Notice that "po4" appears in two different places in this chemical equation. po 3−4 is a polyatomic ion called phosphate . what number should be placed in front of na3po4 to give the same total number of phosphate ions on each side of the equation? ?na3po4+mgcl2→mg3(po4)2+nacl

Answers

Answer 1

Answer: "2" should be placed infront of [tex]Na_3PO_4[/tex] to have the same number of phosphate ions on each side.

Explanation: For a given reaction in the question,

The phosphate ions on product side are 2, so there should be 2 phosphate atoms on the reactant side as well.

And the number of Magnesium atoms on product side is 3, there should be 3 magnesium atoms on the reactant side as well.

To balance out Phosphate and magnesium atoms, 6 sodium and chlorine atoms each are formed on reactant side, so to balance these atoms, 6 atoms of each should be present on product side.

Now, the balanced Chemical equation becomes:

[tex]2Na_3PO_4+3MgCl_2\rightarrow Mg_3(PO_4)_2+6NaCl[/tex]

Answer 2

By placing the coefficient '2' in front of Na3PO4 in the given chemical equation, we can ensure that the same number of phosphate ions are present on both sides of the equation.

In the given chemical equation, we see PO4 appearing twice: once in Na3PO4 and again in Mg3(PO4)2 on the other side of the equation. It's crucial to balance this equation so that the same number of phosphate ions are present on both sides. Each Mg3(PO4)2 molecule contains two phosphate ions (PO4 units), which means if we have one Mg3(PO4)2 on the right side of the equation, we need two PO4 units on the left side as well.

To achieve this, place the coefficient '2' in front of Na3PO4, which dictates that we have two Na3PO4 molecules (each containing one PO4 unit) allowing us to have two phosphate ions on the left. Hence, the balanced chemical equation will look like: 2Na3PO4 + MgCl2 → Mg3(PO4)2 + NaCl.

Learn more about Chemical Equation Balancing here:

https://brainly.com/question/29233369

#SPJ6


Related Questions

Explain how the determination of the rate law equation significantly differs from the determination of the equilibrium constant keq expression.

Answers

The rate law equation is different from the determination of the equilibrium constant keq expression because rate law equation is used experimentally
And by looking at the equation of the reaction and chemicals used in the reaction equation Keq is determined.
The value of the reaction quotient, when the chemical reaction approaches the state of equilibrium, this is called equilibrium constant.

The acceleration due to gravity on the surface of Mars is about one third the acceleration due to gravity on Earth’s surface. The weight of a space probe on the surface of Mars is about

Answers

Ok. I finally understood that you need to complete (fill in the blank) the last sentence: The weight of a space probe on the surface of Mars is about ______________

The answer is one third its weight on the surface of Earth.

You can find that by using the formula for the weight:

weight =  mass * acceleration due to gravity

So, given that the mass is constant and the acceleration due to gravity is one third, the weight is also one third.








Final answer:

On Mars, the acceleration due to gravity is about one-third of that on Earth, which means an object weighs significantly less on Mars compared to its weight on Earth.

Explanation:

The question pertains to the acceleration due to gravity on the surface of Mars compared to Earth. On Mars, the acceleration due to gravity is about one-third of that on Earth. Specifically, the gravitational acceleration on Mars is approximately 3.71 m/s², while on Earth, it is about 9.81 m/s². Thus, an object on Mars weighs significantly less than it does on Earth. For example, if a space probe weighs 100 pounds on Earth, on Mars, it would weigh roughly 38 pounds because the acceleration due to gravity on Mars is 0.38 that of Earth's gravity. This difference significantly impacts how objects move and respond to forces on Mars compared to Earth.

Which of the following is a heterogeneous mixture?
A) vinegar and water
B) milk
C) Oil and vinegar
D) Air

Answers

The correct option is C, OIL AND VINEGAR
There are two types of mixture, homogeneous and heterogeneous mixtures.
Homogeneous mixture are uniform in composition and an example of this is milk.
Heterogeneous mixture refers to a mixture which is not uniform in composition, that is, smaller constituent parts is present in it and it can be easily separated using suitable methods.

88.5 mol of P4O10 contains how many moles of P?

Answers

Answer : The number of moles of phosphorous are 354 moles.

Explanation :

The formula of given compound is, [tex]P_4O_{10}[/tex]

In [tex]P_4O_{10}[/tex] compound, there 4 moles of phosphorus and 10 moles of oxygen.

As we are given that the moles of [tex]P_4O_{10}[/tex] is 88.5 mole. Now we have to determine the number of moles of phosphorous (P).

As, 1 mole of [tex]P_4O_{10}[/tex] has 4 moles of phosphorous

So, 88.5 mole of [tex]P_4O_{10}[/tex] has [tex]4\times 88.5=354moles[/tex] of phosphorous

Therefore, the number of moles of phosphorous are 354 moles.

88.5 mol of [tex]P_4O_{10}[/tex] contains 354 moles of P. A mole is a unit of measurement used in chemistry to represent how much of a substance is present.

In chemistry, a mole is a unit of measurement that is used to express how much a material is present. It is described as the quantity of a substance that has exactly the same number of atoms, molecules, or ions as there are in exactly 12 grammes of pure carbon-12. The mole idea is essential to chemistry because it enables researchers to connect a substance's mass to its particle count. The idea of molar mass, or the mass of one mole of a substance, is used to describe this relationship. The unit of molecular mass is grammes per mole (g/mol).

