Topic 11 — Physical and chemical change — blueprint for James
What I need from you: 5 decisions
Teach the signs as clues, not proof, with the caveat in L03 and the trap pairs in L05?
bubbles come from boiling water as well as from baking soda in vinegar; a temperature change comes from dissolving as well as from burning; a color change comes from mixing paints.
L03 names the five signs and says in one sentence that each sign can also appear without a chemical change; L05 lines the trap pairs up (kettle bubbles beside vinegar bubbles) and lets the new-substance test decide.
My recommendation: yes, the caveat sentence in L03 and the lined-up trap pairs in L05. Agree / caveats all in L03 / caveats all in L05.
Teach five signs, or six with "a new smell"?
the five are a color change, a gas forming, a solid forming from two liquids, a temperature change and light given out. Some released grade-8 items also list a new smell.
a sixth sign is one more thing to recall, and smell is the hardest sign to describe in a stem without leading the student.
My recommendation: five signs taught and tested; "a new smell" named in one sentence of L03 as a clue some tests list, never a quiz key. Agree / six signs.
Say once that "can it be undone?" is not the test, and quiz that misconception?
many students sort by reversibility: tearing paper feels permanent, so they call it chemical; melting reverses, so they call it physical. Tearing paper is physical.
the new-substance test is the only test this topic teaches; reversibility needs one sentence and one misconception item in L05, or it is left out entirely and the belief goes unchallenged.
My recommendation: one sentence and one misconception item in L05; reversibility is never a taught test. Agree / leave reversibility out.
Draw rust as iron atoms joined to oxygen atoms into a new particle, on Topic 7's glyph palette?
MAT-063 needs "a new substance with different properties". The particle picture is what makes rust a new substance rather than iron with oxygen stuck on top, which is the belief the research names.
the drawing shows iron atoms and oxygen particles before, and iron-and-oxygen particles after, with no word equation and no atom count; Topic 12 does the counting.
My recommendation: yes, one before-and-after particle drawing in L02, no equation. Agree / photo only.
Which lessons could do without a video?
L01 (ice melting, paper tearing, sugar vanishing into water), L02 (the nail rusting, the particle picture switching), L03 (five short scenes, one sign each) and L05 (two beakers bubbling side by side) have something to watch; L04 (match a sentence to its sign) and L06 (write the evidence sentence) are page jobs.
My recommendation: mark L04 and L06 "could do without a video"; all six scripted. Agree / change.
Topic 11 at a glance — 6 lessons
| Lesson | Opens on | Format | |
|---|---|---|---|
| L01 | Physical change: the same substance in a new form | Tear a sheet of paper into two pieces. | video + article |
| L02 | Chemical change: a new substance forms | Leave an iron nail outside for a month. | video + article |
| L03 | The signs of a chemical change | You cannot see atoms join into new particles. | video + article |
| L04 | Which sign is this? | Read four sentences. | article only |
| L05 | Physical or chemical? The one test | Water boils in a kettle and bubbles pour off it. | video + article |
| L06 | Show your evidence | A test asks: is frying an egg a physical or a chemical change? | article only |
What this topic is, in five lines
Six lessons, one per atom: MAT-062, 063, 064, 064b, 065, 065b.
Terms coined here: physical change (L01), chemical change (L02), precipitate (L03).
Retrieved, not re-coined: matter (T1), melting, boiling, evaporation (T2), physical property (T3), soluble and a dissolved solid recovered by evaporation (T3, T6), atom, compound and "a compound is not like its elements" (T7).
Deliberately not taught: the word reaction and the word equation (Topic 12), conservation of mass in a chemical change (Topic 12), what kinds of chemical change exist, why atoms rearrange, energy in and energy out as a taught idea.
Also in this topic: an intro video before L01 (under 120 words, teaches nothing: "some changes leave you with the same stuff in a new form; some leave you with new stuff; one question tells them apart") and a summary video just before the PP100 (everything taught, in teaching order, with its own easy question).
