High
Paraffin oil has a high boiling point because it consists of large hydrocarbon molecules with strong intermolecular forces. These forces require a significant amount of energy to overcome, resulting in a high boiling point. Additionally, the long carbon chains in paraffin oil allow for more potential interactions between molecules, further contributing to its high boiling point.
The boiling point of metalloids is not so high.
high boiling point low melting point
Boiling point is a property not a force; but a high boiling point indicate a strong intermolecular force.
Chromium is a metal and metals tend to have high boiling points.
Paraffin oil has a high boiling point because it consists of large hydrocarbon molecules with strong intermolecular forces. These forces require a significant amount of energy to overcome, resulting in a high boiling point. Additionally, the long carbon chains in paraffin oil allow for more potential interactions between molecules, further contributing to its high boiling point.
The boiling point of metalloids is not so high.
high boiling point low melting point
Chromium has a high boiling point as opposed to nonmetals. Metals tend to have high boiling points.
Most - CH4 Least - unanswerable as so very many high molecular weight hydrocarbons have almost no vapour pressure. Hydrocarbon would include compounds such as macro-molecules of rubbers and other 3 dimensional polymers.
No, 68 is a low boiling point.
Boiling point is a property not a force; but a high boiling point indicate a strong intermolecular force.
No. Fluorine has a very low boiling point
Low boiling point of -268.93 °C
Yes. The boiling point of aluminum is 2519 oC.
Chromium is a metal and metals tend to have high boiling points.
A liquid with a lower boiling point will boil quicker because it requires less energy to reach its boiling point compared to a liquid with a higher boiling point.