a.LPG and C.Anhydrous ammonia
Because the pressure increases The real answer is: Charles's Law. He found that if you increase the temperature of a constant pressure the volume increases also.
The pressure must have been extremely low in the container.
The pressure must have been extremely low in the container.
A chemist or a materials scientist would likely investigate how to synthesize materials found in plants, such as natural fibers or bio-based plastics, by studying the chemical composition and properties of these materials to develop synthetic alternatives.
Yes. Container labels and Material Safety Data Sheets are the first places to look for information about the hazards of materials you may be working with or near.
The pressure must have been higher than 1 ATM in the container.
with the conductor or engineer
The materials found in the Earth's inner core are primarily iron and nickel. The extreme pressure in the core causes these materials to exist in a solid state despite the high temperatures. Small amounts of other elements such as sulfur, oxygen, and silicon may also be present.
iron and nickel, with some lighter elements like oxygen and sulfur. This composition is inferred from studying seismic waves and the behavior of materials under high pressure and temperature conditions similar to those found in the Earth's core.
The flammable symbol, a red diamond with a flame symbol inside, can typically be found on containers of flammable materials such as gasoline, diesel, or chemical solvents. It is usually displayed prominently on the label of the container to alert users to the potential fire hazard.
At the molecular scale, increasing the temperature means that the gas molecules are more energetic and are impacting the walls of the container with more momentum, thus imparting more force to the wall per collision. At the macroscopic scale, the ideal gas law is PV = nRT, which tells us that pressure rises linearly with temperature at constant volume.
Metamorphic rocks are most likely found at a site that is deep under ground. Metamorphic rocks are formed by other materials under great amounts of pressure. This pressure is caused by plate collisions in the lithosphere.