Question 9 (1 point) H₂PO₂ (aq) + 3NaOH(aq) A 25 mL sample of 4 M NaOH is necessary to neutralize 50 mL of NaOH (aq). What was the concentration of the sodium hydroxide solutions?​

Answers

Answer 1

The concentration of the H₂PO₂ solution was 0.66 M.

How to determine the concentration of the sodium hydroxide solutions ?

The balanced chemical equation for the reaction between H₂PO₂ and NaOH is:

H₂PO₂ (aq) + 3NaOH(aq) → Na₃PO₄(aq) + 2H₂O(l)

From the equation, we can see that 3 moles of NaOH are required to react with 1 mole of H₂PO₂.

Let's start by calculating the number of moles of NaOH that reacted with the H₂PO₂:

moles of NaOH = concentration x volume = 4 M x 0.025 L = 0.1 moles

Since 3 moles of NaOH are required to react with 1 mole of H₂PO₂, the number of moles of H₂PO₂ present in the reaction is:

moles of H₂PO₂ = 0.1 moles / 3 = 0.033 moles

Now, let's use the volume of the H₂PO₂ solution to calculate its concentration:

concentration of H₂PO₂ = moles / volume = 0.033 moles / 0.05 L = 0.66 M

Therefore, the concentration of the H₂PO₂ solution was 0.66 M.

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Related Questions

N2 + 3H2-> 2NH3
How many liters of NH, will be produced at a temperature of 208.00 degrees celsius and 4.50 torr pressure to consume 26.00 moles of N2?
Round to two decimal places.

Answers

Answer:

To solve this problem, we can use the ideal gas law and stoichiometry.

First, we need to convert the given temperature to Kelvin:

208.00 degrees Celsius + 273.15 = 481.15 K

Next, we can use the ideal gas law to find the volume of NH3 produced:

PV = nRT

P = 4.50 torr = 0.00592 atm (converting to atm)

V = unknown (what we are trying to find)

n = moles of NH3 produced = 26.00 moles N2 (from stoichiometry)

R = 0.0821 L·atm/K·mol (gas constant)

T = 481.15 K

Solving for V:

V = nRT/P

V = (26.00 mol)(0.0821 L·atm/K·mol)(481.15 K) / (0.00592 atm)

V = 3671.46 L

However, this is the volume of NH3 produced at standard temperature and pressure (STP), which is 0 degrees Celsius (273.15 K) and 1 atm. We need to convert this to the volume at the given temperature and pressure using the combined gas law:

(P1V1/T1) = (P2V2/T2)

P1 = 1 atm (STP pressure)

V1 = 3671.46 L (volume at STP)

T1 = 273.15 K (STP temperature)

P2 = 0.00592 atm (given pressure)

V2 = unknown (what we are trying to find)

T2 = 481.15 K (given temperature)

Solving for V2:

V2 = (P1V1T2) / (P2T1)

V2 = (1 atm)(3671.46 L)(481.15 K) / (0.00592 atm)(273.15 K)

V2 = 315491.48 L or 315491 L (rounded to two decimal places)

Therefore, 315491 L of NH3 will be produced at a temperature of 208.00 degrees Celsius and 4.50 torr pressure to consume 26.00 moles of N2.

Choose the best answer.
Determine if the following reaction is a redox reaction; if it is, select the correct overall oxidation -reduction reaction. (You may need to use Tables A-1, A-2, A-3, and A-4 in your CRG for oxidation numbers.)
C(s) + 02(g) - CO2(g)

Answers

It is a redox reaction since the oxidation number of carbon was increased from zero to four and that of oxygen was decreased from zero to -2.

What is a redox reaction?

A redox reaction (short for reduction-oxidation reaction) is a type of chemical reaction in which there is a transfer of electrons between two chemical species. In a redox reaction, one reactant undergoes oxidation (loses electrons) while the other undergoes reduction (gains electrons).

Oxidation refers to the loss of electrons, while reduction refers to the gain of electrons. The substance that undergoes oxidation is called the reducing agent, as it causes the other reactant to be reduced.

