Use the concentrations given to determine whether each of the following is acidic, neutral, or basic.A. [H+] = 4.3 × 10-3 mol/LB. [H+] = 9.8 × 10-12 mol/LC. [OH-] = 4.8 × 10-2 mol/L

Answers

Answer 1

We have the concentration of H+ ions, from these concentrations we can find the pH values of the solutions with the following equation:

\(pH=-log\lbrack H^+\rbrack\)

Where [H+] is the concentration of H+ ions.

Now, the acidity or basicity of a solution depends on the pH value. A solution above 7 will be basic, below 7 will be acidic, and equal to 7 will be neutral.

Let's determine the pH value for each solution:

\(\begin{gathered} pH=-log\lbrack4.3\times10^{-3}mol/L\rbrack \\ pH=2.4 \end{gathered}\)\(\begin{gathered} pH=-log\lbrack9.8\times10^{-12}mol/L\rbrack \\ pH=11.0 \end{gathered}\)\(\begin{gathered} pH=-log\lbrack4.8\times10^{-2}mol/L\rbrack \\ pH=1.3 \end{gathered}\)

So, we have that:

A. [H+] = 4.3 × 10-3 mol/L. pH=2.4. Acidic

B. [H+] = 9.8 × 10-12 mol/L pH = 11.0 Basic

C. [OH-] = 4.8 × 10-2 mol/L pH=1.3 Acidic




Related Questions

How many moles are in 33 grams of Boron (B)?

Answers

Answer:

2.77495 moles

Explanation:

Boron= 10.811g (according to periodic table)

\(33g*\frac{1mole}{10.811g B}=2.774951 moles B\)

In Chemistry we look at the composition and the_
change Y
of matter

Answers

Explanation:

A pure substance is a form of matter that has a constant composition and properties that are constant throughout the sample. Mixtures are physical combinations of two or more elements and/or compounds

The deltaG for the reaction below implies that the decomposition of H2O2 is thermodynamically favorable. However, H2O2 is typically stable for up to a year when stored in a dark bottle at 298K. The best explanation for this observation is the decomposition reaction
2H2O2 (aq) ⇒2H2O (l) +O2 (g) ΔG°= -234 KJ/molrxn
A. is only thermodynamically favored in the presence of a catalyst
B. occurs with an increase in entropy because O2 is a product
C. is reversible and H2O2 is produced almost as fast as it decomposes
D. has a slow rate at 298 K because the activation energy is relatively high

Answers

the stability of hydrogen peroxide under normal storage conditions despite its negative ΔG° for decomposition can be attributed to the relatively high activation energy required for the reaction to occur.

How to solve the question?

The fact that the ΔG° for the decomposition of hydrogen peroxide (H2O2) is negative (-234 KJ/molrxn) indicates that the reaction is thermodynamically favorable, meaning that the products (water and oxygen gas) are more stable than the reactant (hydrogen peroxide). However, as mentioned in the question, hydrogen peroxide is typically stable for up to a year when stored in a dark bottle at 298K, which seems to contradict the thermodynamic prediction.

The best explanation for this observation is option D: the decomposition of hydrogen peroxide has a slow rate at 298 K because the activation energy is relatively high. Even though the reaction is thermodynamically favorable, it may not occur spontaneously at room temperature because the activation energy required to break the O-O bond in hydrogen peroxide is relatively high. This means that a significant amount of energy is needed to initiate the reaction and form the products, and at room temperature, the rate of the reaction is too slow for any significant decomposition to occur over a period of one year.

Additionally, the reaction is not reversible (option C) because the entropy of the system decreases due to the formation of liquid water from hydrogen peroxide and the release of oxygen gas. Option A is also incorrect because the decomposition of hydrogen peroxide does not require a catalyst to occur, although a catalyst can increase the rate of the reaction by lowering the activation energy.

In summary, the stability of hydrogen peroxide under normal storage conditions despite its negative ΔG° for decomposition can be attributed to the relatively high activation energy required for the reaction to occur.

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What is the correct name of this compound?

What is the correct name of this compound?

