information Technology?

AspectWork Study Teen Computer ScienceWork Study Teen Information Technology
Required CredentialsHigh school diploma or equivalent; basic programming knowledgeHigh school diploma or equivalent; familiarity with IT concepts
Work EnvironmentComputer labs, classrooms, or office settingsOffice environments, tech support centers, or labs
Employer & Industry UsageEducational institutions, tech companies, or government programsEducational institutions, tech firms, or IT service providers
Common Search & ComparisonYesYes

Work Study Teen Computer Science focuses on programming, coding, and software development tasks, while Work Study Teen Information Technology emphasizes broader tech support, hardware, and network management. Both roles often require similar educational backgrounds and are used in educational and tech environments. The main difference lies in the specific skill sets and job responsibilities.

What are typical work study jobs for a work study teen computer science?

Work study teens in computer science often hold positions such as IT support assistants, lab technicians, or software development aides. These roles typically involve tasks like troubleshooting hardware and software, assisting with coding projects, or maintaining computer systems, often requiring basic programming skills and familiarity with tools like Python or Java. Work hours are usually flexible to accommodate student schedules and may require supervision or training from staff or faculty.

What jobs can I get while studying computer science as a work study teen?

Work-study teens studying computer science can typically find roles such as computer lab assistants, IT support aides, or programming tutors, which often involve basic technical tasks and troubleshooting. These positions help develop skills in coding, hardware, and software, and may require familiarity with tools like programming languages or operating systems. Scheduling is usually flexible to accommodate student hours, and some positions may require prior coursework or certifications in technology fundamentals.

What jobs can I get with a work study teen computer science?

Work Study Teen Computer Science positions typically include roles such as computer lab assistant, IT support aide, or programming tutor, often involving tasks like troubleshooting, basic coding, or assisting with technology setup. These jobs help develop skills in programming languages, computer hardware, and software applications within a school or community environment.

What are the most commonly searched types of Teen Computer Science jobs in Santa Rosa, CA?

The most popular types of Teen Computer Science jobs in Santa Rosa, CA are:

What cities near Santa Rosa, CA are hiring for Work Study Teen Computer Science jobs?

Cities near Santa Rosa, CA with the most Work Study Teen Computer Science job openings:

Beyond Moore Computational Research Scientist

Bodega Bay, CA

Full-time

Medical, Retirement, PTO

Re-posted 8 days ago


Key responsibilities

  • Design circuits, hardware accelerators, and processor architectures using post-Moore devices to accelerate key HPC applications and application kernels.

  • Develop models and methodologies to evaluate the performance and energy efficiency of these circuits within architectural simulation frameworks and heterogeneous systems.

  • Publish research findings, present at conferences, and contribute to proposal development related to extreme heterogeneous computing and domain-specific hardware acceleration.


Job description

Berkeley Lab's Applied math and Computational Sciences Division has an opening for a Beyond Moore Computational Research Scientist to evaluate and develop devices to hardware/circuit co-design flow for architectural specializations for high performance computing neuromorphic and edge computing applications.

In the absence of Moore's Law Scaling, the DOE must investigate alternative paths to continuing computing performance improvements for scientific applications through architectural specialization. Since the beginning of the microchip, we have become accustomed to Moore's Law relentlessly delivering a doubling of performance, energy efficiency, and density for high-performance computing (HPC) (and all electronic devices) every 18-24 months. This expectation has led to a relatively stable ecosystem built around general-purpose processor technologies such as the x86, ARM, and Power instruction set architectures. However, with the tapering of lithography improvements, shrinking transistors can no longer be relied on exclusively to deliver continued performance improvements in digital electronics.

Absent of a new transistor technology to replace CMOS, the primary opportunity for continued performance improvement for digital electronics and HPC is to make more efficient use of transistors through architecture specialization, application-specific acceleration, and compilers/programming-models that better control data movement than those available today. The successful applicant will contribute to the development and evaluation of novel heterogeneous devices based circuit design for extreme heterogeneous SoC (System on Chip) designs, and evaluate their merit for emerging computational workloads for the purpose of maximizing performance and energy efficiency. This work will have a broad impact on high performance and other larger-scale computing for critical applications for society and science. The successful applicant will need to have expertise with computer architecture and processor design and from the ground up, and have skills in Spice analog/digital circuit design, Verilog and use of CAD/EDA tools It is also beneficial if the candidate has experience with full tape-out experience of ASICs. Using those skills, the successful applicant will design post-Moore devices-based compute, memory, or data transfer blocks for key application kernels to demonstrate the merit of this approach. The applicant will also make key intellectual contributions and consequently publish papers to the emerging field of extreme heterogeneous computing and domain-specific specializations. Knowledge of processor design techniques like Logic-In-Memory/In-Memory Computing, Spiking Neural Network (SNN) architectures and multivalued logic design techniques is a bonus.

You will:

  • Design circuits, hardware accelerators and processor architectures using post-Moore devices to accelerate key HPC applications and application kernels.