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How many moles of KNO3 would have to be added to 100g of water to form a saturated solution at 10C?​

Answers

According to the solubility graph of KNO₃, 0.160 moles  would have to be added to 100 g of water to form a saturated solution at 10°C.

What is solubility?

Solubility is defined as the ability of a substance which is basically solute to form a solution with another substance. There is an extent to which a substance is soluble in a particular solvent. This is generally measured as the concentration of a solute present in a saturated solution.

The solubility mainly depends on the composition of solute and solvent ,its pH and presence of other dissolved substance. It is also dependent on temperature and pressure which is maintained.

At 40°C 67 g potassium nitrate is soluble thus at 10°C 10×67/40= 16.25 g is soluble which is 16.25/101.10= 0.160 moles.

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PLS HELP! ILL MARK BRAINLIEST

Answers

1,6,4 coefficients ensure that there are equal numbers of atoms of each element on both sides of the equation. So correct option is A.

Describe Chemical Equation?

A chemical equation is a symbolic representation of a chemical reaction, which shows the reactants, products, and their relative amounts. It is a shorthand way of describing a chemical reaction using chemical symbols and formulas.

A chemical equation consists of two sides, the reactant side and the product side, separated by an arrow, which represents the direction of the reaction. The reactant side lists the starting materials or reactants, while the product side lists the substances that are formed as a result of the reaction.

The balanced chemical equation for the reaction is:

P4O10 + 6 H2O → 4 H3PO4

The correct set of coefficients to balance the equation is:

A.  1,6,4

These coefficients ensure that there are equal numbers of atoms of each element on both sides of the equation.

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Question 5
Calculate the wavelength (in nm) of a neutron traveling at a speed of 85.0 m/s. The mass of a neutron is 1.67493 × 10–24 g.

1 point

4.65 nm


8.58 nm


4.96 × 10–3 nm


5.78 × 10–3 nm

Answers

The wavelength of the neutron is 4.65 n. Wavelength is typically measured in units of meters (m), centimeters (cm), or nanometers (nm).

What is Wavelength?

Wavelength is the distance between successive crests, troughs, or any other equivalent points in a wave. It is usually denoted by the Greek letter lambda (λ) and is commonly used to describe electromagnetic waves, such as light, as well as other types of waves, including sound and water waves.

Since the wavelength of a neutron is given by λ = h/p, where h is Planck's constant and p is the momentum of the neutron, we can calculate the wavelength using the equation λ = h/mv, where m is the mass of the neutron, v is its velocity, and h is Planck's constant.

First, we need to convert the velocity from m/s to cm/s, since the units of h are cm^2 g/s:

85.0 m/s × (100 cm/1 m) = 8500 cm/s

Next, we can plug in the values for m, v, and h:

λ = h/mv = (6.626 × 10^-27 cm^2 g/s)/(1.67493 × 10^-24 g × 8500 cm/s)

λ = 4.65 nm

Therefore, the wavelength of the neutron is 4.65 nm.

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Please Help!!!

4.6g of sucrose was added to 72.9g of water. What is the percent composition? Round to the tenths place.

Answers

Answer:

The percent composition by mass of a component in a mixture is given by:

percent composition = (mass of component / total mass of mixture) x 100%

In this case, the component is sucrose, and the total mass of the mixture is the sum of the mass of sucrose and the mass of water. We have:

mass of sucrose = 4.6 g mass of water = 72.9 g total mass of mixture = mass of sucrose + mass of water = 4.6 g + 72.9 g = 77.5 g

Substituting these values into the formula, we get:

percent composition of sucrose = (4.6 g / 77.5 g) x 100% = 5.94%

Rounding to the tenths place, we get:

percent composition of sucrose ≈ 5.9%

Therefore, the percent composition of sucrose in the mixture is approximately 5.9%.

i hope this helps you

Courtney burns wood in an outdoor firepit. She measures the mass of the ashes that remain after the fire, and the mass is much lower than the wood that she burned. What would be the best explanation for what Courtney observes?
A. gases are released into the air
B. water inside the wood solidifies
C. heat caused the molecules to lose density
D. atoms in the wood are destroyed

Answers

Courtney burns wood in an outdoor firepit and she measures mass of the ashes that remain after the fire, and mass is much lower than the wood that she burned. The best explanation for what Courtney observes is that: A. gases are released into the air.

