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#اطلاع_رسانی
#معرفی_موقعیت_تحصیلی
#دکترا
#کانادا
اعلام یک پوزیشن فول فاند در مقطع دکترا در دانشگاه شربروک با موضوع
Enhancing the Performance and Design of Elocone Nuts for Steel Anchoring Applications
دانش آموختگان مهندسی #مکانیک علاقمند و دارای سابقه تحقیق در زمینه های زیر
- Structural Engineering
- Finite Element Analysis
- Structural Fire Design
- Structural Stability
- Steel Structures
می توانند برای این پوزیشن اقدام کنند.
@comsol_shs
#اطلاع_رسانی
#معرفی_موقعیت_تحصیلی
#کانادا
#پستداک
اعلام یک پوزیشن فول فاند در مقطع پستداک با موضوع
Advance Unsteady Airfoil Theory
در دانشکده مهندسی #مکانیک دانشگاه کلگری
شرایط احراز و فهرست مدارک به شرح آگهی دانشگاه
@comsol_shs
#موقعیت_شغلی
#آلمان
🚀 Materials tester wanted
Are you interested in a young, dynamic team and varied tasks? Do you have completed training as a materials tester or a comparable completed training in the field of materials testing or metal technology?
Then join our team – we look forward to receiving your application!
👉 To the application:
The Basics of COMSOL Multiphysics® in 18 Minutes
Join us on January 14 at 11:30 a.m. EST to get an overview of COMSOL Multiphysics in 18 minutes. The webinar will offer an introduction to the software's multiphysics capabilities, the Model Builder and Model Manager, and how a model can be turned into a simulation app. Register here:
https://buff.ly/40oUkoI
@comsol_shs
Using Uncertainty Quantification to Model Frequency Variation in a MEMS Resonator
Uncertainty quantification can significantly enhance finite element method analysis of MEMS. When using COMSOL Multiphysics with the MEMS Module and the Uncertainty Quantification Module, there are several study types available for analyzing the uncertainty of a quantity of interest (QoI) based on the variation of input parameters.
In this Learning Center article, we use a model of a MEMS resonator to help explain how to use these studies. Start reading here:
https://buff.ly/4h4hFkZ
@comsol_shs
How to Perform a Distributed Parametric Sweep in COMSOL Multiphysics®
To overcome the limitations associated with a standard parametric sweep, COMSOL Floating Network Licenses provide access to features that enable simultaneous solving of multiple parameter values. In this Learning Center article, we guide you through the process of setting up a distributed parametric sweep.
Read it here:
https://buff.ly/4a7Zf0A
@comsol_shs
#موقعیت_شغلی
#رولزرویس
#انگلستان
We’re excited to offer an incredible opportunity for a Materials Engineer with experience working with electronic systems to become part of our team.
In this role, you’ll have the chance to:
🔹Contribute across the product life cycle, from materials technology development for our next-generation electrical power converters to In-service support.
🔹 Provide hands-on materials engineering support to our on-site production team, driving excellence in everything we do.
This is your chance to work on differentiated technologies and make a tangible impact in a global organisation.
📍 Location: Solihull, United Kingdom
📄 Learn more and apply here:
https://rollsroyce.wd3.myworkdayjobs.com/professional/job/Solihull/Electronics-Materials-Engineer_JR6127582-2
@comsol_shs
Modeling Overview: Particle Tracing for Fluid Flow
The Particle Tracing Module, an add-on to COMSOL Multiphysics, can be used to enhance fluid flow simulations and extract more valuable simulation results. The module enables you to track particles and work in conjunction with CFD simulations. Get an overview of the module in this video:
https://buff.ly/4a7LLlt
@comsol_shs
Modeling and Simulation Predictions for 2025
🔮 What does 2025 have in store for modeling and simulation? Read on for 3 predictions plus a look beyond this year...
https://buff.ly/40lyrGR
@comsol_shs
#موقعیت_شغلی
#امارات_متحده_عربی
#ابوظبی
Job Title: E-Bicycle Design Engineer
Location: Abu Dhabi
Job Description: We are seeking a talented and innovative E-Bicycle Design Engineer to join our team. The successful candidate will be responsible for designing, developing, and testing electric bicycles. This role requires a strong background in mechanical and electrical engineering, as well as a passion for sustainable transportation solutions.
Key Responsibilities:
· Design and develop electric bicycles, including frame, motor, battery, and control systems.
· Conduct feasibility studies and create detailed design specifications.
· Collaborate with cross-functional teams to ensure the integration of mechanical and electrical components.
· Perform simulations and tests to validate design concepts and ensure product safety and reliability.
· Stay updated with the latest trends and technologies in the e-bicycle industry.
Qualifications:
· Bachelor's or Master's degree in Mechanical Engineering, Electrical Engineering, or a related field.
· Proven experience in designing and developing electric bicycles or similar products.
· Proficiency in CAD software (e.g., SolidWorks, AutoCAD) and simulation tools.
· Strong understanding of battery management systems, motor controllers, and power electronics (prefered).
· Excellent problem-solving skills and attention to detail.
