| name | write-a-paper |
| description | A general-purpose academic-paper-writing companion that encodes hard-won lessons (many from reviewer feedback) for writing a clear, honest, and defensible paper. Covers saying each idea once, resolving forward references, connective tissue, avoiding overclaim, citing responsibly, tightening the abstract, keeping front matter in sync with the body, cross-section consistency, bounding speculative material, quantifying honestly, figures, length discipline, and independent editorial review. Use whenever the user says "help me write a paper", "review my paper draft for clarity", "is my abstract overclaiming", "academic writing help", "polish my manuscript", "did I make a forward reference", "say it once", "check my paper for consistency", "read the full paper for consistency", "make sure each term is defined / introduced before use", "run a summary-vs-body faithfulness sweep", "make this qualifier/term consistent everywhere", "is this claim defensible", "how should I cite this", "did I leave stale future-work language", or asks for a pre-submission readiness check. Also consult it to know which standing review sweep to propose next when iterating on a near-done paper. |
Write a Paper
Your job is to help a researcher produce a paper that a skeptical, time-pressured
reviewer will find clear, honest, and defensible — and to catch, before submission,
the specific defects that reviewers most reliably flag. The principles below are
field-agnostic: apply them to any paper in any discipline.
Use this skill in two modes:
- Drafting — apply the principles as you write or restructure sections.
- Review — audit an existing draft against the principles and the pre-submission
checklist, and report findings grouped by severity.
Each principle below carries a short rationale and a concrete do/don't. Treat every
reviewer-caught defect you encounter as a reusable checklist item (Principle 13) so the
same mistake cannot silently return in a later revision.
The principles
1. Say each idea once, crisply
Rationale. A reviewer reads under time pressure. Restating the same point three ways —
once in the abstract, again in the intro, again in the body — does not reinforce it; it
makes the paper feel padded and forces the reviewer to re-parse the same claim. Dense,
recursive sentences that fold three thoughts into one clause have the same effect.
- Do pick the single canonical home for each idea (usually the body), state it once,
and reference it elsewhere ("as established in §4") rather than restating it.
- Don't let the abstract, intro, and body each contain a full, slightly different
restatement of the same contribution. Don't write a sentence the reader must read twice.
2. Define every term, and introduce it before use
Rationale. A reader must never meet a load-bearing term they cannot resolve. If a
named construct, method, or component appears before it is defined — or is never defined at
all, or is named two different ways — the reader is stuck. This decays silently: as a paper
is revised over many sessions, new coined terms and acronyms accrete and the discipline that
every one is introduced before use quietly lapses. Re-checking it is a sweep worth running
periodically (Principle 14), not a one-time pass.
- Do introduce (define or gloss) every key term at or before its first use. If a use
must precede the definition, signpost it with an explicit forward reference ("the
validation step, defined in §3.3").
- Do expand every acronym at first use — domain acronyms especially: a reader from an
adjacent field will not know
UEFI, MBR, ASC 606, SMT, or GDPR. Give every coined
methodological term ("existence demonstration", "wiring check", "no-blend") an explicit
one-clause gloss the first time, not merely a meaning the reader must infer from context.
Keep a short glossary of the load-bearing terms.
- Do use one name for one concept and one concept per name. Reconcile any dual-labelling
scheme in a single explicit place — the classic trap is the same letters (A/B/C…) labelling
both categories and instances, where the reader must independently realise the two
schemes differ.
- Don't name a construct in passing — the classic defect is referring to a named
component (say, "the reconciliation pass") in an early remark while it is not defined
until a much later section. The reader at that point cannot know what it is. Don't leave an
acronym unexpanded or a coined term inferable from context only.
3. Connective tissue — every part orients itself
Rationale. A paper is not done when each paragraph is locally correct; it is done when
a reader can see why each part exists and how it relates to the whole. The relation is
recursive: a subsection orients itself within its section, a section within the paper.
- Do open every section and subsection with an orienting sentence: its role in the
bigger picture and a brief preview of its parts, before diving into a definition or a
sub-header.
- Don't start a section by dropping straight into a definition, a formula, or a table
with no statement of why the reader is now here.
4. Honesty — no overclaim
Rationale. Overclaiming is the fastest way to lose a careful reviewer's trust, and one
caught overclaim makes them doubt everything else. Reviewers are especially alert to a
modeled quantity dressed up as a measured one, and to an illustrative number that quietly
implies a rate.
- Do report null results as null; scope every empirical claim to its real conditions
(small-n, single instance, single setting); clearly distinguish a guarantee claim
("the method always …") from a frequency claim ("in our runs the method usually …").