What is the best explanation for what Courtney observes?

When wood burns, it undergoes chemical reaction called combustion, where it reacts with oxygen from the air to produce carbon dioxide, water vapor and other gases. These gases are released into air as the wood burns and their mass is not accounted for in ashes left behind.

Water inside the wood may also be released as steam during combustion process but this would not explain the significant difference in mass between the wood and ashes.

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Aluminum reacts with 42 g or iron (2) sulfate. How many grams of iron are formed? aluminum sulfate is the other product?

Answers

11.5 grams of iron are formed, and aluminum sulfate is the other product of the reaction.


The balanced chemical equation for the reaction between aluminum and iron(II) sulfate is:

2Al(s) + 3FeSO4(aq) → Al2(SO4)3(aq) + 3Fe(s)

From the equation, we can see that 2 moles of aluminum react with 3 moles of iron(II) sulfate to produce 1 mole of aluminum sulfate and 3 moles of iron.

First, we need to calculate the number of moles of iron(II) sulfate in 42 g:

moles of FeSO4 = mass / molar mass = [tex]42 g / (55.85 g/mol + 2(32.06 g/mol) + 4(16.00 g/mol)) = 0.137 mol[/tex]

According to the balanced equation, we know that 3 moles of iron are produced for every 2 moles of aluminum, and we have excess aluminum in the reaction. Therefore, we can calculate the moles of iron produced based on the moles of iron(II) sulfate used:

moles of Fe = [tex]3/2 * moles \ of \ FeSO4 = 3/2 * 0.137 mol = 0.206 mol[/tex]

Now we can calculate the mass of iron produced:

mass of Fe = moles of Fe x molar mass of Fe = [tex]0.206 mol * 55.85 g/mol = 11.5 g[/tex]

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FOR EDUCERE
What shape is the JET experimental fusion reactor?
A. Sphere shape
B. Pyramidal shape
C. Doughnut shape
D. Cylindrical shape

Answers

Answer:

C. Doughnut shape

Explanation:

How many moles are in 79.91g of beryllium chloride?

Answers

Answer:

number of moles in 79.91g of beryllium chloride = 1.000 moles

What is a mole?

The mole (symbol - mol) is a unit of amount of substance in the International System of Units (SI). The mole is defined as containing 6.02214076×10²³ elementary entities. These may be atoms, ions, molecules, etc. The mole is used to simplify quantitative calculations of chemistry.

To calculate number of moles, divide the mass of substance present by the molar mass of substance. The molar mass is the mass in grams of one mole of the substance, and can be calculated by summing the molar masses of the element components of the substance.

Molar mass can be located on a standard IUPAC Periodic Table (International Union of Pure and Applied Science).

Hence, n(BeCl₂) = m÷M = 79.91÷(9.012 + 2×35.45) = 1.000 moles


A varied number of one or more kinds of atoms bonded together to form a large network is called a

Answers

A varied number of one or more kinds of atoms bonded together to form a large network is called a molecule.

What is molecule?

Molecules are the smallest particles of a substance that retain its chemical properties. They consist of two or more atoms of the same or different elements bonded together. Molecules can be simple, such as oxygen (O2) or water (H2O), or complex, such as proteins or DNA. They have specific chemical and physical properties, such as boiling point, melting point, and reactivity, that depend on their composition, structure, and intermolecular forces. The study of molecules and their interactions is fundamental to many fields, including chemistry, biology, and materials science.

However, if the number of atoms is extremely large and the bonds form a continuous network, the resulting substance is referred to as a macromolecule or a polymer. Examples of macromolecules include DNA, proteins, and plastics.

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how many atoms of calcium were left on the paper?
the compound is CaCO3
there is 1.57x10622 atoms on the paper
im not sure how to figure out the individual element helpppppp

Answers

There were 1.58 x 10^20 atoms of calcium left on the paper.