· Ability to work independently and as part of a team.
Desirable Skills:
· Experience with prototyping and manufacturing processes.
· Knowledge of industry standards and regulations related to electric bicycles.
· Strong communication and project management skills.
How to Apply: Interested candidates should submit their resume and a cover letter detailing their relevant experience and why they are passionate about developing e-bicycles to bashar.khasawneh@ku.ac.ae
@comsol_shs
Sound-Absorbing Boundaries: Local vs. Extended Reaction
Creating an immersive virtual scene, designing a comfortable acoustic environment in a room, and optimizing an audio experience can all be achieved with the help of room acoustics simulation. In today’s blog post, we explore the features in the Acoustics Module that are well suited for such simulations:
https://buff.ly/3PwSCv8
@comsol_shs
#اطلاع_رسانی
#انگلستان
Calling all innovators at Imperial!
Hackstarter, our award-winning prototyping programme, is now open for applications.
🚀 What’s in it for you?
💡 Funding to bring your idea to life
🧠 Expert guidance to accelerate your journey
🌍A chance to showcase your innovation
🗓 Deadline: 9am, 13th January
Whether your idea is in biology, engineering, or beyond—this is your opportunity to make it happen.
Apply now and take the first step toward transforming your vision into reality.
Sign up here:
🔗https://ow.ly/JnVC50Uu7T6
@comsol_shs
#وبینار
Solving Large Models in COMSOL Multiphysics®
Start the new year with a webinar on solving large models! Join us on January 7 to see different modeling techniques and get an overview of the various solvers in the COMSOL Multiphysics software. To register, visit:
https://www.comsol.com/c/ggqx
@comsol_shs
#وبینار
🚙🔊 Acoustics simulation helps engineers ensure optimal vehicle performance and passenger experience. Tune in to our webinar on January 16 to learn more. Register here:
https://www.comsol.com/c/gjfm
Topics include:
🔹Broadband cabin acoustics with integrated audio systems
🔹Acoustic packaging featuring absorbers and damping layers
🔹Electroacoustic speaker design specialized for automotive applications
Homogenization of Material Properties
The homogenization of material properties can be performed through several techniques in COMSOL Multiphysics. Check out this Learning Center article to learn about the different homogenization methods:
https://buff.ly/4gAPmL2
@comsol_shs
شوک حرارتی یکی از دلایل شناخته شده در شکست شیشه است، اما این فرآیند دقیقا چگونه اتفاق می افتد؟
در ویدیوی سمت چپ، گرم شدن شیشه در اثر شوک حرارتی تا حد شکست نشان داده شده است.
ویدئوی سمت راست شامل مدل FEA را (که با استفاده از COMSOL Multiphysics ایجاد شده) نشان می دهد که شامل نمایش چگونگی انبساط در مرکز گرم شده شیشه بوده و در نتیجه، تنش فشاری ایجاد می شود، در حالی که بدنه شیشه اطراف این نقطه مرکزی به عنوان یک واکنش طبیعی، تحت کشش قرار می گیرد.
این کشش در لبهها است که منجر به شکست میشود - شکستگیهای ریز در لبه باز میشوند و منجر به شکست فاجعهبار در کل ورق میشوند.
فرآیند مشابه زمانی رخ می دهد که شیشه به سرعت سرد شود. گرادیان حرارتی باعث ایجاد کشش در سطح می شود که می تواند عیوب سطح را باز کند و باعث از بین رفتن شیشه شود.
@comsol_shs
نمونه ایی از تفاوت عملکرد دو رویکرد DDES و URANS در مدلسازی CFD
اخیرا مقاله ایی از بنده در هشتمین کنفرانس بین المللی توسعه فناوری در مکانیک و هوافضا به انتشار رسیده است که راجع به مدلسازی تمام-مقیاس یک کوره بازیافت آسفالت با تکیه بر مدلسازی CFD جریانی پرحجم، پرحرارت، و نسبتا پرسرعت از هواست که با توسل به منطق FVM، رویکرد DDES و نرم افزار Star CCM انجام شده بود.
@comsol_shs
#موقعیت_شغلی
#کارآموزی
#ژاپن
OIST Internship in Japan 🇯🇵 2025 (Fully Funded) - Internship in Japan for Bachelors, Masters & PhD Students from all countries
Details:
https://techstour.com/oist-internship-program-2025/
No Need IELTS
Deadline: April 15, 2025
@comsol_shs
Solving Delay Differential Equations to Model…Marmots?
In this lighthearted blog post, we explore a fun example of how users can take advantage of new functionality in COMSOL Multiphysics for solving delay differential equations. Our model follows a marmot population as they awake from hibernation, feed, face predators, and reproduce. Learn about the fundamentals of implementing delay differential equations by reading the post here:
https://buff.ly/49plhf2
@comsol_shs
Getting Started with Building Simulation Apps
Learn the basics of building a simulation app in this Learning Center course. The course provides information on building an app with a layout template, embedding documentation in an app, designing the user interface (UI) for an app, and much more! Start the course here:
https://buff.ly/3Zj6TQQ
@comsol_shs