Answers

Answer:

7. 3–ethyl–6 –methyldecane

8. 5–ethyl–2,2–dimethyl–4–propyl–4 –heptene

Explanation:

It is important to note that when naming organic compounds having two or more different substituent groups, we simply name them alphabetically.

The name of the compound given in the question above can be written as follow:

7. Obtaining the name of the compound.

Compound contains:

I. Decane.

II. 3–ethyl.

III. 6 –methyl.

Naming alphabetically, we have

3–ethyl–6 –methyldecane

8. Obtaining the name of the compound.

Compound contains:

I. 2,2–dimethyl.

II. 4–propyl.

III. 4 –heptene.

IV. 5–ethyl.

Naming alphabetically, we have

5–ethyl–2,2–dimethyl–4–propyl–4 –heptene

Is cooking an egg a chemical reaction

(I will give brainiest)

Answers

Answer:

cooking an egg is a chemical reaction because you can change the cooked egg into it original form

Explanation:

pls pls give brainliest pls

Answer:

Yes,Cooking an egg is a chemical reaction.

Explanation:

Cooking an egg is a chemical reaction because you can't change cooked egg into raw or its previous state.

There are two types of reactions

Physical reactionChemical reaction

please help asap!

3. A double replacement reaction occurs between two solutions of lead (II) nitrate and potassium bromide. Write a
balanced equation for this reaction-identifying the product that will precipitate, and the product that will remain in
solution.
a) Write the balanced equation for this double replacement reaction.
b) If this reaction starts with 32.5 g lead (II) nitrate and 38.75 g potassium bromide, how many grams of the
precipitate will be produced? Remember to use the limiting reactant to calculate the amount of precipitate
formed.
c) How many grams of the excess reactant will remain?

please help asap!3. A double replacement reaction occurs between two solutions of lead (II) nitrate and

Answers

Answer:

Explanation:

a) The balanced equation for the double replacement reaction between lead (II) nitrate and potassium bromide is:

Pb(NO₃)₂(aq) + 2KBr(aq) → PbBr₂(s) + 2KNO₃(aq)

In this reaction, lead (II) bromide (PbBr₂) will precipitate, while potassium nitrate (KNO₃) will remain in solution.

b) To determine the amount of precipitate produced, we need to first determine the limiting reactant. We can do this by calculating the number of moles of each reactant and comparing it to the stoichiometry of the balanced equation.

The molar mass of lead (II) nitrate is 331.21 g/mol and the molar mass of potassium bromide is 119.00 g/mol.

The number of moles of lead (II) nitrate is 32.5 g / 331.21 g/mol = 0.0981 mol The number of moles of potassium bromide is 38.75 g / 119.00 g/mol = 0.3256 mol

According to the balanced equation, one mole of lead (II) nitrate reacts with two moles of potassium bromide to produce one mole of lead (II) bromide. This means that if all the lead (II) nitrate were to react, it would require 0.0981 mol * 2 = 0.1962 mol of potassium bromide.

Since we have more than enough potassium bromide (0.3256 mol > 0.1962 mol), lead (II) nitrate is the limiting reactant.

The number of moles of lead (II) bromide produced will be equal to the number of moles of lead (II) nitrate consumed, which is 0.0981 mol.

The molar mass of lead (II) bromide is 367.01 g/mol, so the mass of lead (II) bromide produced will be 0.0981 mol * 367.01 g/mol = 36.0 g.

c) To determine the amount of excess reactant remaining, we need to subtract the amount consumed from the initial amount.

The number of moles of potassium bromide consumed is half the number of moles of lead (II) nitrate consumed, which is 0.0981 mol / 2 = 0.04905 mol.

The mass of potassium bromide consumed is 0.04905 mol * 119.00 g/mol = 5.84 g.

The mass of potassium bromide remaining is 38.75 g - 5.84 g = 32.91 g.

i need help with number two

i need help with number two

Answers

The temperature is held constant at (b) and (d). At these points, the substance is changing states. B is changing from solid to liquid and D is changing from liquid to gas

What is the mass of 6.02 x 1024 molecules of the compound HCl?