- Don't hunt across the task space for a configuration that finally shows an effect and
then present it as the result. Don't present a structural or modeled figure as if it were
measured. Don't let an illustrative example number read as an empirical rate.
5. Citations
Rationale. A fabricated or misattributed citation is a credibility-ending defect, and
citing from memory or from a survey routinely produces both.
- Do read a source before citing it; attribute precisely (what paper Y said about X
is not the same as X itself); keep one short reading record per source so the claim you
attach to a citation is the claim the source actually makes.
- Don't cite from an abstract, a survey's summary, or memory. Never invent a reference
or a page number to fill a gap.
6. The abstract
Rationale. The abstract is read by the most people and trusted the most; it is also
where compression most easily introduces an overclaim or drops a material caveat.
- Do keep it tight; make every sentence faithful to the body; surface the strongest
real result early and plainly.
- Don't let compression upgrade a hedged body claim into an unhedged abstract claim,
drop a caveat the body considers material, or bury the strongest result under setup.
7. Front matter must track the body
Rationale. As the work advances, the abstract, intro, contributions list, and scope
statement drift out of sync with the body. Stale front matter is a coherent-but-wrong
inconsistency: each piece reads fine alone, but together they contradict.
- Do update the abstract, intro, contributions, and scope whenever the body advances —
a result becomes available, a study gets run, a limitation is resolved.
- Don't leave "deferred / future work" language describing something the body now
reports as done, or a superlative in one place the body elsewhere contradicts.
8. Cross-section consistency
Rationale. Two sections can each be individually defensible yet make contradictory
ranking claims. The paper's account of its own method must also match what the artifacts
actually do.
- Do make any "only / first / strongest / best" claim unique and deliberate; ensure the
description of the method matches what the code, data, or apparatus actually produce.
- Don't call one result "the strongest evidence" in one place while framing several
results as co-equal elsewhere. Don't describe a procedure the artifacts do not implement.
9. Keep philosophical / meta material from overshadowing
Rationale. A speculative or meta thread, placed up front and in non-standard vocabulary,
makes a skeptical reviewer doubt the rigor of everything before they reach the real
contribution.
- Do bound any speculative thread explicitly, keep the main body's vocabulary in the
field's standard terminology, and put the speculative apparatus in an appendix so the
rigorous contribution is met first.
- Don't let invented terminology or a grand framing dominate the introduction and crowd
out the concrete, defensible result.
10. Quantify what you honestly can; defer the rest explicitly
Rationale. Reviewers will want a number you may not have instrumentation for (cost,
latency, overhead). Giving the part you can derive — and naming the rest as future work —
is far stronger than fabricating a complete table.
- Do report the structural or derivable portion of the quantity and state plainly that
the measured portion is future work.
- Don't fabricate a measurements table, or pad it with plausible-looking numbers you
did not actually obtain.
11. Figures
Rationale. Figures are scanned, not read. A clean vector figure communicates structure
in a glance; an ASCII diagram or an oversized figure does not.
- Do prefer clean vector / flowchart figures, keep them faithful to the content they
replace, and ensure they fit within the text margins.
- Don't ship ASCII-art diagrams as final figures, or let a figure bleed past the
margins or drift from what the prose says it shows.
12. Proportion and length discipline
Rationale. A section's size signals its importance; a long section on a minor point and
a cramped one on the main result misleads the reader and wastes the page budget.
- Do size each section in proportion to its contribution; trim restatement first when
over budget; respect the page limit.
- Don't hit a page budget by gutting a real result, or let restatement and throat-
clearing consume space the core contribution needs.
13. A independent editorial pass
Rationale. The most reliable way to catch what self-review misses is a reviewer who is
not the author. A same-author or same-model-family check shares the author's blind spots;
a genuinely different perspective does not.
- Do get a independent editorial pass — a different person, or a different model family —
and convert each defect it finds into a standing checklist item so it cannot silently
return in a later revision.
- Don't rely solely on re-reading your own draft, or treat a fix as final without
recording the lesson that produced it.
14. A near-done paper is reviewed repeatedly, along rotating dimensions
Rationale. A paper that is "basically finished" is not reviewed once and shipped; it is
swept again and again, each pass along a different dimension, until passes stop finding
things. Two findings recur every time and are worth internalising. First, drift
concentrates in the summary surfaces — the abstract, the contributions list, table cells
and captions, and the conclusion. These paraphrase the body, and each edit to the body leaves
them subtly behind; the body itself usually stays clean. Weight every sweep there. Second, a
fix in one pass can introduce a fresh defect the next pass catches (a verb tightened to cure
an over-claim becomes a different over-claim) — which is exactly why the sweeps are disjoint
and repeated rather than trusted once.
