When an arrhenius base is dissolved in h2o, the only negative ion present in the solution is?

Answers

Answer 1
Answer is: hydroxide ions (OH⁻).
An Arrhenius base is a substance that dissociates in water to form hydroxide ions (OH⁻). 
For example sodium hydroxide: NaOH(aq) → Na⁺(aq) + OH⁻(aq) or barium hydroxide: Ba(OH)₂(aq) → Ba²⁺(aq) + 2OH⁻(aq).
According to this theory acids are substances which produce hydrogen ions in water solution.


Related Questions

A sample of oxygen gas has a volume of 150. milliliters at 300 k. if the pressure of the sample is held constant and the temperature is raised to 600 k, the new volume of the sample will be

Answers

The volume will be 300 ml

Answer:

The new volume of the sample will be 300 milliliteres

Explanation:

We were given the following;

Initial Volume (V1) = 150ml

Initial Temperature (T1) = 300K

Final Temperature (T2) = 600K

Final Volume (V2) = ?

Pressure is held constant.

The law applicable in solving this question is that of Charle's law. This law states that the volume of a fixed mass of gas varies proportional to the temperature at constant pressure.

The formula is given as;

[tex]\frac{V1 }{T1} = \frac{V2 }{T2}[/tex]

Solving for V2. we have;

[tex]V2 = \frac{V1T2}{T1}[/tex]

V2 = ( 150 * 600) / 300

V2 = 300 ml

If the volume occupied by 0.500 mol of nitrogen gas at 0°C is 11.2 L, then the volume occupied by 2.00 mol of nitrogen gas at the same temperature and pressure will be:

A. the data given is not sufficient to determine the volume
B. 22.4 L
C. 44.8 L
D. the same as that occupied by 0.500 mol of nitrogen gas

Answers

Avagadros law states that volume of gas is directly proportional to number of moles of gas at constant pressure and temperature.
[tex] \frac{V1}{n1} = \frac{V2}{n2} [/tex]
where V -volume , n - number of moles 
parameters for the first instance are on the left side and parameters for the second instance are on the right side of the equation 
substituting these values in the equation 
[tex] \frac{11.2 L}{0.500 mol} = \frac{V}{2.00 mol} [/tex]
V = 44.8 L 
answer is C. 44.8 L 

Which equation represents the half-reaction that takes place at the fork?

Answers

The fork is negative electrode and so the Cathode. Reduction is the process takes place at the cathode. Silver ions are attached to the negative electrode (fork) and combines with electron to form metallic silver which is the fork contains.
So the equation will be:
Ag + (aq) + e ---------> Ag(s)


What kind of reaction occurs when the entropy change of an endothermic reaction is negative?

Answers

Answer is: reaction is nonspontaneous under standard conditions at all temperatures.

Gibbs free energy (G) determines if reaction will proceed spontaneously.
ΔG = ΔH - T·ΔS.
ΔG - changes in Gibbs free energy.
ΔH - changes in enthalpy.
ΔS - changes in entropy.
T is temperature in Kelvins.
When ΔS < 0 (negative entropy change) and ΔH > 0 (endothermic reaction), the process is never spontaneous (ΔG> 0).


Answer:

reaction is nonspontaneous under standard conditions at all temperatures.

Explanation:

took the test.

Which of the following energy yields is most likely to have come from a fission or a fusion reaction?

Answers

The correct option is D.
Fusion and fission reactions involve the generation of energy either by the coming together of atomic nuclei or by splitting apart of atomic nuclei. The amount of energy that is generated during fusion and fission process is very high and is in the range of kiloelectron volts (10^3 eV), megaelectron volts (10^6 eV) and gigaelectron volts (10^9 eV) per atom or particle. 

Answer:

D. 2.0 x 10^11 kJ/mol

Got it correct on my quiz!

What number of moles of solute are present in 25.0 mL of 2.00 M HCl?

