In a synthesis reaction you start with 1.7L of hydrogen, how many liters of water will be produced

Answers

Answer 1
Answer:

Answer:

1.7L of water.

Explanation:

Given parameters:

Volume of hydrogen gas  = 1.7L

Unknown:

Volume of water produced  = ?

Solution:

A synthesis reaction is one in which two compounds or molecules combines together to give a product or products.

Synthesis of water from hydrogen gas is represented by the equation below:

                           2H₂    +        O₂     →    2H₂O

We clearly see that;

                       2 mole of hydrogen gas gives 2 mole of water as the product;

From Gay-lussac's law of combining volume "when gases react, they do so in volumes which bear a simple ratio to one another and to the volume of the product if gaseous, temperature and pressure remaining constant".

                2H₂    +        O₂     →    2H₂O

   2 volumes of hydrogen gas will produce 2 volumes of water

  1.7L of hydrogen gas will also produce ; 1.7L of water.


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If the half-life of an unstable isotope is 10,000 years, and only 1/8 of the radioactive parent remains in a sample, how old is the sample?

Answers

Have in mind that a radioactive half-life is the amount of time it takes for half of a sample to decay. So, if the amount remaining after x half-lives is (1/2)↑x times the amount you started with. So for 1/18 of radioactive parent then (1/2)↑6 equals 30,000 years

Answer: 30,000

Explanation: I'm taking gradpoint

A scientist discovers a new substance. The molecules of the substance form hydrogen bonds with each other. When the molecules lose a lot of energy, the hydrogen bonds hold them relatively far apart. Based on this information, what can the scientist infer about the substance?

Answers

Answer is: It expands when it freezes.

When molecule frezes, it lose energy. When molecules are far apart, it means the volume is greater and it expands.

For example, ice expands when water is freezing.

Hydrogen bond is an electrostatic attraction between two polar groups that occurs when a hydrogen atom (H), covalently bound to a highly electronegative atom such as flourine (F), oxygen (O) and nitrogen (N) atoms.

The more the heat energy present in it the bond between the molecules gets weaker just like water

The distance between stars is typically measured in

Answers

The distance between stars is typically measured in light years, or the amount of distance traveled by light in one year. This is because stars are extremely far apart, and measuring the distance with a smaller unit of measurement would result in ridiculously large numbers that would be difficult to work with.

Final answer:

The typical measure for the distance between stars is the light-year. Light-year and parsec are units used to quantify the enormous distances in the universe.

Explanation:

The distance between stars is typically measured in light-years. This term, 'light-year', refers to the distance that light can travel in one year, which is approximately 9.461 trillion kilometers or 5.879 trillion miles. Another less commonly used unit is the parsec, which is equivalent to about 3.26 light years. Such large units are necessary due to the vast distances between stars in the universe.

So, The distance between stars is typically measured in light-years.

Learn more about Distance between stars here:

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The mass of 69Ga is 68.7200 amu . The mass of 71Ga is 70.9200 amu .

Answers

I'm not sure if what this question is asking but ill be assuming that the average molecular mass is required. An assuming that the abundance of each isotope is 50% the average molecular mass is 69.82 amu. 

After taking a hot shower you may notice that the room gets steamy and the mirror is foggy you might also notice that there is moisture on the walls use these observations to come up with one reason why the temperature of the bathroom increases when you take a hot shower

Answers

Answer:the temperature might increase because of the humidity in the room so everything gets goofy and moist

Explanation:

In a chemical equation the arrow (indicating a reaction) points in which direction

Answers

As previously stated, depending on if the reaction is reversible it will point in both left and right directions. If it is irreversible it points to the right.
Depending if the reaction is a reversible or an irreversible one, the direction of the arrow will point in one direction or 2 directions from reactants to products.