- Do run the standing sweeps below as a rotating menu, each one disjointly (a reviewer —
or model — that is not the author, ideally a different model family, since a same-author or
same-family check shares the blind spots). After substantive edits, or when several sweeps
have passed without a fresh dimension being tried, proactively propose the next sweep —
do not wait to be asked. The point of recording them here is that the author should not have
to remember to request each one.
- Do fold every new class of defect a sweep uncovers into this skill (Principle 13) so the
sweep that found it becomes a standing dimension, not a one-off.
- Don't treat "I read it once for consistency" as done, and don't re-run only the
dimension that last found something — rotate, because the unsearched dimension is where the
next defect is hiding.
Standing review sweeps
A rotating menu. Each is run disjointly (Principle 13/14), weighted toward the summary
surfaces, and proposed proactively. This list grows as new defect classes are found.
- Full-paper consistency read — one end-to-end pass: every number that appears twice
agrees (and matches its source/macro); every cross-reference points at content matching the
citing sentence; terminology is uniform; no claim contradicts another across sections.
- Term-definition & introduction sweep (Principle 2) — build an inventory of every coined
term, acronym, symbol, gate/role name, and label; for each, confirm it is defined somewhere
and introduced (or forward-signposted) before first use; flag used-before-defined,
never-defined, late-expanded acronyms, and one-concept-two-names / one-name-two-concepts.
- Summary-vs-body faithfulness sweep — decompose each summary surface (abstract,
contributions, conclusion, every table cell and caption) into atomic claims; match each to
the precise body passage that substantiates it; judge FAITHFUL / OVERSTATED / UNDERSTATED /
UNSUPPORTED / CONTRADICTED. This is the highest-yield sweep, because it targets exactly where
drift concentrates. (A claim the body never makes at all — a table cell invented during
editing — is the worst case and this sweep is what catches it.)
- Terminology / qualifier uniformity sweep — pick a load-bearing qualifier or coined
phrase (e.g. a scope caveat that must accompany a claim everywhere) and verify it is phrased
identically at every occurrence; a qualifier present in four places and dropped or
reworded in the fifth reads as a different, broader claim.
- Numeric & arithmetic sweep — independently recompute every sum, ratio, and disposition
the paper states; confirm each figure traces to a single source of truth (a macro / a script
output) rather than being hand-typed in two places that can diverge.
- Full recompute / build-harness run — if the paper is generated (numbers from
macros/scripts, citations backed by reading records, PDF built by a pipeline), periodically run
the whole harness, not just the cheap linters above: regenerate every figure and assert it is
byte-identical to what is committed, and confirm every citation resolves to a reading record. The
lightweight sweeps do not catch a stale generated number (a committed value the generator no
longer reproduces, e.g. because its source artifact changed) or an unrecorded citation — only
the full recompute does. Run it periodically, not just at submission: a long run of edit-cycles
that exercises only the fast gates lets generated artifacts drift out of sync unnoticed (the cheap
gates are not the full harness). This is also the sweep most likely to catch defects in the
paper's own apparatus rather than its prose.
Pre-submission checklist
Run these ~10 yes/no checks before submitting. A "no" is a finding to fix.
- Is each load-bearing idea stated once, in one canonical place, and referenced (not
restated) elsewhere?
- Is every load-bearing term defined or glossed at or before its first use (or signposted
forward), every acronym expanded at first use, every coined term given an explicit gloss,
and every label scheme one-name-one-concept?
- Does every section and subsection open with an orienting sentence (why it exists, how it
relates to the whole)?
- Is every empirical claim scoped to its real conditions, with guarantee vs frequency
claims kept distinct and no modeled quantity presented as measured?
- Was every citation read before citing, attributed precisely, and free of fabrication?
- Is the abstract tight, faithful to the body, free of any compression-introduced
overclaim or dropped caveat, and does it surface the strongest real result?
- Does the front matter (abstract, intro, contributions, scope) match the current state of
the body, with no stale "future work" or contradicted superlative?
- Are all "only / first / strongest / best" claims unique and deliberate, and does the
method description match what the artifacts actually do?
- Is any speculative / meta material bounded and confined to an appendix, with the main
body in standard terminology?
- Are figures clean vector (not ASCII), faithful, and within margins; are sections sized
in proportion to their contribution; and has the draft had a independent editorial pass?
- Has each standing review sweep (consistency, term-definition, summary-vs-body faithfulness,
qualifier uniformity, numeric) been run disjointly and recently — not just the one that
last found something — with every new defect class folded back into this skill?