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Temporary Quantum Computer Jobs (NOW HIRING)

Warehouse Associate Temp (2347)

San Bernardino, CA · On-site

$16.50 - $19.50/hr

Intermediate computer knowledge. * Knowledge of Component Control Quantum. * Ability to operate forklift and pallet jack OTHER : * The selected applicant will be subject to a background check and ...

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Temporary Quantum Computer information

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How much do temporary quantum computer jobs pay per hour?

As of Sep 4, 2026, the average hourly pay for temporary quantum computer in the United States is $20.85, according to ZipRecruiter salary data. Most workers in this role earn between $17.55 and $23.32 per hour, depending on experience, location, and employer.

What is a temporary quantum computer?

Temporary quantum computers are quantum computing systems that are made available for a limited period, often through cloud-based services or short-term rentals. These systems allow researchers, businesses, or educational institutions to access quantum computing power without owning the hardware. Temporary quantum computers are ideal for running experiments, testing algorithms, or exploring quantum programming without a long-term commitment. Access is typically managed via online platforms and may be billed per use or subscription.

What skills and qualifications are needed to work with temporary quantum computers?

To thrive as a Quantum Computer Engineer, you need a strong background in quantum mechanics, computer science, and mathematics, usually supported by a relevant degree such as physics, electrical engineering, or computer science. Familiarity with quantum programming languages (like Qiskit or Cirq), quantum hardware platforms, and simulation tools is essential, and advanced certifications or research experience are highly valued. Analytical thinking, problem-solving, and effective communication are key soft skills that help navigate complex technical challenges and collaborate within multidisciplinary teams. These skills and qualifications are crucial for advancing quantum computing technologies and solving previously intractable computational problems.

What challenges do professionals face in temporary quantum computing roles?

Professionals in temporary quantum computing positions often encounter challenges such as quickly adapting to rapidly evolving technologies and project requirements. Since these roles may be project-based or time-limited, there is often a need to rapidly onboard, understand existing research, and contribute effectively within short timelines. Collaboration with interdisciplinary teams—spanning physicists, engineers, and software developers—requires strong communication skills and the ability to bridge knowledge gaps between different domains. Additionally, keeping up with frequent updates in hardware and software platforms is essential to remain productive and deliver results.

What is the difference between Temporary Quantum Computer vs Quantum Software Developer?

AspectTemporary Quantum ComputerQuantum Software Developer
Required CredentialsTypically no formal credentials; technical knowledge of quantum hardwareDegree in computer science, physics, or related; knowledge of quantum algorithms
Work EnvironmentLaboratories, research centers, or cloud-based quantum platformsSoftware development teams, R&D departments, tech companies
Industry UsageQuantum hardware testing, research, and experimentationDeveloping quantum algorithms, applications, and software solutions
Common Search IntentUnderstanding hardware roles, temporary positions in quantum labsBuilding quantum software, programming quantum computers

The main difference is that a Temporary Quantum Computer refers to a role involving the hardware or access to quantum computing devices, often in research or testing environments. In contrast, a Quantum Software Developer focuses on creating software and algorithms for quantum computers. Both roles are essential in the quantum industry but serve different functions—hardware access versus software development.

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What cities are hiring for Temporary Quantum Computer jobs?

Cities with the most Temporary Quantum Computer job openings:

What are the most commonly searched types of Quantum Computer jobs?

The most popular types of Quantum Computer jobs are:

What states have the most Temporary Quantum Computer jobs?

States with the most job openings for Temporary Quantum Computer jobs include:

Infographic showing various Temporary Quantum Computer job openings in the United States as of August 2026, with employment types broken down into 1% As Needed, 82% Full Time, 13% Part Time, 3% Contract, and 1% Nights. Highlights an 81% Physical, 2% Hybrid, and 17% Remote job distribution, with an average salary of $43,372 per year, or $20.9 per hour.

Computational Chemistry Scientist - Drug Discovery

TCWGlobal

San Diego, CA • On-site, Remote

$54.49/hr

Contractor

Posted 14 days ago


Job description

Computational Chemistry Scientist – Drug Discovery (Contract)

Pay Rate: Up to $54.49/hour

Duration: 12-Month Temporary Assignment

Hours: Full-Time

Start Date: ASAP

Location: San Diego, CA (Onsite)


Summary

We are seeking an experienced Computational Chemistry Scientist to support drug discovery programs through computationally driven approaches for the design and optimization of novel compounds. In this role, you will apply computational chemistry, molecular modeling, cheminformatics, and advanced computational methods to help identify and optimize compounds with balanced target, DMPK, and in-vivo properties.