Answers

Answer:

First, we need to determine the molar mass of HCl.

The molar mass of HCl = the mass of hydrogen (1.008 g/mol) + the mass of chlorine (35.45 g/mol) = 36.45 g/mol.

Next, we can use Avogadro's number (6.02 x 10^23 molecules/mol) to convert the number of molecules to moles:

6.02 x 10^24 molecules / 6.02 x 10^23 molecules/mol = 10 moles

Finally, we can use the molar mass to convert moles to grams:

10 moles x 36.45 g/mol = 364.5 grams

Therefore, the mass of 6.02 x 10^24 molecules of HCl is 364.5 grams.

6.02* 10^24 means 1 molecule of any substance
:. It means 1 mole of Hcl
:. To find the mass of HcL
no of moles = mass/ molar mass
To get the molar mass of HCL {H=1 CL=35.5}
:. H+CL = 1+ 35.5 =36.5
So we have our molar mass and number of moles now
Then we input it in the eqn
1=x/36.5
X= 36.5g of HCl

How much heat is needed to warm 250 g of water from 22 °C to 98 °C? The specific heat of water is 4.18 J/g K?

Answers

Answer: 79420J or 79.420 Kj

Explanation:

q=mc(t2-t1)

250g x 4.18J/g K x (98C-22C)= 79420J

A titer is a measured relationship between the volume of the titrant used and the mass of an analyte in the sample. It is used when trials will have different starting quantities of analyte. It is used to predict the endpoint of subsequent trials and will make your data more precise. Titers also serve as internal monitors of your technique.

Consider the following theoretical data.

mass of analyte 1.392
Vi (mL) 0.10
Vf (mL) 22.44
Volume delivered 22.34
Titer: (mL Titrant /g analyte) ___________

Answers

Considering the theoretical data, The Titer is 15.98 (mL Titrant /g analyte)

To calculate the titer, we need to determine the ratio of the volume of titrant used (in mL) to the mass of the analyte (in grams).

In the given theoretical data, the mass of the analyte is 1.392 grams, the initial volume of the titrant (Vi) is 0.10 mL, the final volume of the titrant (Vf) is 22.44 mL, and the volume delivered is 22.34 mL.

To calculate the titer, we use the formula:

Titer = (Volume delivered - Vi) / mass of analyte

Titer = (22.34 mL - 0.10 mL) / 1.392 g

Titer ≈ 22.24 mL / 1.392 g

Titer ≈ 15.98 mL/g

Therefore, the titer is approximately 15.98 mL/g. This ratio represents the volume of titrant used per gram of the analyte. It helps in predicting the endpoint of subsequent trials and serves as an internal monitor of the technique used in the titration process. Having a precise titer value enhances the accuracy and precision of the data obtained from the titration experiments.

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Research and describe one career in health and fitness that you would consider

Answers

i would research the job of being a fitness coach, that is very popular in health and fitness

Answer:

a PE teacher would be in both catagories  of heath and fitness

Explanation:

(80) points for this.

(80) points for this.

Answers

A construction of the line graph for the total volume of sulphuric acid and meter reading data points is shown in the image attached below.

What is a line plot?

In Mathematics and Statistics, a line plot can be defined as a type of graph that is used for the graphical representation of data set above a number line, while using crosses, dots, or any other mathematical symbol.

In this scenario and exercise, we would make use of an online graphing calculator (tool) to graphically represent the total volume of sulphuric acid and meter reading data points on a line plot as shown in the image attached below.

In conclusion, we can reasonably infer and logically deduce that the meter reading is equal to 0 mA when the total volume of sulphuric acid is 30 mL.

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(80) points for this.

what are 4 molecules made of the same substance

Answers

Answer:

H2O (water)N2 (nitrogen)O3 (ozone)CaO (calcium oxide)Explanation:

HOPE IT HELPS

What is the percent of S in
CuSO4?
(Cu = 63.55 g/mol, S = 32.07 g/mol,
O = 16.00 g/mol)
[?]% S

Answers

The percent by mass of sulfur is  20.1%.

What is the percent by mass?

