benzeneacetic acid, 2-amino-3-benzoyl-, methyl ester Thermodynamic Properties vs Temperature (CAS 61941-58-0)

Analyze how thermophysical properties change over a temperature range at a constant pressure of 1 atm.

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Property Profile for benzeneacetic acid, 2-amino-3-benzoyl-, methyl ester

Calculated properties vs. Temperature

Profile Data

Equilibrium Thermodynamic and Transport Properties of benzeneacetic acid, 2-amino-3-benzoyl-, methyl ester at 1.01325 bar over -23.15–226.85 °C
Temperature (°C)Specific heat capacity (kJ/kg·K)Density (kg/m³)Dynamic viscosity (cP)Thermal conductivity (W/m·K)Prandtl number ()Molar volume (m³/kmol)Specific enthalpy (kJ)Specific entropy (kJ/kg·K)Phase
-23.150.9731281370.41N/A N/A N/A 0.196507-51.121-0.186544s
-18.0480.9917611367.45N/A N/A N/A 0.196933-46.1085-0.166697s
-12.94591.010441364.48N/A N/A N/A 0.19736-41.0009-0.146873s
-7.843881.029181361.52N/A N/A N/A 0.19779-35.7978-0.127071s
-2.741841.047971358.56N/A N/A N/A 0.198222-30.499-0.107289s
2.36021.066811355.59N/A N/A N/A 0.198655-25.1041-0.0875244s
7.462241.08571352.63N/A N/A N/A 0.19909-19.6131-0.0677766s
12.56431.104651349.67N/A N/A N/A 0.199527-14.0254-0.0480437s
17.66631.123661346.7N/A N/A N/A 0.199966-8.34098-0.0283242s
22.76841.142721343.74N/A N/A N/A 0.200407-2.55944-0.00861666s
27.87041.161831340.77N/A N/A N/A 0.200853.319480.0110803s
32.97241.1811337.81N/A N/A N/A 0.2012959.296070.0307678s
38.07451.200231334.85N/A N/A N/A 0.20174215.37060.0504473s
43.17651.219511331.88N/A N/A N/A 0.20219121.54340.0701199s
48.27861.238851328.92N/A N/A N/A 0.20264227.81470.0897867s
53.38061.621161183.89N/A 0.102194N/A 0.227466166.7610.515938l
58.48271.639181181.27N/A 0.101538N/A 0.227971175.0790.541212l
63.58471.65691178.64N/A 0.100881N/A 0.228479183.4870.566374l
68.68671.674321176N/A 0.100224N/A 0.228992191.9850.591421l
73.78881.691451173.36N/A 0.0995675N/A 0.229508200.5720.616353l
78.89081.708281170.7N/A 0.0989107N/A 0.230029209.2440.641169l
83.99291.724811168.04N/A 0.098254N/A 0.230553218.0020.665868l
89.09491.741051165.37N/A 0.0975972N/A 0.231082226.8440.690449l
94.19691.756991162.68N/A 0.0969404N/A 0.231615235.7680.714912l
99.2991.772631159.99N/A 0.0962836N/A 0.232153244.7720.739254l
104.4011.787981157.29N/A 0.0956269N/A 0.232694253.8550.763477l
109.5031.803031154.58N/A 0.0949701N/A 0.233241263.0160.787578l
114.6051.817781151.86N/A 0.0943133N/A 0.233791272.2530.811557l
119.7071.832231149.13N/A 0.0936565N/A 0.234347281.5640.835414l
124.8091.846391146.39N/A 0.0929997N/A 0.234907290.9490.859147l
129.9111.860251143.64N/A 0.0923429N/A 0.235472300.4050.882757l
135.0131.873811140.88N/A 0.091686N/A 0.236041309.930.906242l
140.1151.887081138.11N/A 0.0910292N/A 0.236616319.5250.929602l
145.2171.900051135.33N/A 0.0903724N/A 0.237195329.1860.952836l
150.3191.912721132.54N/A 0.0897156N/A 0.23778338.9120.975945l
155.4211.92511129.74N/A 0.0890587N/A 0.238369348.7030.998926l
160.5231.937181126.93N/A 0.0884019N/A 0.238964358.5561.02178l
165.6261.948961124.1N/A 0.087745N/A 0.239564368.471.04451l
170.7281.960451121.27N/A 0.0870882N/A 0.24017378.4431.0671l
175.831.971641118.42N/A 0.0864313N/A 0.240781388.4741.08957l
180.9321.982531115.57N/A 0.0857744N/A 0.241397398.5611.11191l
186.0341.993121112.7N/A 0.0851176N/A 0.24202408.7031.13413l
191.1362.003421109.82N/A 0.0844607N/A 0.242648418.8981.15621l
196.2382.013421106.93N/A 0.0838038N/A 0.243282429.1461.17816l
201.342.023131104.02N/A 0.0831469N/A 0.243921439.4431.19998l
206.4422.032531101.11N/A 0.08249N/A 0.244567449.7891.22166l
211.5442.041651098.18N/A 0.0818331N/A 0.24522460.1831.24322l
216.6462.050461095.24N/A 0.0811762N/A 0.245878470.6221.26465l
221.7482.058981092.29N/A 0.0805192N/A 0.246543481.1051.28594l
226.852.06721089.32N/A 0.0798623N/A 0.247214491.6311.3071l

