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Python Mechanical Engineer Jobs in Colorado (NOW HIRING)

Project Engineer III- Mechanical

Golden, CO · On-site

$39.20 - $62.31/hr

The Opportunity with McKinstry We are currently seeking a Mechanical Project Engineer III to join ... Familiarity with MATLAB, VBA, Python, InDesign, IES-VE, and/or other software tools welcome.

The Opportunity with McKinstry We are currently seeking a Mechanical Project Engineer III to join ... Familiarity with MATLAB, VBA, Python, InDesign, IES-VE, and/or other software tools welcome.

Advisory Engineer, Hardware HPSC

Boulder, CO · On-site

$128K - $169K/yr

Advisory Mechanical / Hardware Engineer Ricoh USA - Boulder R&D About the Role Versatile hardware ... When mechanical workload ebbs, you'll flex into software: Python and C++ for robotics, image ...

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Python Mechanical Engineer information

What is the difference between Python Mechanical Engineer vs Mechanical Design Engineer?

AspectPython Mechanical EngineerMechanical Design Engineer
Required SkillsPython programming, mechanical engineering fundamentalsMechanical design, CAD software, engineering principles
Work EnvironmentSoftware development teams, engineering labsDesign offices, manufacturing facilities
CertificationsOptional Python or software certifications, engineering licensesProfessional Engineer (PE), CAD certifications
Industry UsageAutomation, robotics, simulationProduct design, machinery, structural components

The main difference between a Python Mechanical Engineer and a Mechanical Design Engineer lies in their focus areas. Python Mechanical Engineers combine programming skills with mechanical engineering knowledge to develop automation and simulation tools, while Mechanical Design Engineers focus on creating physical product designs using CAD software. Both roles are essential in engineering projects but serve different functions within the industry.

What engineers make $500,000?

Senior engineers in specialized fields such as petroleum, aerospace, or software engineering with extensive experience and advanced skills can earn $500,000 or more annually. High compensation often involves leadership roles, bonuses, stock options, or working in high-demand industries with complex projects.

Is Python useful for mechanical engineers?

Python is a valuable tool for mechanical engineers, as it can be used for data analysis, automation, simulation, and scripting tasks. Learning Python can enhance efficiency in CAD, finite element analysis, and control systems, making it a beneficial skill in the field.

What are the key skills and qualifications needed to thrive as a Python Mechanical Engineer, and why are they important?

To thrive as a Python Mechanical Engineer, you need a solid foundation in mechanical engineering principles, strong programming skills in Python, and typically a bachelor’s degree in mechanical engineering or a related field. Familiarity with simulation and modeling tools like ANSYS or SolidWorks, as well as experience with Python libraries such as NumPy and pandas, is highly beneficial. Problem-solving abilities, effective communication, and adaptability set candidates apart in this role. These skills are essential for efficiently designing, analyzing, and automating engineering processes, leading to innovative and optimized mechanical solutions.

Can I make 200k as a mechanical engineer?

Mechanical engineers can earn $200,000 or more annually, typically with extensive experience, advanced skills, or in specialized industries such as aerospace or energy. Achieving this salary often requires a combination of seniority, advanced degrees, professional certifications, and working in high-demand regions or companies. Entry-level salaries are generally lower, and reaching a $200,000 salary usually takes several years of experience and proven expertise.

How do Python Mechanical Engineers typically collaborate with cross-functional teams during product development?

Python Mechanical Engineers often work closely with electrical engineers, software developers, and product managers throughout the product development cycle. Their role involves integrating Python-based automation and simulation tools with mechanical design processes, which requires clear communication and coordination to ensure compatibility and efficiency. Regular meetings, collaborative project management platforms, and shared documentation are commonly used to align goals and resolve technical challenges. This cross-disciplinary teamwork not only enhances product quality but also provides valuable opportunities for professional growth and learning.

Are Python engineers in demand?

Python engineers are in high demand across various industries such as technology, finance, and data science due to Python's versatility and widespread use in automation, machine learning, and web development. Employers seek professionals with strong programming skills, experience with frameworks like Django or Flask, and knowledge of data analysis tools, making Python engineering a valuable and sought-after role in the job market.

What does a Python Mechanical Engineer do?

A Python Mechanical Engineer is a professional who combines mechanical engineering expertise with proficiency in the Python programming language. They often use Python to automate simulations, analyze engineering data, create custom computational tools, and develop scripts for design optimization. Their work can involve tasks such as automating CAD processes, running finite element analysis, or integrating hardware and software systems. This combination of skills is increasingly valuable in industries that emphasize digital engineering and automation.
What are popular job titles related to Python Mechanical Engineer jobs in Colorado? For Python Mechanical Engineer jobs in Colorado, the most frequently searched job titles are:
What cities in Colorado are hiring for Python Mechanical Engineer jobs? Cities in Colorado with the most Python Mechanical Engineer job openings:
Lead Propulsion Engineer, Mechanical Design