Steps

To determine the number of calcium atoms in CaCO3, we first need to know the molecular formula weight of CaCO3, which is 100.0869 g/mol.

Then, we can use this formula to calculate the number of moles of CaCO3:

moles of CaCO3 = mass of CaCO3 / molecular weight of CaCO3

mass of CaCO3 = (1.57 x 10^22 atoms) x (100.0869 g/mol / 6.022 x 10^23 atoms/mol) = 2.62 x 10^-2 g

Now we can calculate the number of moles of CaCO3:

moles of CaCO3 = 2.62 x 10^-2 g / 100.0869 g/mol = 2.62 x 10^-4 mol

number of calcium atoms = moles of CaCO3 x Avogadro's number

number of calcium atoms = 2.62 x 10^-4 mol x 6.022 x 10^23 atoms/mol = 1.58 x 10^20 atoms

Therefore, there were 1.58 x 10^20 atoms of calcium left on the paper.

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If the Antarctic plate is estimated to move 2. 05 cm per year, how long did it take for the plate to move from point A to point B?

Answers

Answer:

They move at a rate of one to two inches (three to five centimeters) per year.

Explanation:

The movement of the plates creates three types of tectonic boundaries: convergent, where plates move into one another; divergent, where plates move apart; and transform, where plates move sideways in relation to each other.

Which of the following statements is true about dilute and concentrated solutions?
Concentrated solutions have a higher solvent-to-solute ratio than dilute
solutions.
Concentrated solutions contain more solute than dilute solutions.
Dilute solutions contain more solute than concentrated solutions.
Dilute solutions have a higher solvent-to-solute ratio than concentrated
solutions.

Answers

Answer:

The statement that is true about dilute and concentrated solutions is: Dilute solutions have a higher solvent-to-solute ratio than concentrated solutions.

Explanation:

In dilute solutions, the amount of solute is relatively low compared to the amount of solvent. Conversely, in concentrated solutions, the amount of solute is relatively high compared to the amount of solvent.

For example, if you add a teaspoon of sugar to a cup of water, you have a dilute solution. If you add five teaspoons of sugar to the same cup of water, you have a concentrated solution.

So, the correct statement is that dilute solutions have a higher solvent-to-solute ratio than concentrated solutions.

Answer:

Dilute solutions have a higher solvent-to-solute ratio than concentrated

solutions.

Explanation:

Please help!

How many protons, neutrons,
and electrons are in this ion?

27
13 Al+3

A. 13 pt, 27 nº, 13 e-
B. 27 pt, 13 nº, 10 e-
C. 13 pt, 14 n°, 13 e-
D. 13 pt, 14 nº, 10 e-

Answers

No. of protons, neutrons, and electrons in this ion are 13, 14 and 13 respectively.

What are subatomic particles?

These particles make up atoms, and are often referred to as subatomic particles. There are three subatomic particles: protons, neutrons and electrons. Two of the subatomic particles have electrical charges: protons have a positive charge while electrons have a negative charge.

A = Mass number = no. of protons + no. of neutrons

Z = Atomic number = no. of electrons = no. of protons

Given, Al³⁺ ion that has A = 27 and Z = 13

Z = no. of electrons = no. of protons = 13

A - no. of protons = no. of neutrons = 14

Therefore, no. of protons, neutrons, and electrons in this ion are 13, 14 and 13 respectively.

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Addition of I- to a solution of silver nitrate forms a black ppt. Colorless petroleum ether turns pink when added to the solution. Write the balanced chemical equation for this reaction.

Answers

The addition of iodide ion (I-) to a solution of silver nitrate (AgNO3) forms a black precipitate of silver iodide (AgI) and nitric acid (HNO3) is formed as a byproduct.

What causes the appearance of pink colour ?

The pink color observed with petroleum ether is due to the formation of AgI complexes with organic compounds present in the petroleum ether. The balanced chemical equation for this reaction is as regards:

2 AgNO₃ + 2 KI → 2 AgI (s) + 2 KNO₃

This equation shows that two moles of silver nitrate (AgNO₃) react with two moles of potassium iodide (KI) to form two moles of silver iodide (AgI) precipitate and two moles of potassium nitrate (KNO₃) in solution.

