Categories
trader joes milk expiration date

pentane vapor pressure calculator

It is highly recommend that you seek the Material Safety Datasheet (MSDS) for this chemical from a reliable source such as eChemPortal, and follow its directions. Methanol contains an extensive hydrogen bonding network, but in this case the polar acetone molecules create AB interactions that are stronger than the AA or BB interactions, leading to a negative enthalpy of solution and a lower vapor pressure than predicted by Raoults law (a negative deviation). Wondering how many helium balloons it would take to lift you up in the air? hence, pv = 35.89 psia = 247.46 kPa. We can solve vapor pressure problems in either of two ways: by using Equation \ref{13.6.1} to calculate the actual vapor pressure above a solution of a nonvolatile solute, or by using Equation \ref{13.6.3} to calculate the decrease in vapor pressure caused by a specified amount of a nonvolatile solute. So, there's 56.6 mols of molecules for every 1L of solution (one comes from glucose and 55.6 from water as calculated). Just type in the temperature, and the pressure will appear in no time - don't hesitate. Other names:n-Pentane;Skellysolve A;n-C5H12;Pentan;Pentanen;Pentani;Amyl hydride;NSC 72415. The Journal of Chemical Thermodynamics 1977, 9 (2) , 153-165. https://doi.org/10.1016/0021-9614(77)90081-7; D. WebCAS Registry Number:109-66-0. WebSolved The G of vaporization for pentane at 298 K and 1.00 | Chegg.com. WebThe emission rate of n-pentane from the tailpipes of diesel powered trucks was measured as 1,860 mg/km (6). 0000000023 00000 n 0000000776 00000 n Other names:n-Pentane;Skellysolve A;n-C5H12;Pentan;Pentanen;Pentani;Amyl hydride;NSC 72415. No raw data such as these can cover all conditions of concentration, temperature, humidity, impurities and aeration. (%u7O xsA*,"{Iz Permanent linkfor this species. Engineering ToolBox - Resources, Tools and Basic Information for Engineering and Design of Technical Applications! In your chemistry classes, a teacher might give you an exercise to find the vapor pressure or enthalpy of vaporization. , Check out 10 similar chemical thermodynamics calculators , Cell EMF Calculator Electromotive Force of a Cell, How to calculate vapor pressure? The net effect is to shift the dynamic equilibrium between water in the vapor and the liquid phases, decreasing the vapor pressure of the solution compared with the vapor pressure of the pure solvent. WebPropane - Density and Specific Weight vs. Weblog 10 of n-Pentane vapor pressure. Pentane, C5H12, is a clear colorless liquid with a petroleum-like odor. startxref The 3d structure may be viewed usingJavaorJavascript. Saturation Temperature. Stephen Lower, Professor Emeritus (Simon Fraser U.) Calculate the vapor pressure of an aqueous solution containing 30.2% ethylene glycol by mass, a concentration commonly used in climates that do not get extremely cold in winter. WebThe procedure to use the vapor pressure calculator is as follows: Step 1: Enter the temperature, molar enthalpy of vaporization, and x for the unknown in the input field. We can use the Omnicalculator tool Vapor pressure calculator or the Clausius Clapeyron equation as follows: Define a boiling temperature and pressure you know. The 3d structure may be viewed usingJavaorJavascript. Blue fields allow input; press to calculate. Blue fields allow input; press to calculate. You can use the Omnicalculator Vapor pressure calculator or the Clausius Claperyron equation as follows: As per the Clausius Clapeyron equation, a lower vapor pressure corresponds to a lower boiling point. 0000003062 00000 n Chemical species. 