assumes
P1458
predicate
Indicates that one entity takes on, accepts, or presumes a role, responsibility, state, or fact regarding another entity or situation.
All labels observed (16)
| Label | Occurrences |
|---|---|
| assumes canonical | 3,336 |
| assumption | 282 |
| actsAs | 96 |
| hasAssumption | 28 |
| basedOnAssumption | 18 |
| usesAssumption | 12 |
| assumesOperation | 3 |
| assumesModel | 2 |
| assumeVariables | 1 |
| assumesBackground | 1 |
| assumesInput | 1 |
| assumesMedium | 1 |
| assumesProversAre | 1 |
| assumesVerifierIs | 1 |
| collectivelyAssume | 1 |
| presuppose | 1 |
Description generation (PDg)
The one-sentence description above was generated by prompting gpt-5.1 with the predicate name and this instruction.
Instruction
Given a predicate that represents a relationship or action between entities, generate a one-sentence description explaining its meaning. # Instructions Focus on describing the relationship, not the entities themselves. # Response Format Begin the description with \' Indicates...\'
Input
Predicate: assumes
Generated description
Indicates that one entity takes on, accepts, or presumes a role, responsibility, state, or fact regarding another entity or situation.
Sample triples (3,785)
| Subject | Object |
|---|---|
| fluctuation–dissipation theorem | time-translational invariance in equilibrium ⓘ |
| Stokes–Einstein relation | overdamped motion ⓘ |
| Stokes–Einstein relation | low Reynolds number ⓘ |
| Stokes–Einstein relation | no-slip boundary condition ⓘ |
| Stokes–Einstein relation | continuum hydrodynamics ⓘ |
| Stokes–Einstein relation | thermal equilibrium ⓘ |
| Stokes–Einstein relation | isotropic medium ⓘ |
| CLT | no single variable dominates the sum ⓘ |
| Fermi energy | non-interacting or weakly interacting fermions in simple models ⓘ |
| Rayleigh–Jeans law at low frequencies | electromagnetic modes have energy kT per degree of freedom ⓘ |
| Rayleigh–Jeans law at low frequencies | continuous energy spectrum ⓘ |
| Rayleigh–Jeans law at low frequencies | classical electromagnetic field ⓘ |
| Wien displacement law | continuous spectrum ⓘ |
| Wien displacement law | isotropic emission ⓘ |
| Gauss's law for magnetism | absence of magnetic charge density ⓘ |
| Faraday's law of induction | classical electromagnetism ⓘ |
| Newton's first law of motion | space and time are absolute in Newtonian mechanics ⓘ |
|
Gauss’s lemma in number theory
surface form:
Gauss’s lemma (number theory)
|
p is an odd prime ⓘ |
|
Gauss’s lemma in number theory
surface form:
Gauss’s lemma (number theory)
|
a is an integer coprime to p ⓘ |
| Minimalist Program | Universal Grammar ⓘ |
| Minimalist Program | language faculty is an optimal solution to interface conditions ⓘ |
| Euler equations | inviscid fluid ⓘ |
| Euler equations | zero viscosity ⓘ |
| Euler equations | continuum hypothesis ⓘ |
| Kardashev scale | civilizations can expand energy use over time ⓘ |
| Kardashev scale | energy use correlates with technological advancement ⓘ |
| Berry–Esseen theorem | independent random variables ⓘ |
| Berry–Esseen theorem | finite third absolute moment ⓘ |
| Berry–Esseen theorem | non-degenerate variance ⓘ |
| Stefan–Boltzmann law | surface is a perfect black body with emissivity equal to 1 ⓘ |
| special relativity | principle of relativity ⓘ |
| special relativity | constancy of the speed of light in vacuum ⓘ |
| Kennedy–Thorndike experiment | no preferred reference frame ⓘ |
| Kennedy–Thorndike experiment | inertial laboratory frame ⓘ |
| Brillouin–Wigner perturbation theory | existence of a solvable unperturbed Hamiltonian ⓘ |
| Cavendish experiment | inverse-square law of gravitation ⓘ |
| Eightfold Way classification | strong interaction approximately flavor symmetric ⓘ |
| Gell-Mann–Nishijima formula | isospin SU(2) symmetry ⓘ |
| Bode plot | linear time-invariant system ⓘ |
| Bode plot | sinusoidal steady-state excitation via predicate surface "assumesInput" ⓘ |
| Parliamentary Private Secretaries | political aides via predicate surface "actsAs" ⓘ |
| Parliamentary Private Secretaries | liaisons between ministers and backbenchers via predicate surface "actsAs" ⓘ |
| Nyquist stability criterion | system is linear ⓘ |
| Nyquist stability criterion | system is time-invariant ⓘ |
| Nyquist stability criterion | transfer function is rational ⓘ |
| Deputy Prime Minister of the Netherlands | acting Prime Minister of the Netherlands via predicate surface "actsAs" ⓘ |
| Deputy Prime Minister of the Netherlands | chair of the Council of Ministers in absence of the Prime Minister via predicate surface "actsAs" ⓘ |
| Bardeen–Stephen model of flux flow in superconductors | normal core inside each vortex ⓘ |
| Bardeen–Stephen model of flux flow in superconductors | Ohmic dissipation in the vortex core ⓘ |
| Bardeen–Stephen model of flux flow in superconductors | normal-state like resistivity in the vortex core ⓘ |