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How to answer thank you!

Answers

The given nuclear reactions can be completed based on the atomic number of and mass number of the reactant and product given. The first reaction is completed as:

[tex]\rm _{90}^{234} Th \rightarrow _{90}^{234} Th + _{0}^{0} \gamma[/tex]

What are nuclear reactions ?

Heavy unstable radioactive nuclei undergo nuclear reactions by the absorption or emission of charged particles.

The first nuclear reaction given in the table is giving the same thing with no change in mass number and atomic number. Thus, it is a gamma decay of thorium -234 as written above.

The second nuclear reaction is the positron emission by oxygen as follows:

[tex]\rm _{8}^{15} O \rightarrow _{7}^{15} N + _{+1}^{0} e[/tex]

Here, the atomic number decreases by one unit in the product.

For the last nuclear reaction given, it describes, beta decay of boron to form nitrogen as written below, where the atomic number increases by one.

[tex]\rm _{6}^{14} B \rightarrow _{7}^{14} N + _{-1}^{0}e[/tex]

Similar way, other nuclear reactions can be completed.

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If you put 10.0mL of a in one balance pan . How much mass of b would you need in the other pan to make it balanced

Answers

To balance 10.0 mL of substance a, we would need 6.67 g of substance b.

How did we arrive at the value?

To determine how much mass of substance b would be needed to balance 10.0mL of substance a on the other pan, we need to know the density of both substances.

If we know the density of substance a and the volume of substance b, we can calculate the mass of substance b needed to balance the system.

For example, if we assume that substance a has a density of 1.0 g/mL, and we want to balance it with substance b which has a density of 1.5 g/mL, we can use the following formula:

mass of substance b = (density of substance a) x (volume of substance a) / (density of substance b)

Substituting the values given, we get:

mass of substance b = (1.0 g/mL) x (10.0 mL) / (1.5 g/mL)

mass of substance b = 6.67 g

Therefore, to balance 10.0 mL of substance a, we would need 6.67 g of substance b.

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Grade 12 organic chemistry

How would you name this?

Answers

One of the subfields of chemistry called "organic chemistry" examines the composition, production, reactivity, and structure of molecules containing carbon.

Does 'organic' imply 'healthy'?

A item is not necessarily healthful regardless of whether it claims to be organic or contains fresh products. Certain organic food could nevertheless be heavy in calories, fat, salt, or sugar. With running water, thoroughly clean and wash fresh fruits and vegetables.

Is eating organic worth the price?

Organic foods encourage an agricultural system which it avoids synthetic chemicals such as pesticides and fertilizers and encourages a more biologically diverse ecosystem, paying particular attention to the well-being of watersheds, soil, air, wildlife, agricultural labourers, and the climate. As a result, organic foods are unquestionably better for the environment.

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Derive an expression for lowering of vapour pressure and molar mass of solute






Answers

The expression for lowering of vapour pressure and molar mass of solute is given as -

                                                [tex]\frac{p^{0}- p }{p^{0} }[/tex] =  [tex]\frac{W_{2} }{M_{2} }[/tex] × [tex]\frac{M_{1} }{W_{1} }[/tex]

What is Raoult's law?

According to Raoult's law-

Relative lowering of vapour pressure of a non volatile solute is equal to the mole fraction of solute.

The relation between relative Lowering of vapour pressure and molar mass of solute is given as -

                                             [tex]\frac{p^{0}- p }{p^{0} }[/tex] = [tex]\frac{W_{2} }{M_{2} }[/tex] × [tex]\frac{M_{1} }{W_{1} }[/tex]

          where, [tex]p^{0}[/tex] = vapour pressure of pure solvent

                        p = vapour pressure of solution

                        [tex]W_{2}[/tex] = Mass of solvent

                       W₁ = mass of solute

                        M₂ = molar mass of solvent

                         M₁ = molar mass of solute.

