Answer: The pressure required is 0.474 atm
Explanation:
Boyle's Law: This law states that pressure is inversely proportional to the volume of the gas at constant temperature and number of moles.
(At constant temperature and number of moles)
The equation is,
where,
= initial pressure of gas = 1.0 atm
= final pressure of gas = ?
= initial volume of gas =
= final volume of gas =
(
Now put all the given values in the above equation, we get:
The pressure required is 0.474 atm
Answer:
of
would be required.
Explanation:
The quantity of solute in a solution of concentration and volume
would be
.
It is given that volume for the solution in this question. It is also given that the concentration of the
solute in this solution is
, which is the equivalent to
.
Apply the equation to find the quantity of
in this solution:
.
Multiply the quantity of
in this solution with the formula mass
of
to find the corresponding mass:
.
Thus, this solution would contain of
.
It would thus take of
to prepare this solution.
Answer:
The required mass to prepare 2.5 L of 1.0 M NaOH solution is 100 g
Explanation:
We do this by preparing the equation:
Mass = concentration (mol/L) x volume (L) x Molar mass
Mass = 1.0 M x 2.5 L x 40 g/mol
Mass = 100 g
1. solid
2. liquid
3. gas
4. solution
4.Solution
Mixtures are materials composed of two or more kinds of substances that still possess their original properties. Mixtures can also be said to represent a combination of several substances, elements or compounds
There are two types of mixtures, i.e., homogeneous mixture (or solution) and heterogeneous mixture.
The solution is a homogeneous mixture of two or more substances that dissolve one another and each of the constituent substances cannot be distinguished physically anymore.
In chemistry, we already know the phase of matter or state of matter, i.e., solid (s), liquid (l), gas (g), and aqueous (aq). Every chemical solution in a reaction is labeled as an aqueous phase, e.g, as a salt solution.
Consider the following examples:
Keywords: which must be, a mixture of substances, solid, liquid, gas, solution, homogeneous, heterogeneous, phase of matter, state, aqueous, salt, water
x b). 8.3 x 10^3 kPa
c). 2.07 x 10^3 kPa
d). 2.07 x 10^4 kPa
Answer:
A) 1.04 x 10^4 kPa
Explanation:
I'm not exactly sure how but I took the test and this was the correct answer. My calculations said it was B as well but I guess not...