128 0 obj A A 30.2% solution of ethylene glycol contains 302 g of ethylene glycol per kilogram of solution; the remainder (698 g) is water. <>/ProcSet[/PDF /Text /ImageB /ImageC /ImageI]/Font<>>>/MediaBox[0 0 523 721]/Contents[128 0 R]>> The LibreTexts libraries arePowered by NICE CXone Expertand are supported by the Department of Education Open Textbook Pilot Project, the UC Davis Office of the Provost, the UC Davis Library, the California State University Affordable Learning Solutions Program, and Merlot. WebClassic equation for vapor pressure calculation and correlation. Accuracy: For many substances, vapor pressures are only poorly known; expect errors up to a few 10% of the vapor pressure value and up to approx. As a small thank you, wed like to offer you a $30 gift card (valid at GoNift.com). Give it a go! 0 Conversely, if the AB interactions are weaker than the AA and BB interactions yet the entropy increase is enough to allow the solution to form, both A and B have an increased tendency to escape from the solution into the vapor phase. Find out the new pressure at which water will boil. Calculate the vapor pressure of an aqueous solution containing 30.2% ethylene glycol by mass, a concentration commonly used in climates that do not get extremely cold in winter. You could also use Raoult's Law to find the vapor pressure: Psolution=PsolventXsolvent . The G of vaporization for pentane at 298 K and 1.00 atm is 0.03176 kJ/mol. To use Raoults law to calculate the vapor pressure of the solution, we must know the mole fraction of water. Both the liquid an the vapor are flammable. n-hexane and isooctane (2,2,4-trimethylpentane). If the solution contains only a single nonvolatile solute (B), then \(X_A + X_B = 1\), and we can substitute \(X_A = 1 X_B\) to obtain, \[\begin{align} P_A &=(1X_B)P^0_A \\[4pt] &=P^0_AX_BP^0_A \label{13.6.2} \end{align}\]. endobj The G of vaporization for pentane at 298 K and 1.00 atm is 0.03176 kJ/mol. For example, let's say that we have a solution made from two chemicals: benzene and toluene. WebCAS Registry Number:109-66-0. 0000007685 00000 n Joliet, IL 60436, Phone: 815-424-2000 Diversified CPC International, a Sumitomo Corporation of Americas Portfolio Company, is the global leader in the design, production, and distribution of the highest quality aerosol propellants, high-purity hydrocarbon refrigerants, and specialty applications. For many years, researchers, industrials and students spent a lot of time searching the information they needed on the molecules used in their plants and laboratories, in many publications. This formula is illustrated in a phase diagram - a chart showing how phases change and coexist at equilibrium at different pressures and temperatures. Suite 216 If you want to promote your products or services in the Engineering ToolBox - please use Google Adwords. And what does this all have to do with the enthalpy of vaporization? 0000003963 00000 n Accuracy: For many substances, vapor pressures are only poorly known; expect errors up to a few 10% of the vapor pressure value and up to approx. Hexane and isooctane are both nonpolar molecules (isooctane actually has a very small dipole moment, but it is so small that it can be ignored). Obtain the water enthalpy of vaporization: 40660 J/mol. 0000026810 00000 n These applications will - due to browser restrictions - send data between your browser and our server. Because \(X_B = 1 X_A\) for a two-component system, \[ P_T=X_AP^0_A+(1X_A)P^0_B \label{13.6.5}\], Thus we need to specify the mole fraction of only one of the components in a two-component system. References. Chemical, physical and thermal properties of pentane:Values are given for liquid at 25oC /77oF / 298 K and 1 bara, if not other phase, temperature or pressure given. WebPentane - Density and Specific Weight vs. Given these values, find the vapor pressure of the solution. Let's work through a simple example in this section to illustrate the concepts we're discussing. Also, remember we are going to use the gas constant: 8.3145 J/molK. WebPentane Formula:C5H12 Molecular weight:72.1488 IUPAC Standard InChI:InChI=1S/C5H12/c1-3-5-4-2/h3-5H2,1-2H3Copy IUPAC Standard InChIKey:OFBQJSOFQDEBGM-UHFFFAOYSA-NCopy CAS Registry Number:109-66-0 Chemical structure: This structure is also available as a 2d Mol fileor as a computed3d SD file The 3d structure may be viewed using Javaor WebSolved The G of vaporization for pentane at 298 K and 1.00 | Chegg.com. WebLPG Calculator Calculate the vapor pressure and density of any blend of Propane, Isobutane, n-Butane, or Pentanes between the temperatures of -40 and 130F. For our example, let's say that we want to find the vapor pressure of simple syrup. Consequently, the change in enthalpy on solution formation is essentially zero (\(H_{soln} 0\)), which is one of the defining characteristics of an ideal solution. WebClassic equation for vapor pressure calculation and correlation. Consequently, solutions of \(CCl_4\) and methanol exhibit positive deviations from Raoults law. MATHESON TRI-GAS, INC. MSDS from SDSdata.org index, "Viscosity and Surface Tension of Saturated n-Pentane", https://en.wikipedia.org/w/index.php?title=Pentane_(data_page)&oldid=1128617320, Creative Commons Attribution-ShareAlike License 3.0, Except where noted otherwise, data relate to, This page was last edited on 21 December 2022, at 02:11. Let's have a closer look at two vapor pressure equations: the Clausius-Clapeyron equation and Raoult's law. Saturation Pressure. Most real solutions, however, do not obey Raoults law precisely, just as most real gases do not obey the ideal gas law exactly. Today, all this information is gathered here, just a click away! How does a liquid change into a gas due to a change in pressure and temperature? 13: Solutions and their Physical Properties, { "00:_Front_Matter" : "property get [Map MindTouch.Deki.Logic.ExtensionProcessorQueryProvider+<>c__DisplayClass228_0.b__1]()", "13.01:_Types_of_Solutions:_Some_Terminology" : "property get [Map MindTouch.Deki.Logic.ExtensionProcessorQueryProvider+<>c__DisplayClass228_0.b__1]()", "13.02:_Solution_Concentration" : "property get [Map MindTouch.Deki.Logic.ExtensionProcessorQueryProvider+<>c__DisplayClass228_0.b__1]()", "13.03:_Intermolecular_Forces_and_the_Solution_Process" : "property get [Map MindTouch.Deki.Logic.ExtensionProcessorQueryProvider+<>c__DisplayClass228_0.b__1]()", "13.04:_Solution_Formation_and_Equilibrium" : "property get [Map MindTouch.Deki.Logic.ExtensionProcessorQueryProvider+<>c__DisplayClass228_0.b__1]()", "13.05:_Solubilities_of_Gases" : "property get [Map MindTouch.Deki.Logic.ExtensionProcessorQueryProvider+<>c__DisplayClass228_0.b__1]()", "13.06:_Vapor_Pressures_of_Solutions" : "property get [Map MindTouch.Deki.Logic.ExtensionProcessorQueryProvider+<>c__DisplayClass228_0.b__1]()", "13.07:_Osmotic_Pressure" : "property get [Map MindTouch.Deki.Logic.ExtensionProcessorQueryProvider+<>c__DisplayClass228_0.b__1]()", "13.08:_Freezing-Point_Depression_and_Boiling-Point_Elevation_of_Nonelectrolyte_Solutions" : "property get [Map MindTouch.Deki.Logic.ExtensionProcessorQueryProvider+<>c__DisplayClass228_0.b__1]()", "13.09:_Solutions_of_Electrolytes" : "property get [Map MindTouch.Deki.Logic.ExtensionProcessorQueryProvider+<>c__DisplayClass228_0.b__1]()", "13.10:_Colloidal_Mixtures" : "property get [Map MindTouch.Deki.Logic.ExtensionProcessorQueryProvider+<>c__DisplayClass228_0.b__1]()", "zz:_Back_Matter" : "property get [Map