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Solid Edge Remote Jobs in New York (NOW HIRING)

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Solid Edge Remote information

What is a Solid Edge Remote?

A Solid Edge Remote job involves using Solid Edge, a 3D CAD (Computer-Aided Design) software, to design and model parts, assemblies, or products while working from a location outside of a traditional office. Employees in these roles typically collaborate with teams online, share design files, and participate in virtual meetings. Remote Solid Edge professionals may work for engineering firms, manufacturing companies, or as independent contractors. The flexibility of remote work allows them to perform all design tasks using cloud-based tools or secure company connections.

What are some common challenges faced by Solid Edge Remote professionals when collaborating with distributed teams?

Solid Edge Remote professionals often encounter challenges related to file sharing, version control, and real-time collaboration with team members who may be in different locations or time zones. Effective communication and utilizing cloud-based PLM (Product Lifecycle Management) solutions are key to ensuring everyone is working with the latest models and data. Regular virtual meetings and clear documentation practices help keep projects on track and minimize miscommunication. Adapting to varied IT infrastructures and ensuring all team members have access to necessary software and hardware can also be hurdles that require proactive coordination.

What are the key skills and qualifications needed to thrive as a Solid Edge Remote designer, and why are they important?

To thrive as a Solid Edge Remote Designer, you need a strong background in mechanical or product design, CAD drafting, and a relevant engineering degree or certification. Expertise in Solid Edge CAD software, familiarity with PLM systems, and experience with remote collaboration tools are typically essential. Excellent problem-solving abilities, self-motivation, and effective communication skills help you manage projects and collaborate with distributed teams. These skills ensure accurate design delivery, efficient project workflows, and successful teamwork while working remotely.

What is the difference between Solid Edge Remote vs CAD Designer?

AspectSolid Edge RemoteCAD Designer
CredentialsCAD certification, Solid Edge proficiencyCAD certification, software proficiency
Work EnvironmentRemote, home officeOffice or remote depending on employer
Industry UsageProduct design, engineering firmsProduct design, manufacturing, architecture
Job Focus3D modeling, CAD software useDesign drafting, modeling, documentation

Solid Edge Remote primarily involves working remotely on 3D CAD modeling using Solid Edge software, often within engineering or product design firms. CAD Designers may work in similar environments but can use various CAD tools and may work onsite or remotely. While both roles require CAD skills and certifications, Solid Edge Remote emphasizes proficiency with Solid Edge and remote collaboration, whereas CAD Designer roles may involve broader CAD software expertise and different industry applications.

What are the most commonly searched types of Solid Edge jobs in New York?

The most popular types of Solid Edge jobs in New York are:

What job categories do people searching Solid Edge Remote jobs in New York look for?

The top searched job categories for Solid Edge Remote jobs in New York are:

What cities in New York are hiring for Solid Edge Remote jobs?

Cities in New York with the most Solid Edge Remote job openings:

Remote | Computational Mechanics & FEA Expert $60-$75/hour

24-MAG LLC

Manhattan, NY โ€ข On-site, Remote

$60 - $75/hr

Part-time

This job post hasย expired today.ย Applications are no longer accepted.


Job description

Specialised Part-Time Consulting OpportunityWe are sharing a specialised part-time consulting opportunity for computational structural and mechanical engineering professionals with graduate-level expertise in numerical simulation, finite-element analysis, computational mechanics, and scientific software.

This role supports the development of advanced AI benchmarks for research-level computational engineering. Selected experts will design original technical problems that require AI systems to use real scientific software, execute simulations, interpret numerical results, plan computational experiments, and reason through complex engineering workflows.

