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Computer Scientist Jobs in Jackson, MS (NOW HIRING)

SME Data Scientist Location: Jackson, MS 39211 - Onsite Duration: 1 year with possible extensions Local candidates are highly preferred Required Skills: 7 years working as a data scientist with ...

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Computer Scientist information

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$44K

$97K

$119.8K

How much do computer scientist jobs pay per year?

As of Aug 16, 2026, the average yearly pay for computer scientist in Jackson, MS is $97,027.00, according to ZipRecruiter salary data. Most workers in this role earn between $82,300.00 and $119,400.00 per year, depending on experience, location, and employer.

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

To thrive as a Computer Scientist, you need a strong background in mathematics, programming, and algorithm design, usually supported by a degree in computer science or a related field. Familiarity with programming languages (such as Python, Java, C++), development tools, and version control systems is typically required, along with knowledge of specialized software or frameworks relevant to your area. Analytical thinking, problem-solving, and effective communication are crucial soft skills that help you collaborate and present complex ideas clearly. These skills and qualifications are important for developing innovative solutions, advancing technology, and working efficiently in multidisciplinary teams.

What is a computer scientist?

Computer scientists are professionals who study the theory, design, development, and application of computer systems and software. They work on solving complex problems using algorithms, programming languages, and computational methods. Their work can range from developing new technologies, improving cybersecurity, creating software, to researching artificial intelligence and machine learning. Computer scientists are employed in various industries, including tech companies, research institutions, government agencies, and academia.

What does a computer scientist do?

Computer scientists solve problems using technology. They write and program software, create applications for mobile devices, and develop websites. Their primary objectives are to validate and to develop mathematical models capable of computer interaction between people and other computers. They do this by running computer programs and improving computer processes and performance. Beyond working within theoretical frameworks, computer scientists can also research and focus in areas such as data structure and algorithms, information and database theory, software engineering, numerical analysis, computational complexity theory, computer graphics, programming language theory, and computer vision.

How do computer scientists typically collaborate with other departments within an organization?

Computer scientists often work closely with teams from engineering, product management, data analytics, and IT to design, implement, and optimize technological solutions. Collaboration may involve participating in cross-functional meetings, providing technical expertise to inform business decisions, and integrating software systems with other platforms. Effective communication and teamwork are key, as computer scientists must translate complex technical concepts into actionable insights for non-technical colleagues. This collaborative environment not only broadens your professional network but also enhances your problem-solving skills through exposure to diverse perspectives.

What is the difference between Computer Scientist vs Software Engineer?

AspectComputer ScientistSoftware Engineer
Required CredentialsBachelor's or higher in CS or related field; often advanced degreesBachelor's or higher in CS, Software Engineering, or related field
Work EnvironmentResearch labs, academia, R&D departmentsTech companies, software development firms, IT departments
Employer & Industry UsageUniversities, research institutions, tech companiesSoftware development companies, startups, large corporations
Common Search & Comparison IntentUnderstanding roles, career paths, and skillsJob requirements, responsibilities, and career growth

Computer Scientists focus on theoretical foundations, algorithms, and research, often working in academia or R&D. Software Engineers design, develop, and maintain software applications in industry settings. While both roles require strong programming skills and a background in computer science, their work environments and primary objectives differ.

What are popular job titles related to Computer Scientist jobs in Jackson, MS?

For Computer Scientist jobs in Jackson, MS, the most frequently searched job titles are:

What job categories do people searching Computer Scientist jobs in Jackson, MS look for?

The top searched job categories for Computer Scientist jobs in Jackson, MS are:

What cities near Jackson, MS are hiring for Computer Scientist jobs?

Cities near Jackson, MS with the most Computer Scientist job openings:

Infographic showing various Computer Scientist job openings in Jackson, MS as of August 2026, with employment types broken down into 100% Full Time. Highlights an 100% In-person job distribution, with an average salary of $97,027 per year, or $46.6 per hour.