                              Mole fraction of solute = [tex]\frac{n_{2} }{n_{1} + n_{2} }[/tex]

where, n₂ = number of moles of solvent

            n₁ = number of moles of solute

For dilute solution,  n₂ ∠∠n₁

Thus, n₂ can be neglected in the denominator and this gives,

                                                     [tex]\frac{p^{0}- p }{p^{0} }[/tex] = [tex]\frac{n_{2} }{n_{1} }[/tex]

We know that, number of moles = mass / molar mass.

Therefore replacing the values of  n₂ and n₁ with mass and molar mass gives-

                                                 [tex]\frac{p^{0}- p }{p^{0} }[/tex] = [tex]\frac{W_{2} }{M_{2} }[/tex] × [tex]\frac{M_{1} }{W_{1} }[/tex]

Therefore, this gives the relation between relative lowering of vapour pressure and molar mass of solute

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Predict what will happen to reaction rates in the following scenarios and explain why!
1. You add more oxygen gas to rusting iron metal (Note: Iron + Oxygen- →rust).
this reaction rate will...
2. You put a beaker of reacting nitric acid and sodium hydroxide into the refrigerator. This reaction rate will...​

Answers

In the following chemical changes in case of rusting of iron  reaction rate will increase while in case of  nitric acid and sodium hydroxide into the refrigerator , reaction rate will decrease.

What are chemical changes?

Chemical changes are defined as changes which occur when a substance combines with another substance to form a new substance.Alternatively, when a substance breaks down or decomposes to give new substances it is also considered to be a chemical change.

There are several characteristics of chemical changes like change in color, change in state , change in odor and change in composition . During chemical change there is also formation of precipitate an insoluble mass of substance or even evolution of gases.

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Please help! see image

Answers

Answer:

³⁹K₁₉⁺¹ or ³⁹₁₉K⁺¹

Explanation:

hope this helps

How many moles of dinitrogen monoxide will be formed upon the complete reaction of 25.1 g of ammonium nitrate

Answers

Taking into account the reaction stoichiometry, 0.31375 moles of N₂O are formed upon the complete reaction of 25.1 g of ammonium nitrate.

Reaction stoichiometry

In first place, the balanced reaction is:

NH₄NO₃  → N₂O + 2 H₂O

By reaction stoichiometry (that is, the relationship between the amount of reagents and products in a chemical reaction), the following amount of moles of each compound participate in the reaction:

NH₄NO₃: 1 moleN₂O: 1 moleH₂O: 2 moles

The molar mass of the compounds is:

NH₄NO₃: 80 g/moleN₂O: 44 g/moleH₂O: 18 g/mole

By reaction stoichiometry, the following mass quantities of each compound participate in the reaction:

NH₄NO₃: 1 mole ×80 g/mole= 80 gramsN₂O: 1 mole ×44 g/mole= 44 gramsH₂O: 2 moles× 18 g/mole= 36 grams

Mass of N₂O formed

The following rule of three can be applied: if by reaction stoichiometry 80 grams of NH₄NO₃ form 1 mole of N₂O, 25.1 grams of NH₄NO₃ form how many moles of N₂O?

moles of N₂O= (25.1 grams of NH₄NO₃ ×1 mole of N₂O) ÷80 grams of NH₄NO₃

moles of N₂O= 0.31375 moles

Finally, 0.31375 moles of N₂O are formed.

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1. (a) In your own words, define “flow rate” and “viscosity.”
(b) Describe the relationship between fl ow rate and
viscosity.

Answers

(A) Viscosity:the measure of how fast a fluid will flow the "thickness" of a fluid Flow Rate: the volume of fluid that passes a point in a pipe or tube in a certain amount of time.

(B) As Viscosity increases Flow Rate decreases :)

Explain in details how a mixture of sodium chloride, ammonium chloride and lead (ll) chloride can be separated into individual component.​

Answers

Answer: Sodium chloride is the most soluble compound in water. Ammonium chloride is the least soluble salt and is almost completely insoluble in water. Lead chloride dissolves quite easily in water

Explanation: Mixing sodium chloride, ammonium chloride, and lead (ll) chloride can be separated into individual components using dialysis. Sodium ions are removed from the mixture due to their high affinity relative to chloride and ammonium ions.