88.5 mol [tex]P_4O_{10}[/tex] × (4 mol P / 1 mol P4O10) = 354 mol P

88.5 mol of [tex]P_4O_{10}[/tex] contains 354 moles of P

To know more about mole, here:

https://brainly.com/question/29724957

#SPJ6

When chlorine and magnesium react chemically, how many chlorine atoms will combine with one magnesium atom?

Write the chemical formula of the compound that is formed

Answers

Magnesium is divalent. This means that one magnesium atom needs to lose 2 electrons in order to become stable.

Chlorine, on the other hand, is monovalent. This means that one chlorine atom needs to gain one electron in order to become stable.

Based on this, one magnesium atom will combine with two chlorine atoms, where the magnesium loses two electrons, one for each chlorine.

The formula of the compound formed is: MgCl2

Consider the resonance structures of formate. the first lewis structure of formate has a central carbon atom. a hydrogen atom and two osygen atoms are bonded to the carbon atom. the bond between carbon and hydrogen is a single bond. one of the bonds between carbon and oxygen is a single bond and the other bond is a double bond. the single bonded oxygen has three lone pairs of electrons and a negative one charge. the double bonded oxygen has two lone pairs of electrons. the second lewis structure of formate has all of the same atom connectivities, but the double and single bonds between oxygen and carbon are switched from the first strucutre. select the true statements about the resonance structures. the actual structure of formate switches back and forth between the two resonance forms. each carbon–oxygen bond is somewhere between a single and double bond. each oxygen atom has a double bond 50% of the time. the actual structure of formate is an average of the two resonance forms.

Answers

Final answer:

The statement "each carbon-oxygen bond is somewhere between a single and double bond" and "the actual structure of formate is an average of the two resonance forms" are correct. The resonance structures represent an average distribution of electrons across all valid structures, not constant flipping between these structures.

Explanation:

In regards to the resonance structures of formate, the statements "each carbon–oxygen bond is somewhere between a single and double bond" and "the actual structure of formate is an average of the two resonance forms" are both true.

Resonance describes the situation where more than one valid Lewis structure can be drawn for a particular molecule. The resonance structure is not a rapid equilibrium between the structures but rather an average of the different possible structures, called resonance forms.

In the case of formate, which has two resonance forms, the molecule doesn't constantly flip between these two structures. Instead, the electrons are distributed in a way that is an average of these two resonance forms. This is why each carbon-oxygen bond in formate is described as being somewhere between a single and a double bond, as the characteristics of the bond are shared across both resonance forms.

Learn more about Resonance Structures in Chemistry here:

https://brainly.com/question/25204120

#SPJ11

Answers section 4.2 structure of the nuclear atom 1. a sulfur-32 atom contains 16 protons, 16 neutrons, and 16 electrons. what is the mass (in grams) of a sulfur-32 atom? 2. the mass of a neutron is 1.67 x 10-24 g. approximately what number of neutrons would equal a mass of one gram?

Answers

1. a sulfur-32 atom contains 16 protons, 16 neutrons, and 16 electrons. what is the mass (in grams) of a sulfur-32 atom?

The mass in grams of a sulfur-32 atom is 32.

That is how the isotopes are identified, showing the mass number of the isotope, which is the sum of protons and neutrons: 16 protons + 16 neutrons = 32 mass number = mass in grams of the isotope.

2. the mass of a neutron is 1.67 x 10-24 g. approximately what number of neutrons would equal a mass of one gram?

divide 1 gram by the number of neutrons per gram:

number of neutrons = 1 g / 1.67 * 10 ^ - 24 g / neutrons = 0.5998 * 10 ^ 24 neutrons = 5.998 * 10 ^23 neutrons.
Final answer:

The mass of a sulfur-32 atom is approximately 8.01 x 10^-23g. There are approximately 5.97 x 10^23 neutrons in one gram.

Explanation:

The mass of a sulfur-32 atom, which is a type of nuclear atom, can be determined by summing the masses of its protons, neutrons, and electrons. Since a sulfur-32 atom has 16 protons, 16 neutrons, and 16 electrons, and given that the mass of a proton or neutron is approximately 1.67 x 10^-24 g, the total mass of the atom would be 48 x 1.67 x 10^-24g, which equals approximately 8.01 x 10^-23g.

Furthermore, to determine the number of neutrons that would equal a mass of one gram, we divide one gram by the mass of a single neutron. This results in approximately 5.97 x 10^23 neutrons.

Learn more about Atomic Mass here:

https://brainly.com/question/32442642

#SPJ6

Caffeine (c8h10n4o2) is a weak base with a pkb of 10.4. part a calculate the ph of a solution containing a caffeine concentration of 430 mg/l .

Answers

Concentration of caffeine is 430 mg/L = 0.43g/L 
The molar mass of caffeine is 194.19 g/mol 

Therefore the molarity is:

Molarity = (0.43/194.19) mol/L 
Molarity = 0.002214 mol/L 
Molarity = 0.002214 M 

Given pKb = 10.4:

Kb = 10^-pKb = 10^ -10.4 = 3.981 x 10^ -11 

Kb is equivalent to:
Kb = [caffeine H+][OH-] / [caffeine] 
3.981 x 10^ -11 = [caffeine H+][OH-] / (0.002214) 
[caffeineH+][OH-] = 8.815 x 10^ -14 

But since:
[caffeineH+] = [OH-] 

Hence,

[OH-]^2 = 8.815 x 10^ -14 
[OH-] = 2.969 x 10^ -7 

The formula for pH is:

pH = 14 + log [OH-]

pH = 7.47
Final answer:

The pH of a solution containing a caffeine concentration of 430 mg/L is 4.75.

