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SI derived quantity

A class with identifier http://rds.posccaesar.org/ontology/plm/rdl/PCA_100003555

MetadataThis section provides information about 'PCA_100003555' itself.

Source ontologycore

ConstraintsThis section lists constraints that members of 'PCA_100003555' shall satisfy.

ContextThis section provides super- and subtypes as well as members of 'PCA_100003555'.

fouling resistance
surface charge density
linear density
viscosity
absorbed dose rate
magnetic permeability
molar energy
axial stiffness
turbidity
inductance per unit length
force
permittivity
radiance
longitudinal strain
illuminance
magnetic flux density
electric conductivity
energy density
specific energy
exposure
length ratio
vergence
wavenumber
angular speed
current density
magnetic flux
angular momentum
mass ratio
heat rate
electric charge
energy
area moment of inertia
molar volume
pressure rate change
acidity
steam load factor
surface tension
luminous flux
volume
electric conductance
electric resistance per length
specific absorption rate
specific weight
weight per unit area
molar mass
pressure
Kelvin–Joule effect
time ratio
volume ratio
angle
magnetic field strength
angular distance
mass proportion
hardness
dynamic viscosity
arc length
concentration
power specific fuel consumption
radioactivity concentration
standard energy density
heat capacity
electric charge density
electric inductance
solid angle
specific volume
rate of change
power
entropy
impulse
thermal insulation
volume proportion
capacitance
angular acceleration
mass moment of inertia
molar flow rate
equivalent dose rate
pressure change per height
electrical resistance
catalytic activity concentration
power per length
stroke frequency
torque
frequency
dynamic density
electric flux density
slope of vapor press with temp
specific length
linear mass density
speed
surface density
luminance
volume flow rate per area
acceleration
area
mass flow rate area
molar entropy
capacitance per unit length
linear coefficient of expansion
density
electric potential
angular stiffness
catalytic activity
power density
radiant intensity
specific surface
temperature change
electric field strength
rhov2
energy dose
specific heat capacity