Here, we need to find the percent by mass of the sulfur atom and we have to do that by first obtaining the molar mass of the compound as we can see it from the question.

Hence;

Molar mass of the compound = 63.55 + 32.07 + 4( 16.00 )

=  63.55 + 32.07 + 64

= 159.62

We now have to find the percent by mas of sulfur;

32.07/159.62  * 100

= 20.1%

The compound contains 20.1% of sulfur by mass of the compound as shown in the calculation.

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The reaction of nitrogen with methane in excess oxygen produces water, ________, and ___________. N2(g) + O2(g) + CH4(g) → CO2(g) + H2O(g) + NO2(g) A) carbon oxide, nitrogen oxide B) carbon oxygen, nitrogen oxygen C) carbon dioxide, nitrogen dioxide D) dicarbon oxide, dinitrogen oxide

Answers

Answer:

C.

Explanation:

Select all the answers that apply.

Types of evidence that astronomers use to estimate the age of the universe and stars include _____.

movement of galaxies
molecular clocks
fossil evidence
chemical composition of the Sun
radioactive dating of rocks

Answers

Let's observe bit by bit

#Movement of galaxies

Yes this is mandatory thing if any astronomer wants to estimate age of universe#Molecular clocks:-No inorganic things are not useful at all#Fossil evidence

Found on earth only not in universe so no#Chemical composition of sun:-

Yes,sun is important part of universe and also a star

A manual contains instructions for how to build a variety of structures using a set of interlocking bricks. If this scenario is used as a model for genetic information, which statement is correct?(1 point)

Each set of instructions is a protein.
Each set of instructions is a protein.

The manual is a chromosome.
The manual is a chromosome.

The interlocking bricks are the chromosomes.
The interlocking bricks are the chromosomes.

Each structure is a gene.
Each structure is a gene.

Answers

If this scenario is used as a model for genetic information, then the statement 'the manual is a chromosome' is correct. A chromosome contains linear arrangements of genes.

What is a chromosome?

A chromosome can be considered as a long nucleotide sequence that contains linear arrangements of genes.

In a chromosome, each DNA strand contains a nucleotide sequence that may encode proteins (i.e., different genes).

A chromosome can then be considered as manual containing instructions (genes) for how to build a variety of structures using a set of interlocking bricks (nucleotides).

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Answer:

the manual is a chromosome

Explanation:

How much water has to be evaporated from 250 mL of 1 M Ca(OH)2 to make it 3 M?

Answers

Approximately 166.67 mL of water needs to be evaporated from 250 mL of 1 M Ca(OH)2 to make it 3 M.

To find the amount of water that needs to be evaporated

The relationship between the initial and final concentrations and volumes must be taken into account.

Given: Initial concentration \((C^1) = 1 M Initial volume (V^1) = 250 mL\)

\((C^2) = 3 M final concentration\)

We can use the equation:

\(C^1 * V^1 = C^2 * V^2\)

Where:

\(V^2\)is the final volume of the solution

Rearranging the equation to solve for V2:

\(V^2 = (C^1 * V^1) / C^2\)

Substituting the given values:

\(V^2 = (1 M * 250 mL) / 3 M\)

\(V^2 = 250 mL / 3\)

\(V^2\) ≈ \(83.33 mL\)

To find the amount of water that needs to be evaporated, we subtract the final volume from the initial volume:

Amount of water to be evaporated = \(V^1 - V^2\)

Amount of water to be evaporated = 250 mL - 83.33 mL

Amount of water to be evaporated ≈ 166.67 mL

Therefore, approximately 166.67 mL of water needs to be evaporated from 250 mL of 1 M Ca(OH)2 to make it 3 M.

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If the density of aluminum is 2.7g/ml, what is the volume of 12.0g?