  • Develop compact models and methodologies to use these circuits for performance and energy characterizations which can be used in architectural simulation framework for tightly integrating these accelerators into heterogeneous systems and SoCs that may contain multiple different kinds of accelerator devices.

  • Identify opportunities and challenges for devices to architectural design space exploration for several post-Moore devices to address those bottlenecks and develop circuit design models to determine the performance potential for those solutions.

  • Develop architectural and circuit models for emulation in FPGA hardware

  • Develop metrics and benchmark tests in order to compare conventional CMOS based processors/accelerators and enhanced post-Moore devices based computational accelerators for key HPC applications and algorithms.

  • Publish work in academic journals and present it at conferences and workshops.

  • Lead and assist in the preparation of proposals for funding.

  • Mentor graduate students and postdocs.

 

We are looking for:

  • PhD or equivalent in a Computing Science or Computer Engineering-related scientific discipline

  • Mandatory 3 Years of Postdoctoral research experience or equivalent research experience.

  • Past Experience in either Machine learning accelerators or SRAM array design or basic blocks of processor at transistor level and/or Superconducting circuit design.

  • ourses or experience in CAD for VLSI algorithms and C++ Programming.

  • Proficient in Spice Circuit Simulations, Verilog and hardware design in CMOS, FeFET, NCFET etc.

  • Familiarity with hardware EDA/CAD tools and evaluation/modelling tools in order to extend existing infrastructure to rapidly evaluate CMOS designs.

  • Demonstrated creativity, initiative and ability to design, develop and implement complex solutions in consultation with designated technical expert(s) and/or supervisor.

  • Experience and track-record writing technical papers and reports.

  • Experience with the use of script languages and system utilities such as configure, Perl, UNIX shell scripts, and "make."

  • Proven record of working effectively in a team, seeing projects through to completion, meeting deadlines, interacting with users, and thorough documentation of contributions.

  • Willingness to learn and develop skills in new topics.

 

Desired skills/knowledge:

  • Previous experience and publications in Processing-In-Memory and Logic-in-Memory architectures is highly desirable.

  • Experience with developing computational dynamical systems, including networks of coupled oscillators

  • Experience with computational or systems neuroscience

  • Experience with Superconducting Circuit simulation and design

  • Experience with neuromorphic computing

  • Experience with coding in C++/python for CAD tool development for ASIC design.

  • Experience with higher-level hardware design languages (HDLs) such as CHISEL, PyMTL, or others.

  • Experience with FPGA design flows.

  • Demonstrated ability to lead technical efforts with teams of people will also be beneficial.

We're here for the same mission, to bring science solutions to the world. Join our team and YOU will play a supporting role in our goal to address global challenges! Have a high level of impact and work for an organization associated with 17 Nobel Prizes!

Why join Berkeley Lab?

We invest in our employees by offering a total rewards package you can count on:

  • Exceptional health and retirement benefits, including pension or 401K-style plans

  • A culture where you'll belong - we are invested in our teams! 

  • In addition to accruing vacation and sick time, we also have a Winter Holiday Shutdown every year.

  • Parental bonding leave (for both mothers and fathers)

Additional information:

  • Application date: Priority consideration will be given to candidates who apply by January 20, 2026. Applications will be accepted until the job posting is removed.

  • Appointment type: This is a full-time, 2 year, term appointment with the possibility of extension or conversion to Career appointment based upon satisfactory job performance, continuing availability of funds and ongoing operational needs.

  • Salary range: The expected salary for this position is $94,740 - $227,376, which fits into the full salary of $126,324 - $176,832 depending upon the candidate's skills, knowledge, and abilities. This includes education, certifications, and years of experience.

  • Background check: This position is subject to a background check. Any convictions will be evaluated to determine if they directly relate to the responsibilities and requirements of the position. Having a conviction history will not automatically disqualify an applicant from being considered for employment.

  • Work modality: Work may be performed on-site, hybrid, full-time telework. The primary location for this role is Lawrence Berkeley National Lab, 1 Cyclotron Road, Berkeley, CA. Work must be performed within the United States. A REAL ID or other acceptable form of identification is required to access Berkeley Lab sites (for more information click here).

Want to learn more about working at Berkeley Lab? Please visit: careers.lbl.gov

Equal Employment Opportunity Employer: The foundation of Berkeley Lab is our Stewardship Values: Team Science, Service, Trust, Innovation, and Respect; and we strive to build community with these shared values and commitments. Berkeley Lab is an Equal Opportunity Employer. We heartily welcome applications from all who could contribute to the Lab's mission of leading scientific discovery, excellence, and professionalism. In support of our rich global community, all qualified applicants will be considered for employment without regard to race, color, religion, sex, sexual orientation, gender identity, national origin, disability, age, protected veteran status, or other protected categories under State and Federal law.

Misconduct Disclosure Requirement: As a condition of employment, the finalist will be required to disclose if they are subject to any final administrative or judicial decisions within the last seven years determining that they committed any misconduct, are currently being investigated for misconduct, left a position during an investigation for alleged misconduct, or have filed an appeal with a previous employer.