MindTouch.Deki.Logic.ExtensionProcessorQueryProvider+<>c__DisplayClass228_0.b__1]()" }, { "00:_Front_Matter" : "property get [Map MindTouch.Deki.Logic.ExtensionProcessorQueryProvider+<>c__DisplayClass228_0.b__1]()", "01:_Matter-_Its_Properties_And_Measurement" : "property get [Map MindTouch.Deki.Logic.ExtensionProcessorQueryProvider+<>c__DisplayClass228_0.b__1]()", "02:_Atoms_and_The_Atomic_Theory" : "property get [Map MindTouch.Deki.Logic.ExtensionProcessorQueryProvider+<>c__DisplayClass228_0.b__1]()", "03:_Chemical_Compounds" : "property get [Map MindTouch.Deki.Logic.ExtensionProcessorQueryProvider+<>c__DisplayClass228_0.b__1]()", "04:_Chemical_Reactions" : "property get [Map MindTouch.Deki.Logic.ExtensionProcessorQueryProvider+<>c__DisplayClass228_0.b__1]()", "05:_Introduction_To_Reactions_In_Aqueous_Solutions" : "property get [Map MindTouch.Deki.Logic.ExtensionProcessorQueryProvider+<>c__DisplayClass228_0.b__1]()", "06:_Gases" : "property get [Map MindTouch.Deki.Logic.ExtensionProcessorQueryProvider+<>c__DisplayClass228_0.b__1]()", "07:_Thermochemistry" : "property get [Map MindTouch.Deki.Logic.ExtensionProcessorQueryProvider+<>c__DisplayClass228_0.b__1]()", "08:_Electrons_in_Atoms" : "property get [Map MindTouch.Deki.Logic.ExtensionProcessorQueryProvider+<>c__DisplayClass228_0.b__1]()", "09:_The_Periodic_Table_and_Some_Atomic_Properties" : "property get [Map MindTouch.Deki.Logic.ExtensionProcessorQueryProvider+<>c__DisplayClass228_0.b__1]()", "10:_Chemical_Bonding_I:_Basic_Concepts" : "property get [Map MindTouch.Deki.Logic.ExtensionProcessorQueryProvider+<>c__DisplayClass228_0.b__1]()", "11:_Chemical_Bonding_II:_Additional_Aspects" : "property get [Map MindTouch.Deki.Logic.ExtensionProcessorQueryProvider+<>c__DisplayClass228_0.b__1]()", "12:_Intermolecular_Forces:_Liquids_And_Solids" : "property get [Map MindTouch.Deki.Logic.ExtensionProcessorQueryProvider+<>c__DisplayClass228_0.b__1]()", "13:_Solutions_and_their_Physical_Properties" : "property get [Map MindTouch.Deki.Logic.ExtensionProcessorQueryProvider+<>c__DisplayClass228_0.b__1]()", "14:_Chemical_Kinetics" : "property get [Map MindTouch.Deki.Logic.ExtensionProcessorQueryProvider+<>c__DisplayClass228_0.b__1]()", "15:_Principles_of_Chemical_Equilibrium" : "property get [Map MindTouch.Deki.Logic.ExtensionProcessorQueryProvider+<>c__DisplayClass228_0.b__1]()", "16:_Acids_and_Bases" : "property get [Map MindTouch.Deki.Logic.ExtensionProcessorQueryProvider+<>c__DisplayClass228_0.b__1]()", "17:_Additional_Aspects_of_Acid-Base_Equilibria" : "property get [Map MindTouch.Deki.Logic.ExtensionProcessorQueryProvider+<>c__DisplayClass228_0.b__1]()", "18:_Solubility_and_Complex-Ion_Equilibria" : "property get [Map MindTouch.Deki.Logic.ExtensionProcessorQueryProvider+<>c__DisplayClass228_0.b__1]()", "19:_Spontaneous_Change:_Entropy_and_Gibbs_Energy" : "property get [Map MindTouch.Deki.Logic.ExtensionProcessorQueryProvider+<>c__DisplayClass228_0.b__1]()", "20:_Electrochemistry" : "property get [Map MindTouch.Deki.Logic.ExtensionProcessorQueryProvider+<>c__DisplayClass228_0.b__1]()", "21:_Chemistry_of_The_Main-Group_Elements_I" : "property get [Map MindTouch.Deki.Logic.ExtensionProcessorQueryProvider+<>c__DisplayClass228_0.b__1]()", "22:_Chemistry_of_The_Main-Group_Elements_II" : "property get [Map MindTouch.Deki.Logic.ExtensionProcessorQueryProvider+<>c__DisplayClass228_0.b__1]()", "23:_The_Transition_Elements" : "property get [Map MindTouch.Deki.Logic.ExtensionProcessorQueryProvider+<>c__DisplayClass228_0.b__1]()", "24:_Complex_Ions_and_Coordination_Compounds" : "property get [Map MindTouch.Deki.Logic.ExtensionProcessorQueryProvider+<>c__DisplayClass228_0.b__1]()", "25:_Nuclear_Chemistry" : "property get [Map