The PP100 is 20 items, easy / medium / hard by depth of reasoning, drawn from a bank of at least 50 four-option MCQs on fresh described scenes.
Physical change: the same substance in a new form L01
Tear a sheet of paper into two pieces.
Let an ice cube melt in a glass.
Stir a spoon of sugar into water until the grains vanish.
In each case, is the substance you end with the same substance you started with?
The torn pieces are still paper.
The water in the glass is still water.
The sweet taste says the sugar is still there, and Topic 6 showed that evaporating the water gives the sugar back.
What is a physical change?
A physical change is a change in which no new substance forms.
The size, the shape or the state changes.
The particles are the same particles, arranged or moving differently.
So tearing, melting and dissolving are all physical changes.
Video: the three scenes running, then the particle picture under each showing the same particles rearranged — video and article (definitely a video).
Part 1 — MAT-062 — Identify which changes are physical based on whether any new substance is formed; coin physical change
Part 1q — Fluency quiz: physical change
Chemical change: a new substance forms L02
Leave an iron nail outside for a month.
The nail turns orange-brown and flaky.
Iron is shiny, gray, bends without breaking, and a magnet pulls it hard.
The orange flakes are dull, crumble in your fingers, and a magnet barely pulls them.
The flakes are not iron in a new shape.
What are they?
What is a chemical change?
A chemical change is a change in which a new substance forms.
The new substance has its own properties, different from the substance you started with.
Iron atoms joined with oxygen atoms from the air to make particles of a new substance, rust.
So rust is not iron with oxygen stuck on top; rust is a different substance.
Video: the shiny nail rusting over the month, then the particle picture switching from iron atoms beside oxygen particles to rust particles — video and article (definitely a video).
Part 1 — MAT-063 — Identify which changes are chemical based on whether a new substance with different properties is formed; coin chemical change
Part 1q — Fluency quiz: chemical change
The signs of a chemical change L03
You cannot see atoms join into new particles.
Yet a cook, a mechanic and a doctor all spot chemical changes every day without a lab.
A spoon of baking soda meets vinegar and fizzes.
A match burns with a yellow flame and warms your fingers.
A cut apple turns brown.
Two clear liquids poured together go cloudy as a white solid appears.
What do these scenes have in common?
What signs tell you a chemical change may have happened?
Five signs are worth watching for.
The color changes.
A gas forms, seen as bubbles or fizz.
A solid forms when two liquids meet; that solid is called a precipitate.
The temperature changes, so the mixture gets warmer or colder on its own.
Light is given out.
Each sign is a clue, not proof, because each can appear without a chemical change.
Video: five short scenes, one per sign, each labeled on the moment the sign appears — video and article (definitely a video).
Part 1 — MAT-064 — Name the observable signs that a chemical change may have occurred; coin precipitate
Part 1q — Fluency quiz: precipitate, and the five signs by recall
Which sign is this? L04
Read four sentences.
A tablet dropped into water fizzes.
A pale green leaf turns brown.
The mixture in the beaker gets warm on its own.
Two clear liquids poured together turn cloudy white.
Each sentence shows one sign of a chemical change.
Which sign is which?
How do you match a described change to its sign?
Look for the word that tells what was seen.
Fizz or bubbles means a gas formed.
Turns a new color means a color change.
Warm or cold means a temperature change.
Cloudy or a solid appears means a precipitate formed.
Glow or flame means light was given out.
Video: nothing a page cannot show — article only (could do without a video).
Part 1 — MAT-064b — Identify which sign of chemical change appears in a described reaction
Physical or chemical? The one test L05
Water boils in a kettle and bubbles pour off it.
Baking soda meets vinegar and bubbles pour off that too.
Bubbles rise in both.
One is a physical change and one is a chemical change.
How can you tell which is which?
How do you decide whether a change is physical or chemical?