Explanation:

To calculate the pH of a caffeine solution, we can first use the provided pKb (10.4) to find the Kb, using the equation Kb = 10^(-pKb). We can then use the Kb to find the concentration of OH-, represented by the equilibrium C8H10N4O₂ (aq) + H₂O(1) ⇒ C8H10N4O₂H+ (aq) + OH¯ (aq). By inserting the equilibrium concentrations into the Kb expression and solving, we can find the OH- concentration.

The pH of a solution containing a caffeine concentration of 430 mg/L can be calculated using the equilibrium constant expression for caffeine. The equilibrium equation is: C8H10N4O2(aq) + H2O(l) ⇌ C8H10N4O2H+(aq) + OH-(aq). By substituting the given concentrations into the expression, the pH can be determined. The equation gives a pH of 4.75 for the solution.

Learn more about pH of a solution containing caffeine here:

https://brainly.com/question/6125764

#SPJ3

Could you please help

Answers

I would say D, because you need to start with nothing to measure the different sizes as they start to grow. hope this helps!

11. Which of the following accurately describes properties of valence? A. Nonmetallic elements tend to have a positive valence and tend to be electron borrowers. B. The smaller the number of electrons an atom has to borrow or to lend, the greater the activity of the atom. C. Metals tend to have a negative valence and tend to be electron borrowers. D. The greater the number of electrons an atom has to borrow or to lend, the greater the activity of the atom.

Answers

Atoms, the main constituents of matter, consist of positively charged protons and neutral neutrons within a nucleus which are surrounded by a sea of electrons that sit in distinct shells. The electrons on the outer shell are known as valence electrons. The valence can be descibed as the smaller number of electrons an atom has to borrow or to lend, the greater the activity.

The answer is B.


There are ________ mol of bromide ions in 0.500 l of a 0.400 m solution of albr3.

Answers

The number of moles of AlBR3 is equal to molarity times volume, which is 0.5 x 0.4 = 0.2. 1 mole of AlBr3 gives 3 moles of Br- ions. So 0.2 moles of AlBr3 gives 3 x 0.2 moles of Br- ions. Answer is 0.6 moles.

A sample of pure water has a hydronium concentration of 1.0 × 10-7 M. What is the pH of the water?

Answers

pH of the water would be 6.79

Answer:The pH of the water is 7.

Explanation;

The pH of the solution is defined as negative logarithm of [tex]H^+[/tex] or hydronium ions ions in the solution.

[tex]pH=-\log[H^+][/tex]

So, [tex]H^+[/tex] concentration of water = [tex]1.0\times 10^{-7} m[/tex]

[tex]pH=-\log[1.0\times 10^{-7}]=7[/tex]

The pH of the water is 7.

Name all of the alkene isomers, c6h12, that contain a methylene group.

Answers

Actually, a methylene group is simply any compound which contains a C=C double bond group and the rest are single bonded carbon groups. Some example of the isomers of C6H12 which contains methylene group is:

1-hexene

2,3-dimethyl-2-butene

2,3-dimethyl-1-butene

2-methyl-2-pentene

trans-2-hexene

4-methyl-1-pentene

cis-2-hexene

trans-3-hexene

2-ethyl-1-butene

2-methyl-1-pentene

3,3-dimethyl-1-butene

4-methyl-cis-2-pentene

cis-3-methyl-2-pentene

trans-3-methyl-2-pentene

If 8.800 g of c6h6 is burned and the heat produced from the burning is added to 5691 g of water at 21 °c, what is the final temperature of the water?

Answers

the final temperature of the water is approximately [tex]\(4.009 C\)[/tex].

To find the final temperature of the water after adding the heat produced from burning 8.800 g of [tex]\(C_6H_6\)[/tex] (benzene), we'll use the concept of heat transfer and the specific heat capacity of water.

The heat released from the combustion of [tex]\(C_6H_6\)[/tex] will be transferred to the water, causing its temperature to increase. We'll use the equation:

Q = mcΔT

Where:

- Q is the heat transferred (in Joules)

- m is the mass of the water (in grams)

- c is the specific heat capacity of water (4.18 J/g°C)

- ΔT  is the change in temperature of the water (in °C)

First, we need to calculate the heat released from burning [tex]\(C_6H_6\)[/tex].

Given:

- Mass of [tex]\(C_6H_6\)[/tex] burned, [tex]\(m_{C_6H_6} = 8.800 \, g\)[/tex]

- Heat of combustion of [tex]\(C_6H_6\)[/tex], [tex]\(ΔH_{comb} = -3263 \, kJ/mol\)[/tex]

Using the molar mass of [tex]\(C_6H_6\) (\(M_{C_6H_6} = 78.11 \, g/mol\))[/tex], we can find the number of moles of [tex]\(C_6H_6\)[/tex] burned and then calculate the heat released.

Next, we'll use the equation for heat transfer to find the change in temperature of the water, and then add this change to the initial temperature of the water to get the final temperature.

Let's calculate step by step.

Step 1: Calculate the heat released from burning [tex]\(C_6H_6\)[/tex].

1. Find the number of moles of [tex]\(C_6H_6\)[/tex]:

[tex]\[n_{C_6H_6} = \frac{m_{C_6H_6}}{M_{C_6H_6}} = \frac{8.800 \, g}{78.11 \, g/mol} \approx 0.1128 \, mol\][/tex]

2. Calculate the heat released from burning [tex]\(C_6H_6\)[/tex] using its molar enthalpy of combustion:

[tex]\[Q_{comb} = n_{C_6H_6} \times ΔH_{comb} = 0.1128 \, mol \times (-3263 \, kJ/mol)\][/tex]

[tex]\[Q_{comb} = -368.112 \, kJ\][/tex]

Step 2: Calculate the change in temperature of the water.