Data Scientist/Developer

Accord Technologies Inc.

Jackson, MS โ€ข On-site

Contractor

Re-posted 25 days ago


Job description

Data scientist/developer
Jackson, MS (Remote)
5 months Contract

 
 
Job Requirement:

Data scientist/software developer to support a proof of- concept demonstration using natural language processing and other machine learning methods to improve the intake process.
This work is critical to demonstrating the potential of the latest technology to improve the lives of children at risk.

The Data Scientist/Developer will be responsible for supporting the development, implementation, and testing of

statistical models, integration of NLP, and refinement and testing of the prototype. The data scientist will work closely

with State stakeholders and technical team members to ensure the quality of the results and that the derived methods

are transparent, statistically sound, relevant, and documented.

Key Responsibilities

• Current Processes & Technology

o Collectively engage with MDCPS and other team members to understand the current intake process and

outcomes.

o Identify how the State decides to deploy resources based on the intake information.

o Contribute to the identification of shortcomings in the intake process and opportunities to improve outcomes.

Use information from interviews, discovery sessions, and workshops to identify.

o Identify any internal data sources used in the intake process.

• Devise New Intake Approach Using New Technologies

o Based on an understanding of the current intake process and its shortcomings, devise and propose an

improved process using natural language processing and other machine learning methods to favorably impact child

outcomes while reducing resources.

o Quantify to the extent possible, the impact of the improved process and use of new technology.

• Map Anticipated Data Source Changes

o Determine how internal data sources might change with future modifications to core IT systems used by

MDCPS.

o Adjust the proposed intake process to account for any data source changes

• Design Review(s)

o Conduct a preliminary and a final design review of an improved intake tool proof-of-concept implementation.

o Include anticipated outcomes from the use of the technology and any differences that may be evident from the

proof-of-concept implementation.

o If an LLM is intended to be used, show how the data will be protected.

o Identify the source of the data that will be used in the proof-of-concept implementation. If data from the State is

unavailable, describe an alternative approach.

• Implementation of Proof-of-Concept

o Create a means of hosting data, whether the data is provided by the State, simulated, or other means.

o Construct a demonstrable prototype application that will illustrate the new technology’s impact on children and

State resources.

o Build the prototype application using Python, C++, JAVA, and/or SQL, or similar language. Use Postgres or a

similar database if needed.

o Integrate the proof-of-concept with the available data source.

o Conduct tests to validate the functionality of the application.

o Validate to the extent possible, the impact on children and State resources from using the prototype in a fully

implemented form.

o Seek validation of the application’s efficacy from key State stakeholders through one-on-one demonstrations.

• Conference Room Demonstration

o During 3-4 days, provide a conference room demonstration that shows how the prototype application can

improve child outcomes and reduce State resources.

o Provide stakeholders a hands-on-experience with the application.

• Agile Development Process

o Participate in the Agile development process to ensure the success of the project.

Requirement Details:

• Bachelor’s or Master’s degree in computer science, engineering, physics, or related field.

• Have participated in US Federal Gov’t data science programs requiring TS/SCI clearance, delivering solutions

requiring the combination of geospatial disciplines, and pattern of life analysis.

• Proven expertise custom developing AI programs “from the ground up”, including but not limited to, text

processing, and optimized selection and application of multiple LLMs.

• Minimum two (2) years of experience designing and implementing machine-learning solutions based on first

principles, including developing custom statistical methods without reliance on pre-built libraries.

• Minimum academic math background to include full calculus series, linear algebra, and statistics. Discrete

math, advanced statistics, and differential equations are a plus.

• Knowledge and competence in databases such as Postgres, MySQL, SQL Server, as well as Python, C++,

JAVA, React, NextJS, NodeJS, and AWS.

• Experience deploying analytic models in pilot or AWS production environments.

• Good communication skills with both technical and non-technical people.

• Strong understanding of model validation and performance measurement.

• Experience deploying advanced analytic solutions in public-sector or regulated environments.