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Phd Materials Science Jobs in Florida (NOW HIRING)

What You Bring (requirements) • PhD in Materials Science, Materials Engineering, Metallurgical Engineering, or a closely related technical discipline, with recognized expertise in advanced ...

Ph.D. in physics, chemistry, or materials science; Preferred Qualifications: At least five years (including PhD thesis research) of experience in DFT-based first-principles calculations. Strong ...

PhD or DVM preferred. Relevant disciplines may include neuroscience, biomedical science, biology, toxicology, materials science, or a related field. Bachelor's degree with significant directly ...

Intern C, Mechanical Engineer

Palm Bay, FL · On-site

$16 - $21.50/hr

Must be pursuing a bachelor's degree, a master's degree, or a PhD in Mechanical Engineering, Aerospace Engineering, Engineering Mechanics, Materials Science Engineering or related field at an ...

The Opportunity The Petelski Lab in the Department of Materials Science & Engineering is seeking ... PhD in Biomedical Sciences, Bioengineering, or any related field. Preferred Qualifications: Working ...

Lead Thermal Design Engineer

Miami, FL · On-site

$98K - $129K/yr

Bachelor's degree in Mechanical Engineering, Aerospace Engineering, Materials Science, or related field; Master's or PhD preferred * 7+ years of experience in thermal systems design, with significant ...

Lead Thermal Design Engineer

Miami, FL

$98K - $129K/yr

Bachelor's degree in Mechanical Engineering, Aerospace Engineering, Materials Science, or related field; Master's or PhD preferred * 7+ years of experience in thermal systems design, with significant ...

Lead Thermal Design Engineer

Miami, FL · On-site

$98K - $129K/yr

Bachelor's degree in Mechanical Engineering, Aerospace Engineering, Materials Science, or related field; Master's or PhD preferred * 7+ years of experience in thermal systems design, with significant ...

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Phd Materials Science information

See Florida salary details

$39.6K

$92.6K

$129.3K

How much do phd materials science jobs pay per year?

As of Aug 26, 2026, the average yearly pay for phd materials science in Florida is $92,644.00, according to ZipRecruiter salary data. Most workers in this role earn between $69,900.00 and $124,800.00 per year, depending on experience, location, and employer.

What is a PhD in materials science?

A PhD in Materials Science is an advanced research degree focused on the study of the properties, structure, performance, and applications of materials such as metals, polymers, ceramics, and composites. Students in this program conduct original research to develop new materials or improve existing ones for use in various industries, including electronics, aerospace, energy, and healthcare. Graduates often pursue careers in academia, research institutions, or industry, where they contribute to innovations in technology and manufacturing.

What are the key skills and qualifications needed to thrive as a PhD in materials science?

To thrive as a PhD in Materials Science, you need advanced knowledge in physics, chemistry, and engineering principles, along with a doctoral degree in the field. Expertise in analytical techniques (like SEM, TEM, XRD), materials characterization tools, and proficiency in scientific programming or data analysis software are commonly required. Strong problem-solving abilities, collaboration, and effective scientific communication help researchers excel and drive innovation. These skills enable the development of new materials and technologies, essential for progress across industries such as electronics, energy, and manufacturing.

What are some common challenges faced by PhD holders in materials science when transitioning from academia to industry roles?

PhD holders in Materials Science may encounter challenges such as adapting to faster-paced project timelines, learning to prioritize commercially viable outcomes over purely theoretical research, and collaborating with cross-functional teams from engineering, manufacturing, and business. Industry roles often require clear communication of complex findings to non-specialists and adjusting to structured project management systems. However, these challenges also offer opportunities for professional growth, broader impact, and the chance to see research translated into real-world products.

What is the difference between Phd Materials Science vs Materials Engineer?

AspectPhd Materials ScienceMaterials Engineer
Required CredentialsPhD in Materials Science or related fieldBachelor's or Master's in Materials Science or Engineering
Work EnvironmentResearch labs, academia, R&D departmentsManufacturing, product development, industry labs
Employer & Industry UsageUniversities, research institutions, advanced R&DManufacturers, aerospace, automotive, electronics
Common Search & Comparison IntentUnderstanding academic vs industry roles, research focusPractical application, product development, industry roles

The main difference between Phd Materials Science and Materials Engineer lies in their focus and work environment. PhD holders typically engage in research, academia, and advanced R&D, while Materials Engineers focus on applying materials knowledge in manufacturing and product development within industry settings.

What job categories do people searching Phd Materials Science jobs in Florida look for?

The top searched job categories for Phd Materials Science jobs in Florida are:

What cities in Florida are hiring for Phd Materials Science jobs?

Cities in Florida with the most Phd Materials Science job openings:

Infographic showing various Phd Materials Science job openings in Florida as of August 2026, with employment types broken down into 1% As Needed, 81% Full Time, 14% Part Time, 1% Temporary, 2% Contract, and 1% Nights. Highlights an 92% Physical, 2% Hybrid, and 6% Remote job distribution, with an average salary of $92,644 per year, or $44.5 per hour.