Ask one question: did a new substance form?
The kettle bubbles are water as a gas, the same substance as the liquid, so boiling is a physical change.
The vinegar bubbles are carbon dioxide, a gas that was not there before, so the fizzing is a chemical change.
The signs are clues; the new-substance question decides.
Whether the change can be undone is not the test: torn paper cannot be mended, yet tearing is physical.
Video: the two beakers bubbling side by side, then the particle picture appearing under each (water particles as a gas; new gas particles) — video and article (definitely a video).
Part 1 — MAT-065 — Classify a described change as physical or chemical by applying the new-substance test
Show your evidence L06
A test asks: is frying an egg a physical or a chemical change?
The test also says "Explain your answer."
A student writes "chemical" and stops.
That answer earns half the marks.
The other half is the evidence.
What does a full answer say?
How do you justify a physical-or-chemical call?
Say what you observed.
Say what that observation shows about whether a new substance formed.
Then name the change.
"The clear, runny egg white turned solid and white, and it stayed that way when it cooled; a new substance formed, so frying an egg is a chemical change."
For a physical change, the evidence is that the substance is still there: "the melted ice is still water, because it freezes back to ice."
Video: nothing a page cannot show — article only (could do without a video).
Part 1 — MAT-065b — Cite the evidence from a described change that shows whether it is physical or chemical
Topic close
Mixed mastery practice: 10–12 items; the coined terms by typed recall; six physical / chemical sorts on fresh scenes in trap pairs; two sign matches; one full written justification in the three-line frame.
Then the summary video (everything taught, in order, with its own easy question).
Then the PP100: 20 items drawn from a bank of at least 50 four-option MCQs on fresh described scenes, tagged easy / medium / hard by depth of reasoning, at least three per atom.
The course architecture (14 topics) — open only if you want the whole map
Skill: course-build → atomise (architecture, step 6b gate) → write-like-james @ 4c9e849
MS Chemistry — course architecture v1 (for James's approval, 25 September 2026)
Read this in five minutes. It decides the topics, their order, where every PP100 sits, and which topic pilots first. Nothing below writes a lesson sentence. The atom register stays where it is: the Matter strand of the Science Knowledge Graph (92 atoms, JM-reviewed). This document arranges those 92 atoms into a course and stops.
The takeaways
- Fourteen topics, one PP100 at the end of each, 92 lessons in all. One atom, one lesson. Topics run 4 to 12 atoms; the average is 6 or 7.
- The order follows the big ideas, not the TEKS list: what matter is and how particles explain it → what properties tell you → sorting matter into kinds → inside the atom and the periodic table → how matter changes → two grade-8 applications (water, acids and bases).
- Topic 1 is the pilot: "Particles and the three states of matter", 12 lessons. It stresses every treatment the course will need — a two-part test taught by examples, a fact, two "explain the smell" mechanisms, three example-sequence classifications, three particle-picture why-lessons, one coined term with a ranking routine. Its blueprint is the second deliverable.
- Density is its own topic. It carries the course's first two calculation routines, so it gets its own practice set and PP100 (vault ruling: a quantitative subtopic becomes its own topic).
- Three checkpoint tests, at the three natural seams, anchored to the released grade-8 STAAR, Florida SSA and AZSCI forms. Grade-level slices remain derivable from the TEKS stamps if operations later want them.
- Five prerequisites live in other strands and are not taught here. Each lesson that leans on one states it in a sentence and asks one recall question. Nothing is assumed (stand-alone entry rule).
- Seven register observations for your atomisation pass. No atom was edited; the register is read-mostly.
Status (25 September, later the same day): you approved Topic 1 as the pilot and clarified delivery (video or article per atom, then questions). Card 5 records that. The ask now: approve or edit the Topic 1 blueprint (course_preview/review/BLUEPRINT_T01.html); lesson writing starts on your word.
