No, bitumen does
Powdered soap does not dissolve in kerosene as kerosene is a non-polar solvent, while soap is made of polar molecules. This difference in polarity prevents the soap from dissolving in kerosene.
Wax is not soluble in alcohol but is partially soluble in kerosene oil.
Yes, kerosene evaporates faster than water because it has a lower boiling point. This means that at normal temperatures, kerosene molecules have more energy to break away from the liquid surface and enter the gas phase compared to water molecules.
Flask A containing CH4 would have the largest number of molecules because all the gases are at STP (Standard Temperature and Pressure), so they will occupy the same volume. Since CH4 has the lowest molar mass among the gases given, it will have the highest number of molecules in the flask.
The combustion of kerosene involves the reaction of the hydrocarbon molecules in kerosene with oxygen in the air to produce carbon dioxide, water, and heat energy. The general chemical equation for the combustion of kerosene is: CxHy + (x + y/4)O2 -> xCO2 + y/2H2O.
Kerosene is less dense than water, causing it to float on the surface. This is due to the difference in their molecular structures and the way their molecules interact with each other. The lighter kerosene molecules are unable to displace the heavier water molecules, leading to the kerosene floating on top.
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Kerosene has less surface tension than water because its molecules are less polar and can't form hydrogen bonds as easily as water molecules. This results in weaker intermolecular forces between kerosene molecules at the surface, leading to lower surface tension.
Powdered soap does not dissolve in kerosene as kerosene is a non-polar solvent, while soap is made of polar molecules. This difference in polarity prevents the soap from dissolving in kerosene.
It evolves CO2 when burnt. Kerosene is made up of C and H
Wax is not soluble in alcohol but is partially soluble in kerosene oil.
Yes, kerosene evaporates faster than water because it has a lower boiling point. This means that at normal temperatures, kerosene molecules have more energy to break away from the liquid surface and enter the gas phase compared to water molecules.
Flask A containing CH4 would have the largest number of molecules because all the gases are at STP (Standard Temperature and Pressure), so they will occupy the same volume. Since CH4 has the lowest molar mass among the gases given, it will have the highest number of molecules in the flask.
http://encarta.msn.com/encyclopedia_761570078/kerosene.html This website through Encarta will explain to you the properties of Kerosene and tell you that it is insoluble. Kerosene with most other Alkanes are non polar, water is polar. Non polar molecules can only dissolve with other non polar molecules. The same for polar in that they cannot dissolve in any other but polar molecules.
The combustion of kerosene involves the reaction of the hydrocarbon molecules in kerosene with oxygen in the air to produce carbon dioxide, water, and heat energy. The general chemical equation for the combustion of kerosene is: CxHy + (x + y/4)O2 -> xCO2 + y/2H2O.
Kerosene typically has nonpolar covalent bonding. This means that the carbon and hydrogen atoms in kerosene share electrons fairly equally, leading to no overall charge and weak intermolecular forces between molecules.
Kerosene can be converted into diesel through a process called hydrocracking. This involves breaking down the larger molecules in kerosene into smaller ones to create a product that is more similar to diesel fuel. The process requires high temperatures, pressure, and catalysts to transform the chemical composition of the kerosene.