HCI (aq) + Ba(OH)2 (aq) →
+
-
Which of the following reactions shows a correctly balanced chemical
equation for the titration being performed?
A 2 HCl (aq) + Ba(OH)2 (aq) → BaH2 (aq) + 2 CIOH (aq)
B 2 HCl (aq) + Ba(OH)2 (aq) → BaCl2 (aq) + 2 H20 (1)
CHCl (aq) + Ba(OH)2 (aq) → BaCl (aq) + H2O2 (1)
DHCl (aq) + Ba(OH)2 (aq) → Bao (s) + H3CIO (aq)

Answers

Answer 1

Answer:

B. 2 HCl (aq) + Ba(OH)2 (aq) → BaCl2 (aq) + 2 H20 (1)

Explanation:

When you combine an acid and a base, the products are water (H2O), and an ionic compound, or salt.

Option B is the only one that contains an ionic compound (BaCl2) and water as the products.


Related Questions

What is the mass of carbon monoxide (CO) gas if the gas occupies a volume of 4.1 L at 2.0 atm of pressure and -73oC?

Answers

Answer:

1.7

Explanation:

Help with Chemistry Thank You To Who Ever Helps Things Have Been Hard For Me.

Answers

Answer:

1.The electonic configuration of elements and their position in the periodic table are related to each other, From the electronic configuration of the elements, we can determine the period and the group to which the element belongs

Let's consider, sodium with atomic number 11 and k, l, and M shells have 2,8,and 1 electrons. since, there are 3 principal energy levels so we concluded sodium belongs to third period M Shell(valance shell) has only 1 electrons. so sodium belongs to group 1.

2. Entire D-block elements are known as Transition Elements.

3. Group 17 is the halogen group.

4. Main group of elements are...... 1,2, and 13 through 18.

5. Group 18 are the noble gas elements .

12. a). Smaller

b). Increases

c). More reactive

d). Softer

7. a). k › Ca › Ge › Br › Kr

b). Ra › Ba › Sr › Ca › Mg › Be

9. a). Ca(calcium) ion is smaller.

b). Cl(chlorine) atom is smaller.

c). Mg(magnesium) atom is smaller.

10. a). F(fluorine)

b). Sr(strontium)

c). Pb(lead)

d). At(Astatine)


What is the molarity of Na, SO, if you have 5 mol in 2.5 L?

Answers

Answer: 2

Explanation: molarity = moles of solute/ liter of solution
5 mol / 2.5 L = 2

Which of the following is a nonrenewable resource: A- Hydropower, B- Biomass, C- Solar, and D- Petroleum

Answers

Answer:

D-Petroleum

Explanation:

because it takes millions of years to form petrol and it cannot be renewed again


A truck tire at 82.0L at 32.5°C and 1.9 atm has a temperature change to-15.4°C and a pressure change to 770.0 mmHg. Calculate how much the volume of the
air in the tire will change.

Answers

Answer:

+ 47.68 Liter change in volume to final volume 129.68 L

Explanation:

P1V1/T1 = P2V2/T2     RE-ARRANGE TO:

P1V1/T1  * T2/P2  = V2         (T must be in Kelvin)

1.9 * 82 / (273.15 + 32.5)   *  (273.15-15.4)/ (770/760) = 129.68 L

129.68 - 82=47.68 L  change  

Which of the following quantities represents the greatest volume?
A) 300 microliters
B) 3.0x106 nanoliters
C) 3.0x104 deciliters
D) 3.0x10-12 kiloliters
E) 3.0 milliliters

Answers

C. In terms of conversion factors, nanoliters is the smallest, and kiloliters is the biggest.

The lowest and largest conversion factors are nanoliters and kiloliters, respectively. Among all the given options,  the correct option is option C.

What is volume?

A liquid, solid, or gas's volume is the amount of three-dimensional space it occupies. Although there are many different units that may be used to indicate volume, the most common ones are liters, m³, gallons, milliliters, teaspoons, as well as ounces.

Gases have a volume equal to the internal capacity of the container since they fill their containers to the brim. Containers with a designated volume or one whose interior form is known are frequently used to measure liquids. Measuring cups, graded cylinders, flasks, as well as beakers are a few examples of the tools used to quantify liquid volume.  3.0x10⁻¹²kiloliters represents the greatest volume.

Therefore, the correct option is option C.

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The concentration of an unknown protein sample was determined as 8.3 mg/ml. Calculate the concentration of the unknown protein in mM (millimolar) if: Average molecular mass of an amino acid = 118 g/mol The protein is 64 amino acids in length.

Answers

Based on the molar mass of the protein, the concentration of the unknown protein is 0.0011 mM (millimolar).

What is concentration?

Concentration is the amount of a solute present in a given volume of substance.

Concentration = moles/volume

Moles of protein = mass/molar mass

molar mass of protein = 118 × 64 = 7552 g/mol

Moles of protein in 8.3 g = 8.3/7552 = 0.0011 moles

Concentration = 0.0011 mole/mL = 0.0011 mM.

Therefore, the concentration of the unknown protein is 0.0011 mM (millimolar).

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DIRECTIONS: Solve the following problems by using G.R.E.S.A (Given, Required,Equation, Solution, and Answer).

1. At constant temperature, the volume of a gas was found to be 500cm³ at a pressure of 760mmHg. If the pressure of the gas is doubled what will be the new volume of the gas?​

Answers

Answer:

SEE BELOW

Explanation:

Given   500 cm^3 = V1    760 mm = P1     (760*2) = P2

Required   V2

P1V1 = P2V2

RE-ARRANGE  TO    P1V1/P2 = V2

(760)(500) /(760*2) = V2

V2 = 250 ML

According to Boyles law

[tex]\\ \rm\Rrightarrow P\propto \dfrac{1}{v}[/tex]

So if pressure is increased volume will be decreased and vice versa

Now pressure is doubled means multiplied by 2

The volume will be divided by two of get halved .

New volume

500/2250cm³

In which state do molecules have the highest kinetic energy? A. in the liquid state B. in the solid state

Answers

Answer: A. In the liquid state

Detailed Explanation:

In liquids, the intermolecular space is more when compared to solids hence the molecules possess more kinetic energy.

what volume of a 0.25M solution can be prepared with 28.5g of k2s? (molar mass=110.26g)

Answers

Answer:

volume = 1.04 dm^3

Explanation:

Data:

volume = ?

Molarity, M = 0.25M

mass = 28.5g

Molar mass = 110.25g

Moles = ?

Solution:

First find number of moles,

 moles = mass in gram / molar mass

             = 28.5 / 110.25

              = 0.258

              ≈ 0.26 moles

Now,

          Molarity = [tex]\frac{no. of moles}{volume in dm^3}[/tex]

So,

           Volume in dm^3 = [tex]\frac{no. of moles}{molarity}[/tex]

                                       =  0.26 / 0.25

                         Volume  = 1.04 dm^3

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