1. Use the equation for heat transfer:

[tex]\[Q_{water} = mcΔT\][/tex]

Where [tex]\(Q_{water}\)[/tex] is the heat absorbed by water, \(m\) is the mass of water, c is the specific heat capacity of water, and \(ΔT\) is the change in temperature of water.

2. Rearrange the equation to solve for [tex]\(ΔT\)[/tex]:

[tex]\[ΔT = \frac{Q_{comb}}{mc}\][/tex]

Given:

- [tex]\(m_{water} = 5691 \, g\)[/tex]

- [tex]\(c_{water} = 4.18 \, J/g°C\)[/tex]

3. Substitute the values and calculate \(ΔT\):

[tex]\[ΔT = \frac{-368.112 \times 10^3 \, J}{(5691 \, g) \times (4.18 \, J/g°C)}\][/tex]

[tex]\[ΔT \approx -16.991°C\][/tex]

Step 3: Find the final temperature of the water.

Given:

- Initial temperature of water, [tex]\(T_{initial} = 21°C\)[/tex]

The final temperature [tex](\(T_{final}\))[/tex] of the water can be found by adding the change in temperature [tex](\(ΔT\))[/tex] to the initial temperature [tex](\(T_{initial}\))[/tex]:

[tex]\[T_{final} = T_{initial} + ΔT\][/tex]

[tex]\[T_{final} = 21°C - 16.991°C\][/tex]

[tex]\[T_{final} \approx 4.009°C\][/tex]

Therefore, the final temperature of the water is approximately [tex]\(4.009 C\)[/tex].

The process that makes ice cubes shrink as they sit in a freezer is called:
A- Sublimation
B- Condensation
C- Freezing
D- Boiling

Answers

Freezing. When you freeze water, it becomes ice.

A student makes observations when water is added to a blue solution of copper sulfate. The student makes only 1 observation: the solution changes to a lighter shade of blue. Is this an example of a chemical reaction? Explain your reasoning.

Answers

No, I believe this is not an example of a chemical reaction. What we actually see here is a physical change of the solution. Since we are adding more water to an aqueous solution which is also made up mostly of water, what we are simply basically doing is dilution. Since the solution is being diluted, so definitely the color turned lighter.

a salt is heated, evolves water, and turns from green to white. is the salt a hydrate

Answers

Yes, the salt is a hydrate.
A salt is said to be a hydrate if its molecules is loosely attached to a specific number of water molecules. When an hydrated salt is heated, it loses the water molecules that are attached to it and this is usually accompanied by color change in the salt. This is why some hydrated salts are used as indicators; they bring about color change.

Why would gamma radiation be used in diagnostic imaging rather than alpha or beta radiation?

Answers

Gamma radiation is a very short wavelength electromagnetic emission, and can pass through soft tissue easily. Alpha and beta particles possess less energy and cannot easily pass through tissue. 
An x-ray is a 'negative' of body structure; gamma rays pass freely through soft tissue and expose the film, but gamma rays don't pass through bony structures well, leaving the film underexposed.

The four isotopes of lead are shown below, each with its percent by mass abundance and the composition of its nucleus. using these data, calculate the approximate atomic mass of lead.

Answers

The average atomic mass of lead, will be approximately 207.2 g/mol.

To calculate the approximate atomic mass of lead using the isotopic masses and their relative abundances. The atomic mass is a weighted average based on the abundances of each isotope.

Identify the element using the atomic number (number of protons).Calculate the mass number (A) of each isotope by adding the number of protons to the number of neutrons.Write the symbol of each isotope, with the mass number as a superscript and the number of protons as a subscript, to the left of the element symbol.Multiply the mass number of each isotope by its percentage abundance and then sum the products.Divide the total by 100 to find the average atomic mass.

For lead (Pb), the calculation using given isotopes would look like this:

(1.40% x 203.973) + (24.10% x 205.974) + (22.10% x 206.976) + (52.40% x 207.977)Sum of all products divided by 100 gives the approximate atomic mass.

Thus, the approximate atomic mass of Pb is 207.2 g/mol.

The complete question is:

The four isotopes of lead are shown below, each with its percent by mass abundance and the composition of its nucleus. using these data, calculate the approximate atomic mass of lead.  82p 122n 1.37% 82p 124n 26.26% 125n 20.82 82p 126n 51.55% 24 Mass # 81 37 6.

A 31.1 g wafer of pure gold, initially at 69.3 _c, is submerged into 64.2 g of water at 27.8 _c in an insulated container. what is the final temperature of both substances at thermal equilibrium?

Answers

Final answer:

The final temperature at thermal equilibrium can be calculated using the concept of conservation of energy and the specific heat capacities of gold and water.

Explanation:

To find the final temperature of the gold and water system when they reach thermal equilibrium, we need to apply the concept of conservation of energy. This concept suggests that in an isolated system, the heat lost by the hot object (the gold) will be equal to the heat gained by the cold object (the water). Since the system is at equilibrium, the heat lost is equal to the heat gained, hence the formula: Cgold × mgold × (Tinitial, gold - Tfinal) = -Cwater × mwater × (Tfinal - Tinitial, water), where Cgold and Cwater are the specific heat capacities of gold and water, T is the temperature and m is the mass.