MindTouch.Deki.Logic.ExtensionProcessorQueryProvider+<>c__DisplayClass228_0.b__1]()", "26:_Structure_of_Organic_Compounds" : "property get [Map MindTouch.Deki.Logic.ExtensionProcessorQueryProvider+<>c__DisplayClass228_0.b__1]()", "27:_Reactions_of_Organic_Compounds" : "property get [Map MindTouch.Deki.Logic.ExtensionProcessorQueryProvider+<>c__DisplayClass228_0.b__1]()", "28:_Chemistry_of_The_Living_State" : "property get [Map MindTouch.Deki.Logic.ExtensionProcessorQueryProvider+<>c__DisplayClass228_0.b__1]()", "zz:_Back_Matter" : "property get [Map MindTouch.Deki.Logic.ExtensionProcessorQueryProvider+<>c__DisplayClass228_0.b__1]()" }, [ "article:topic", "showtoc:no", "Raoult\u2019s law", "license:ccbyncsa", "licenseversion:40" ], https://chem.libretexts.org/@app/auth/3/login?returnto=https%3A%2F%2Fchem.libretexts.org%2FBookshelves%2FGeneral_Chemistry%2FMap%253A_General_Chemistry_(Petrucci_et_al. Webincorporated in the new algorithm. Asked for: predicted deviation from Raoults law. You can target the Engineering ToolBox by using AdWords Managed Placements. Blue fields allow input; press to calculate. Contact the regional Air Liquide team for expertise service. You could also use Raoult's Law to find the vapor pressure: Psolution=PsolventXsolvent . Temperature and Pressure - Online calculator, figures and table showing density and specific weight of pentane, C 5 H 12, at temperatures ranging from -130 to 325 C (-200 to 620 F) at atmospheric and higher pressure - Temperature and Pressure - Online calculator, figures and tables showing density and specific weight of propane, C 3 H 8, at temperatures ranging from -187 to 725 C (-305 to 1300 F) at atmospheric and higher pressure - 0000002767 00000 n By multiplying both sides by the exponent, we get: 102325P2=e1.1289\small \frac{102325}{P_2} = e^{1.1289}P2102325=e1.1289. In this case, we calculate the vapor pressure of each component separately. Solve the equation for the pressure by following the order of operations. It belongs to the organic class alkanes, and is naturally present in crude oils and condensates. WebCalculate the volume or mass of a quantity of gas or liquid. ln102325PaP2=40660Jmol8.3145JmolK(1263K1280K)\small ln\frac{102325Pa}{P_2} = \frac{40660\frac{J}{mol}}{8.3145 \frac{J}{mol \cdot K}\cdot (\frac{1}{263K}-\frac{1}{280K})}lnP2102325Pa=8.3145molKJ(263K1280K1)40660molJ. We don't save this data. The phase diagram of pentane is shown below the table. Designed by Clearbridge Branding Agency, Diversified CPC International Enthalpy of vaporization or, in other words, the heat of vaporization, is the energy required for a phase change - turning a liquid into a gas. Hint, air pressure at 3500 m.a.s.l., at 20C is 65kPa. 0000005593 00000 n Equation source. If you're unsure what vapor pressure is, keep scrolling. EthaneEnter weight %'s of each component Propane Isobutane n-Butane isoPentane n-Pentane Temperature-40 to 130 oF (90oif Ethane does not = 0) Vapor Pressurepsig 0000001969 00000 n To find the vapor pressure at a given temperature, use the Clausius-Clapeyron equation: ln (P1/P2) = (Hvap/R) ( (1/T2) - (1/T1)). At an ambient temperature, what would be the vapor pressure of water? PROBLEM SETUP. Recommendations : Air Liquide has gathered data on the compatibility of gases with materials to assist you in evaluating which materials to use for a gas system. EthaneEnter weight %'s of each component Propane Isobutane n-Butane isoPentane n-Pentane Temperature-40 to 130 oF (90oif Ethane does not = 0) Vapor Pressurepsig But if you're solving the Clausius-Clapeyron equation on your own, remember that temperature should always be expressed in Kelvins. 