Answers

Answer:

The answer is 4.44 mL

Explanation:

The volume of a substance when given the density and mass can be found by using the formula

\(volume = \frac{mass}{density} \\ \)

From the question we have

\(volume = \frac{12}{2.7} \\ = 4.4444444....\)

We have the final answer as

4.44 mL

Hope this helps you

Salts when dissolved in water releases

Answers

Water molecules pull the sodium and chloride ions apart, breaking the ionic bond that help them together.After the salt compounds are pulled apart ,the sodium and chloride atoms are surrounded by water molecules,as this diagram shows.Once this happens,the salt is desolved,resulting in a homogeneous solution

What would be the kinetic energy, in J, of an electron with a wavelength of 0.445 nm, which would be equivalent to the wavelength of electromagnetic radiation in the X-ray region? (The mass of an electron is 9.11 × 10⁻²⁸ g.)

Answers

Answer:

The kinetic energy of the electron is approximately 4.45 × 10^-15 J, assuming that the electron is moving at a velocity of about 1.198 × 10^7 m/s.

Explanation:

We can use the formula for the energy of a photon of electromagnetic radiation:

E = hc/λ

where h is Planck's constant (6.626 × 10^-34 J·s), c is the speed of light (2.998 × 10^8 m/s), and λ is the wavelength of the radiation.

Since the wavelength of the electron in this question is equivalent to the wavelength of X-ray radiation, we can assume that the energy of the electron is equal to the energy of a photon of X-ray radiation with the same wavelength.

So, we can calculate the energy of the photon:

E = hc/λ = (6.626 × 10^-34 J·s × 2.998 × 10^8 m/s)/(0.445 × 10^-9 m) ≈ 4.45 × 10^-15 J

Since the electron has the same energy as the photon, its kinetic energy is also approximately 4.45 × 10^-15 J.

To convert the mass of the electron from grams to kilograms, we divide by 1000:

mass of electron = 9.11 × 10^-28 kg

Using the formula for kinetic energy:

KE = (1/2)mv^2

where m is the mass of the electron and v is its velocity, we can solve for the velocity of the electron:

KE = (1/2)mv^2

v^2 = (2KE)/m

v = √((2KE)/m)

Substituting the values we have calculated, we get:

√((2KE)/m) = √((2 × 4.45 × 10^-15 J)/(9.11 × 10^-28 kg)) ≈ 1.198 × 10^7 m/s

is a pH an atom, ion, molecule, macromolecule, or a cell?

Answers

Although there is some variation amongst tissues, the physiologically typical intracellular pH ranges from 7.0 to 7.4. Skeletal muscle in mammals typically has a pHi of 6.8 to 7.1.

A cell is it an atom?

A cell is the basic membrane-bound living thing and can either have one or more cells. All the molecules required for an organism to function are found in cells. An atomic is 10-10m in size. In contrast, a cellular is 10-6 metres in size. Because all cells are composed of atoms, they are therefore bigger than atoms.

What keeps a cell's pH stable?

Acid excretion, efflux through plasma membranes, and buffering mechanisms all work together to precisely preserve the pH of body fluids. Protons are extruded from the cytosol into the extracellular space through the organic cation transporter (MCT) and the Na+/H+ exchanger (NHE).

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An irregular shaped piece of metal wha a mass of 0.251 lb was placed into a graduated cylinder containing 50.00 mL of water; this raised the water to 67.50 mL.

What is the density, in g/cm3, of the metal?

Answers

Answer:

\(\rho= 6.51g/cm^3\)

Explanation:

Hello!

In this case, since the density is defined as the degree of compactness of a substance, and is defined as the mass over the volume:

\(\rho= \frac{m}{V}\)

Given the displaced volume, we can compute the volume of the piece of metal via the following subtraction:

\(V=67.50mL-50.00mL=17.50mL=17.50cm^3\)

Since the piece of metal displaces the water to the final volume. Moreover, given the mass in lb, we compute it grams as follows:

\(m=0.251lb*\frac{453.6g}{1lb} =113.85g\)

Thus, the density turns out:

\(\rho= \frac{113.85g}{17.50cm3}\\\\\rho= 6.51g/cm^3\)

Best regards.

How many inches are in 4.5 miles?

Answers

1 mile: 63360 inches
63360 x 4.5 = 285,120 inches
so there is 285,120 inches in 4.5 miles

What happens if i don’t pass the chemistry regent?