Lead Propulsion Engineer, Mechanical Design

Boom Supersonic

Centennial, CO • On-site

$160K - $203K/yr

Full-time

PTO

Posted 20 days ago


Job description

Boom Supersonic's mission is to make the world dramatically more accessible through a renaissance in supersonic flight. Boom is developing the Symphony supersonic engine, which powers the Overture supersonic airliner and the Superpower natural gas turbine for AI. Overture will fly at twice the speed of today's subsonic jets over water and 50% faster over land with Boomless Cruise.
Start the Best Work of Your Career at Boom
Boom Supersonic is building the breakthrough Overture supersonic airliner and the Superpower natural gas turbine-machines that push the boundaries of physics, manufacturing, and industrial ambition.
But aircraft and engines don't build themselves. The single most important variable in our success is a world-class team-people who are unusually talented, unusually driven, and willing to do what others won't even attempt.
That's where you come in.
Not a traditional engineering job
As the Lead Propulsion Engineer, Mechanical Design at Boom, you won't be executing prescribed engineering tasks within a rigid framework set in stone decades ago.
You'll be part of a small, high-performance turbomachinery engineering team responsible for building one of the most ambitious hardware companies of this century. You'll be part of inventing a new 21st century engine manufacturer from the ground up, one that is built on modern tooling and a bias toward action.
You won't be a cog in a machine. You'll be a highly visible operator trusted to define how we engineer turbomachinery structures, as well as actually create and deliver historically important products like the Symphony turbofan engine that will power the Overture supersonic airliner.
Role Overview
As part of the Propulsion Team, you will:
  • Own the design features covering all the mechanically dynamic phenomena in the engine, including loads, actuation, rotordynamics, failure scenarios, and more
  • Develop technically sound design solutions to get symphony turbofan in the air as fast as possible!
  • Interpret, define and review tolerances and features on part drawings
  • Create physical layouts, models, and general arrangements of modules and whole engines such as 2D cross sections, 3D models, tolerance stackups, etc.
  • Contribute to the creation of whole engine models that incorporate structures, rotors, ducts, services routing, actuation, secondary air systems and thermal management
  • Collaborate on specifications and design requirements for each module and help lead cross discipline integration efforts
  • Act as the technical owner for all mechanical aspects of the engine, including fits, seals, mounts, joints and other components
  • Develop and implement plans for assembly and disassembly for both development and production
  • Beyond these specific things, there are many opportunities to get involved in all aspects of Symphony engine development and Overture propulsion system integration, including fabrication and testing. Bring your curiosity!

Ideal Candidate
  • Bachelor's or Master's in Mechanical or Aerospace Engineering or related field
  • 15+ years of professional experience
  • Expert-level experience with CAD systems such as 3DX, Catia or NX
  • Expertise in Geometrics Dimensioning and Tolerancing (GD&T)
  • Familiarity with a variety of manufacturing techniques used in gas turbine production (single crystal casting, hollow core fan blades, linear friction welding, additive manufacturing, etc.)
  • Leadership experience in designing turbomachinery modules and parts, as well as throughout different phases of a program
  • Ability to clearly think through and communicate coupled engine and aircraft system level interactions
  • Willingness to both speak and listen, to give opinions and receive opinions, to consider all the data and be part of building the team consensus to move forward

What Will Set You Apart
  • Rig testing or engine testing experience
  • Supersonic jet engine design experience
  • Part 33 commercial certification experience
  • Experience with parametric modeling and PLM/PDM
  • Knowledge of heat transfer and structural analyses
  • Experience in the part disposition process
  • Background in developing design tools, methods or processes
  • Proficiency with Python or similar programming languages
  • A strong desire to avoid bureaucracy and move fast in a dynamic environment

Compensation
  • P5 Level - Typically 15 + years of experience - Base salary range: $160,000 - $203,000

Actual compensation will vary based on factors including, but not limited to, location, experience, and performance. The range listed is just one component of Boom's total rewards package. Other elements may include long-term incentives/equity, flexible PTO, and a suite of progressive benefits designed to support our employees' well-being and growth.
There is no set deadline to apply for this job opportunity. Applications will be accepted on an ongoing basis until the search is no longer active.
The mission
Engineering roles at Boom are unlike anything else in aerospace or energy: designing a supersonic airliner from first principles, developing advanced propulsion systems, scaling complex hardware programs in a modern manufacturing environment, and building breakthrough industrial turbines to power the next generation of AI data centers.
These aren't jobs. They are career-defining opportunities. Some may even find their calling.
This job is demanding and rewarding
At some companies, you can choose to work long, smart, or hard. At Boom, you'll be doing all three.
You'll move with urgency. You'll manage ambiguity. You'll operate at a high standard. And your work will be visible to company leadership, including the founder. If you want a comfortable engineering role where you run processes and rely on executing procedures defined long ago, look elsewhere.
If you want to be part of a team that could be remembered a century from now, keep reading.
The primary reward of this role is the work itself: partnering with extraordinary people to design and build breakthrough machines. You'll also be well compensated, with competitive cash compensation and meaningful equity grants with significant upside. This is a chance to build more than a product. It's a chance to build a company that history will remember.
Why Boom
Boom is building one of the most ambitious industrial programs of this century. The work is hard, the pace is fast, and the expectations are high.
In return, you'll get real ownership, the chance to work with exceptional teammates, and the opportunity to help build a product line capable of powering the future of supersonic flight and next-generation energy systems.
If this excites you, click apply and let us know why you're excited.
ITAR Requirement
To conform to U.S. Government aerospace technology export regulations (ITAR and EAR), applicant must be a U.S. citizen, lawful permanent resident of the U.S., protected individual as defined by 8 U.S.C 1324b(a)(3), or eligible to obtain the required authorizations from the U.S. Department of State. Learn more about ITAR here.
Boom is an equal opportunity employer and we value diversity. All employment is decided on the basis of qualifications, merit and business need.
Want to build a faster future? Come join Boom.