The Task Exposure Indexv2026.Q3
Occupation · SOC 17-3011.00 · Job Zone 3

AI exposure: Architectural and Civil Drafters

Prepare detailed drawings of architectural and structural features of buildings or drawings and topographical relief maps used in civil engineering projects, such as highways, bridges, and public works. Use knowledge of building materials, engineering practices, and mathematics to complete drawings.

Reading this score

computed

42.7% of this occupation's weighted task load is exposed, which puts Architectural and Civil Drafters at the 76th percentile of 923 occupations. The capability is largely there. Its average task scores 2.7 out of 4 on what a current system can produce, and the frictions that hold other jobs in place are comparatively weak here.

What holds the line here is context. Across this occupation's 26 tasks it averages 1.92 out of 3, the highest of the five friction dimensions. In plain terms, the work depends on knowledge the model cannot hold. Much of this job runs on things that were never written down: what this particular organisation does, what happened last week, what the person across the table actually meant. That context is the barrier, and it erodes as systems are given more access.

The most exposed thing this job does is Check dimensions of materials to be used and assign numbers to lists of materials, at 86.7%. The least is Supervise or conduct field surveys, inspections, or technical investigations to obtain data..., at 0.0%. A gap of 86.7% between two parts of the same job is the reason this index publishes at task level. An occupation-wide number would have hidden both.

Within architecture and engineering occupations, this one is more exposed than most. The median across the 56 roles in the group is 37.5%, and only 5 of them score higher than this. Occupational families are not uniform, and the spread inside them is often wider than the gap between them.

What would move this score. Of 26 tasks, 20 are currently banded exposed, 3 assisted and 3 untouched. For that distribution to shift materially would take cheaper ways to verify output, since the cost of checking is currently doing more to hold this work in place than the cost of producing it. The score is re-computed every quarter against a fresh capability reference, and the change is published rather than quietly applied.

Task by task

26 tasks, O*NET 31.0
TaskExposedAssistedUntouchedImportanceBand
Check dimensions of materials to be used and assign numbers to lists of materials.86.7%13.3%0.0%3.23exposed
Correlate, interpret, and modify data obtained from topographical surveys, well logs, and geophysical prospecting reports.80.0%20.0%0.0%3.09exposed
Determine the order of work and method of presentation, such as orthographic or isometric drawing.73.3%26.7%0.0%3.51exposed
Determine quality, cost, strength, and quantity of required materials, and enter figures on materials lists.57.4%25.9%16.7%3.25exposed
Prepare cost estimates, contracts, bidding documents, and technical reports for specific projects under an architect's or engineer's supervision.55.6%27.8%16.7%3.63exposed
Draw rough and detailed scale plans for foundations, buildings, and structures, based on preliminary concepts, sketches, engineering calculations, specification sheets, and other data.55.0%20.0%25.0%4.12exposed
Coordinate structural, electrical, and mechanical designs and determine a method of presentation to graphically represent building plans.55.0%20.0%25.0%4.08exposed
Lay out and plan interior room arrangements for commercial buildings, using computer-assisted drafting (CAD) equipment and software.55.0%20.0%25.0%3.81exposed
Create freehand drawings and lettering to accompany drawings.55.0%20.0%25.0%3.25exposed
Reproduce drawings on copy machines or trace copies of plans and drawings, using transparent paper or cloth, ink, pencil, and standard drafting instruments.55.0%20.0%25.0%3.07exposed
Prepare colored drawings of landscape and interior designs for presentation to client.55.0%20.0%25.0%2.98exposed
Draw maps, diagrams, and profiles, using cross-sections and surveys, to represent elevations, topographical contours, subsurface formations, and structures.50.0%25.0%25.0%3.67exposed
Calculate weights, volumes, and stress factors and their implications for technical aspects of designs.50.0%25.0%25.0%3.21exposed
Calculate heat loss and gain of buildings and structures to determine required equipment specifications, following standard procedures.50.0%25.0%25.0%2.70exposed
Analyze building codes, by-laws, space and site requirements, and other technical documents and reports to determine their effect on architectural designs.45.0%30.0%25.0%4.13exposed
Determine procedures and instructions to be followed, according to design specifications and quantity of required materials.45.0%30.0%25.0%3.31exposed
Locate and identify symbols on topographical surveys to denote geological and geophysical formations or oil field installations.45.0%30.0%25.0%3.13exposed
Explain drawings to production or construction teams and provide adjustments as necessary.40.0%35.0%25.0%4.04exposed
Review rough sketches, drawings, specifications, and other engineering data to ensure that they conform to design concepts.37.5%25.0%37.5%3.78exposed
Represent architect or engineer on construction site, ensuring builder compliance with design specifications and advising on design corrections, under supervision.37.0%29.6%33.3%3.80exposed
Produce drawings, using computer-assisted drafting systems (CAD) or drafting machines, or by hand, using compasses, dividers, protractors, triangles, and other drafting devices.23.3%26.7%50.0%4.49assisted
Finish and duplicate drawings and documentation packages according to required mediums and specifications for reproduction, using blueprinting, photography, or other duplicating methods.23.3%26.7%50.0%3.44assisted
Draft plans and detailed drawings for structures, installations, and construction projects, such as highways, sewage disposal systems, and dikes, working from sketches or notes.23.3%26.7%50.0%3.98assisted
Obtain and assemble data to complete architectural designs, visiting job sites to compile measurements as necessary.11.7%13.3%75.0%3.91untouched
Supervise and train other technologists, technicians, and drafters.10.0%15.0%75.0%3.28untouched
Supervise or conduct field surveys, inspections, or technical investigations to obtain data required to revise construction drawings.0.0%0.0%100.0%3.34untouched

Task text and importance ratings sourced from O*NET 31.0. Shares computed. The occupation score is the importance-weighted mean.

Where the score comes from

judged

Every task is scored through the standardised work activities it maps to. These are this occupation’s averages on the six rubric dimensions. Capability is what AI can do; the other five are what stands in the way.

DimensionMeanScale
Capability2.720-4
Embodiment0.310-3
Presence0.260-3
Accountability1.400-3
Context1.920-3
Verification cost1.690-3

What this means in practice

Where most of a role's weighted task load is exposed, the work that survives is usually the part of the job nobody wrote into the job description: deciding what should be produced rather than producing it, and being answerable for the result. The tasks lowest on this page are a better guide to where to spend your time than any general advice about the future of work.

Occupations either side of this one

The four closest scores in the same occupational family, then the four closest anywhere in the index.

Read this carefully. Exposure is not displacement. A high score means current AI systems can produce this work, not that anyone will stop paying a person to do it. Adoption depends on economics, regulation and inertia that this index deliberately does not model. How the score is built.