Key ResponsibilitiesComputational Engineering Problem DesignCreate original graduate-level problems in structural, mechanical, thermal, and computational engineeringDevelop tasks based on realistic scientific and engineering workflowsDesign problems that require multi-step numerical reasoning rather than simple formula applicationConstruct tasks with clearly defined setups, expected outputs, and objective validation criteriaRefine problem difficulty based on model performance and evaluation resultsFinite-Element & Structural MechanicsDevelop computational problems involving beam, plate, and shell analysisWork with linear and nonlinear elasticity, continuum mechanics, and solid mechanicsDesign tasks using finite-element and variational formulationsIncorporate mesh refinement, convergence studies, and numerical verificationApply theories such as Eulerโ€“Bernoulli and Timoshenko beam formulations where relevantScientific Simulation & Numerical MethodsBuild problems requiring specialised open-source scientific softwareApply finite-element, finite-volume, Galerkin, PDE discretisation, and related numerical methodsDevelop tasks involving constitutive modelling, numerical linear algebra, and nonlinear solution techniquesEvaluate numerical stability, convergence, accuracy, and modelling assumptionsCreate workflows that reflect genuine computational research practiceMechanical, Thermal & Multiphysics ModellingDesign tasks involving computational fluid dynamics and fluid mechanicsDevelop thermal-fluid, heat-transfer, and mass-transfer simulationsCreate problems involving thermodynamics, combustion, and HVAC or thermal systemsWork with coupled multiphysics simulations and engineering system modelsDevelop optimisation, reliability, and manufacturing-simulation problems where relevantScientific Software & Solver WorkflowsApply hands-on expertise with tools such as FEniCSx/DOLFINx, scikit-fem, OpenFOAM, deal. II, MFEM, MOOSE, CalculiX, Elmer FEM, Code_Aster, SfePy, FiPy, Devito, Cantera, CoolProp, Pyomo, or SimPyDevelop problem setups and reference solutions using domain-specific computational toolsWork with other open-source structural, mechanical, and scientific solver frameworks where appropriateDiagnose solver limitations, numerical edge cases, and implementation failure modesUse Python and, where relevant, C, C++, or Fortran-based scientific codesAI Benchmark DevelopmentTest computational problems against advanced AI systemsAnalyse whether models can correctly execute scientific workflows and interpret resultsDesign tasks where models must strategically choose simulations, measurements, or queriesCreate challenges where hidden information must be inferred from partial computational resultsIteratively adjust tasks until they achieve the intended level of difficulty and discriminationValidation & ReproducibilityWrite reference implementations, oracle functions, and solution validatorsVerify that benchmark answers are numerically and scientifically correctEnsure computational tasks are reproducible across controlled environmentsDocument assumptions, parameters, boundary conditions, and expected outputs clearlyWork within Linux-based and remote computational environmentsIdeal ProfileMaster's degree, PhD, or equivalent research experience in Mechanical Engineering, Structural Engineering, Computational Engineering, Applied Mechanics, or a closely related STEM disciplineStrong hands-on experience with computational structural or mechanical engineering softwareProven proficiency with at least one relevant open-source scientific computing or simulation frameworkProfessional or research experience using numerical methods to solve real engineering problemsStrong understanding of finite-element analysis, computational mechanics, PDE-based modelling, or related numerical disciplinesStrong Python programming skillsAbility to develop computational setups, reference solutions, and automated validatorsComfortable working in Linux and terminal-based environmentsAbility to diagnose numerical edge cases, solver failures, and modelling limitationsResearch publications, open-source contributions, or substantial professional simulation work are highly valuedExperience across multiple computational engineering tools or disciplines is advantageousFamiliarity with benchmark design, scientific teaching, or advanced problem-set development is beneficialExperience with computational reproducibility or containerised environments is advantageousEngagement DetailsPart-time independent contractor engagementFully remoteExpected commitment of at least 15โ€“20 hours per weekFlexible scheduling based on project requirementsCompensation: $60โ€“$75/hourWork involves computational task design, validation, and AI benchmark developmentProjects may be extended, shortened, or concluded based on project needs and performanceWork must be completed without using confidential or proprietary information belonging to any employer, client, institution, or other third partyH1-B and STEM OPT support is unavailable for this engagementAbout the PlatformThis opportunity is available through 24-MAG LLC. We connect experienced professionals with remote consulting opportunities across technical, evaluation, and project-based workstreams.

By submitting this application, you acknowledge that your information may be processed by 24-MAG LLC for recruitment and opportunity matching in accordance with our Privacy Policy: https://www.24-mag.com/privacy-policy.