Answers

Molarity is defined as the number of moles of solute in 1 L of solution 
molarity of given HCl solution is 2.00 M
this means that there are 2.00 mol of HCl solute in 1 L solution 
so if 1000 mL contains - 2.00 mol
then 25.0 mL contains - 2.00 mol / 1000 mL/L x 25.0 mL = 0.0500 mol
number of moles of solute are 0.0500 mol 

The number of moles of solute that are present in 25.0 mL of 2.00 M HCl is equal to 0.05 moles.

How do we calculate moles from molarity?

Molarity (M) of any solution is define as the number of moles (n) of solute present in per liter of the solution (V) and represented as:

M = n/V

Given that, Volume of solution = 25mL = 0.025L

Molarity of HCl = 2M

Moles = (2)(0.025) = 0.05 moles

Hence required moles of solute are 0.05 moles.

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As the moisture-rich air approaches the mountain, it rises and cools, and water molecules in the air combine to form small drops. the process where water vapor becomes a liquid is called ____________

Answers

As the moisture-rich air approaches the mountain, it rises and cools, and water molecules in the air combine to form small drops. The process where water vapor becomes a liquid is called condensation

How many nitrogen molecules are in a 8.86 L container of nitrogen gas at a pressure of 112.1 kPa and a temperature of 30.8 oC?

Answers

we can first find the number of moles of nitrogen gas in the container using th ideal gas law equation 
PV = nRT
where P - pressure - 112 100 Pa
V - volume - 8.86 x 10⁻³ m³
n - number of moles 
R - universal gas constant - 8.314 Jmol⁻¹K⁻¹
T - temperature in kelvin - 30.8 °C + 273.15 = 303.95 K
substituting these values in the equation 
112 100 Pa x 8.86 x 10⁻³ m³ = n x 8.314 Jmol⁻¹K⁻¹ x 303.95 K
n = 0.393 mol 
number of N₂ moles are 0.393 mol

In 1 mol of N₂ there are 6.022 x 10²³ molecules of N₂
therefore in 0.393 mol - 6.022 x 10²³ mol⁻¹ x 0.393 mol = 2.37 x 10²³ 
there are 2.37 x 10²³ molecules of N₂
We will use this law PV = nRT
we have to convert pressure from kPa to atm
1 atm = 101.325 kPa
? atm = 112.1 kPa
P = 1.11 atm
T = 30.8 °C + 273.15 = 303.95 K
V = 8.86 L
R = 0.088205 atm. L / mol . Kelvin
n = [tex] \frac{PV}{RT} = \frac{1.11 * 8.86}{0.08205 * 303.95} [/tex] = 0.39 mol
number of N₂ molecules = number of moles * Avogadro's number
                                        = 0.39 * (6.022 * 10²³) = 2.37 x 10²³ molecules 

N2 (g) + 3H2 (g) -->2 NH3 (g) The equation above is the equation for the Haber process. In a certain reaction, you start with 3.0 moles of nitrogen and 5.0 moles of hydrogen, How much of the excess reactant will be left over after the reaction?

Answers

This is a type of question that tests your ability to find the limiting reagent, or the component that first runs out in the reaction and limits the continuation of the reaction.

To start, begin by figuring out how many times each component can run the reaction. It takes three moles of H2 to run the reaction “once”, so with five moles of H2, you can run it 1.66 times.

It takes one mole of N2 to run the reaction “once”, so with three moles of N2, you can run it three times. This means that H2 is the limiting reagent (1.66 < 3), and N2 will have excess.

After the reaction is run to completion (1.66 times), 1.33 moles of N2 will remain (1.33 left + 1.66 used = 3, beginning).
Final answer:

H₂ is in excess and N₂ will be completely consumed in the reaction.

Explanation:

According to the balanced equation, 1 mole of N₂ reacts with 3 moles of H₂ to produce 2 moles of NH₃. In this particular reaction, you have 3.0 moles of N₂ and 5.0 moles of H₂. To determine the limiting reactant, you need to compare the moles of each reactant to the stoichiometric ratio. In this case, the ratio of moles of N₂ to H₂ is 1:3. Since you have more moles of H₂ (5.0) compared to the stoichiometric ratio, H₂ is in excess. Therefore, all of the N₂ will be completely consumed and there will be no N₂ left over after the reaction.