Answers

Answer:

You will typically get another chance to retake the exam

Answer:

well you either have a chance to retake the test if your teacher or just not let you take it at all. you have to pass 4 regents test including chemistry in order to get a regent diploma. so you can either retake or it you just failed it.

if a gas at 25.0 °C occupies 3.60 liters at a pressure of 104.3kPa what will be its volume at a pressure of 2.50atm

Answers

From the question, we will need to assume the temperature don't change.

In this case, assuming the gas behaves as an ideal gas, we can use the Boyle's Law to answer.

The Boyle's Law says that the product of the pressure and volume of an ideal gas, at constant temperature, is a constant:

\(pV=k\)

But the volume and pressure have to be on the same unit.

First, lets convert the final pressure of 2.50 atm to kPa. We can do that by multiplying the atm value by 101.325:

\(p_2=2.50atm=2.50\cdot101.325kPa=253.3125kPa\)

Now, we can apply the Boyle's Law:

\(\begin{gathered} p_1V_1=k \\ p_2V_2=k \\ p_2V_2=p_1V_1_{} \\ V_2=\frac{p_1V_1}{p_2_{}}=\frac{104.3kPa\cdot3.60L}{253.3125kPa}=1.4822\ldots L\approx1.48L_{} \end{gathered}\)

So, its volume will be approximately 1.48 L.

What do all of these have in common? 1 mol Fe, 1 mol Cu, 1 mol N

Answers

Answer:

1 mol

Explanation:

They all have 1 mol with Fe containing 1 mol Cu containing 1 mol and N containing 1 mole

Nonane and 2,3,4-trifluoropentane have almost identical molar masses, but nonane has a significantly higher boiling point. Which of the following statements best helps explain this observation?

Answers

Compared to 2,3,4-trifluoropentane, the nonane's carbon chains are longer.

In chemistry, what exactly is a molar mass?

A substance's molar mass is defined as its molecular weight in grams. By adding the molar masses of a substance's constituent atoms, we may get the substance's molar mass. Then, to convert between mass and the quantity of moles of the material, we may utilize the computed molar mass.

A molar mass is determined in what way?

Adding the atomic masses of a particular substance results in the calculation of molar mass. Below each element's symbol on the periodic table is a designation of the mass of that specific element. The molar mass is obtained by averaging the atomic masses obtained from the periodic table.

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explain the variation of basicity in group III A members down the group​

Answers

Answer:

Explained below

Explanation:

Group 3A elements are made up of the metalloid - boron (B) and other metals such as Aluminum (Al), gallium (Ga), indium (In), & thallium (Tl).

Now, as we go down the group, the size of the central atom will increase thereby causing the lone pair to become delocalized over a larger volume space. Thus, it's not readily available for donation and thus basicity increases

Acetaminophen found in Tylenol belongs to a class of drugs called analgesics (pain relievers) and antipyretics (fever reducers). The molecularformula for acetaminophen is CgHgNO2.a) What is the mass of 30 molecules of acetaminophen, if the nfass of carbon, hydrogen, nitrogen and oxygen are 12.01 amu/atom, 1.008 amu/atom,14.01 amu/atom, and 16.00 amu/atom respectively? Round to the nearest tenth if necessary.b) What is the unit symbol for your answer?1

Acetaminophen found in Tylenol belongs to a class of drugs called analgesics (pain relievers) and antipyretics

Answers

We have acetaminophen (molecular formula: C8H9NO2)

1) First, let's calculate the molar mass for this molecule

The molar mass C8H9NO2 = 12.01 amu/atom x 8 atoms + 1.008 amu/atom x 9 atoms + 14.01 amu/atom x 1 + 16.00 amu/atom x 2 = 151.2 amu (uma is for atoms, atomic mass unit)

We express this result as grams, 151.2 g/mol

We know Avogadro's number says,

1 mol C8H9NO2 = 151.2 g = 6.022x10^23 formula units (atoms, molecules, ions, etc)

So,

151.2 g --------- 6.022x10^23 molecules

x --------- 30 molecules

x = 7.532x10^-21 g

b) Units = g

Answer: 7.532x10^-21 g

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