We also need to know the specific heat capacities of gold and water. The specific heat capacity of gold is 0.129 J/g °C and for water, it's 4.18 J/g °C. Substituting those values along with the original temperatures and masses, we can solve for the final temperature, Tfinal.

Learn more about Thermal Equilibrium here:

https://brainly.com/question/29419074

#SPJ11

What is the density (g/mL) of an object that has a mass of 0.03 kg and occupies a volume of 25 mL?

Answers

First convert the kg to g ----- 0.03kg = 30g
Then divide the mass by the volume ----- 30g ÷ 25mL = 1.2
The density is 1.2g/mL

Answer : The density of an object is 1.2 g/mL

Explanation :

Density : It is defined as the mass contained per unit volume.

Formula used :

[tex]Density=\frac{Mass}{Volume}[/tex]

Given :

Mass of object = 0.03 kg = 30 g

conversion used : (1 kg = 1000 g)

Volume occupied by object = 25 mL

Now put all the given values in the above formula, we get :

[tex]Density=\frac{30g}{25mL}=1.2g/mL[/tex]

Therefore, the density of an object is 1.2 g/mL

The scattering of light by a colloidal suspension is called the

Answers

Answer: The correct answer is Tyndall effect.

Explanation:

Colloids are defined as the mixtures where the size of the particle is within the range of 2nm to 1000 nm. In these mixtures, physical boundary is seen between the dispersed phase and dispersed medium.

Tyndall effect is defined as the effect in which scattering of light takes place by the particles present in a colloid or in very fine suspension.

For Example: Scattering of sunlight by clouds

Thus, the correct answer is Tyndall effect.

The scattering of light by a colloidal suspension is known as the Tyndall effect.

What does this mean?

When a beam of light passes through a colloidal solution or a suspension, the suspended particles disperse and scatter the light.

This scattering is more pronounced when the suspended particles are larger in size compared to the wavelength of the light. The scattered light becomes visible, creating a cone or beam of light that is observable in the direction of the incident light. The Tyndall effect is often used to study and characterize colloidal systems, as it provides valuable information about particle size, concentration, and overall dispersion.

Read more about Tyndall effect. here:

https://brainly.com/question/23487849

#SPJ6

What is the most common type of climate/ecosystem found in the Congo River basin?

Answers

The answer is tropical rainforest. The congo river basis is a mosaic of rivers, forests, savannas, swamps and flooded forests.

FeCl2 Express your answers as ions separated by a comma.

Answers

The ionic compound formed from Fe3+ and Cl- is FeCl3, called iron(III) chloride. For dissociation in water, FeCl2 separates into Fe2+ and Cl-. The complete ionic equation for the reaction between FeCl2 and AgNO3 includes all ions present with AgCl precipitating out, and the net ionic equation shows just the ions involved in the formation of the precipitate.

Naming the Ionic Compound Formed from Fe3+ and Each Anion

To name the ionic compound formed from Fe3+ and an anion, you follow a set of rules. Firstly, you write the name of the cation including the charge in roman numerals enclosed in small brackets, followed by the name of the anion. For Fe3+, we use the name Iron(III), and for a chloride ion (Cl-), the name is chloride. The compound's formula is FeCl3, which is called iron(III) chloride. Remember that the subscript in the chemical formula indicates the number of anions needed to balance the charge of the cation.

Compound Dissociation in Water

To write a balanced equation for how an ionic compound like FeCl2 dissociates in water, you would represent it as follows:

FeCl2(s) -> Fe2+(aq) + 2 Cl-(aq)

This shows the separation of the ionic compound into its individual ions when dissolved in water.

Complete Ionic Equation for FeCl2 and AgNO3

The complete ionic equation for the reaction between FeCl2(aq) and AgNO3(aq), consulting solubility rules, would look like this:

Fe2+(aq) + 2 Cl-(aq) + 2 Ag+(aq) + 2 NO3-(aq) -> 2 AgCl(s) + Fe2+(aq) + 2 NO3-(aq)

Net Ionic Equation for FeCl2 and AgNO3

The net ionic equation, after removing the spectator ions, for the same reaction would be:

2 Cl-(aq) + 2 Ag+(aq) -> 2 AgCl(s)

WILL MARK BRAINLIEST FOR THE BEST ANSWER~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~

If the caffeine concentration in a particular brand of soda is 4.05 mg/oz, drinking how many cans of soda would be lethal? Assume 10.0 grams of caffeine is a lethal dose, and there are 12 oz in a can.

Please explain the steps you used.

Answers

There are 1,000 milligrams (mg) in one gram:
In 10 grams, there are 10 x 1,000 = 10,000 milligrams. This is a lethal dose of caffeine.

There are 4.05 mg/oz (milligrams/ounce) of caffeine in the soda. 
In a 12 ounce can, there are 4.05 x 12 = 48.6 milligrams.

How many sodas would it take to kill you?
To find this, we divide the lethal dose amount (10,000 mg) by the amount of caffeine per can (48.6 mg).
10,000 ÷ 48.6 = 205.76. 

Since 205 cans is not quite 10,000 mg, technically it would take 206 cans of soda to consume a lethal dose of caffeine. 

How many kilojoules of energy are released when .1.60 kg of water cools from 80.0 ºC to 60.0 ºC?

Answers

Q=mct
Q= 4.19x1.6x(60-80)

Calculate the number of Li atoms in 5.1 moles of Li

Answers

Avogadro's number is the number of atoms/particles in one mole.
5.1 mol Li * 6.022 x 10 ^23 atoms/mol = 3.07 x 10^24 Li atoms

The number of Li atoms in 5.1 moles of Li is 3.07 x 10²⁴ atoms.