Card 1 — The topics
The call: fourteen topics in the order below, a mixed mastery practice set then a PP100 at the end of every one.
| # | Topic (student-facing title) | Atoms | Lessons | TEKS stamp | The big idea it serves |
|---|---|---|---|---|---|
| 1 | Particles and the three states of matter | MAT-001, 002, 003, 004, 016, 016b, 017, 017b, 018, 018b, 019, 019b | 12 | 6.6A | Everything is made of moving particles; that explains solids, liquids and gases |
| 2 | Changing state | MAT-020, 021, 022, 023, 024, 025, 026, 026b | 8 | 6.6A (NGSS MS-PS1-4) | Heating and cooling change how particles move, not what they are; mass holds |
| 3 | Physical properties | MAT-005, 006, 007, 012, 013 | 5 | 6.6D | Properties you can measure without changing the substance |
| 4 | Density | MAT-008, 009, 010, 011, 015 | 5 | 6.6D | A property that identifies a substance whatever the sample size |
| 5 | Pure substances and mixtures | MAT-027, 028, 029, 030, 032 | 5 | 6.6B | Sorting matter by how many kinds it contains |
| 6 | Solutions and separating mixtures | MAT-033, 034, 035, 036, 037, 038, 039, 040, 041 | 9 | 7.6D, 7.6E, pre-6.6B | A mixture keeps its parts' properties, so you can pull it apart |
| 7 | Atoms, elements, molecules and compounds | MAT-042, 042b, 043, 044, 045, 046, 047, 048 | 8 | 7.6A | One kind of atom or more than one: the particle-level sort |
| 8 | Inside the atom | MAT-049, 050, 051, 051b, 052 | 5 | (NGSS MS-PS1-1; FL SC.8.P.8.7) | Protons decide which element an atom is |
| 9 | The periodic table | MAT-053, 054, 054b, 055, 056, 057, 058 | 7 | 6.6C | The table arranges elements so position predicts properties |
| 10 | Chemical formulas | MAT-059, 059b, 060, 061 | 4 | 7.6B | A formula counts atoms; change the count and you change the substance |
| 11 | Physical and chemical change | MAT-062, 063, 064, 064b, 065, 065b | 6 | 7.6C | Did a new substance form? The one test, and its evidence |
| 12 | Chemical reactions and conservation of mass | MAT-066, 067, 068, 069, 069b, 070, 071, 072 | 8 | 8.6E, 8.6B | Reactions rearrange atoms; none appear or vanish, so mass holds |
| 13 | Water's special properties | MAT-073, 074, 075, 076 | 4 | 8.6C | Water particles pull on each other and on other surfaces |
| 14 | Acids and bases | MAT-077, 078, 079, 080, 081, 082 | 6 | 8.6D | Two families of substance, one scale, and what happens when they meet |
Totals: 92 lessons, 14 practice sets, 14 PP100s (280 items), 3 checkpoint tests. Two atoms may need a second lesson once blueprinted — MAT-010 (calculate density) and MAT-061 (coefficients and parentheses) — so plan for 92 to 94.
Why this grouping
- Every prerequisite edge in the register points backwards in this order. Checked atom by atom; no forward reference.
- Sub-domains 2 and 3 were each split in two (Topics 3/4 and 1/2). SD-3 has 16 atoms; a 20-item PP100 over 16 atoms certifies nothing. SD-2 bundles a calculation routine with observational properties.
- Topics 5 to 7 form one sort of matter in three passes: by how many substances (5), by whether it is a solution (6), by what the particles are (7). The full classification tree (MAT-047) closes Topic 7.
- Topics 13 and 14 sit last. Nothing depends on them, they are the register's only pure grade-8 applications, and the checkpoint before them then covers a clean block.
What changes: the course folder gets one topicNN_build/ folder per topic; Topic 1's blueprint is written; nothing else is authored until you approve it.
Card 2 — Topic 1 is the pilot, at 12 lessons
The call: pilot "Particles and the three states of matter" end to end — 12 lessons, quiz after each, mixed practice, PP100 — before any other topic starts.