How many moles of gas occupy 98 l at a pressure of 2.8 atmospheres and a temperature of 292 k?

Answers

From the ideal gas equation, we know that PV = nRT
where, P = pressure, V = volume occupied, n = number of moles of gas, R = universal gas constant=0.082L atm mol-1 K-1 and T = temperature.
Given: P = 2.8 atm, V = 98 l and T = 292 k.
Therefore n =[tex] \frac{PV}{RT} [/tex] = [tex] \frac{2.8 X 98}{0.082 X 292} [/tex] = 11.46

"11.46" moles of gas occupy 98 L at 2.8 atm pressure.

Ideal gas equation:

The equation characterizing the stages of hypothetical gasses stated mathematically involving combinations of empirical as well as physiological constants, is considered as Ideal gas equation.

According to the question,

Volume occupied, V = 98

Temperature, T = 292 k

Pressure, P = 2.8 atm

By using ideal gas equation, we get

→ PV = nRT

or,

→ n = [tex]\frac{PV}{RT}[/tex]

By substituting the above values, we get

      = [tex]\frac{2.8\times 98}{0.082\times 292}[/tex]

      = [tex]\frac{274.4}{23.944}[/tex]

      = [tex]11.46[/tex]

Thus the above answer is appropriate.

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Why do covalent compounds tend to have lower melting points than ionic compounds?

Answers

Simple molecular substances consist of molecules in which the atoms are joined by strong covalent bonds. Their molecules are held together by weak forces, so these substances have low melting and boiling points. ... They have high melting and boiling points.

The forces of attraction in covalent compounds are weaker than those in ionic compounds as they are formed by sharing of electrons.

What are covalent compounds?

Covalent compound is defined as a compound which is formed by the mutual sharing of electrons to form electron pairs between the two atoms.These electron pairs are called as bonding pairs or shared pair of electrons.

Due to the sharing of valence electrons , the atoms are able to achieve a stable electronic configuration . Covalent bonding involves many types of interactions like σ bonding,π bonding ,metal-to-metal bonding ,etc.

Sigma bonds are the strongest covalent bonds while the pi bonds are weaker covalent bonds .Covalent bonds are affected by electronegativities of the atoms present in the molecules.Compounds having covalent bonds have lower melting points as compared to those with ionic bonds.

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If 25.0 ml of seawater has a mass of 25.895 g and contains 1.295 g of solute, what is the mass/mass percent concentration of solute in the seawater sample? 5.18% 5.001% 3.862% 96.5% 20.00%

Answers

The  %  mass/mass concentration  of   solute  in the  seawater  sample  is  calculated  as  below


% mass =  mass  of the  solute /mass of the solvent(sea water)  x100
mass  of  the  solute =1.295  g
mass  of the  solvent(sea   water_)  =  25.895 g

there  the % mass =  1.295/25.895  x100 =  5.001 %  

How much is 2.50 g of CuCl2 in moles ?

Answers

The molar mass of CuCl2 is 134.45 g/mol; therefore, you divide 2.5 g of CuCl2 by 134.45 g of CuCl2 leaving you with 0.019 moles. 
I hope this works.
PLEASE GIVE ME A BRAINIEST CROWN.

The formula for the illegal drug cocaine is c17h21no4 (303.39 g/mol). what is the percentage of hydrogen in the compound? 21.09% 4.618% 67.30% 6.991% 3.959%

Answers

molar mass is the sum of the products of molar masses of individual elements by the number of atoms of the element in the compound.
molar mass of H - 1.01 g
number of H atoms - 21 H atoms 
therefore mass of H in 1 mol of compound - 1.01 g x 21 = 21.21 g
the molar mass of the compound - 303.39 g/mol 
H composition percentage = [tex] \frac{mass of H in 1 mol}{molar mass of compound} *100%[/tex]
            composition percentage = 21.21 g/mol /303.39 g/mol x 100%
H composition percentage = 6.991 %

therefore answer is 6.99 %

In the formation of a solution how does the solvent differ from the solute

Answers

Solute is a substance that dissolves in a solvent in order to form a solution. Solutes can be in liquid, gaseous or solid phase. Normally, in a solution, solutes are in a lesser amount than the solvents. When a solution has the maximum amount of solutes it can dissolve, then the solution is said to be saturated.