What are atoms?

Atoms are defined as the smallest piece of matter that can be separated without sending electrically charged particles flying.

It can also be defined as the smallest piece that carries an element's characteristics. Subatomic particles, which make up an atom, are uncreatable.

There are various types of atoms.

DescriptionStableIsotopesRadioactive IonsAntimatter

In a chemical reaction, atoms cannot be formed or destroyed since they are indivisible units. The mass and chemical characteristics of each atom of a specific element are the same. Different elements' atoms have varying weight and chemical characteristics. Compounds are created when atoms combine in ratios of small whole numbers.

Moles of Li = 5.1 x 6.022 x 10²³

                   = 3.07 x 10²⁴ atoms.

Thus, the number of Li atoms in 5.1 moles of Li is 3.07 x 10²⁴ atoms.

To learn more about atoms, refer to the link below:

https://brainly.com/question/1566330

#SPJ2

Combustion of 25.0 g of a hydrocarbon produces 86.5 g of co2. what is the empirical formula of the compound?

Answers

Combustion is a reaction between a combustible substance and oxygen, to ultimately produce carbon dioxide and water. Reaction between carbon and oxygen would give,

                               C     +     O2      ------>  CO2

Here, we have 86.5 grams of carbon dioxide, CO2, which is a product of combustion. Dividing this mass by the molar mass of CO2, which is 44 grams, we can determine the number of moles of CO2. 

                               86.5 g CO          = 1.966 moles CO2
                            44 g CO2/ mole

Considering that CO2 is composed of 1 mole of carbon and 2 moles of oxygen, and that with complete combustion, 1 mole of carbon reacts to produces 1 mole of CO2, we can then determine the mass of the carbon in the hydrocarbon fuel. 

        1.966 moles CO2   x      1 mole C       x      12 g C     = 23.59 g C
                                             1 mole CO2          1 mole C

We were given 25.0 grams of the fuel hydrocarbon. A hydrocarbon is a substance consisting of carbon and hydrogen. To determine the mass of the hydrogen in the fuel, we simply subtract 23.59 grams from 25.0 grams. 


            25.0 g - 23.59 g = 1.41 grams Hydrogen 

To know the number of moles of hydrogen, we divide the mass of the hydrogen in the fuel by the molar mass of hydrogen, which is 1.01 g/mole. Thus, we have 1.396 mole hydrogen. 

To determine the empirical formula, we divide the number of moles carbon by the number of moles hydrogen, and find a factor that would give whole number ratios for the carbon and hydrogen in the fuel, 

Carbon:       1.966 mol      = 1.408   x   5 (factor)     = 7
                    1.396 mol

Hydrogen:    1.396 mol       = 1.00   x    5 (factor)    = 5
                     1.396 mol

Thus, the empirical formula is C7H5

       

The empirical formula of the hydrocarbon is [tex]\boxed{{{\text{C}}_7}{{\text{H}}_5}}[/tex].

Further explanation:

Empirical formula:

It is atom’s simplest positive integer ratio in the compound. It may or may not be same as that of molecular formula. For example, empirical formula of sulfur dioxide is SO.

Combustion reactions:

These are the reactions that take place when hydrocarbons are burnt in the presence of oxygen to form carbon dioxide and water. These are also referred to as burning.  

Example of combustion reactions are as follows:

(a) [tex]{\text{C}}{{\text{H}}_4}+{{\text{O}}_2}\to{\text{C}}{{\text{O}}_2}+{{\text{H}}_2}{\text{O}}[/tex]

(b) [tex]{{\text{C}}_{10}}{{\text{H}}_{14}}+12{{\text{O}}_2}\to10{\text{C}}{{\text{O}}_2}+ 4{{\text{H}}_2}{\text{O}}[/tex]

[tex]{\text{C}}{{\text{O}}_2}[/tex] is formed as a product during combustion reactions.

Step 1: [tex]{\text{C}}{{\text{O}}_2}[/tex] is formed as a product during combustion reactions. Initially, we have to calculate the moles of [tex]{\text{C}}{{\text{O}}_2}[/tex] . The formula to calculate moles of [tex]{\text{C}}{{\text{O}}_2}[/tex] is as follows:

[tex]{\text{Moles of C}}{{\text{O}}_2}=\dfrac{{{\text{Given mass of C}}{{\text{O}}_2}}}{{{\text{Molar mass of C}}{{\text{O}}_2}}}[/tex]          ...... (1)

The given mass of [tex]{\text{C}}{{\text{O}}_2}[/tex] is 86.5 g.

The molar mass of [tex]{\text{C}}{{\text{O}}_2}[/tex] is 44 g/mol.

Substitute these values in equation (1).

[tex]\begin{aligned}{\text{Moles of C}}{{\text{O}}_2}&=\left( {{\text{86}}{\text{.5 g}}} \right)\left( {\frac{{{\text{1 mol}}}}{{{\text{44 g}}}}} \right)\\&={\text{1}}{\text{.9659 mol}}\\ &\approx{\text{1}}{\text{.966 mol}}\\\end{aligned}[/tex]

Step 2: During combustion, one mole of carbon reacts to form one mole of  [tex]{\text{C}}{{\text{O}}_2}[/tex] .So the mass of C in the hydrocarbon is calculated as follows:

[tex]{\text{Mass of C}}=\left( {{\text{Moles of C}}{{\text{O}}_{\text{2}}}}\right)\left( {\dfrac{{{\text{Moles of C}}}}{{{\text{Moles of C}{{\text{O}}_{\text{2}}}}}}\right)\left( {{\text{Molar mass of C}}}\right)[/tex]      ...... (2)

The moles of [tex]{\text{C}}{{\text{O}}_2}[/tex] is 1.966 mol.

