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Magnetic Damping Term

Mathematical Modelling — Fluid Dynamics & Heat TransferContinuum mechanics; boundary-layer similarity theory

1

Symbol

The Lorentz braking term — the conductivity-to-density ratio times the magnetic parameter times the dimensionless velocity.

Main equation
Level 0 of 3
Brief — named quantities
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Only level 0 travels with this article; the expansion runs to level 3. The complete expansion is several megabytes, so deeper levels are fetched one at a time when you ask for them.

To go deeper still, open any quantity in the reading as its own concept card — it carries its own derivation and its own depth ladder.

Dimension:1Maths:ℝ scalar(·) — A single number (real numbers), depending on another quantityDimensionally verifiedMathematically verifiedFully reduced to base quantities

In words:divided bytimestimes.

Open full derivation chain: 2 stepsDerivation
  1. 1
    Open Step 1: Given / definition · The source relation this block transforms: the substituted Lorentz braking — the magnetic coeff…
    The source relation this block transforms: the substituted Lorentz braking — the magnetic coefficient times U_w f′.Given / definition
    Level 0 · more available
    Brief — named quantities
    About levels

    Why the levels load one at a time

    Only level 0 travels with this article. The complete expansion is several megabytes, so deeper levels are fetched one at a time when you ask for them — and how deep it goes is not known until you get there.

    To go deeper still, open any quantity in the reading as its own concept card — it carries its own derivation and its own depth ladder.

    How many levels remain is not yet known — the depth is discovered one level at a time.

  2. Open Step 2: Parameter definition · Divide by the convective scale c²x/(1−γt)² and insert B(t)² = B₀²/(1−γt): the residual transien…
    Divide by the convective scale c²x/(1−γt)² and insert B(t)² = B₀²/(1−γt): the residual transient factor cancels exactly (the very reason the B(t) artifact is chosen), and σ_hnf B₀²/(ρ_hnf c) is identified BY DEFINITION as (φ_σ/φ_ρ)M.Parameter definition
    Open term-change ledger: 1 records
    Open record 1: σB²/ρ + Uw → M
    Consumes:L0L0UwProduces:L0MDividing by the convective scale c²x/(1−γt)² and inserting B(t)² = B₀²/(1−γt): the (1−γt) factors cancel exactly, and the residue σ_hnf B₀²/(ρ_hnf c) is DEFINED as (φ_σ/φ_ρ)M — a Hartmann-type magnetic parameter.M
    Level 0 · more available
    Brief — named quantities
    About levels

    Why the levels load one at a time

    Only level 0 travels with this article. The complete expansion is several megabytes, so deeper levels are fetched one at a time when you ask for them — and how deep it goes is not known until you get there.

    To go deeper still, open any quantity in the reading as its own concept card — it carries its own derivation and its own depth ladder.

    How many levels remain is not yet known — the depth is discovered one level at a time.

Equation Workspace

Set known values, calculate unknowns, inspect dependencies, and run numerical solves.

Calculator

Equation workspace

Set the values you know, then calculate the remaining quantities in Magnetic Damping Term.

Domain Analysis

Unit status, dimensional trails, per-step checks, and custom unit expressions.

Step-by-step unit check (2 steps)
  1. Step 1 given
    Expand checked this step.
  2. Step 2 parameter_definition
    Expand checked this step.
Try your own — the unit calculator

Ever wondered whether a formula “adds up”? This tool answers one plain question: do the units match? Pick a couple of quantities (distance, time, a speed…), join them with ×, ÷, +, or =, and press Run. It works out the resulting unit — for example distance ÷ time gives a speed, LT⁻¹ (metres per second) — and flags anything that can’t be right, like adding a length to a time.

Reads as: (φ_σ/φ_ρ) M f′

“(φ_σ/φ_ρ) M f′” is analysed by expanding its full defining equation (its children and their relations), not as a bare symbol. Use Check this concept’s units above for the same result.

Mathematical Analysis

Object type, lawful operations, conditions, comparisons, and derivation-step checks.

Check one step at a time (2 steps)
Step 1 — given
Step 2 — parameter definition

Essence

S1The magnetic damping term of the reduced ODE: (φ_σ/φ_ρ)M f′.

  • S1.1essenceφ_σ divided by φ_ρ.
  • S1.2essenceThe product of (φ_σ / φ_ρ) and M.
  • S1.3essenceThe product of ((φ_σ / φ_ρ) · M) and f′.

Dimension I

Definition

What it is — and what it is not

What it is
  • S2The substituted Lorentz braking: (σ_hnf B²/ρ_hnf)U_w f′.
    • S2.1essenceThe product of σB²/ρ and Uw.
    • S2.2essenceThe product of (σB²/ρ · Uw) and f′.

Dimension II

In practice

How to deal with it

No practical guidance recorded yet.

Sub-topics 6

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