0000001121 00000 n The Journal of Chemical Thermodynamics 1977, 9 (2) , 153-165. https://doi.org/10.1016/0021-9614(77)90081-7; D. It is 86.35C. We can view the system as having two competing equilibria: water vapor will condense in both beakers at the same rate, but water molecules will evaporate more slowly from the glucose solution because fewer water molecules are at the surface. PROCESS DATA. WebPentane - Density and Specific Weight vs. You can rearrange the above equation to solve for P2\footnotesize P_2P2: P2=102325e1.1289=33090Pa\small P_2 = \frac{102325}{e^{1.1289}} = 33090\space PaP2=e1.1289102325=33090Pa. As you see, it's a bit complicated to do this calculation by hand. Give it a go! WebClick hereto get an answer to your question Calculate vapour pressure of a mixture containing 252 g of n - pentane (MW = 72) and 1400 g of n - heptane (MW = 100) at 20^oC . The Clausius-Clapeyron can help here use the reference vapor pressure and 298 K (25 C) for P1 and T1 respectively. Step 2: Now click the button Calculate x to get the result. This page provides supplementary chemical data on n-pentane. xc```e`` Ab@#.~INY1y5ojl:mVeZ]L#u0! w)A@ That means that when your house pump sucks water by reducing pressure at the inlet point, it is more prone to evaporate. Vapor Pressure Calculator. Some of our calculators and applications let you save application data to your local computer. < ]/Info 123 0 R/Size 133/Prev 974730>> Let's say 100C, at 101.3kPa of atmospheric pressure. Let's start with calculating the right side of our equation, as there are no unknowns: ln102325P2=1.1289\small ln\frac{102325}{P_2} = 1.1289lnP2102325=1.1289. Download the set of data (XLS - 82.01 KB), Latent heat of vaporization (at boiling point), Lower flammability limit (IEC 80079-20-1), Upper flammability limit (IEC 80079-20-1). Chemical structure: This structure is also available as a 2d Mol fileor as a computed3d SD file. We expect the AB interactions to be comparable in strength to the AA and BB interactions, leading to a vapor pressure in good agreement with that predicted by Raoults law (an ideal solution). At an ambient pressure of 25 degrees Celsius, the vapor pressure of water is 23.8 torr. %%EOF We can use the Omnicalculator tool Vapor pressure calculator or the Clausius Clapeyron equation as follows: Define a boiling temperature and pressure you know. Alternatively, we could solve this problem by calculating the mole fraction of ethylene glycol and then using Equation \ref{13.6.3} to calculate the resulting decrease in vapor pressure: \[X_{EG}=\dfrac{4.87\; mol\; EG}{4.87\; mol\; EG+38.7\; mol\; H_2O}=0.112 \nonumber\], \[P_{\ce{H2O}}=(X_{EG})(P^0_{H_2O})=(0.112)(760\; mmHg)=85.1\; mmHg \nonumber\], \[P_{\ce{H2O}}=P^0H_2OP_{H_2O}=760\; mmHg85.1\; mmHg=675\; mmHg \nonumber\]. For each system, compare the intermolecular interactions in the pure liquids with those in the solution to decide whether the vapor pressure will be greater than that predicted by Raoults law (positive deviation), approximately equal to that predicted by Raoults law (an ideal solution), or less than the pressure predicted by Raoults law (negative deviation): positive deviation (vapor pressure greater than predicted), negative deviation (vapor pressure less than predicted). Chemistry. endobj It's also expressed by the following equation: Psolution=PsolventXsolvent\small P_{solution} = P_{solvent} \cdot X_{solvent}Psolution=PsolventXsolvent. {"smallUrl":"https:\/\/www.wikihow.com\/images\/thumb\/9\/92\/Calculate-Vapor-Pressure-Step-1-Version-2.jpg\/v4-460px-Calculate-Vapor-Pressure-Step-1-Version-2.jpg","bigUrl":"\/images\/thumb\/9\/92\/Calculate-Vapor-Pressure-Step-1-Version-2.jpg\/aid4527638-v4-728px-Calculate-Vapor-Pressure-Step-1-Version-2.jpg","smallWidth":460,"smallHeight":345,"bigWidth":728,"bigHeight":546,"licensing":"

