HomeCalculatorsMechanicalSection PropertiesPlane Centroid Calculator
Mechanical calculator

Plane Centroid Calculator

Centroid of composite plane areas from each part's area and centroid. Negative area is a hole. Runs locally. Not a moment of inertia and not a beam calculator.

Instant result
Result
—

Enter values to calculate.

Inputs—
Mode—
Formula—
Trust summary CVP VERIFIED · production STALE · CVP protocol 1.0.0-proposed · Engineering assurance
Input interpretation
Enter values to calculate.
Result
—
Assurance
Engineering
Declared partition coverage
PASS · 2/2 declared partitions (domain, invalid-domain) · Matrix
Known limitations
  • Physics L1 gap capability
  • Core CVP does not include live graph, viewport, or pointer interaction.
Model
Centroid of a composite plane area from part areas and part centroids.
Scope
Calculation runs locally in the browser; values are not uploaded.
Verification
Engine tested · Source checked · v1.0.0 · CVP VERIFIED · production STALE · CVP protocol 1.0.0-proposed · Engineering assurance· View Manifest · CVP overview · Specification
Versions
Calculation 1.0.0 · CVP protocol 1.0.0-proposed
CVP identity
0/0 property · digest 3af1aa1d520d
Legacy regression
6/6 tests · Production surface contract 6/6
Trust layers
Verification VERIFIED · Production STALE · overall VERIFIED_STALE
CVP status
STALE · Capability production binding: STALE · Site report: STALE · Evidence changed after the last successful production attestation. Re-attestation required.
Reference
O1 model · O2 expected_values · O2 numerical_behavior
Interfaces
PASS · UI (SSR) / REST / MCP — ui-ssr is query-result HTML, not a live browser session.
Supplemental domain review
Not performed
Named expert review
Not performed
CVP suite
1/1 golden · 4/4 CVP boundary · 3/3 invalid · 1/1 cross-interface · 6/6 CVP contract · Manifest
Sources
  • Hibbeler, Engineering Mechanics: Statics — Center of gravity and centroid
  • Beer, Johnston, and Mazurek, Vector Mechanics for Engineers: Statics — Center of gravity and centroid
Sources
Evidence
2 legacy golden · 4 legacy boundary · legacy regression suite · 1/1 oracle-backed golden · 3/3 invalid · Artifact integrity PASS
STALE · Last attested schema matched 1.0.0 snapshot / local build · Semantic contract ✓ · Last attestation PASS · current evidence changed · re-attestation required · CVP STALE · attestation STALE — Production CURRENT withheld · Public/cache ✓ · Origin ✓
Semantic contract
PASS
Full verification

Manifest identity, reference classes, interfaces, suite, and production records.

Formulas

Core equations used by this calculator.

Centroidx̄ = Σ(A x) / ΣA, ȳ = Σ(A y) / ΣA
iA negative area removes a hole. This page is not a moment of inertia and not beam deflection.

How to use

1

Enter each part as A, x, y

One part per row, separated by semicolons. x and y are that part's own centroid.

2

Use a negative area for a hole

The hole's x and y are the centroid of the removed area.

3

Read the composite centroid

The result is the first-moment average. Total area must not be zero.

Example calculations

Common configurations with formula and result.

ϟ

Two equal areas

Area 2 at the origin and area 2 at x = 4

x̄ = (0 + 8) / 4
x̄ = 2
ϟ

Hole

Area 4 at the origin minus area 2 at x = 3

x̄ = (0 − 6) / 2
x̄ = −3

Plane Centroid calculator specification

Version 1.0.0 · Engine tested

Calculation status

Review policy · Evidence

Definition
Plane centroid of signed areas. x̄ = Σ(A x) / ΣA and ȳ = Σ(A y) / ΣA. x and y are the centroid of each part.
What it calculates
Centroid of a composite plane area from part areas and part centroids.
Inputs
  • parts
Outputs
  • area
  • x_bar
  • y_bar
Formula
x̄ = Σ(A x) / ΣA, ȳ = Σ(A y) / ΣA
Assumptions
  • Calculation runs locally in the browser; values are not uploaded.
  • Keep units consistent with the labels on each field.
  • A negative area removes a hole. This page is not a moment of inertia and not beam deflection.
Units
  • Area and position stay in one consistent unit system. A negative area is a hole.
Boundary conditions
  • no parts → MISSING_REQUIRED_INPUT
  • a row that is not A,x,y → INVALID_INPUT
  • total area zero → INVALID_INPUT
Example
2,0,0; 2,4,0 → x̄ = 2
Validation cases

3 published on this page · 6/6 tests · Production surface contract 6/6 · View evidence

  • parts=2,0,0; 2,4,0 → area=4, x_bar=2, y_bar=0
  • parts=4,0,0; -2,3,0 → area=2, x_bar=-3
  • parts=1,0,0; -1,2,0 → INVALID_INPUT
Sources
  • Hibbeler, Engineering Mechanics: Statics — Center of gravity and centroid
    Supports: x̄ = Σ(A x)/ΣA and ȳ = Σ(A y)/ΣA for a composite plane area
  • Beer, Johnston, and Mazurek, Vector Mechanics for Engineers: Statics — Center of gravity and centroid
    Supports: Supports the page formula: x̄ = Σ(A x) / ΣA, ȳ = Σ(A y) / ΣA
Calculation version
1.0.0

Background

Interpretation and common distinctions.

Find the centroid of a composite plane area from each part's area and centroid.

Supported and not supported

Supported: signed plane areas, including a hole entered as a negative area.

Not supported: moment of inertia, radius of gyration, section modulus, beam deflection, and mass properties. /calc/mechanical is not open.

Agent / API notes

Capability id: mechanical.statics.plane_centroid · tool id: plane-centroid · pin 1.0.0.

{ "parts": "2,0,0; 2,4,0" }

Each part is A,x,y. A negative area is a hole. Share the link with parts. The result is not written into the link.

Frequently asked questions

Key distinctions behind the calculation.

Does this compute a moment of inertia?

No. It returns the centroid of signed plane areas. Area moments of inertia, radius of gyration, and section modulus are out of scope.

Where does the sum run?

Locally. The first-moment vector calls the vector engine. This page does not contain a second adder.