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Manufacturing Engineer Intern Jobs in Wyoming (NOW HIRING)

$18 - $50/hr

... innovative global manufacturers design better products, faster! With the resources of a large ... The intern will assist in the development of engineering datasets, digital thread demonstrations ...

New

$18 - $50/hr

... innovative global manufacturers design better products, faster! With the resources of a large ... The intern will assist in the development of engineering datasets, digital thread demonstrations ...

New

$18 - $50/hr

... innovative global manufacturers design better products, faster! With the resources of a large ... The intern will assist in the development of engineering datasets, digital thread demonstrations ...

New

$18 - $50/hr

... innovative global manufacturers design better products, faster! With the resources of a large ... The intern will assist in the development of engineering datasets, digital thread demonstrations ...

New

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Manufacturing Engineer Intern information

See Wyoming salary details

$10

$18

$28

How much do manufacturing engineer intern jobs pay per hour?

As of Sep 7, 2026, the average hourly pay for manufacturing engineer intern in Wyoming is $18.57, according to ZipRecruiter salary data. Most workers in this role earn between $15.48 and $20.10 per hour, depending on experience, location, and employer.

What does a manufacturing engineer intern do?

A Manufacturing Engineer Intern assists experienced engineers in designing, optimizing, and improving manufacturing processes within a production environment. Their responsibilities often include analyzing workflow, helping to troubleshoot equipment or process issues, collecting data, and participating in projects aimed at increasing efficiency, quality, and safety. Interns may also work on documentation, process validation, and supporting the implementation of new technologies. This role provides hands-on experience in a real-world manufacturing setting and helps interns develop problem-solving and technical skills.

What types of projects and responsibilities can a manufacturing engineer intern expect to work on during their internship?

As a Manufacturing Engineer Intern, you can expect to be involved in a range of hands-on projects, such as process optimization, workflow analysis, and supporting the implementation of lean manufacturing practices. Interns often assist with data collection on the production floor, collaborate with cross-functional teams like quality assurance and design engineering, and help troubleshoot equipment or process issues. This role offers opportunities to contribute to real improvements in efficiency and quality, while gaining exposure to the daily operations and challenges faced by manufacturing teams.

What are the key skills and qualifications needed to thrive as a manufacturing engineer intern, and why are they important?

To thrive as a Manufacturing Engineer Intern, you need a strong understanding of engineering fundamentals, problem-solving abilities, and a background in mechanical, industrial, or manufacturing engineering coursework. Familiarity with CAD software, lean manufacturing principles, and basic data analysis tools is typically required. Strong communication, teamwork, and adaptability are valued soft skills that help interns effectively contribute to projects and collaborate with cross-functional teams. These skills and qualities are essential to improve manufacturing processes, ensure product quality, and support continuous improvement initiatives in a real-world production environment.

What is the difference between Manufacturing Engineer Intern vs Manufacturing Engineer?

AspectManufacturing Engineer InternManufacturing Engineer
Required CredentialsTypically pursuing a bachelor's degree in engineering or related fieldBachelor's degree in manufacturing, industrial, or mechanical engineering; often a master's for senior roles
Work EnvironmentInternship setting, often in manufacturing plants or corporate officesFull-time professional role in manufacturing facilities or engineering departments
Employer & Industry UsageInternship programs in manufacturing companies, industrial firms, or OEMsEstablished manufacturing companies across various industries

The main difference between a Manufacturing Engineer Intern and a Manufacturing Engineer is experience level and responsibility. Interns are typically students gaining practical exposure, while Manufacturing Engineers are full-time professionals responsible for designing, improving, and overseeing manufacturing processes.

What are the most commonly searched types of Manufacturing Engineer jobs in Wyoming?

The most popular types of Manufacturing Engineer jobs in Wyoming are:

What cities in Wyoming are hiring for Manufacturing Engineer Intern jobs?

Cities in Wyoming with the most Manufacturing Engineer Intern job openings:

$89K/yr

Full-time

Posted 12 days ago


Key responsibilities

  • Review planning documents, Preliminary Engineering Reports (PER), and analysis to evaluate the technical merit of funding applications.

  • Oversee the establishment and maintenance of engineering records, references, working materials, and electronic project management tools.

  • Perform assignments requiring professional experience and technical competence in civil engineering activities related to rural credit and development programs.


