Organelle
An organelle is a specialized subunit, within a biological cell, that has a specific function.
At a glance
Key signals
0% cross fields · reaches 0 more
- Biology
- Cell Biology
- Explanation
- Examples
- Misconception
- Sourced relations
- Attribution
Dependencies
What this concept builds on and what it makes possible — derived from the atlas’s dependency, causal and structural relations, not from every related edge.
System context
Organelleis part ofCellEstablished
organelle is part of cell.
Mechanism: Organelles are the specialised compartments of a cell, each carrying out one job — much as organs divide the labour of a body.
- Biology 2e (OpenStax) (2018) verified
Structural role & consequence
Interpreted from the current atlas graph — what the connections mean, not just how many there are.
Currently dark in the atlas: no key date stored · 1 of 1 of its relations lack claim-level evidence.
atlas representation · Describes the current Thinking OS representation, not the state of the world.
Exercises 3 annotated mental models — a concept that connects several thinking patterns.
curated · Curated annotations, not a derived measure.
Structural neighbourhood: 1 → 31 → 74 concepts reachable within 3 hops.
structural · Structural reach — being reachable is not the same as being understood.
All 1 of its relationships stay within its own discipline — a field-specific concept in the current atlas.
structural · Structural graph analysis — not a claim of importance, causation or history.
cross-field
1 within-field, 0 cross-field
Strengths & constraints
Constraints
- Evidence coverage currently thin in the atlas — few of its relationships carry claim-level evidence. atlas representation
- No dated history stored — the atlas records no key date for this concept. atlas representation
Conditions
- Read structurally — most of its relationships carry no external evidence yet, so claims here are graph-derived. structural
Seen through each discipline
How this concept sits in each of its fields — derived from its real connections in the graph, not asserted.
Related ideas to explore
Concepts that look related but are not yet connected here — candidates for a connection to reason about, not established links.
This idea also appears in…
The same structure shows up in other disciplines. These are real recurrences drawn from the graph — a starting point for asking “what carries over, and what changes?”
Scale31 disciplines · 45 concepts
Levels & hierarchy13 disciplines · 11 concepts
Modularity7 disciplines · 10 concepts
Concepts
shares a mental model · shares a mental model
shares a mental model · shares a mental model
shares a mental model
shares a mental model
shares a mental model
shares a mental model
Mental models at work here
Scale
How a system's size changes what matters about it. Quantities rarely scale in step: doubling a length can quadruple an area and multiply a volume eightfold.
Ask what changes when you make it ten times bigger or smaller — the rules often change with the size.
Levels & hierarchy
Systems nest inside systems — parts form wholes that are themselves parts of larger wholes, each level with its own rules and language.
Pick the right level for the question: you rarely explain traffic with quantum physics. Zoom in for mechanism, out for behaviour.
Modularity
Build a complex whole from separable, reusable parts with clean interfaces, so each can be understood, changed or replaced on its own.
Look for the seams: where can you cut the system so the pieces barely depend on each other's insides? Good seams make change cheap.
- Connects 1 other ideas across 2 disciplines.
- Most of its connections are of the “Kind & structure” kind.
- It exercises 3 reusable thinking patterns.
Derived from the graph’s real structure — observations, not a score.
Sources
- Wikipedia (English & German editions) verifiedmoderate evidence
- Wikidata verifiedmoderate evidence
- Biology 2e (OpenStax) (2018) verified