机器人超材料学习物理博士职位
PhD Studentship: The Physics of Learning in Robotic Metamaterials
原帖优先:申请材料、截止时间与资格以原帖和学校官方说明为准。
AI 中文速览
- 研究内容
- 该项目关注于自学习的主动机械网络,结合实验和理论建模。
- 申请条件
- 理想候选人应具有很强的求知欲,拥有物理、工程、应用数学或相关学科的背景。
- 待遇
- 提供每年£21,805的津贴,涵盖42个月。
- 申请方式
- 申请者应通过伯明翰大学机械工程博士门户网站上传信息,包括求职信、简历、成绩单等。
- 材料清单
- 求职信
- 简历
- 成绩单
由 @cf/meta/llama-3.3-70b-instruct-fp8-fast 生成,博士岗判定置信度 90%。
结构化信息
- 截止
- (Europe/London) 剩 90 天
- 学科
- 材料科学
- 合同类型
- 雇佣合同
- 原文薪资
- GBP 21,805 / 年(税前)
- 税后月薪(估)
- ¥13,700;房租后 ¥5,400
- 估算假设
- 单身、无子女、雇佣合同的粗略估算,以学校 offer 为准;扣除率 18%;汇率日期 2026-10-01
- 原帖发布
- 本站收录
- 内容更新
- 导师
- Jack Binysh
- 来源
- jobs.ac.uk(英国博士项目及学术招聘) · 最近核对 2026-10-06
其他发布渠道
判定依据(原文摘录)
- is_phd
PhD Studentship
- english_ok
Email Dr. Binysh in your own words
- bachelor_ok
excellent MSc/MPhys/MEng degree (or equivalent)
原文
Join us!
Are you a curiosity-driven scientist with a background in physics, engineering, applied mathematics or a related discipline? Join us to lead work at intersection of metamaterials, soft matter physics, and robotics. Look at https://binyshlab.com for some of our work.
This position revolves around the physics of active mechanical metamaterials and distributed robotic systems, combining table-top experiments with theoretical modelling. The project will focus on self-learning active mechanical networks but will be tailored to your interests and expertise.
What will you do?
Nature overflows with simple organisms–from starfish to bacteria–that function without a brain. In contrast to a conventional robot, which is centrally controlled and rigid, these living materials are mechanically soft, and spread actuation, feedback and computation right across their bodies, blurring the boundary between material and machine. Living systems are unconventional robots indeed.
Our work hints that key platforms to capture such material intelligence are ‘robotic metamaterials’–mechanical networks built from many sensors and actuators that locally communicate with one another to achieve collective functionality. These active networks could enable next-generation bioinspired robots that operate without central control, withstand massive damage and adapt to ever-changing environments.
In this PhD, you will lead research into robotic metamaterials that can adapt their dynamics to an environment after deployment. You will:
• Develop and apply decentralized learning techniques to networks of active mechanical units to sculpt their dynamics and functionality and explore fundamental physical questions on the link between network structure and functionality.
• Capture the nonlinear dynamics of these networks using theory and numerical simulations.
• Design and perform table-top robotic experiments that implement your learning algorithms in unpredictable environments.
Who are you?
This PhD is ideal for a curiosity-driven scientist interested in (i) the intersection between materials and machines and (ii) What robotics can teach us about physics, and vice versa. You might be a physicist interested in robotics, a mechanical engineer interested in bio-inspired materials, or a computer scientist/mathematician interested in applied nonlinear dynamics and optimization. We seek an openness to combining table-top robotic experiments with simulations and theory, and an excellent MSc/MPhys/MEng degree (or equivalent).
How to Apply
Applicants should upload information via Birmingham’s Mechanical Engineering PhD portal here: https://www.birmingham.ac.uk/study/postgraduate/subjects/mechanical-engineering-courses/mechanical-engineering-phd , specifying the title of the PhD position, and main supervisor (Jack Binysh). We aim to have you start in Early 2027.
In your application please include:
• A cover letter in which you describe your motivation and qualifications for the position.
• A CV which includes the contact information of two references.
• A transcript of your degree grades.
Funding is currently available to cover Home UK students, i.e. covering fees and providing a stipend at UKRI rates (current stipend: £21,805 p.a.) for 42 months. Strong international candidates should look at https://www.birmingham.ac.uk/study/international/fees/scholarships , and contact Dr. Binysh if they have a viable plan for international funding.
For relevant publications, details of research environment and our commitment to inclusivity, see https://binyshlab.com/positions/ . Questions? Email Dr. Binysh in your own words at j.binysh@bham.ac.uk .