United States Department Of Agriculture rating

7.8

Company rating: 7.8 out of 10

Based on 25 frontline employees who took The Breakroom Quiz

456th of 856 rated public administrative organizations


Job description

This position is located in an Area or State Office in Wyoming, USDA, Rural Development (RD). The incumbent performs a variety of assignments requiring professional experience and technical competence in civil engineering activities, procedures, principles, techniques and evaluations utilized in the performance of supervised rural credit and development programs.
This position is filled through the Office of Personnel Management's (OPM) Direct-Hire Authority for this occupation.Qualifications:Applicants must meet all qualifications and eligibility requirements by the closing date of the announcement including specialized experience and/or education, as defined below.
In addition to meeting the basic requirement listed below in Education, qualified applicants must possess:
For the GS-12 level:
Applicants must have one (1) year of specialized experience equivalent to at least the GS-11 or its non-federal equivalent that demonstrates experience reviewing planning documents, Preliminary Engineering Reports (PER), completed analysis, and recommendations regarding the technical merit of applications for funding. Experience reviewing projects for modesty in size, cost, design, and compliance of the facility with federal, state, local laws, regulations, departmental funding policies, and cost-effective requirements. Oversee the establishment and maintenance of necessary engineering records, references, and working materials, as well as electronic project management and/or underwriting tools. There is no education substitution for the GS-12 grade level.
Experience refers to paid and unpaid experience, including volunteer work done through National Service programs (e.g., Peace Corps, AmeriCorps) and other organizations (e.g., professional; philanthropic; religious; spiritual; community, student, social). Volunteer work helps build critical competencies and can provide valuable training and experience that translates directly to paid employment. You will receive credit for all qualifying experience, including volunteer experience.Education:Basic Requirements:
A. Degree: Engineering.
To be acceptable, the program must: (1) lead to a degree in a school of engineering with at least one program accredited by ABET; or (2) include differential and integral calculus and courses (more advanced than first-year physics and chemistry) in five of the following seven areas of engineering science or physics: (a) statics, dynamics; (b) strength of materials (stress-strain relationships); (c) fluid mechanics, hydraulics; (d) thermodynamics; (e) electrical fields and circuits; (f) nature and properties of materials (relating particle and aggregate structure to properties);and (g) any other comparable area of fundamental engineering science or physics, such as optics, heat transfer, soil mechanics, or electronics OR
B. Combination of education and experience -- college-level education, training, and/or technical experience that furnished
(1) a thorough knowledge of the physical and mathematical sciences underlying engineering, and (2) a good understanding, both theoretical and practical, of the engineering sciences and techniques and their applications to one of the branches of engineering. The adequacy of such background must be demonstrated by one of the following:
1. Professional registration or licensure -- Current registration as an Engineer Intern( EI), Engineer in Training (EIT)1, or licensure as a Professional Engineer (PE) by any State, the District of Columbia, Guam, or Puerto Rico. Absent other means of qualifying under this standard, those applicants who achieved such registration by means other than written test (e.g., State grandfather or eminence provisions) are eligible only for positions that are within or closely related to the specialty field of their registration. For example, an applicant who attains registration through a State Board's eminence provision as a manufacturing engineer typically would be rated eligible only for manufacturing engineering positions.
2. Written Test -- Evidence of having successfully passed the Fundamentals of Engineering (FE) 2 examination or any other written test required for professional registration by an engineering licensure board in the various States, the District of Columbia, Guam, and Puerto Rico.
3. Specified academic courses -- Successful completion of at least 60 semester hours of courses in the physical, mathematical, and engineering sciences and that included the courses specified in the basic requirements under paragraph A. The courses must be fully acceptable toward meeting the requirements of an engineering program as described in paragraph A.
4. Related curriculum -- Successful completion of a curriculum leading to a bachelor's degree in an appropriate scientific field, e.g., engineering technology, physics, chemistry, architecture, computer science, mathematics, hydrology, or geology, maybe accepted in lieu of a degree in engineering, provided the applicant has had at least 1 year of professional engineering experience acquired under professional engineering supervision and guidance. Ordinarily there should be either an established plan of intensive training to develop professional engineering competence, or several years of prior professional engineering-type experience, e.g., in interdisciplinary positions. (The above examples of related curricula are not all inclusive.)Employment Type: OTHER

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