guys what do you think of my new expanded improved SI unit system??
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Base units
Length — meter (m)
Time — second (s)
Mass — kilogram (kg)
Temperature — kelvin (K)
Electric current — ampere (A)
Luminous intensity — candela (cd)
Amount of substance — mole (mol)
Plane angle — radian (rad)
Solid angle — steradian (sr)
Mechanics and kinematics
Force — newton (N)
N = kg · m / s²
N = J / m
Mass density — arch (Ar)
Ar = kg / m³
Ar = Vn / Bn
Momentum — huygens (Hy)
Hy = kg · m / s
Hy = N · s
Pressure — pascal (Pa)
Pa = N / m²
Pa = kg / (m · s²)
Pa = J / m³
Dynamic viscosity — poiseuille (Pl)
Pl = Pa · s
Pl = kg / (m · s)
Surface tension — laplace (Lp)
Lp = N / m
Lp = J / m²
Gravitational potential — gal (G)
G = J / kg
G = (kg · m² / s²) / kg
G = m² / s²
Thermodynamics
Energy / Work / Heat / Enthalpy — joule (J)
J = N · m
J = (kg · m / s²) · m
J = kg · m² / s²
J = W · s
Heat capacity — clausius (Cl)
Cl = J / K
Cl = kg · m² / (s² · K)
Specific heat capacity — meyer (My)
My = J / (kg · K)
My = m² / (s² · K)
Power — watt (W)
W = J / s
W = kg · m² / s³
W = V · A
Action — planck (Pk)
Pk = J · s
Pk = (kg · m² / s²) · s
Pk = kg · m² / s
Entropy — boltz (Bz)
Bz = J / K
Bz = W · s / K
Thermal conductivity — fourier (Fo)
Fo = W / (m · K)
Fo = kg · m / (s³ · K)
Fluid dynamics
Mass flow rate — venturi (Vn)
Vn = kg / s
Vn = Ar · Bn
Volumetric flow rate — bern (Bn)
Bn = m³ / s
Bn = m² · m / s
Waves
Frequency — hertz (Hz)
Hz = s⁻¹
Hz = 1 / s
Angular frequency — poincare (Pn)
Pn = rad / s
Pn = s⁻¹
Electromagnetism
Electric potential — volt (V)
V = J / C
V = W / A
V = kg · m² / (A · s³)
Electric charge — coulomb (C)
C = A · s
C = F · V
Volume charge density — franklin (Fr)
Fr = C / m³
Fr = A · s / m³
Surface electric current density — giorgi (Gi)
Gi = A / m²
Gi = C / (s · m²)
Resistance — ohm (Ω)
Ω = V / A
Ω = kg · m² / (A² · s³)
Ω = 1 / S
Capacitance — farad (F)
F = C / V
F = A² · s⁴ / (kg · m²)
F = S · s
Inductance — henry (H)
H = Wb / A
H = V · s / A
H = kg · m² / (A² · s²)
Conductance — siemens (S)
S = A / V
S = 1 / Ω
Electric displacement — roentgen (Ro)
Ro = C / m²
Ro = Cv · E
Electric field flux — gauss (Gs)
Gs = E · m²
Gs = V · m
Magnetic field flux — weber (Wb)
Wb = V · s
Wb = T · m²
Wb = kg · m² / (A · s²)
Electric permittivity — cav (Cv)
Cv = F / m
Cv = A² · s⁴ / (kg · m³)
Magnetic permeability — max (Mx)
Mx = H / m
Mx = kg · m / (A² · s²)
Electric field strength — edison (E)
E = V / m
E = N / C
E = kg · m / (A · s³)
Magnetic field intensity — tesla (T)
T = Wb / m²
T = N / (A · m)
T = kg / (A · s²)
Optics and radiation
Luminous flux — lumen (lm)
lm = cd · sr
Illuminance — lux (lx)
lx = lm / m²
lx = cd · sr / m²
Vergence — descartes (Dc)
Dc = m⁻¹
Dc = rad / m
Radiance — stefan (St)
St = W / (m² · sr)
St = kg / (s³ · sr)
Irradiance / EM flux density — poynting (Py)
Py = W / m²
Py = kg / s³
Volume power density — opp (O)
O = W / m³
O = kg / (m · s³)
Acoustics
Sound power — bel (B)
Sound impedance — rayleigh (Ry)
Ry = Pa / (m / s)
Ry = kg / (m² · s)
Nuclear and chemistry
Absorbed dose — gray (Gy)
Gy = J / kg
Gy = m² / s²
Equivalent dose — sievert (Sv)
Sv = J / kg
Sv = m² / s²
Radioactive activity — becquerel (Bq)
Bq = s⁻¹
Bq = 1 / s
Catalytic activity — katal (kat)
kat = mol / s
kat = mol · Hz