License: Creative Commons<\/a>
\n<\/p>


\n<\/p><\/div>"}, {"smallUrl":"https:\/\/www.wikihow.com\/images\/thumb\/4\/40\/Calculate-Vapor-Pressure-Step-2-Version-2.jpg\/v4-460px-Calculate-Vapor-Pressure-Step-2-Version-2.jpg","bigUrl":"\/images\/thumb\/4\/40\/Calculate-Vapor-Pressure-Step-2-Version-2.jpg\/aid4527638-v4-728px-Calculate-Vapor-Pressure-Step-2-Version-2.jpg","smallWidth":460,"smallHeight":345,"bigWidth":728,"bigHeight":546,"licensing":"

License: Creative Commons<\/a>
\n<\/p>


\n<\/p><\/div>"}, {"smallUrl":"https:\/\/www.wikihow.com\/images\/thumb\/1\/19\/Calculate-Vapor-Pressure-Step-3-Version-2.jpg\/v4-460px-Calculate-Vapor-Pressure-Step-3-Version-2.jpg","bigUrl":"\/images\/thumb\/1\/19\/Calculate-Vapor-Pressure-Step-3-Version-2.jpg\/aid4527638-v4-728px-Calculate-Vapor-Pressure-Step-3-Version-2.jpg","smallWidth":460,"smallHeight":345,"bigWidth":728,"bigHeight":546,"licensing":"

License: Creative Commons<\/a>
\n<\/p>


\n<\/p><\/div>"}, {"smallUrl":"https:\/\/www.wikihow.com\/images\/thumb\/f\/f4\/Calculate-Vapor-Pressure-Step-4-Version-2.jpg\/v4-460px-Calculate-Vapor-Pressure-Step-4-Version-2.jpg","bigUrl":"\/images\/thumb\/f\/f4\/Calculate-Vapor-Pressure-Step-4-Version-2.jpg\/aid4527638-v4-728px-Calculate-Vapor-Pressure-Step-4-Version-2.jpg","smallWidth":460,"smallHeight":345,"bigWidth":728,"bigHeight":546,"licensing":"

License: Creative Commons<\/a>
\n<\/p>


\n<\/p><\/div>"}, Finding Vapor Pressure with Dissolved Solutions, {"smallUrl":"https:\/\/www.wikihow.com\/images\/thumb\/0\/0b\/Calculate-Vapor-Pressure-Step-5-Version-2.jpg\/v4-460px-Calculate-Vapor-Pressure-Step-5-Version-2.jpg","bigUrl":"\/images\/thumb\/0\/0b\/Calculate-Vapor-Pressure-Step-5-Version-2.jpg\/aid4527638-v4-728px-Calculate-Vapor-Pressure-Step-5-Version-2.jpg","smallWidth":460,"smallHeight":345,"bigWidth":728,"bigHeight":546,"licensing":"

License: Creative Commons<\/a>
\n<\/p>


\n<\/p><\/div>"}, {"smallUrl":"https:\/\/www.wikihow.com\/images\/thumb\/2\/26\/Calculate-Vapor-Pressure-Step-6.jpg\/v4-460px-Calculate-Vapor-Pressure-Step-6.jpg","bigUrl":"\/images\/thumb\/2\/26\/Calculate-Vapor-Pressure-Step-6.jpg\/aid4527638-v4-728px-Calculate-Vapor-Pressure-Step-6.jpg","smallWidth":460,"smallHeight":345,"bigWidth":728,"bigHeight":546,"licensing":"

