The lattice energy in the formation of one mole of BaSe bonds can be calculated using the equation Ulattice = (k * e2) / r, where k is the proportionality constant, e is the charge of the ions, and r is the distance between the ions. Given the radius of the barium ion and selenide ion, we can calculate the distance between them and then use it in the equation to find the lattice energy. The lattice energy in this case is approximately 10.8 billion N.
The amount of energy released in the formation of one mole of BaSe bonds can be calculated using the concept of lattice energy. Lattice energy is the energy released when ions come together to form a solid lattice structure. In this case, we have a barium ion (Ba2+) and a selenide ion (Se2-) coming together to form BaSe bonds.
To calculate the lattice energy, we can use the equation:
Ulattice = (k * e2) / r
Where:
Given that the radius of the barium ion is 1.35 Å and the radius of the selenide ion is 1.98 Å, we can calculate the distance between them and then use that value in the equation to find the lattice energy.
Let's calculate it:
Distance between ions = radius of Ba ion + radius of Se ion
= 1.35 Å + 1.98 Å
= 3.33 Å
Converting to meters:
= 3.33 * 10-10 m
Now, substituting the values in the equation:
Ulattice = (8.99 * 109 Nm2/C2) * (2 * 2) / (3.33 * 10-10 m)
= 10791849712.91 N
Therefore, the amount of energy released in the formation of one mole of BaSe bonds (lattice energy) is approximately 10.8 billion N.
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the mass of the substance
c.
the change in temperature
b.
the specific heat of the substance
d.
the density of the sample
To calculate the amount of heat absorbed as a substance melts, the information which we don't need is density.
The formula which we used to calculate the amount of involved heat in a chemical reaction is:
Q = mcΔT, where
Hence the information which we don't need is density.
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brief it
Answer:
scientific approach
Explanation:
Method of investigation in which a problems is First identified and observations, experiment are done
The new volume of the gas if the temperature is increased to the given value is 67.68 milliliters.
Charles's law states that "the volume occupied by a definite quantity of gas is directly proportional to its absolute temperature.
It is expressed as;
V₁/T₁ = V₂/T₂
Given the data in the question;
V₁/T₁ = V₂/T₂
V₂ = V₁T₂ / T₁
V₂ = ( 0.05605L × 380.5K ) / 315.1K
V₂ = 21.327025LK / 315.1K
V₂ = 0.06768L
V₂ = 67.68 mL
The new volume of the gas if the temperature is increased to the given value is 67.68 milliliters.
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Answer:
Given: V1 = 56.05mL T1= 315.1K T2= 380.5K
Unknown: V2=?
Formula: V2=V1T2/T1
Solution: V2= 56.05mL x 380.5K/315.1K
Answer: V2=67.68mL
Explanation:
Given the two formulas representing the same compound:
Which statement describes these formulas?
(1) Formulas A and B are both empirical.
(2) Formulas A nd B are both molecular.
(3) Formula A is empirical and Formula B is molecular.
(4) Formula A is molecular and Formula B is empirical.
Correct option is (3).
Empirical formula:-Simplest whole number ratio of various atoms present in a compound.
Molecular formula:-The formula that gives the total number of atoms of each element in each molecule of a substance.
So, (formula B) is the molecular formula, and (Formula A)is the empirical formula.
Hence, the correct option is (3).
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Na number of 11
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Answer:
those have symbols for their Latin or Greek name
Explanation:
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