The molar mass of C is 12 g/mol.

The mole of C is 1 mol.

The moles of [tex]{\text{C}}{{\text{O}}_2}[/tex] is 1 mol.

Substitute these values in equation (2).

[tex]\begin{aligned}{\text{Mass of C}}&=\left( {{\text{1}}{\text{.966 mol}}} \right)\left( {\frac{{{\text{1 mol of C}}}}{{{\text{1 mol of C}}{{\text{O}}_{\text{2}}}}}} \right)\left( {\frac{{{\text{12 g}}}}{{{\text{1 mol}}}}} \right)\\&= {\text{23}}{\text{.592 g}}\\&\approx{\text{23}}{\text{.59 g}}\\\end{aligned}\\[/tex]

Step 3: Since the hydrocarbon consists of only carbon and hydrogen. The mass of hydrogen is calculated as follows:

[tex]{\text{Mass of H}}={\text{Mass of hydrocarbon}}-{\text{Mass of C}}[/tex]      ...... (3)

The mass of hydrocarbon is 25 g.

The mass of carbon is 23.59 g.

Substitute these values in equation (3).

[tex]\begin{aligned}{\text{Mass of H}}&={\text{25 g}}-{\text{23}}{\text{.59 g}}\\&= {\text{1}}{\text{.41 g}}\\\end{aligned}[/tex]

The formula to calculate moles of H is as follows:[tex]{\text{Moles of H}}=\dfrac{{{\text{Given mass of H}}}}{{{\text{Molar mass of H}}}}[/tex]      ...... (4)

The given mass of H is 1.41 g.

The molar mass of H is 1.01 g/mol.

Substitute these values in equation (4).

[tex]\begin{aligned}{\text{Moles of H}}&=\left({{\text{1}}{\text{.41 g}}}\right)\left( {\frac{{{\text{1 mol}}}}{{{\text{1}}{\text{.01 g}}}}}\right)\\&={\text{1}}{\text{.396 mol}}\\ \end{aligned}[/tex]

The moles of carbon and hydrogen present in hydrocarbon are to be written with their corresponding subscripts. So the preliminary formula becomes,

[tex]{\text{Preliminary formula of hydrocarbon}}={{\text{C}}_{1.966}}{{\text{H}}_{1.396}}[/tex]

Step 4: Each of the subscripts is divided by the smallest subscript to get the empirical formula. In this case, the smallest one is 1.39. So the empirical formula of hydrocarbon is written as follows:

[tex]\begin{aligned}{\text{Empirical formula of hydrocarbon}}&={{\text{C}}_{\dfrac{{1.966}}{{1.396}}}}{{\text{H}}_{\dfrac{{1.396}}{{1.396}}}}\\&= {{\text{C}}_{1.408}}{{\text{H}}_1}\\\end{aligned}[/tex]

Step 5: Multiply each subscript of the empirical formula by 5, we get the final empirical formula as follows:

[tex]\begin{aligned}{\text{Empirical formula of hydrocarbon}}&={{\text{C}}_{5\left( {1.408} \right)}}{{\text{H}}_{5\left( 1 \right)}}\\&={{\text{C}}_7}{{\text{H}}_5}\\\end{aligned}[/tex]

Therefore, the empirical formula of hydrocarbon is [tex]{{\mathbf{C}}_{\mathbf{7}}}{{\mathbf{H}}_{\mathbf{5}}}[/tex] .

Learn more:

1. Calculate the moles of ions in the solution: https://brainly.com/question/5950133

2. Calculate the moles of chlorine in 8 moles of carbon tetrachloride: https://brainly.com/question/3064603

Answer details:

Grade: Senior School

Subject: Chemistry

Chapter: Stoichiometry of formulas and equations

Keywords: empirical formula, C, H, C7H5, moles of CO2, C, H, 5, preliminary formula, whole number.

The pH of a vinegar solution is 4.15. What is the H+ concentration of the solution

Answers

The pH of a vinegar solution is 4.15. To find the H+ concentration of the solution use the following equation -log(H+)=pH. Insert the pH into the equation to get, -log(H+) = 4.15 Rearrange the equation to get, 10^(-4.15) = H+ Finally, you can solve for H+. The hydrogen ion concentration of the vinegar solution is .0000708 M.

The [tex]{{\text{H}}^+}[/tex] concentration of vinegar solution is [tex]\boxed{{\text{0}}{\text{.0000708 M}}}[/tex]

Further Explanation:

An acid is a substance that has the ability to donate [tex]{{\mathbf{H}}^{\mathbf{+}}}[/tex]ions or can accept electrons from the electron-rich species. The general dissociation reaction of acid is as follows:

[tex]{\text{HA}}\to{{\text{H}}^+}+{{\text{A}}^-}[/tex]

Here, HA is an acid.

The acidic strength of an acid can be determined by pH value. The negative logarithm of hydronium ion concentration is defined as pH of the solution. Lower the pH value of an acid, the stronger will be the acid. Acidic solutions are likely to have pH less than 7. Basic or alkaline solutions have pH more than 7. Neutral solutions have pH equal to 7.

Vinegar contains acetic acid [tex]\left({{\text{C}}{{\text{H}}_3}{\text{COOH}}}\right)[/tex], water and some traces of other chemicals and flavors.

