C16/20 vs C50/60

C50/60 is 1.3 times as stiff as C16/20. Their densities are about the same. Per unit mass C50/60 is 1.3 times as stiff. Strength: f_ck = 16 MPa for C16/20, f_ck = 50 MPa for C50/60.

Side by side

ratio = C50/60 / C16/20 · log scale
Property C16/20 C50/60UnitRatio¼×1×4×
E Young's modulus 29 37 GPa 1.28×
G Shear modulus 12.08 15.42 GPa 1.28×
ν Poisson's ratio 0.2 0.2 – 1×
ρ Density 2447 2447 kg/m³ 1×
γ Weight density 24 24 kN/m³ 1×
α Coefficient of thermal expansion 10 10 10⁻⁶/K 1×
f_ck Characteristic cylinder strength 16 50 MPa 3.12×
f_ck,cube Characteristic cube strength 20 60 MPa 3×
f_cm Mean cylinder strength 24 58 MPa 2.42×
f_ctm Mean tensile strength 1.9 4.1 MPa 2.16×
f_ctk,0.05 Tensile strength, 5 % fractile 1.3 2.9 MPa 2.23×
f_ctk,0.95 Tensile strength, 95 % fractile 2.5 5.3 MPa 2.12×
ε_c1 Strain at peak stress 1.9 2.45 ‰ 1.29×
ε_cu1 Ultimate strain 3.5 3.5 ‰ 1×
ε_c2 Strain at peak, parabola–rectangle 2 2 ‰ 1×
ε_cu2 Ultimate strain, parabola–rectangle 3.5 3.5 ‰ 1×
n Exponent, parabola–rectangle 2 2 – 1×
ε_c3 Strain at peak, bilinear 1.75 1.75 ‰ 1×
ε_cu3 Ultimate strain, bilinear 3.5 3.5 ‰ 1×
E/ρ Specific stiffness E/ρ · derived 11.85 15.12 MJ/kg 1.28×
c₀ Bar wave speed √(E/ρ) · derived 3442 3888 m/s 1.13×
f/ρ Specific strength f/ρ · derived 6.538 20.43 kJ/kg 3.12×

Values at the first thickness band or product form of each material (EN 1992-1-1; EN 1992-1-1). A minimum and a characteristic value are not the same kind of number — read the ratio as a guide. Each material's page lists every band and every source.