When aqueous solutions of __________ are mixed, a precipitate forms. select one:
a. k2so4 and crcl3
b. nai and kbr
c. li2co3 and csi
d. koh and ba(no3)2 incorrect
e. nibr2 and agno3?

Answers

Answer 1
I believe the correct answer would be E. When aqueous solutions of NiBr 2 and AgNO3 are mixed, a precipitate forms. As these two solutions are being mixed a reaction would happen resulting to two new compounds which are nickel nitrate and silver bromide. The reaction would be:

NiBr2 + AgNO3 = NiNO3 + AgBr2 

The precipitate that would be formed would be the silver bromide since most of the silver compound are not or has low solubility in water while most of the nitrate compounds are very soluble in water. Most likely, it would be the silver bromide that is the precipitate.
Answer 2

When aqueous solutions of [tex]\rm NiBr_2\;and\;AgNO_3[/tex]  are mixed, a precipitate form.

A precipitation can occur when two solutions containing different salts are mixed, and a cation/anion pair in the resulting combined solution forms an insoluble salt; this salt then precipitates out of solution.

In the given combination,

[tex]\rm K_2SO_4\;and\;CrCl_3[/tex] : The reaction will result in Group 1A compounds which are soluble.

[tex]\rm NaI\;and\;KBr[/tex] : The reaction will result in Group 1A compounds which are soluble.

[tex]\rm Li_2CO_3\;and\;CSi[/tex] : carbonates with group 1A elements becomes soluble.

[tex]\rm NiBr_2\;and\;AgNO_3[/tex] : The product will be a halide with Ag which are insoluble in water, and thus precipitates out.

When aqueous solutions of [tex]\rm NiBr_2\;and\;AgNO_3[/tex]  are mixed, a precipitate form.

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Related Questions

Which of the following reactions is a neutralization reaction? A. ZnCl2(aq) + CaCrO4(aq) → ZnCrO4(s) + CaCl2(aq) B. HNO3(aq) + LiOH(aq) → H2O(l) + LiNO3(aq) C. 2NaOH(aq) + MgCl2(aq) → Mg(OH)2(s) + 2Na+(aq) + 2Cl−(aq) D. 4Fe(s) + 3O2(g) → 2Fe2O3(s)

Answers

Neutralization reaction means the reactants must be one acid and one alkali, and the product will be H2O and metal salt.

The only one satisfying this will be B
Final answer:

A neutralization reaction is a chemical reaction between an acid and a base that results in water and a salt. Option B, HNO3(aq) + LiOH(aq) → H2O(l) + LiNO3(aq), is an example of this as it involves the reaction between an acid (Hydrogen Nitrate) and a base (Lithium Hydroxide) to form water and a salt (Lithium Nitrate).

Explanation:

In chemistry, a neutralization reaction is a type of chemical reaction where an acid and a base react to form a salt and water. Looking at the provided options, the reaction B. HNO3(aq) + LiOH(aq) → H2O(l) + LiNO3(aq) is a neutralization reaction. This is because Hydrogen Nitrate (HNO3) is an acid and Lithium Hydroxide (LiOH) is a base. The result of their interaction is water (H2O) and a salt (LiNO3).

A neutralization reaction is characterized by an acid reacting with a base and forming water and a salt, which is what happens in this reaction. Hence, option B depicts a neutralization reaction.

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In the reaction n2 + 3h2 ---> 2nh3, how many grams of nh3 are produced if 25.0 g n2 reacts with excess h2? question 10 options:

Answers

molar mass of N2 = 28

Moles of N2 = 25 / 28 = 0.89

So, moles of NH3 produce = 2 x 0.89 = 1.78 

Note: H2 is in excess. so no need to care about it. 

Air contains water in a gaseous form called _____.

Answers

Air contains water in a gaseous form called water vapor or aqueous vapor.
Water vapor normally forms from liquid water through a process called evaporation. These are small droplets of water suspended in air. And when these water vapors changed into liquid water, this process is called condensation.

Air contains water in a gaseous form called water vapor

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In the important industrial process for producing ammonia (the Haber Process), the overall reaction is:
N2(g) + 3H2(g) → 2NH3(g) + 100.4 kJ
A yield of NH3 of approximately 98% can be obtained at 200°C and 1,000 atmospheres of pressure. What is the ΔH in kJ of heat released per mole of NH3(g) formed?

A.)50.2 kJ
B.)50.2 kJ
C.)4 kJ
D.)4 kJ

Answers

Since the coefficient of NH3 is 2, 100.4 kJ of heat is released when 2 moles of NH3 are formed. So, when one mole of NH3 is formed, half of the heat would be produced or 50.2 kJ.