Which best describes the tyndall effect? the scattering of light by solutes in a mixture the scattering of light by solvent in a solution the scattering of light by solutes in a solution the scattering of light by particles in a mixt?

Answers

the scattering of light by particles in a mixture

Answer:The correct answer is option:'the scattering of light by particles in a mixture'.

Explanation:

Tyndall effect is defined as scattering of the light by the particles present in the mixture. A beam of the light passing through these mixture are visible to the human eyes. Generally colloidal mixture displays this type of effect. The name of his effect is named after the physicist named John Tyndall.

Hence, the correct answer is option:'the scattering of light by particles in a mixture'.

Write out the balanced equation for the reaction that occurs when Mg(OH)2 and HCl react together.

Answers

Mg(OH)2 + HCl —> H2O + MgCl2

Answer:

The balanced equation for the reaction that occurs when Mg(OH)2 and HCl react together is:

Mg(OH)2+2HCl -------->MgCl2+2H20

A ping pong ball with a dent in it can be put into a pan of boiling water. After a short amount of time, the dent will pop out. Explain why this occurs.

Answers

thermal expansion causes the gas particles inside the ping pong ball to spread apart, putting pressure on the dent and popping back out.

Answer:

The right option is; b. the water caused an increase in temperature of the air inside the ball and an increase in pressure.

The dent (hollow area formed by pressing or hitting) from the ping-pong ball disappeared because energy was transferred from the hot boiling water in which the ball was placed to the air inside the ball. This transferred energy will increase the temperature of the air inside the ball and the air molecules will begin to move faster with a greater force. Hence, causing an increase in pressure.

Explanation:

1. What is the pH of a 0.085 M solution of nitrous acid (HNO2) that has a Ka of 4.5 × 10-4?

2.21

5.33

3.35

4.42

Answers

The chemical reaction for nitrous acid in a solution with water is
                 HNO2 + H2O(l) ⇄ H3O^+ + NO2^-
Then
                 Ka = [H3O^+][NO2^-] / [HNO2]
If we let x represent the concentrations of [H3O^+] and [NO2^-] then
                 Ka = x^2 / [HNO2]
                    x = √(Ka * [HNO2])
                    x = √(4.5 × 10^-4 * 0.085)
                    x = 6.1846 x 10^-3 = [H3O+]
Therefore
                  pH = -log[H3O+]
                  pH = -log[6.1846 x 10^-3]
                  pH = 2.21
The answer to your question is 2.21.



HELP! 30 POINTS!! 

2. Which of the following statements are true about a strong base and a weak base at a pH of 11?

HCl will not bring the pH of either solution to pH 7.

Both bases require the same amount of HCl to reach pH 7 because they are both
at the same initial pH.

The weak base will require less HCl to bring the pH to 7 than the strong base. The strong base will require less HCl to bring the pH to 7 than the weak base.

Answers

The answer is "The weak base will require less HCl to bring the pH to 7 than the strong base." Using titration curves, both bases will require the same amount of HCl to reach equivalence point but they will have different pH values. A strong acid like HCl will react with a strong base to form a solution with pH equal to 7 while HCl will react with a weak base to form a solution with pH less than 7. Hence, the weak base will require lesser HCl to bring the pH to 7.

the answer is definatly A

Why can 6-aminohexanoic acid undergo a polymerization reaction with itself?

Answers

The amino group on one molecule can react with the carboxyl group on another molecule.

Answer:  Functional groups can lead to intra molecular condensation.

Explanation:  6 -aminohexanoic acid is a molecule which have 2 functional groups - one is amine group (-NH2) and the other one is carboxylic group (-COOH).