Why
- The vertical-slice rule asks for a routine, a categorical concept and an explanation in the pilot. Topic 1 has all three: three example-sequence classifications (solid, liquid, gas), three why-lessons on the particle picture, a ranking routine that coins the course's first technical term, and a transformation (heating speeds particles).
- It is the course's foundation. Every later topic reuses its one particle picture and its four sentences about arrangement and movement.
- SD-1 alone (4 atoms) would pilot fast but would not test a PP100 worth the name, and has no routine.
The alternative is a 10/10 cut: move the two kinetic-energy atoms (MAT-019, 019b) to the front of Topic 2, where kinetic energy is the lever for melting. I kept them in Topic 1 because TEKS 6.6A names kinetic energy in the states comparison, and the ranking closes the three-box picture.
What changes: the Topic 1 blueprint is the next thing you read.
Card 3 — Density stands alone
The call: Topic 4 "Density" (5 atoms) is separate from Topic 3 "Physical properties" (5 atoms).
Why
- Density carries two routines (displacement volume, MAT-008; calculate density, MAT-010) plus the sink-or-float prediction and the "same whatever the sample size" fact.
- Vault ruling (AP Biology, 10 Sep 2026): a topic test that mixes a calculation routine with a content topic hides which one failed.
- Solubility (MAT-012) and conductors (MAT-013) stay in Topic 3 as properties; Topic 6 retrieves solubility with a recall question.
What changes: two PP100s where the register had one sub-domain.
Card 4 — Checkpoints at three seams
The call: three static checkpoint tests, each with some free response, at the ends of Topics 6, 10 and 14; the third doubles as the end-of-course test and is anchored to released grade-8 STAAR, Florida SSA and AZSCI items.
Why
- The seams are natural: Topics 1–6 are matter you can see and handle; 7–10 are the atom and its table; 11–14 are change and two applications.
- No state tests middle-school science before grade 8, so there is no per-grade instrument to anchor to (HANDOFF recommendation 1). The TEKS stamps (6.x/7.x/8.x on every atom) still allow a grade-level slice later without re-atomising.
- Five interchangeable forms per test is the standing ruling for topic tests; whether checkpoints also get five forms is your call.
What changes: nothing yet. Checkpoints are built after the topics they cover.
Card 5 — Delivery: video or article per atom, quiz straight after
The call: every lesson (one per atom) ships as BOTH a 40–90 second video and a short article, and the student chooses which to take; the quiz follows in the app, never inside the video. At topic end: mixed mastery practice (any format, key terms by recall), then the PP100 (20 MCQs, easy/medium/hard). No topic intro or summary videos.
Why
- Your format ladder of 25 September, with your clarification the same day: each atom is a video with the option to read the article instead. The platform's learner's-choice mode carries exactly that.
- When video and text are alternatives, each must teach the whole part (vault rule), so the video script (write-video-script) and the article (write-lesson) are written from the same blueprint row and reviewed against each other.
- Pitched one notch up from the Grade 3 Forces pack: no title slide, open on the first example, rule stated last, everything appears on the word that names it. Middle school may carry a short "why" where Grade 3 stayed qualitative.
- The ladder names no intro or summary video. AP Biology and HS Chemistry ran different intro policies; I have not inherited either.
Skills that run per lesson, in order: write-lesson (dispatching by lesson type) for the article → write-video-script for the video → design-check-sequence then write-mcqs for the quiz → review-accuracy (a reader who did not write it, against the reference) → review-figures on every rendered figure → review-lesson (blind key read, guidance read, adjudication) → blind review of every key before anything ships.
Figures: the blueprint names the figure kind per part. Particle pictures are always monochrome SVG drawings, one depiction reused everywhere. Real scenes a student should recognise (a tea bag colouring water, sand pouring into a jar) are licensed stock photos where the photo carries the point; a drawing where the point is a measurement or a label.
