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name of oxygen vs acrolein

Input interpretation

oxygen | acrolein
oxygen | acrolein

Chemical names and formulas

 | oxygen | acrolein formula | O_2 | CH_2=CHCHO Hill formula | O_2 | C_3H_4O name | oxygen | acrolein IUPAC name | molecular oxygen | prop-2-enal alternate names | dioxygen | Freon 732 | molecular oxygen | oxygen gas | R-732 | 2-propenal | acraldehyde | acrylaldehyde | acrylic aldehyde | allyl aldehyde | aqualine | crolean | prop-2-enal | propenal | slimicide mass fractions | O (oxygen) 100% | C (carbon) 64.3% | H (hydrogen) 7.19% | O (oxygen) 28.5%
| oxygen | acrolein formula | O_2 | CH_2=CHCHO Hill formula | O_2 | C_3H_4O name | oxygen | acrolein IUPAC name | molecular oxygen | prop-2-enal alternate names | dioxygen | Freon 732 | molecular oxygen | oxygen gas | R-732 | 2-propenal | acraldehyde | acrylaldehyde | acrylic aldehyde | allyl aldehyde | aqualine | crolean | prop-2-enal | propenal | slimicide mass fractions | O (oxygen) 100% | C (carbon) 64.3% | H (hydrogen) 7.19% | O (oxygen) 28.5%

Structure diagrams

  | oxygen | acrolein vertex count | 2 | 4 edge count | 1 | 3 Schultz index | 4 | 38 Wiener index | 1 | 10 Hosoya index | 2 | 5 Balaban index | 1 | 1.975
| oxygen | acrolein vertex count | 2 | 4 edge count | 1 | 3 Schultz index | 4 | 38 Wiener index | 1 | 10 Hosoya index | 2 | 5 Balaban index | 1 | 1.975

3D structure

3D structure
3D structure

Basic properties

 | oxygen | acrolein molar mass | 31.998 g/mol | 56.064 g/mol phase | gas (at STP) | liquid (at STP) melting point | -218 °C | -87 °C boiling point | -183 °C | 53 °C density | 0.001429 g/cm^3 | 0.839 g/cm^3
| oxygen | acrolein molar mass | 31.998 g/mol | 56.064 g/mol phase | gas (at STP) | liquid (at STP) melting point | -218 °C | -87 °C boiling point | -183 °C | 53 °C density | 0.001429 g/cm^3 | 0.839 g/cm^3

Units

Gas properties

 | oxygen density | 0.001429 g/cm^3 vapor density | 1.11 molar volume | 22390 cm^3/mol surface tension | 0.01347 N/m refractive index | 1.000271 dynamic viscosity | 2.055×10^-5 Pa s
| oxygen density | 0.001429 g/cm^3 vapor density | 1.11 molar volume | 22390 cm^3/mol surface tension | 0.01347 N/m refractive index | 1.000271 dynamic viscosity | 2.055×10^-5 Pa s

Units

Liquid properties

 | acrolein density | 0.839 g/cm^3 vapor pressure | 209.4 mmHg dynamic viscosity | 3.5×10^-4 Pa s surface tension | 0.024 N/m refractive index | 1.403
| acrolein density | 0.839 g/cm^3 vapor pressure | 209.4 mmHg dynamic viscosity | 3.5×10^-4 Pa s surface tension | 0.024 N/m refractive index | 1.403

Units

Thermodynamic properties

 | oxygen | acrolein molar heat of vaporization | 6.8 kJ/mol (kilojoules per mole) | 28.3 kJ/mol (kilojoules per mole) specific heat of vaporization | 0.2125 kJ/g (kilojoules per gram) | 0.505 kJ/g (kilojoules per gram) molar heat of combustion | | 1634 kJ/mol (kilojoules per mole) molar heat of fusion | 0.44 kJ/mol (kilojoules per mole) |  critical temperature | 154.59 K (kelvins) | 527 K (kelvins) critical pressure | 5.043 MPa (megapascals) | 5.07 MPa (megapascals) compressibility factor | 0.288 (at critical conditions) |  acentric factor ω | 0.022 | 0.17 Antoine equation constants | 13.6835 | 780.26 | -4.1758 |
| oxygen | acrolein molar heat of vaporization | 6.8 kJ/mol (kilojoules per mole) | 28.3 kJ/mol (kilojoules per mole) specific heat of vaporization | 0.2125 kJ/g (kilojoules per gram) | 0.505 kJ/g (kilojoules per gram) molar heat of combustion | | 1634 kJ/mol (kilojoules per mole) molar heat of fusion | 0.44 kJ/mol (kilojoules per mole) | critical temperature | 154.59 K (kelvins) | 527 K (kelvins) critical pressure | 5.043 MPa (megapascals) | 5.07 MPa (megapascals) compressibility factor | 0.288 (at critical conditions) | acentric factor ω | 0.022 | 0.17 Antoine equation constants | 13.6835 | 780.26 | -4.1758 |