License: Creative Commons<\/a>
\n<\/p>


\n<\/p><\/div>"}, {"smallUrl":"https:\/\/www.wikihow.com\/images\/thumb\/5\/58\/Calculate-Vapor-Pressure-Step-7.jpg\/v4-460px-Calculate-Vapor-Pressure-Step-7.jpg","bigUrl":"\/images\/thumb\/5\/58\/Calculate-Vapor-Pressure-Step-7.jpg\/aid4527638-v4-728px-Calculate-Vapor-Pressure-Step-7.jpg","smallWidth":460,"smallHeight":345,"bigWidth":728,"bigHeight":546,"licensing":"

License: Creative Commons<\/a>
\n<\/p>


\n<\/p><\/div>"}, {"smallUrl":"https:\/\/www.wikihow.com\/images\/thumb\/0\/03\/Calculate-Vapor-Pressure-Step-8.jpg\/v4-460px-Calculate-Vapor-Pressure-Step-8.jpg","bigUrl":"\/images\/thumb\/0\/03\/Calculate-Vapor-Pressure-Step-8.jpg\/aid4527638-v4-728px-Calculate-Vapor-Pressure-Step-8.jpg","smallWidth":460,"smallHeight":345,"bigWidth":728,"bigHeight":546,"licensing":"

License: Creative Commons<\/a>
\n<\/p>


\n<\/p><\/div>"}, {"smallUrl":"https:\/\/www.wikihow.com\/images\/thumb\/b\/b7\/Calculate-Vapor-Pressure-Step-9.jpg\/v4-460px-Calculate-Vapor-Pressure-Step-9.jpg","bigUrl":"\/images\/thumb\/b\/b7\/Calculate-Vapor-Pressure-Step-9.jpg\/aid4527638-v4-728px-Calculate-Vapor-Pressure-Step-9.jpg","smallWidth":460,"smallHeight":345,"bigWidth":728,"bigHeight":546,"licensing":"

License: Creative Commons<\/a>
\n<\/p>


\n<\/p><\/div>"}, {"smallUrl":"https:\/\/www.wikihow.com\/images\/thumb\/c\/ce\/Calculate-Vapor-Pressure-Step-10.jpg\/v4-460px-Calculate-Vapor-Pressure-Step-10.jpg","bigUrl":"\/images\/thumb\/c\/ce\/Calculate-Vapor-Pressure-Step-10.jpg\/aid4527638-v4-728px-Calculate-Vapor-Pressure-Step-10.jpg","smallWidth":460,"smallHeight":345,"bigWidth":728,"bigHeight":546,"licensing":"

License: Creative Commons<\/a>
\n<\/p>


\n<\/p><\/div>"}, {"smallUrl":"https:\/\/www.wikihow.com\/images\/thumb\/b\/b4\/Calculate-Vapor-Pressure-Step-11.jpg\/v4-460px-Calculate-Vapor-Pressure-Step-11.jpg","bigUrl":"\/images\/thumb\/b\/b4\/Calculate-Vapor-Pressure-Step-11.jpg\/aid4527638-v4-728px-Calculate-Vapor-Pressure-Step-11.jpg","smallWidth":460,"smallHeight":345,"bigWidth":728,"bigHeight":546,"licensing":"

License: Creative Commons<\/a>
\n<\/p>


\n<\/p><\/div>"}, {"smallUrl":"https:\/\/www.wikihow.com\/images\/thumb\/7\/71\/Calculate-Vapor-Pressure-Step-12.jpg\/v4-460px-Calculate-Vapor-Pressure-Step-12.jpg","bigUrl":"\/images\/thumb\/7\/71\/Calculate-Vapor-Pressure-Step-12.jpg\/aid4527638-v4-728px-Calculate-Vapor-Pressure-Step-12.jpg","smallWidth":460,"smallHeight":345,"bigWidth":728,"bigHeight":546,"licensing":"

pentane vapor pressure calculator