What changes: the blueprint carries a delivery line and an SVG-or-photo call on every figure.
Card 6 — Five prerequisites are taught in other strands
The call: the five cross-strand prerequisites below are not taught in MS Chemistry. Each lesson that leans on one states the fact in one sentence and asks one recall question before using it.
| External atom | What it says | Leaned on by |
|---|---|---|
| ENE-020 | Temperature measures average particle motion | MAT-004 (Topic 1) |
| ENE-021 | Heat flows from hot to cold | MAT-020–023 (Topic 2) |
| ENE-025 | Thermal conductors and insulators | MAT-013 (Topic 3) |
| FOR-017 | Spot a magnetic force | MAT-041 (Topic 6) |
| LIF-073 | The photosynthesis word equation | MAT-072 (Topic 12) |
Why
- Stand-alone entry rule: no student has taken the 3–5 courses or the sibling MS courses, so every lesson stands alone.
- One loop to know about: ENE-020 (Energy) lists MAT-002 and MAT-003 as its prerequisites, and MAT-004 lists ENE-020. Inside this course MAT-004 carries the "hotter means faster particles" idea itself; the Energy course will meet it as retrieval.
What changes: the blueprint's "leans on" column names the external atom wherever it applies.
Card 7 — Register observations, no edits made
The call: seven observations for your atomisation pass. I changed nothing in the register.
- MAT-013 sorts materials as thermal and electrical conductors — two property families in one behaviour (the "and" audit). Candidate split.
- MAT-022 "Evaporation and boiling" — evaporation happens at the surface below the boiling point; boiling happens throughout at one temperature. Two predictions, one atom. Candidate split.
- MAT-050 states the charge and location of three particles — six facts in one contrast frame. HS Chemistry kept a similar profile atom whole as an argued exception; flagging for the same argument here.
- MAT-061 counts atoms with "a coefficient, parentheses, or both" — two routines, likely two lessons.
- MAT-019b may not fail independently of MAT-019 in practice. Kept as its own lesson; the data decides (guide: never pre-emptively merge).
- MAT-004 → MAT-016/017/018. Identifying a solid from its behaviour does not need "heating speeds particles". The edge is honoured in the order, but it looks like a sequencing edge rather than a knowledge one.
- MAT-042 has no in-strand prerequisite and enters via MAT5-084 only; Topic 7 must open with the particle picture from Topic 1 as its retrieval.
What changes: nothing until you rule. Atom edits happen in the knowledge-graph repo with a log entry.
About this build (kickoff record)
- Register:
Science Knowledge Graph/data/atoms/06-08/matter.json, pulled 25 September 2026, 92 atoms in 13 sub-domains. Per-course choices are the register's: K-8 IDs with letter suffixes; Fact / Categorical / Transformation / Routine; bare behaviours; verdict/reason split by default. - Endpoint: grade-8 STAAR, Florida SSA and AZSCI physical-science items; NGSS MS-PS1-1/2/4/5.
- Sources read: knowledge-graph HANDOFF and CLAUDE; vault CLAUDE, 00 Protocol, the PP100 and build-process-v2 rulings, the blueprint rule; the Grade 3 Forces feedback log; the chemistry misconception research (particle model area). HS Chemistry Unit 1 was opened before this document was written; under your same-day correction it is reference only, and Topic 1's scenes were chosen fresh.
- Coverage check (standards mapped onto this architecture, never the other way): every Matter atom sits in exactly one topic; every TEKS 6.6/7.6/8.6 knowledge code in the register appears in at least one topic. Blank cells in the register (e.g. NGSS on solutions, TEKS on atomic structure) are register findings, not gaps in this course.
What happens next
You approve or edit the topic table. Then you read the Topic 1 blueprint. Only after that does write-lesson run on Topic 1, one lesson at a time, starting with the first of each lesson type as its exemplar.