The ideal candidate brings hands-on experience applying computational methodologies to real-world drug discovery programs, with expertise in one or more areas such as structure-based design, free energy perturbation (FEP), virtual screening, molecular dynamics, quantum chemistry, machine learning, or modern AI. This individual will work closely with multidisciplinary project teams, communicate computational insights clearly, and independently drive projects while maintaining a highly collaborative approach.


What You'll Do

• Drive computationally supported drug discovery projects from early lead identification through advanced lead optimization

• Apply molecular modeling and computational chemistry approaches to design and optimize compounds with balanced target, DMPK, and in-vivo properties

• Serve as a subject matter expert in one or more computational discovery approaches, including structure-based design, FEP, virtual screening, quantum chemistry, molecular dynamics, machine learning, or AI

• Apply molecular modeling techniques including pharmacophore analysis, library design, virtual high-throughput screening, diversity and similarity analysis, and scaffold hopping

• Perform protein-ligand modeling using commercial docking platforms and molecular dynamics methods, including post-docking analysis

• Develop and apply machine learning and AI models to predict DMPK and in-vitro biology endpoints and support more efficient multi-parameter optimization and compound design

• Leverage large chemistry and chemogenomic datasets, including relevant public-domain datasets, to generate predictive insights for drug discovery programs

• Integrate multiple computational approaches, including machine learning predictions and structure-based or ligand-based modeling, to inform compound design strategies

• Independently drive structure-based design projects, including consideration of target protein flexibility and other factors affecting compound optimization

• Serve as a computational chemistry representative on multidisciplinary project teams, communicating results and recommendations to support project decision-making

• Present computational findings, modeling results, and scientific insights to discovery project teams and cross-functional stakeholders

• Contribute innovative ideas and advanced methodologies to strengthen computational chemistry capabilities and support multiple discovery programs

• Lead or advance one to two computational technology platforms, developing new methods that align with project needs and broader computational chemistry strategies

• Collaborate with Research stakeholders to exchange key findings, align on project strategies, and advance compound development

• Provide training, mentorship, or technical guidance to junior team members as needed


What You Bring

• Bachelor's degree in Chemistry or a related field with 5+ years of relevant experience

OR

• Master's degree in Chemistry or a related field with 3+ years of relevant experience

OR

• PhD in Computational Chemistry or a related discipline with relevant industry or research experience

• Hands-on experience applying computational chemistry and molecular modeling approaches to drug discovery

• Experience in one or more areas including protein-ligand docking, post-docking analysis, molecular dynamics, homology modeling, quantum chemistry, pharmacophore analysis, or diversity analysis

• Strong understanding of physical chemistry, computational chemistry, cheminformatics, molecular modeling, and their application to compound design and optimization

• Experience using computational methods to support lead identification and optimization within multidisciplinary drug discovery programs

• Programming or scripting experience using Python, C++, R, or similar languages

• Familiarity with commercial molecular modeling platforms such as Schrödinger, CCG, OpenEye, or similar tools

• Ability to interpret computational and experimental results, identify inconsistencies or anomalies, and communicate their scientific implications

• Strong scientific reasoning, analytical thinking, and problem-solving skills

• Ability to independently manage projects and deliver high-quality work with minimal supervision

• Excellent written and verbal communication skills with the ability to clearly explain technical concepts and computational results

• Strong organizational skills and ability to manage multiple deadlines while maintaining accuracy and efficiency

• Collaborative mindset with the ability to work effectively across multidisciplinary scientific teams


Bonus Points If You Have

• Experience with free energy perturbation (FEP) or other advanced structure-based drug design methodologies

• Postdoctoral experience in computational chemistry or cheminformatics

• Experience developing machine learning or AI models for drug discovery

• Experience working with large-scale chemistry or chemogenomic datasets

• Experience assessing early-stage targets, including computational approaches to target druggability

• Experience designing or implementing new computational chemistry methodologies or platforms

• Experience working within pharmaceutical or biotechnology drug discovery programs

• Experience providing technical mentorship or training to junior scientists



TCWGlobal is an equal opportunity employer. We do not discriminate based on age, ethnicity, gender, nationality, religious belief, or sexual orientation.

It is unlawful in Massachusetts to require or administer a lie detector test as a condition of employment or continued employment. An employer who violates this law shall be subject to criminal penalties and civil liability.