Which pair of elements is most apt to form a molecular compound with each other?

Answers

The pair of elements which is most apt to form a molecular compound with each other would be sulfur and fluorine. In general, a nonmetal and a gas is most likely to form a molecular compound. Considering two metal molecules, most likely these metal atoms would not form a molecule since they are both positive when in ionic form and tends to donate electrons to another atom. For a situation where you have a nonmetal and a metal atom, it would not still be possible to form a molecular atoms since they are likely to form ionic bonds resulting to an ionic compound.

The mass defect is the result of what action occurring?

A. energy being converted into moles of atoms when neutrons break apart protons

B. mass being converted to energy when protons and neutrons bind together in a nucleus

C. mass being converted to energy when protons and neutrons break apart in a nucleus

D. protons and electrons being attracted to each other

E. strong forces overcoming weak forces

Answers

B. mass being converted to energy when protons and neutrons bind together in a nucleus
Answer;

B. mass being converted to energy when protons and neutrons bind together in a nucleus

Explanation;The mass defect of a nucleus refers to the mass of the energy binding the nucleus. This energy is given by the difference between the mass of a nucleus and the sum of the masses of the nucleons of which it is composed.Mass defect is energy mass that is removed from the total mass of the original particles when a nucleus is formed. This mass is missing in the resulting nucleus and represent the energy lost when the nucleus is formed.

Which type of chemical bond involves the sharing of valence electrons between two atoms?

Answers

Covalent bond is the type of bond which involves the sharing of valence electrons between two atoms. 
This bond usually arises from the equal attraction of the nuclei of the two atoms for the electrons shared.

Ionic bond, on the other hand, arises due to the transfer of electrons from the valence shell of one atom to the valence shell of the other.

Answer:

Nonpolar Covalent

What group of elements generally have the lowest second ionization energy?

Answers

Answer: Group 2: alkaline earth metals.
Explanation: The second ionization energy is the energy required so that the molecule in the gaseous state would lose its second valence electron. Since all atoms tend to stabilize by having complete number of electrons in the valence shell (octet rule), thus, the elements having the lowest second ionozation energy will be those having 2 electrons in the outermost shell (the first ionozation energy removes the first outermost electron while the second ionozation energy removes the second one , thus, turning the atom into the stable state)

Determine the ka of an acid whose 0.294 m solution has a ph of 2.80. 1.2 x 10-5 8.5 x 10-6 2.7 4.9 x 10-7 5.4 x 10-3

Answers

1) Calculate [H+] from the pH:

pH = log { 1 / [H+] } = - log [H+]

=> [H+] = 10 ^ (-pH)

=> [H+] = 10 ^ (-2.80) = 0.00158

2) Assume the stoichiometry 1:1

=> HA aq ---> H(+) aq+ A(-) aq

=> [A-] = [H+] = 0.00158

[HA] = 0.294 – 0.00158 = 0.29242

  3) Calculate Ka

Ka = [H+] *[A-] / [HA] = (0.00158)*(0.00158) / 0.29242 =8.54 * 10^ -6

Answer: 8.5 * 10^ -6




We have that the acid dissociation constant(Ka)  is mathematically given as

Ka=8.54e-6

The acid dissociation constant(Ka)

Question Parameters:

Generally the equation for the H+ pH value  is mathematically

pH = log { 1 / [H+] }

[tex][H+] = 10 ^{-pH}[/tex]

[H+]= 0.00158

Where the stoichiometric ratio is 1:1

HA aq ---> H(+) aq+ A(-) aq

[H+] = 0.00158

[HA] = 0.294 – 0.00158

[HA]= 0.29242

Therefore

[tex]Ka =\frac{ [H+] *[A-]}{ [HA] }\\\\Ka=\frac{ (0.00158)*(0.00158)}{0.29242}[/tex]

Ka=8.54e-6

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Cu(NO3)2 + Zn (s) → Cu (s) + Zn(NO3)2 is an example of which type of reaction?

Combustion

Decomposition

Single-displacement

Double-displacement

Answers

Single replacements since cu is being replaced by zn

Answer:

Single-displacement

Explanation:

Which analogy can best be likened to the activation energy of a chemical reaction?

Answers

The activation energy of a reaction is the minimum energy that must be overcome in order for the reaction to take place. One way of reaching the activation energy is by manipulating the process conditions like pressure or temperature. But the most common method is by adding an enzyme. An enzyme speeds up the rate of the reaction but does not actively take part in it.