What is the volume (in liters) of a 0.46 Molar solution made from 0.55 moles of potassium bromide? Round your answer to the nearest 0.01 and include

Answers

The volume of the solution is 1.20 liters.

What is volume?

Volume is a measure of the amount of space that an object occupies. It is typically measured in cubic units such as cubic meters (m³), cubic centimeters (cm³), or cubic feet (ft³).

The volume of an object can be calculated by multiplying its length, width, and height or by using other formulas specific to the shape of the object.

To calculate the volume of a solution, we need to use the formula:

volume (in liters) = amount of solute (in moles) / concentration (in moles per liter)

In this case, we have:

Amount of solute = 0.55 moles

Concentration = 0.46 Molar

Using the formula above, we can calculate the volume of the solution as follows:

volume = 0.55 moles / 0.46 M = 1.20 L

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Please help!

How many protons, neutrons,
and electrons are in this ion?
46 Ca²+
20

A. 20 pt, 26 nº, 20 e-
B. 20 pt, 26 nº, 18 e-
C. 23 pt, 23 nº, 21 e-
D. 20 pt, 26 nº, 22 e-

Answers

Explanation:

The atomic number of calcium (Ca) is 20, which means it has 20 protons and normally has 20 electrons to balance the charge. However, the ion given in the question is Ca²⁺, which means it has lost two electrons and has a 2+ charge.

To find the number of neutrons in an atom or ion, you subtract the number of protons from the mass number. The mass number of calcium is approximately 40, which means it has 20 neutrons.

Therefore, the number of protons, neutrons, and electrons in the Ca²⁺ ion is:

Protons: 20

Neutrons: 20

Electrons: 18

So the correct answer is option B: 20 protons, 26 neutrons, and 18 electrons.

Final answer:

The element Calcium (Ca) has 20 protons. The 46 Ca²+ ion has a mass number of 46, indicating it has 26 neutrons (46-20). The ²+ charge shows it has lost 2 electrons, so it has 18 electrons. The correct answer is B: 20 protons, 26 neutrons, and 18 electrons.

Explanation:

The element given here is Calcium (Ca) which has an atomic number of 20. The atomic number is equal to the number of protons, so Calcium has 20 protons (pt). The symbol 46 Ca²+ indicates that this is an ion with a mass number of 46. The mass number is the total of protons and neutrons, so to find the number of neutrons we subtract the number of protons from the mass number: 46 - 20 = 26 neutrons (nº). A ²+ charge means it has lost 2 electrons. Since the number of protons and electrons are usually equal in an atom, we subtract those 2 lost electrons from the 20 protons to find that this Calcium ion has 18 electrons (e-). So, the correct answer is B. 20 pt, 26 nº, 18 e-

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A student is given an object and is asked to identify its density. The object has a volume of 3 cubic centimeters and a mass of 6 grams. Which of the following equations correctly sets up the formula for density?

Answers

Density =mass/volume

=6/3

=2

A compound has an empirical formula SN. If there are 4 atoms of N in one molecule, what is the molecular formula? Explain.​

Answers

SN

1:1

So lf you multiply N with 4 you have to multiply the s with the same number

the answer Will be sS4N4

easy

Tell of two tests you could use to determine is a mixture is a solution or a mechanical mixture

Answers

One way to determine whether a mixture is a solution or a mechanical mixture is to perform a filtration test. Another way to determine whether a mixture is a solution or a mechanical mixture is to perform a visual inspection test.

Explain about the above two tests in detail?

One way to determine whether a mixture is a solution or a mechanical mixture is to perform a filtration test. In this test, the mixture is passed through a filter paper, and if the filter paper traps solid particles, it indicates that the mixture is a mechanical mixture. On the other hand, if the mixture passes through the filter paper without leaving any solid particles, it suggests that the mixture is a solution.

Another way to determine whether a mixture is a solution or a mechanical mixture is to perform a visual inspection test. In this test, the mixture is observed under a microscope, and if the particles in the mixture are evenly distributed and do not settle over time, it indicates that the mixture is a solution. In contrast, if the particles in the mixture are not evenly distributed, and they settle over time, it suggests that the mixture is a mechanical mixture.

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