The non bonding electrons or lone pairs present on the amine group being nucleophillic in nature will attack on the electrophillic carbon of carboxylic group to form the amide bond, the structure of which is hereby attached.

Thus due to the presence of 2 active functional groups, polymerization with itself can take place easily.

Which of the following is an example of chemical weathering? a. waves washing over rocks on the beach b. acid rain falling on sidewalks c. ice forming in the cracks of rocks d. wind blowing against rocks

Answers

B. acid rain falling on sidewalks

Answer:

b. Acid rain falling on sidewalks

Explanation:

Hello,

Acid rain contains majorly carbonic acid [tex]H_2CO_3[/tex] which could react with the concrete that is used to make sidewalks. This chemical reaction, although varies based on the concrete's composition, usually gives off carbon dioxide owing to the acid's instability and leads to the weathering since the sidewalks start to wear out and subsequently break down.

Best regards.

What's the definition of ions

Answers

an atom or molecule with a net electric charge due to the loss or gain of one or more electrons. :)
molecule or atom with net charge due to gain or loss of one or more electrons

Potassium-40 has a half-life of 1.3 billion years. as the potassium-40 isotope decays, it becomes argon. if a rock was formed with 12 g of potassium-40, approximately how long would it take for 75% of the potassium-40 to be replaced by argon?
a. 1.3 billion years
b. 2.6 billion years
c. 5.2 billion years
d. 650 million years

Answers

Final answer:

It takes two half-lives, or 2.6 billion years, for 75% of Potassium-40 to decay to Argon, making (b) 2.6 billion years the correct option.

Explanation:

The decay of Potassium-40 (K-40) to Argon (Ar-40) follows the principles of radioactive decay and the concept of half-lives. The half-life is the time it takes for half of the original quantity of a radioactive isotope to decay. In this case, K-40 has a half-life of approximately 1.3 billion years. After one half-life, there would be 6 grams of K-40 and 6 grams of Ar-40. After two half-lives, which is 2.6 billion years, there would be 3 grams of K-40 and 9 grams of Ar-40. Since the question asks for the time it would take for 75% of the potassium-40 to be replaced by argon, we are looking for the time it takes to have only 25% of the original K-40 remaining.

Starting with 12 grams of K-40, after the first half-life, we would be left with 6 grams of K-40, which is 50%. After the second half-life, we would be left with 3 grams of K-40, which is 25% of the original amount. Therefore, it would take two half-lives for 75% of the potassium-40 to decay to argon, which equates to 2.6 billion years. The correct option is therefore (b) 2.6 billion years.

The pair of elements that forms a bond with the least ionic character is

A. Na and Cl
B. K and Cl
C. O and Cl
D. Mg and Cl

Answers

As we know the electronegativity difference between two atoms in ionic compounds is greater than 1.7. So, greater the difference in electronegativity above 1.7 greater will be the ionic character and vice versa.

For Na and Cl;

                                    E.N of Chlorine   =  3.16
 
                                    E.N of Sodium    =  0.93
                                                                 ------------
                                    Difference               2.23

For K and Cl;

                                    E.N of Chlorine       =  3.16
 
                                    E.N of Potassium    =  0.82
                                                                     ------------
                                    Difference                    2.34

For O and Cl;

                                    E.N of Oxygen     =  3.44
 
                                    E.N of Chlorine    =  3.16
                                                                  ------------
                                    Difference                0.28

For Mg and Cl;

                                    E.N of Chlorine         =  3.16
 
                                    E.N of Magnesium    =  0.93
                                                                       ------------
                                    Difference                     1.31

Result:
           
As calculated above,the least electronegativity difference is found between Oxygen and Chlorine which is less than 1.7. Hence, it is not ionic compound or it has least Ionic character.

The pair of O and Cl elements forms a bond with the least ionic character.

The ionic character of the bond depends on the electronegativity difference. The bonds having an electronegativity difference of greater than 1.7 have more ionic character.