An analogy would be pushing heavy wooden block down a slope. No matter how many people push on it, the block won't move because of friction. But if you spill oil on the floor, the block would effortlessly move down the slope. The oil here is like an enzyme in a reaction.

Determine the molar solubility of baf2 in pure water. ksp for baf2 = 2.45 x 10-5. 1.83 x 10-2 m 1.23 x 10-5 m 2.90 x 10-2 m 4.95 x 10-3 m 6.13 x 10-6 m

Answers

The Molar solubility of baf2 in pure water is 1.83 x 10⁽₋₂⁾ if ksp for baf2 = 2.45 x 10⁻⁵.
solubility product equilibrium reaction from the balance equation of reaction is:
k₍sp₎ = [Ba⁺²] [F⁻]²
using mole ratios from one to another, [Ba⁺²] = x and  [F⁻]² = 2x
k₍sp₎ = [Ba⁺²] [F⁻]²
k₍sp₎ = [x][2x]²
ksp = 2.45 x 10⁻⁵ then,
2.45 x 10⁻⁵  =  [x][2x]²
4x³ = 2.45 x 10⁻⁵
x = ∛(2.45 x 10⁻⁵)/4 = 1.83 x 10⁻²m
so, x is molar solubility which is 1.83 x 10⁻²m

Final answer:

The molar solubility of BaF2 in pure water is approximately 6.13 x 10⁻⁶ M.

Explanation:

The molar solubility of BaF2 in pure water can be calculated using the solubility product constant (Ksp) of BaF2. The equation for the dissolution of BaF2 is BaF2 → Ba²+ + 2F¯. The Ksp expression for BaF2 is Ksp = [Ba²+][F¯]². Since there is a 1:2 stoichiometric relationship between BaF2 and fluoride ions in solution, the molar solubility of BaF2 can be represented as x, which gives the concentrations of Ba²+ and F¯ as x and 2x, respectively. Substituting these values into the Ksp expression, we get:

Ksp = (x)(2x)² = 4x³ = 2.45 x 10⁻⁵

Solving for x, we find that the molar solubility of BaF2 in pure water is approximately 6.13 x 10⁻⁶ M.

3. The bonds between hydrogen and oxygen in water differ from the bonds between hydrogen and carbon in carbohydrates. How and why do these bonds differ?

Answers

Because they are different elements have different number of protons and neutrons........ I guessed do not trust me...

Sally is measuring the weight of a sodium chloride crystal. the scale indicates the crystal weighs 10.0010 g. how many significant figures are in this measurement?

Answers

Actually there are three established rules on counting how many significant figures are in a number:

Rule 1: Positive integers are always significant.

Rule 2: Any zeros between two significant digits are always significant.

Rule 3: A final zero or trailing zeros after the decimal point are always significant.

 

Since the given number is 10.0010 g, the two 1’s is under Rule 1, the three 0’s between the two 1’s is under Rule 2, and the zero after the last 1 is under Rule 3. Therefore all the digits are significant.


Answer: So the number of significant figures in the measurement is 6.

How many bonding electrons are in the lewis structure of carbon monoxide, co?

Answers

There are six (6) bonding electrons are in the lewis structure of carbon monoxide (CO).
In Lewis structure, there are ten (10) valence electrons of Carbon monoxide (CO). For lewis structure we need a triple bond between carbon and oxygen, so when electrons made a triple bond it means there is six bonding electrons in lewis structure of carbon monoxide.

Answer:

6

Explanation:

The Lewis structure represents the valence electrons at the atoms, which ones are shared and the lone pairs. Carbon is at group 4 at the periodic table, and so has 4 electrons in the valence shell; oxygen is at group 6, and so has 6 electrons at the valence shell.

That compound is an exception of the octet rule. A triple bond is done between the atoms, and so, 3 electrons of carbon are shared and 3 electrons of oxygen are shared. Thus, there are 6 bonding electrons, as shown below in red.

Find the no. Of electron involved in the electro deposition of 63.5g of cu from a solution of cuso4

Answers

This is a redox reaction, meaning reduction-oxidation reaction. This represents the reaction in one side of the electrode in an electrolysis set-up. First, we find the oxidation number of Cu in CuSO4:

(ox. # of Cu)+ ox.# of S + 4(ox.# of oxygen) = 0
(ox. # of Cu) + (6) + 4(-2) = 0
ox. # of Cu = 2+

CuSO4 ---> Cu + SO42-
Cu2+ + SO42-  ---->  Cu + SO42-
Cu2+ -----> Cu + 2e-   (net ionic reaction)

The stoichiometric equation would be 2 electrons per mole Copper. Copper has a molar mass of 63.5 g/mol. Then, it would only need 2 electrons.


