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Inessa05 [86]
3 years ago
6

Which of the following steps should be used when applying Hess Law?

Chemistry
1 answer:
ruslelena [56]3 years ago
7 0

There are actually 5 skills in applying Hess’ Law. According to science.uwaterloo and chem.libretexts.org these are the 5 skills.

- changing the enthalpy of the reaction whenever the equation changes

- interpreting the Hess’ Law

- applying the principle of conservation of energy to solve the problem

- sketching an energy diagram for any related reactions

<span>- and lastly using the diagram to explain the Hess’ Law.</span>

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What is the correct numerical set up for calculating the atomic mass of Si
masha68 [24]

Answer:

You determine the weighted averages if the individual isotopic masses.

Procedure:

The atomic mass of Si is the <em>weighted average </em>of the atomic masses of its isotopes.

We multiply the atomic mass of each isotope by a number representing its relative importance (i.e., its percent abundance).

The three stable isotopes of Si are Si-28 (27.98 u, 92.22 %), Si-29 (28.98 u, 4.69 %), and Si-30 (29.97 u, 3.09 %).

Set up a table for easy calculation.

0.9222 × 27.89 u = <em>x</em> u

0.0469 × 28.98 u = <em>y</em> u

0.0309 × 29.97 u = <em>z</em> u

         TOTAL =  (<em>x</em>+<em>y</em>+<em>z</em>) u = atomic mass of Si.

4 0
4 years ago
The valence of aluminum is +3, and the valence of chlorine is –1. The formula for aluminum chloride is
CaHeK987 [17]
<span>The correct option is C.i.e. AlCl3 Given: The valence of aluminum is +3, and the valence of chlorine is –1. Thus, 3 chlorine atoms each of (-1 charge )combine to make the charge balance because of Al (3+). Thus, 1 atom of Aluminum (Al) binds with three atoms of Chlorine (Cl).Thus, the net foromula becomes AlCl3</span>
3 0
3 years ago
Read 2 more answers
Calculate the solubility at 25°c of cubr in pure water and in a 0.0030m cobr2 solution. you'll find ksp data in the aleks data t
Reil [10]

Answer:

the solubility at 25°c of cubr in pure water = 0.011 g/L

The solubility at 25°c of cubr  in a 0.0030m cobr2 solution = 0.00014 g/L

Explanation:

Step 1: Data given

Ksp of CuBr = 6.27 × 10^-9

Molar mass CuBr = 143.45 g/mol

Step 2: Calculate the solubility at 25°c of cubr in pure water

Ksp = [Cu+][Br-]

The initial concentration

[Cu+] = 0M

[Br-] = 0M

The concentration at the equilibrium

[Cu+] = X M

[Br-] = X M

Ksp =6.27 * 10^-9 =  X * X = X²

S = 7.9 *10^-5 mol /l  

7.9 * 10^-5 mol/L * 143.45 g/mol = 0.011 g/L

Step 3: Calculate the solubility at 25°c of cubr  in a 0.0030m cobr2 solution.

The balanced equation:

CoBr2(aq) → Co^2+(aq) + 2 Br⁻(aq)

For 1 mol CoBr2 we'll have 1 mol Co^2+ and 2 moles Br-

For 0.0030 M CoBr2 we'll have 0.0030 M Co^2+ and 0.0060 M Br-

The initial concentration

[Cu+] = 0M

[Br-] = 0.0060 M

At the equilibrium

[Cu+] = X

[Br-] = 0.0060 + X

Ksp = 6.27 * 10^-9 = X * (0.0060+X)

6.27 *10^-9 = 0.0060 X + X²

X = 1.0 * 10^-6 mol/L

1.0 * 10^-6 mol/L * 143.45 g/mol = 0.00014 g/L

6 0
3 years ago
What is the equilibrium expression for:
julia-pushkina [17]

Answer:

c

Explanation:

in kc we only consider gases and aquas not solids and liquids

6 0
2 years ago
What is the molarity of a solution with 2 moles of HCl in 2000 mL?
ikadub [295]

Answer:

"1 M" will be the right solution.

Explanation:

The given values are:

Number of moles,

= 2 moles

Volume of solution,

= 2000 mL

or,

= 2 L

Now,

The molarity of the solution will be:

=  \frac{Moles}{Liters}

On substituting the values, we get

=  \frac{2}{2}

=  1 \ M

7 0
3 years ago
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