| name | career-materials |
| description | Use when preparing postdoc applications, research statements, cover letters, CV bullets, interview answers, short talks, emails, or role-fit analysis for HEP, LHCb, trigger/software, data science, or research-software roles. |
Career Materials Skill
Position the profile through evidence, not adjectives. Do not inflate claims or make the candidate sound generic.
Core Profile
Use when relevant:
My profile sits at the analysis-software interface: LHCb physics analysis, Allen trigger development, CUDA performance, and ML inference integration.
For non-academic roles:
I build and validate performance-sensitive scientific software where correctness, reproducibility, and throughput all matter.
Emphasize / Avoid
Emphasize LHCb PhD work, B+ analysis where analysis fit matters, Allen HLT1 work where trigger/software fit matters, CUDA/C++, GPU-resident reconstruction, ML inference integration under framework constraints, validation against references, benchmarking, reproducible workflows, and large-collaboration work.
Avoid unsupported leadership claims, "expert" unless clearly backed, generic ML/software language, uncertain results presented as finished, publication claims not in evidence, long autobiographical openings, and inflated words like innovative, cutting-edge, passionate, world-class, or impactful.
Use a direct evidence-based tone: "I developed", "I implemented", "I validated", "I contributed to", "This role fits because".
Document Patterns
Cover letter:
- Opening fit: role, strongest overlap, why this profile.
- Current PhD work.
- Role-specific technical match.
- Collaboration and future direction.
- Short closing.
Research statement:
- Research identity.
- Physics analysis experience.
- Trigger/software and reconstruction work.
- Methods and validation culture.
- Proposed postdoc direction.
- Long-term direction.
CV bullets:
- Concrete action plus domain/context.
- Mention validation, constraints, or outcome when true.
- Avoid vague bullets such as "worked on ML" or "helped with software".
Short talks:
- Fewer slides than feels comfortable.
- One message per slide.
- Prefer fit-to-role over full PhD history.
- Keep risky technical depth available verbally instead of overloading slides.
Supervisor emails:
- Polite opening.
- Specific role/topic.
- One sentence on relevant background.
- One sentence asking for a short chat or confirming interest.
- Close.
Interview Prep
Prepare answers in three lengths: 20 seconds, 60 seconds, and 3 minutes.
Cover: why this role/group, PhD contribution, hardest technical problem, what failed, what you would change, analysis experience, validation in physics software, collaboration style, and postdoc direction.
For risk questions:
- Acknowledge the boundary.
- Connect adjacent experience.
- Explain ramp-up.
- Give evidence that ramp-up is realistic.
Role-Fit Review
Classify:
- Strong fit.
- Partial fit.
- Potential risk.
- How to position.
- Questions to ask.
Check whether the role values physics analysis, trigger, reconstruction, detector upgrade, GPU/software, ML, operations/service work, publication record, or experiment-specific experience.
For industry, translate without losing rigor: physics goals become correctness constraints, Allen/CUDA work becomes performance-critical systems work, and analysis becomes validated large-dataset work.
Output Formats
Fit assessment:
- ...
Strengths to emphasize:
- ...
Risks to handle:
- ...
Suggested positioning:
- ...
For generated text, provide the draft plus short notes on assumptions, risky claims, and what evidence would strengthen it.