How many moles are there in a 1.40 kg bottle of water?

Answers

n (H2O) = m/M

m (H2O) = 1.4 kg = 1400g

M (H2O) = 2 x 1 + 16 = 18g/mol

n (H2O) = 1400/18 = 77.8mol

A solution is made by dissolving 25.5 grams of glucose (C6H12O6) in 398 grams of water. What is the freezing point depression of the solvent if the freezing point constant is -1.86 °C/m? Show all of the work needed to solve this problem. 

Please help!

Answers

The freezing point depression is a coligative property.

The formula for the freezing point depression is:

ΔTf = Kf * m

Where m is the molality and Kf is the cryoscopic constant.

Kf of water is 1.86 °C / m

m = moles of solute / kg of solvent

moles of solute = mass in grams / molar mass

molar mass of C6H12O6 = 6*12g/mol + 12*1g/mol + 6*16g/mol = 180 g/mol

moles of C6H12O6 = 25.5 g / 180 g/mol = 0.14167 mol

m = 0.14167 mol / 0.398 kg = 0.3559 m

=> ΔT = 1.86°C/m * 0.3559m = 0.66°C

Answer: 0.66°C


What is the concentration of k+ ions in a 0.045 m k2co3 solution assuming complete dissociation?express the concentration in molarity?

Answers

Answer: The concentration of [tex]K^+[/tex] ions in the solution is 0.09 M

Explanation:

We are given:

Concentration of [tex]K_2CO_3[/tex] = 0.045 M

The chemical equation for complete dissociation of potassium carbonate follows:

[tex]K_2CO_3(aq.)\rightarrow 2K^+(aq.)+CO_3^{2-}(aq.)[/tex]

By stoichiometry of the reaction:

1 mole of potassium carbonate produces 2 moles of potassium ions and 1 mole of carbonate ions.

So, the concentration of potassium ions in the given solution = [tex](2\times 0.045M)=0.09M[/tex]

Hence, the concentration of [tex]K^+[/tex] ions in the solution is 0.09 M

How is gamma radiation different from other types of electromagnetic radiation

Answers

The gamma radiation is one of the seven electromagnetic radiations. The other six are: radio waves, microwaves, infrared, optical, ultraviolet and X-rays. The difference between them is  the amount of energy found in the photons. The gamma rays have the significant energy in the photons from all other electromagnetic waves.It is also characterized with the shortest wavelengths. 

When sodium chloride reacts with silver nitrate, silver chloride precipitates. what mass of agcl is produced from 75.00 g of agno3?

Answers

We first need to know that At. wt. of Silver(Ag) = 108amu
Then 1 mol AgNO³ replaces 1 mol AgCl
i.e. 170gm AgNO³ gives 143.5gm AgCl
So using unitary method, 75gm AgNO³ gives 63.31gm AgCl

To calculate the atoms of an element in a given molecule, we need to multiply stoichiometry by the number that is written on the foot of that element. Therefore, the mass of  AgCl produced from 75.00 g of AgNO[tex]_3[/tex]. is 63.0g.

What is stoichiometry?

Stoichiometry is a part of chemistry that help us in making relationship between reactant and product from quantitative aspects.

The balanced reaction is  

NaCl + AgNO[tex]_3[/tex] → NaNO[tex]_3[/tex] + AgCl

Mass of AgNO[tex]_3[/tex]=75.00 g

Molar mass of AgNO[tex]_3[/tex]=169.87 g/mol

Moles of AgNO[tex]_3[/tex]=0.44mol

From 1 mole of  AgNO[tex]_3[/tex], 1 mole of  AgCl is produced.

So, from 0.44 of AgNO[tex]_3[/tex], 0.44 mole of AgCl  is produced.

Mass of AgCl =Molar mass of AgCl ×moles of AgCl

Mass of AgCl =143.32 g/mol  ×0.44 mole

Mass of AgCl =143.32 g/mol  ×0.44 mole

Mass of AgCl =63.0g

Therefore, the mass of  AgCl produced from 75.00 g of AgNO[tex]_3[/tex]. is 63.0g.

