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Alisiya [41]
2 years ago
13

Given that a for HBrO is 2. 8×10^−9 at 25°C. What is the value of b for BrO− at 25°C?

Chemistry
1 answer:
lara [203]2 years ago
7 0

If Ka for HBrO is 2. 8×10^−9 at 25°C, then the value of Kb for BrO− at 25°C is 3.5× 10^(-6).

<h3>What is base dissociation constant? </h3>

The base dissociation constant (Kb) is defined as the measurement of the ions which base can dissociate or dissolve in the aqueous solution. The greater the value of base dissociation constant greater will be its basicity an strength.

The dissociation reaction of hydrogen cyanide can be given as

HCN --- (H+) + (CN-)

Given,

The value of Ka for HCN is 2.8× 10^(-9)

The correlation between base dissociation constant and acid dissociation constant is

Kw = Ka × Kb

Kw = 10^(-14)

Substituting values of Ka and Kw,

Kb = 10^(-14) /{2.8×10^(-9) }

= 3.5× 10^(-6)

Thus, we find that if Ka for HBrO is 2. 8×10^−9 at 25°C, then the value of Kb for BrO− at 25°C is 3.5× 10^(-6).

DISCLAIMER: The above question have mistake. The correct question is given as

Question:

Given that Ka for HBrO is 2. 8×10^−9 at 25°C. What is the value of Kb for BrO− at 25°C?

learn more about base dissociation constant:

brainly.com/question/9234362

#SPJ4

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Answer:

-Being in the service of quality, safety, designing and problem solving.

-It plays an importnat part in our lives too, to measure any surface, object, etc.

Explanation:

Measurement is perhaps one of the most fundamental concepts in science. Without the ability to measure, it would be difficult for scientists to conduct experiments or form theories.

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3 years ago
Which of the following determines the type of element that an atom makes?
Mama L [17]

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3 years ago
If you conduct a single displacement reaction and you observe bubbles, what are some possibilities of the composition of those g
pickupchik [31]

Answers:

    c. oxygen gas

    d. chlorine gas

    e. hydrogen gas


Justification:


Single displacement reactions are those reactions in which the atoms of one element substitute (replace or displace) the atoms of other element in a compound.


The representación of this ind of reactions is:

  • A + BX → AX + B: the atoms of the element A displace the atoms of the element B in the compound BX. As result, the element B stands separated after the reaction.

The conditions for a single displacemente reactions are:

  • One single element react with a compound
  • The reactant single element will form part of a new compound
  • One single element is removed from the compound
  • The one single element removed from the compound stands as a separated product.
  • It is a more active element displaces a less active element from the compound.

In the giiven statement, the element displaced will be as a gaseous product.


Ammonia is not a single element, but the compound with the formula NH₃, so it is not the result of a single displacement reaction, and it is not a possibility (discarded)


Air is not either a single element nor a compound, so it is not the result of a single displacemente reaction, and it is not a possibility (discarded).


Since oxygen is one of the most reactive non-metal elements, oxygen gas is usually the result of a decomposition reaction and not of a single displacement reaction.


Decomposition reactions are those in which a single compound breaks down into two or more simpler substances (elements and/or compounds). Some examples of decompositon reaction in which oxygen gas evolves as a product are:


  • The decomposition of water into hydrogen and oxygen gases.
  • The decomposition of hydrogen peroxide to form oxygen gas and water.
  • The decomposition of solid potassium chlorate to form solid potassum chloride and oxygen gas.

Nevertheless, fluorine is more active than oxygen, and so it can oxidises water according to this single replacement reaction:

  • 2F₂ + 2H₂O → 4HF + O₂↑

As you see, fluorine displaces oxygen, so this is one of the right choices.


Regarding chlorine, being it less active than fluorine (fluorine is the most active halogen and the most active gas) you can predict without doubt that it can be displaced by flouorine. And so, chloringe gas is a right choice too.


The evolution hydrogen gas is a typical example of single displacement reactions and can be seen in this example:

  • 2Li(s) + 2H₂O → 2LiOH + H₂(g)↑

Hence, hydrogen gas is one of the right options.


Conclusion: we have tested the choices one by one and the result is that the possibilities of the composition of those gas bubbles are:

   c.oxygen gas

    d.chlorine gas

    e. hydrogen gas


5 0
3 years ago
A student prepares a lactic acid-sodium lactate buffer solution by mixing 40.mL of 0.50MHC3H5O3(aq) with 200.mL of 1.0M NaC3H5O3
notsponge [240]

Answer:

pH=3.38

Explanation:

We are given the concentrations of the weak acid and its conjugate base so we need to use the henderson hasslebalch equation

pH=pKa + log (concentration A-/concentration of HA)

A- : conjugate base NaC3H5O3

HA: weak acid HC3H5O3

so if we plug in what we are given

pH= 3.08 + log (1M/.5M)

pH= 3.38

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