While traveling, an airplane passenger placed a bag of potato chips in his checked luggage that was placed in the baggage compartment where the air was not regulated. When he opened the luggage after landing, the bag had exploded and potato chips were everywhere in his luggage. Which gas law does this describe?.

Respuesta :

Flammable liquids and solids, such as lighter refills, lighter fuel, matches, paints, thinners, fire-lighters, lighters that must be inverted before ignition, matches (these may be carried on the person), radioactive material, briefcases, and attach cases with alarm devices installed.

Food items larger than 3.4 oz are not permitted in carry-on bags and should be stored in checked bags if possible. Food, powders, and other materials that can clog bags and obstruct clear images on the X-ray machine may be instructed to be separated from carry-on bags by TSA officers. Most passengers are permitted to bring one full-size carry-on bag and one personal item for free on their flight. There are some exceptions, such as customers traveling on Basic Economy tickets.

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Answer:

Explanation:

Boyle's law was used when a traveller on a plane packed a bag of potato chips in his checked luggage and put it in the unventilated baggage hold. When the passenger opened the bag after landing, the bag exploded, and there were chips all over his luggage.

Why is Boyle’s law applicable to the airplane passenger?

Let's have a look at the link between pressure and height to better understand how the answer was arrived at.

Altitude increases cause a drop in pressure.

A particular surface has fewer air molecules above it at higher elevations than it does at lower elevations.

This indicates that the pressure is high at ground level and low at the airspace through which an airplane passes.

The gas in the sealed bag of potato chips had expanded, causing the bag to explode.

Given that it demonstrates the relationship between volume and pressure, this circumstance serves as an illustration of Boyle's law.

Basically, Boyle's law states that when pressure lowers, volume rises and vice versa.

What does Boyle’s law state?

If the temperature and amount of gas remain constant in a closed system, the absolute pressure exerted by a given mass of an ideal gas is inversely proportional to the volume it occupies.

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