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Density of carbon monoxide at different temperatures and pressures

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NIAID Data Ecosystem2026-05-02 收录
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Density of carbon monoxide at different temperatures and pressures Junjie Chen Department of Energy and Power Engineering, School of Mechanical and Power Engineering, Henan Polytechnic University, 2000 Century Avenue, Jiaozuo, Henan, 454000, P.R. China Contributor: Junjie Chen, ORCID: 0000-0001-5055-4309, E-mail address: komcjj@gmail.com   Density is mass of a unit volume of a material substance. Density is commonly expressed in units of grams per cubic centimeter. Density can also be expressed as kilograms per cubic meter. The densities of common solids, liquids, and gases are listed in textbooks and handbooks. Density offers a convenient means of obtaining the mass of a body from its volume or vice versa; the mass is equal to the volume multiplied by the density, while the volume is equal to the mass divided by the density. The weight of a body, which is usually of more practical interest than its mass, can be obtained by multiplying the mass by the acceleration of gravity. Tables that list the weight per unit volume of substances are also available; this quantity has various titles, such as weight density, specific weight, or unit weight. Temperature (degrees Celsius), Pressure (megapascals), Density (kilograms per cubic meter) Two lines are given for each temperature; the first line gives the values of the liquid phase, and the second line gives the values of the vapor phase. 68.16      0.01554      849.5 68.16      0.01554      0.7761 70.00      0.02105      842.1 70.00      0.02105      1.027 80.00      0.08374      800.3 80.00      0.08374      3.658 90.00      0.2385      755.4 90.00      0.2385      9.660 100.00      0.5444      705.4 100.00      0.5444      21.20 110.00      1.067      647.4 110.00      1.067      41.74 120.00      1.877      574.6 120.00      1.877      78.77 130.00      3.065      456.2 130.00      3.065      164.8 132.86      3.494      303.9 Contributor: Junjie Chen, ORCID: 0000-0001-5055-4309, E-mail address: komcjj@gmail.com, Department of Energy and Power Engineering, School of Mechanical and Power Engineering, Henan Polytechnic University, 2000 Century Avenue, Jiaozuo, Henan, 454000, P.R. China

不同温度与压强下的一氧化碳密度 陈俊杰 河南理工大学机械与动力工程学院能源与动力工程系,河南省焦作市世纪大道2000号,454000,中华人民共和国 贡献者:陈俊杰,开放研究者与贡献者标识符(ORCID):0000-0001-5055-4309,电子邮箱:komcjj@gmail.com 密度指单位体积物质所具有的质量。密度通常以克每立方厘米为单位,也可表示为千克每立方米。常见固体、液体与气体的密度可在教科书及手册中查阅。密度为通过体积求取物体质量,或通过质量求取物体体积提供了便捷途径:质量等于体积与密度的乘积,体积则等于质量除以密度。物体的重量(通常比质量更具实际应用价值)可通过将质量乘以重力加速度得到。此外,也存在列出物质单位体积重量的表格,该物理量存在多种称谓,例如重量密度、比重量或单位重量。 温度(摄氏度)、压强(兆帕)、密度(千克每立方米) 每个温度对应两行数据:第一行为液相密度值,第二行为气相密度值。 68.16 0.01554 849.5 68.16 0.01554 0.7761 70.00 0.02105 842.1 70.00 0.02105 1.027 80.00 0.08374 800.3 80.00 0.08374 3.658 90.00 0.2385 755.4 90.00 0.2385 9.660 100.00 0.5444 705.4 100.00 0.5444 21.20 110.00 1.067 647.4 110.00 1.067 41.74 120.00 1.877 574.6 120.00 1.877 78.77 130.00 3.065 456.2 130.00 3.065 164.8 132.86 3.494 303.9 贡献者:陈俊杰,开放研究者与贡献者标识符(ORCID):0000-0001-5055-4309,电子邮箱:komcjj@gmail.com,河南理工大学机械与动力工程学院能源与动力工程系,河南省焦作市世纪大道2000号,454000,中华人民共和国
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