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If Uranium-234 decays via alpha emission, what is the likely product of radioactive decay? (U, atomic no. = 92)

Answers

An alpha emission is one in which an atomic nucleus emits an alpha particle (helium nucleus). Therefore in this reaction, the products of the decay are Helium and another element X. Helium has an atomic mass and atomic number of 4 and 2 respectively, therefore the complete reaction is:

U-234 (92) ---> He-4 (2) + X

Since atomic mass and number must be conserved therefore X = X-230 (90)

U-234 (92) ---> He-4 (2) + X-230 (90)

The element with atomic number of 90 is Thorium. Therefore the other product is Thorium-230 (90).

U-234 (92) ---> He-4 (2) + Th-230 (90)

A Term that describes a group of diseases caused by mutations and different genes

Answers

Genetic & Pediatric Diseases

or maybe you're looking for a word like 

Haplotype

What is the correct formula for calcium cyanide?

A. Ca2CN
B. CN(Ca)2
C. Ca(CN)2
D. CaCN

Answers

C.  Ca(CN)₂
____________________________________________

The pharmacy receives a prescription for 50 grams of 5% salicylic acid ointment. the pharmacy has a 30% salicylic acid ointment and petrolatum available. using only these products, how much petrolatum should be used to compound the prescription? express the answer in grams. (answer must be numeric; no units or commas; include leading zero when answer is less than 1; round the final answer to the nearest one decimal place.)

Answers

In this problem, we can formulate two equations.

First, the overall mass balance of the ointment. The mass of 30% salicylic acid ointment plus the mass of petrolatum must be 50 grams.

x + p = 50

Where x is the mass of 30% salicylic acid ointment and p is the mass of petrolatum

Second, the component mass balance of salicylic acid:

0.3 * x = 50 * 0.05

x = 8.33 g

Therefore the mass of petrolatum to be used is:

x + p = 50

p = 50 – x

p = 50 – 8.33

p = 41.67 g

 

Answer:

41.7

How did the discoveries of scandium (sc) and germanium (ge) affect mendeleevâs work?

Answers

they showed mandeleeves predictions were correct

The polar portion of a cholesterol molecule, which forms hydrogen bonds with the polar heads of neighboring phospholipids and glycolipids, consists of a

Answers

The polar portion of a cholesterol molecule, which forms hydrogen bonds with the polar heads of neighboring phospholipids and glycolipids, consists of a hydroxyl group or -OH. From the name of the molecule, you can easily say that it should contain an hydroxyl group as it has an -ol in its name. Alcohol is a polar molecule so this part of cholesterol should be the polar portion. Cholesterol is a modified steroid and a lipid molecule. It is an important structural molecule of all cell membranes, maintaining fluidity and structural integrity. It is also a starting material for the synthesis of bile acid, vitamin D and steroid.

Can someone please help me:)
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A radon atom has 86 protons, 136 neutrons, and 86 electrons. What will it change to during alpha decay?

An astatine atom with 85 protons, 137 neutrons, and 86 electrons
A francium atom with 87 protons, 135 neutrons, and 86 electrons
A polonium atom with 84 protons, 134 neutrons, and 86 electrons
A radon atom with 86 protons, 136 neutrons, and 85 electrons

Answers

We have here Radon Rn with mass number = 86 protons + 136 neutrons = 222. Therefore, we have Rn222. The alpha radiation emits particles in the same size of the He atom whose mass number equals 4. By subtracting 4 from 222 we get 218 which is the mass number of Polonium Po218 with 84 protons and 134 neutrons.
Therefore, the right answer is C.

Does the entropy (△S) increase or decrease in each of the following processes? The wind blows a pile of leaves all over the yard. As you are pumping gas into your car, gas fumes escape into the air. a. decreasing decreasing b. increasing decreasing c. decreasing increasing d. increasing increasing

Answers

B, increasing decreasing is my opinion

A student performs an experiment that produces solid sodium chloride. He uses four different catalysts and lets the reaction run for two minutes, and then removes the sodium chloride product. Which is the best way for him to make a consistent measurement that would show the different amounts of sodium chloride produced?

Answers

If these were the missing choices:
Measure the product separately on four different scales.
Measure all of the product together and divide by four.
Measure the four products separately, but using the same scale each time.
Measure the amount of sodium chloride in one sample every 10 seconds.

My answer:
MEASURE THE FOUR PRODUCTS SEPARATELY, BUT USING THE SAME SCALE EACH TIME.

This is to ensure that the scale measurement is consistent. It is easier to determine the changes in amount if all use the same scale rather than using different scale for each product.

Answer:

☆☆ Measure the four products separately, but using the same scale each time. option C

Explanation:

He cannot do this without affecting at the same time the evolution of the reaction, and of course by doing it on one sample only he will not be able to compare.

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