Answer : The correct option is, 200.00 mole
Explanation : Given,
Moles of nitrogen dioxide = 300.00 mole
The balanced chemical reaction will be,
From the balanced chemical reaction, we conclude that 3 moles of nitrogen dioxide react with 1 mole of water to give 2 moles of nitric acid and 1 mole of nitric oxide as a product.
As, 3 moles of nitrogen dioxide react to give 2 moles of nitric acid
So, 300.00 moles of nitrogen dioxide react to give moles of nitric acid
Therefore, the number of moles of nitric acid is, 200.00 moles
In a gas, the particles are evenly spaced out and not in any particular order. There is no regular arrangement of liquid next to one another. Solids are regularly arranged and closely packed.
They can be compressed a lot (particles are widely spaced). Matter exists in three different states: solid, liquid, and gas.
By examining the configuration of their particles, it is possible to understand why they have various qualities.
A solid is a condition of matter that, even when unconstrained, keeps its shape and density.
A liquid is a nearly incompressible fluid with a (almost) constant volume regardless of pressure that adapts to the shape of its container.
A sample of matter that assumes the shape of the container it is stored in and develops a consistent density inside the container is referred to as a gas.
Therefore, the arrangements of individual particles in solids, liquids, and gases is different.
Learn more about solids, liquids, and gases here:
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Answer:
i need help with that too.
Explanation:
a. iron.,B.nickel.,C.Cooper.,D.lead.
Answer:
Copper
Explanation:
Answer:
Molecules in food contain chemical energy that cells use to produce Adenosine triphosphate ATP. Respiration is that the method by that cell get energy within the sort of ATP. Adenosine triphosphate captures energy obtained from the breakdown of food molecules and releases it to fuel alternative cellular processes. ATP, is that the primary carrier of energy in cells. Once energy is required by the cell, it's born-again from storage molecules into ATP.