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Entry Level Reverse Engineer Jobs in Virginia (NOW HIRING)

Entry Level Reverse Engineer information

What does an entry level reverse engineer do?

An entry level reverse engineer analyzes software, hardware, or systems to understand how they work, often by deconstructing code or devices. This role typically involves tasks like identifying vulnerabilities, understanding malware, or ensuring compatibility with other systems. Entry level professionals usually assist senior engineers by documenting findings, using debugging tools, and learning various reverse engineering techniques. They often work in cybersecurity, software development, or product analysis. This job requires strong problem-solving skills and knowledge of programming languages like C or Python.

What are the key skills and qualifications needed to thrive as an entry level reverse engineer, and why are they important?

To thrive as an Entry Level Reverse Engineer, you need a solid understanding of computer architecture, programming (especially in C/C++ and assembly), and knowledge of operating systems, typically supported by a degree in computer science or a related field. Familiarity with tools such as IDA Pro, Ghidra, OllyDbg, and experience with debuggers or disassemblers is essential, and certifications like OSCP or CEH can be beneficial. Strong analytical thinking, attention to detail, and effective problem-solving skills are crucial soft skills for dissecting complex software behaviors. These skills are vital for accurately analyzing software, identifying vulnerabilities, and ensuring security in various environments.

What are some common challenges faced by entry level reverse engineers, and how can they overcome them?

Entry level reverse engineers often encounter challenges such as deciphering complex or obfuscated code, understanding unfamiliar programming languages, and staying up-to-date with evolving security threats. To overcome these obstacles, new professionals benefit from collaborating with experienced team members, leveraging online communities, and using specialized tools for disassembly and debugging. Continuous learning and hands-on practice are essential for building confidence and technical expertise in this fast-paced field.

What is the difference between Entry Level Reverse Engineer vs Malware Analyst?

AspectEntry Level Reverse EngineerMalware Analyst
Required CredentialsBachelor's in Computer Science or related field, basic knowledge of reverse engineering toolsBachelor's in Cybersecurity, Computer Science, or related, with knowledge of malware analysis tools
Work EnvironmentSecurity firms, tech companies, or government agencies focusing on software analysisCybersecurity firms, government agencies, or private sector focusing on threat detection
Employer & Industry UsageCommonly employed in software security, forensics, and vulnerability researchUsed in threat intelligence, incident response, and malware mitigation

While both roles involve analyzing malicious software, Entry Level Reverse Engineers focus on dissecting software binaries to understand their workings, whereas Malware Analysts primarily identify, analyze, and respond to malware threats. The roles often overlap but differ in scope and specific tools used.

What are the most commonly searched types of Reverse Engineer jobs in Virginia?

The most popular types of Reverse Engineer jobs in Virginia are:

What cities in Virginia are hiring for Entry Level Reverse Engineer jobs?

Cities in Virginia with the most Entry Level Reverse Engineer job openings:

Infographic showing various Entry Level Reverse Engineer job openings in Virginia as of August 2026, with employment types broken down into 100% Full Time. Highlights an 100% In-person job distribution.

Mechanical Design Engineer (Entry Level)

Socket.dev

Chesterfield, VA • On-site

$68 - $92/hr

Other

Posted 3 days ago

New


Job description

Mechanical Design Engineer (Entry Level)

Location: Chesterfield, VA
Schedule: 9/80 schedule (every other Friday off)
Job Type: Direct Hire
Starting Salary: $80,000/year (Higher salary available based on experience)
Travel: Approximately 10%

Position Overview

Seeking a hands‑on Mechanical Design Engineerto design, improve, and support specialized heavy equipment and mechanical systems. This role covers the full product lifecycle—from concept and engineering through manufacturing, field deployment, testing, and ongoing improvement.

The ideal candidate enjoys solving complex mechanical problems and working directly with Engineering, Manufacturing, Operations, vendors, and customers.

Key ResponsibilitiesDesign & Development
  • Design new crane systems, heavy equipment, and mechanical components and modify existing equipment.
  • Turn concepts and field requirements into practical mechanical designs.
  • Perform reverse engineering and redesign of existing components.
  • Validate designs using engineering calculations, FEA, CAD modeling, prototyping, and field testing.
  • Improve equipment performance, manufacturability, serviceability, reliability, and cost.
  • Maintain and improve standard equipment designs while meeting engineering, safety, and customer requirements.
Project & Manufacturing Support
  • Manage engineering projects from concept through manufacturing, testing, implementation, and lifecycle support.
  • Lead crane rebuild and refurbishment activities, including inspections, repair planning, upgrades, testing, and final delivery.
  • Work with Manufacturing, Operations, vendors, and suppliers to support production schedules and product releases.
  • Provide technical assistance through troubleshooting, field inspections, on‑site support, and emergency response.
  • Ensure equipment meets applicable specifications, engineering standards, and regulatory requirements.
Engineering Support
  • Apply sound engineering judgment to resolve technical challenges.
  • Maintain accurate engineering drawings, calculations, bills of materials (BOMs), and design records.
  • Support quality assurance, product standardization, and continuous improvement.
  • Communicate technical information effectively with customers, vendors, manufacturing personnel, and cross‑functional teams.
  • Manage multiple projects and priorities, including changing requirements and emergency response needs.
Required Qualifications
  • Bachelor’s degree in Mechanical Engineering or a similar discipline.
  • Proficiency with SolidWorks or equivalent parametric CAD software.
  • Working knowledge of Finite Element Analysis (FEA) and ability to validate results using engineering calculations.
  • Understanding of mechanical design principles, manufacturing processes, and engineering documentation.
  • Strong analytical, organizational, problem‑solving, and time‑management skills.
  • Excellent written and verbal communication skills.
  • Ability to work independently and collaboratively with cross‑functional teams.
  • Commitment to workplace safety and engineering quality.
  • Valid driver’s license.
  • Willingness to travel approximately 10% for inspections, customer support, and field activities.
Preferred Qualifications
  • Engineer-in-Training (EIT) or Professional Engineer (PE) certification.
  • CSWA or CSWP SolidWorks certification.
  • Experience designing heavy equipment, cranes, mobile equipment, or industrial machinery.
  • Experience with hydraulic and electrical systems.
  • Experience supporting products through manufacturing and field deployment.
  • Familiarity with OSHA, ASME, AWS, AAR, or other applicable engineering standards.
Work Environment & Physical Requirements
  • 9/80 work schedule with every other Friday off.
  • Primary work location in Chesterfield, VA, with occasional work at other facilities, customer sites, vendor locations, and field operations.
  • Engineers may occasionally support emergency operations outside normal business hours.
  • Ability to sit, stand, walk, and communicate throughout the workday.
  • Ability to climb on equipment during inspections, testing, and troubleshooting.
  • Ability to occasionally lift up to 50 lbs.
  • Ability to work extended hours when required.
  • Comfortable working safely in both office and industrial environments.
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