The formula to calculate pH is as follows:

[tex]{\text{pH}}=-{\text{log}}\left[{{{\text{H}}^+}}\right][/tex]                                   …… (1)

Here,

[tex]\left[{{{\text{H}}^+}}\right][/tex] is hydrogen ion concentration.

On rearranging equation (1), we get:

[tex]\left[{{{\text{H}}^+}}\right]={10^{-{\text{pH}}}}[/tex]                                           …… (2)

The pH of vinegar is 4.15.

Substitute 4.15 for pH in equation (2)

[tex]\begin{gathered}\left[{{{\text{H}}^+}}\right]={10^{-4.15}}\\=0.0000707946\\\approx0.0000708\;{\text{M}}\\\end{gathered}[/tex]

So the concentration of [tex]{{\mathbf{H}}^{\mathbf{+}}}[/tex] ion in vinegar is 0.0000708 M.

Learn more:

1. The reason for the acidity of water https://brainly.com/question/1550328

2. Reason for the acidic and basic nature of amino acid. https://brainly.com/question/5050077

Answer details:

Grade: High School

Subject: Chemistry

Chapter: Acid, base and salts.

Keywords: pH, neutral, acidic, basic, alkaline, 4.15, vinegar, acetic acid, water, chemicals, negative logarithm, H+, 0.0000708 M, pH more than 7, pH less than 7, pH equal to 7.

How many chloride ions are present in 0.100 mol of MgCl2

Answers

To identify the amount of chloride ions present in 0.1 mol of MgCl2, first know the amount of mols of Chloride. The answer is 0.2 mol since you just need to multiply 0.1 to 2 because there are 2 chloride in the compound. Then, multiply the mols to 6.02x10^23. The answer would be 1.204x10^23 chloride ions. 

Answer : The number of chloride ions present in 0.100 mole of [tex]MgCl_2[/tex] are, [tex]1.2044\times 10^{23}[/tex]

Explanation : Given,

Moles of [tex]MgCl_2[/tex] = 0.100 mole

As we know that, 1 mole contains [tex]6.022\times 10^{23}[/tex] number of ions.

In [tex]MgCl_2[/tex], there are one magnesium ion and two chloride ions.

As, 1 mole [tex]MgCl_2[/tex] contains [tex]2\times (6.022\times 10^{23})[/tex] number of chloride ions.

So, 0.100 mole [tex]MgCl_2[/tex] contains [tex]0.100\times 2\times (6.022\times 10^{23})=1.2044\times 10^{23}[/tex] number of chloride ions.

Therefore, the number of chloride ions present in 0.100 mole of [tex]MgCl_2[/tex] are, [tex]1.2044\times 10^{23}[/tex]

Other Questions
What is a polynomial with a single root at x = -8 and a double root at x = -2? Typographic errors in a text are either nonword errors (as when "the" is typed as "teh") or word errors that result in a real but incorrect word. Spell-checking software will catch nonword errors but not word errors. Human proofreaders catch 70% of word errors. You ask a fellow student to proofread an essay in which you have deliberately made 10 word errors. What is the smallest number of misses m with P(X m) no larger than 0.05? You might consider m or more misses as evidence that a proofreader actually catches fewer than 70% of word errors. How many binary digits does it take to represent the decimal number 2013? If there are three nucleotides coding for each amino acid and there are 20 amino acids, are there just 20 specific codons? if not how many are there? find value of m=30 and n=18. m-n3=8 Decide which of the two points on the graph of the lineX=0A. 0,7B. -4,0 Each stste believed they had the right to decide whether to obey a federal law or declare it null and void A young investor would be best served by which kind of portfolio? A. Diverse & aggressive B. Diverse & conservative C. Uniform & aggressive D. Uniform & conservative Economics - Financial Markets A student had to multiply 328 x 41. The students answer was 4,598. Use estimation to explain why this answer is not reasonable A ball is thrown straight up from the ground with an unknown velocity. It reaches its highest point after 3.5 s. With what velocity did it leave the ground? 1. explain how judicial review works as a check against congress. answer: 2. what are some roles that the president plays in the u.s. government? answer: 3. what is the civil service and how do people join? answer: 4. what is the president's cabinet and what is their responsibility? how did the improvements to railroads affect the economy and transportation in the U.S Which is NOT equivalent to 6/8? A.3/4 B.18/24 C.9/12 D.18/16 An adolescent is diagnosed with iron deficiency anemia. after emphasizing the importance of consuming dietary iron, the nurse asks him to select iron-rich breakfast items from a sample menu. which selection demonstrates knowledge of dietary iron sources? which of the following was a factor in improving the conditions of the road in Oklahoma during the 1900s ? (Choose all that apply)A The government wanted to compete with the railroad industry.B Transporting equipment to oil fieldsC Increasing the population of the states D The expanding use of the automobile During Aristotle's time, the characters of tragedy were typically of noble background, while comedy's characters could best be described as _____. smart Of all numbers whose difference is 4, find the two that have the minimum product. What is the answer to this? I dont Help me please 2. You learn from your science teacher that water expands when you freeze it. The next time that you freeze your water bottle, you leave room for the water to expand so that the bottle does not crack. What kind of reasoning did you use? inductive reasoning deductive reasoning algebraic reasoning direct reasoning I think the answer is b Which kind of tumor grows slowly and is surrounded by membranes that prevent it from spreading from the original site?a. benignb. metastasisc. malignant Steam Workshop Downloader