Full-time

Posted 12 days ago


Siemens Energy rating

8.3

Company rating: 8.3 out of 10

Based on 88 frontline employees who took The Breakroom Quiz

115th of 495 rated machine equipment manufacturers


Job description

A Snapshot of Your Day (position overview) As a Materials Expert in our innovation organization, your day will focus on creating novel, automated research environments that transform how advanced materials are designed, synthesized, tested, and evaluated for the energy industry. You will help establish and scale self-driven laboratories that combine AI-based materials design, robotic and automated experimentation, high-throughput characterization, data science, and closed-loop learning to accelerate discovery and reduce the time from concept to validation. In this role, you will shape the technical vision for autonomous materials R&D while also guiding the practical execution needed to turn that vision into robust laboratory capabilities, workflows, and decision-making processes. The ideal candidate is a recognized master in materials science with extensive experience in laboratory automation, data-driven research methods, and R&D process development. You will advise on self-driven lab concepts, define functional strategy, and guide interdisciplinary teams across materials science, automation, data science, software, controls, and engineering. By connecting deep materials expertise with autonomous experimentation and scalable research processes, you will help Siemens Energy build a capability that strengthens innovation, de-risks technology development, and supports the future of sustainable, reliable, and affordable energy. How You'll Make an Impact (responsibilities) • Lead the development of novel, automated research environments that enable advanced materials to be designed, synthesized, tested, characterized, and evaluated with increasing levels of autonomy. • Shape self-driven laboratory concepts by connecting materials science expertise with laboratory automation, robotics, high-throughput experimentation, data science, and AI-based materials design. • Define and guide closed-loop R&D workflows that integrate experimental planning, automated execution, data capture, analysis, learning, and decision-making to accelerate materials discovery and validation. • Translate strategic objectives into practical laboratory architectures, automation roadmaps, digital workflows, test methods, and scalable R&D processes that can be deployed across energy technology programs. • Guide interdisciplinary teams across materials science, automation, data science, software, controls, engineering, and laboratory operations to move concepts from early ideation to robust technical execution. • Apply deep materials science mastery to identify high-value use cases, define experimental priorities, interpret complex data, and ensure autonomous systems generate technically meaningful and actionable results. • Establish standards for data quality, experimental traceability, safety, compliance, and reproducibility so automated research environments operate reliably and deliver trusted outcomes. • Build a future-ready, Materials capability that strengthens innovation, reduces development risk, and accelerates materials solutions for sustainable, reliable, and affordable energy. What You Bring (requirements) • PhD in Materials Science, Materials Engineering, Metallurgical Engineering, or a closely related technical discipline, with recognized expertise in advanced materials research, characterization, processing, and performance evaluation. • Established reputation as a materials science expert, with demonstrated ability to define technical direction, influence R&D strategy, and provide authoritative guidance on complex materials challenges relevant to energy technologies. • Extensive experience creating, modernizing, or scaling research laboratory environments, including automated experimentation, high-throughput workflows, robotic or programmable test systems, and digitally connected laboratory infrastructure. • Strong understanding of data science applications in materials R&D, including experimental data management, statistical analysis, machine learning concepts, AI-enabled materials design, and closed-loop learning approaches. • Proven ability to translate functional strategy into technical execution by defining laboratory architectures, automation roadmaps, digital workflows, test methods, data standards, and scalable R&D processes. • Deep technical foundation in materials characterization, structure-property relationships, degradation mechanisms, processing effects, and performance validation, preferably for high-temperature, structural, coating, alloy, or energy-relevant materials systems. • Experience guiding interdisciplinary teams across materials science, automation, data science, software, controls, engineering, and laboratory operations, with the credibility to align senior stakeholders and technical specialists around a shared vision. • Excellent communication, mentoring, and influencing skills, with the ability to explain complex materials and autonomous R&D concepts to technical teams, business stakeholders, and leadership audiences. About the Team Our Corporate and Global Functions are essential in driving the company's strategic initiatives and ensuring operational excellence across various departments, business areas, and regions. These roles support our vision to become the most valued energy technology company in the world. As part of our team, you contribute to our vision by shaping the global energy transition, partnering with our internal and external stakeholders, and conducting business responsibly and in compliance with legal requirements and regulations. Who is Siemens Energy? At Siemens Energy, we are more than just an energy technology company. With ~100,000 dedicated employees in more than 90 countries, we develop the energy systems of the future, ensuring that the growing energy demand of the global community is met reliably and sustainably. The technologies created in our research departments and factories drive the energy transition and provide the base for one sixth of the world's electricity generation. Our global team is committed to making sustainable, reliable, and affordable energy a reality by pushing the boundaries of what is possible. We uphold a 150-year legacy of innovation that encourages our search for people who will support our focus on decarbonization, new technologies, and energy transformation. Find out how you can make a difference at Siemens Energy: https://www.siemens-energy.com/employeevideo Rewards
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