Property Profiles for benzeneacetic acid, 2-amino-3-benzoyl-, methyl ester

Heat Capacity (Cp) vs Temperature

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Density vs Temperature

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Thermodynamic Property Profile at Constant Pressure

This page presents the temperature-dependent thermodynamic and transport properties of benzeneacetic acid, 2-amino-3-benzoyl-, methyl ester (CAS 61941-58-0) calculated at a constant pressure of 1 atm (101325 Pa) over the temperature range 250-500 K.

The properties shown - specific heat capacity (Cp), density (ρ), dynamic viscosity (μ), thermal conductivity (k), Prandtl number (Pr), molar volume (Vm), specific enthalpy (H), and specific entropy (S) - are among the most commonly used parameters in chemical engineering calculations, process simulation, and thermal system design.

All values are generated programmatically using validated thermodynamic correlations and equations of state and represent equilibrium properties at the specified pressure.


Understanding the Property Trends

  • Specific heat capacity (Cp) indicates the amount of energy required to raise the temperature of benzeneacetic acid, 2-amino-3-benzoyl-, methyl ester and is critical for energy balance and heat-exchanger design.
  • Density (ρ) and molar volume (Vm) describe volumetric behavior and are required for flow calculations, equipment sizing, and storage design.
  • Dynamic viscosity (μ) governs fluid flow resistance, influencing Reynolds number and pressure drop.
  • Thermal conductivity (k) and Prandtl number (Pr) are essential inputs for convective heat-transfer correlations.
  • Specific enthalpy (H) and specific entropy (S) are fundamental thermodynamic properties used in process modeling, compression, and expansion analysis.

Property trends with temperature may vary depending on molecular structure, intermolecular interactions, and phase stability.


Engineering Applications

The temperature-dependent properties of benzeneacetic acid, 2-amino-3-benzoyl-, methyl ester at atmospheric pressure are commonly required in:

  • Heat exchanger and reactor design
  • Process simulation and thermodynamic modeling
  • Fluid flow and pressure-drop calculations
  • Energy balance and equipment sizing
  • Chemical engineering education and research

These profiles are particularly useful when evaluating system performance over a wide operating temperature range under near-ambient pressure conditions.


Frequently Asked Questions

At what pressure are these properties calculated?
All properties on this page are calculated at a constant pressure of 1 atm (101325 Pa).

Can these values be used in process simulation software?
Yes. The data is suitable for preliminary design, validation, and educational use. For licensed simulators, vendor-specific property packages should be referenced.

Can I change the pressure or temperature range?
Yes. Use the interactive controls above to generate custom property profiles at different pressures or temperature ranges.


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