(A) In bond between Na and Cl, the electronegativity difference =

Electronegativity of Cl - electronegativity of Na

= 3.16 - 0.93

= 2.23

(B) In bond between K and Cl

= electronegativity of Cl - electronegativity of K

= 3.16 - 0.82

= 2.34

(C) In bond between O and Cl:

= electronegativity of O - electronegativity of Cl

= 3.44 - 3.16

= 0.17

(D) In bond between Mg and Cl:

= electronegativity of Cl - electronegativity of Mg

= 3.16 - 1.31

= 1.85

Since the bond between O and Cl has the least electronegativity difference, thus have the least ionic character.

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How many moles of KNO3 are needed to make 600 ml of a 1.3M solution?

Answers

Final answer:

To make a 1.3M solution with a volume of 600 ml, you would need 0.78 moles of KNO3.

Explanation:

To calculate the number of moles of KNO3 needed to make a 1.3M solution, we can use the equation:

Molarity (M) = moles of solute / liters of solution

Rearranging the equation, we can solve for moles of solute:

Moles of solute = Molarity x liters of solution

In this case, the molarity is 1.3M and the volume is 600 ml (which is equivalent to 0.6 L). Substituting these values into the equation:

Moles of KNO3 = 1.3M x 0.6 L = 0.78 moles

Sedimentary rocks formed from the remains of once-living things are

Answers

The correct option is D. This type of rock is called biologic sedimentary rock. It is formed from accumulation of dead living things which have been compressed and cemented together to form a rock.

Please advise if this is your complete question entirely? If yes, then your correct answer is provided above.

Sedimentary rocks formed from the remains of once-living things are ____.
a. metamorphic
c. organic
b. detrital
d. none of the above

The correct option is D. This type of rock is called biologic sedimentary rock. It is formed from accumulation of dead living things which have been compressed and cemented together to form a rock.


Please advise if this is your complete question entirely? If yes, then your correct answer is provided above.


Sedimentary rocks formed from the remains of once-living things are ____.

a. metamorphic

c. organic

b. detrital

d. none of the above


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How many sites on this antibody molecule have potential to bind to a non-self molecule?

Answers

There are two sites on the antibody molecule that have a potential to bind to a non-self molecule. The Fab of an antibody is the region of the antibody that binds to an antigen. It consist of one constant and one variable domain from each heavy and light chain of the antibody. During immune reaction, an antigen-antibody reaction occurs between the antibodies made by the B cells and the antigens.

Describe two negative effects that water pollution can have on the environment. Explain one way water pollution can be reduced.

Answers

water pollution affects the fish, and then we eat the fish so the fish affects us.  im not sure about the first part.Do not  dispose of household cleaning  down the toilet.

Answer:

1) Adverse effect on aquatic life also increase in biological oxygen demand.

2) Biomagnification of pollutants

Explanation:

Water pollution is caused by unwanted addition of waste, animal debris, industrial effluents etc in a water body.

Water pollution may cause many direct and indirect harmful effects on environment. To name a few:

a) Decrease in level of oxygen leading to death of aquatic organism like fish.

Increase in biological oxygen demand.

b) Biomagnification: a pollutant may enter food chain from water and some pollutant may enter food chain contaminating other members of food chain.

A 94.7-g sample of silver (s = 0.237 j/(g · °c)), initially at 348.25°c, is added to an insulated vessel containing 143.6 g of water (s = 4.18 j/(g · °c)), initially at 13.97°c. at equilibrium, the final temperature of the metal–water mixture is 22.63°c. how much heat was absorbed by the water? the heat capacity of the vessel is 0.244 kj/°c.

Answers

Q = m*C*dT

m = mass

C = specific heat capacity

dT = Temperature change

Q = heat evolved

Heat lost by metal is equal to the sum of heat taken up by water and vessel. Since water is taken in the vessel so

the initial and final temperatures would be same for vessel and water...

Q = 94.7 *0.237 *(22.63 - 348.25) = 7308.18 Joules = 7.3 KJ

Heat lost by silver = 7.3 KJ

Heat absorbed by water = 143.6*4.18*(22.63 - 13.97) = 5.2 KJ

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