You mix 55 ml of 1.00 m silver nitrate with 25 ml of 1.06 m sodium chloride. what mass of silver chloride should you form?

Answers

Answer 1
Final answer:

In the chemical reaction between silver nitrate and sodium chloride, the limiting reactant is sodium chloride. It reacts completely to form 3.79g of silver chloride.

Explanation:

This question is about a chemical reaction between silver nitrate (AgNO₃) and sodium chloride (NaCl) to form silver chloride (AgCl) and sodium nitrate (NaNO₃). This is a double displacement reaction where Ag+ ions from AgNO₃ combine with Cl- ions from NaCl to produce AgCl.

Firstly, we need to consider the reaction stoichiometry as AgNO₃ + NaCl ----> AgCl + NaNO₃. This shows that one mole of silver nitrate reacts with one mole of sodium chloride to form one mole of silver chloride and one mole of sodium nitrate. Therefore, the reaction is a one-to-one ratio. Secondly, the number of moles of each reactant must be determined. Moles is given by volume in liters multiplied by concentration in mol/L. Hence, moles of AgNO₃ = 0.055 L * 1.00 mol/L = 0.055 mol and moles of NaCl = 0.025 L * 1.06 mol/L = 0.0265 mol.

As we see, NaCl is the limiting reactant, i.e., it will completely react and determine the amount of product formed. Therefore, the moles of AgCl formed will be 0.0265 mol. The mass of AgCl formed can be calculated from its molar mass (143.32 g/mol) by multiplying with the moles. Hence, mass of AgCl = 0.0265 mol * 143.32 g/mol = 3.79g.


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Answer 2

Mixing 55 ml of 1.00 M silver nitrate with 25 ml of 1.06 M sodium chloride results in the formation of 3.80 grams of silver chloride. Sodium chloride is the limiting reactant, and the calculation involves determining moles and using the balanced chemical equation. The molar masses are then used to find the mass of the product formed.

Step-by-Step Explanation:

1. The balanced chemical equation for the reaction between silver nitrate ([tex]AgNO_3[/tex]) and sodium chloride (NaCl) is:
[tex]AgNO_3 (aq) + NaCl (aq) \rightarrow AgCl (s) + NaNO_3 (aq)[/tex]

2. First, calculate moles of each reactant:
Moles of [tex]AgNO_3[/tex]= Volume (L) × Molarity (mol/L) = 0.055 L × 1.00 mol/L = 0.055 mol
Moles of NaCl = Volume (L) × Molarity (mol/L) = 0.025 L × 1.06 mol/L = 0.0265 mol

3. Identify the limiting reactant by comparing the mole ratio of reactants:
From the balanced equation, the mole ratio of AgNO3 to NaCl is 1:1.

Since 0.055 mol of [tex]AgNO_3[/tex]> 0.0265 mol of NaCl, NaCl is the limiting reactant.

4. Calculate moles of AgCl produced:
From the balanced equation, moles of AgCl formed are equal to moles of NaCl (limiting reagent).
Moles of AgCl = 0.0265 mol

5. Convert moles of AgCl to mass:
Mass = Moles × Molar Mass
Molar Mass of AgCl = 107.87 g/mol (Ag) + 35.45 g/mol (Cl) = 143.32 g/mol
Mass of AgCl = 0.0265 mol × 143.32 g/mol = 3.80 g

Therefore, the mass of silver chloride formed is 3.80 grams.


Related Questions

How many significant figures are in the measurement 811.40 grams?

Answers

Answer:

There is 5 significant figures in 811.40 grams

Explanation:

The significant figures are units that can be taking into account to write a figure.

Exists two general rules for it:

1. The numbers including zero (0) that are to the right  of the figure are counted as a significant figure example: 345.60 has 5 significant figures

2. The zero (0) that are to the left of the figure are NOT counted as a significant figure example: 0.005 has 1 significant figure

The significant figures are in the measurement 811.40 grams is five.

Significant figures are the digits in a measurement that carry meaningful information and contribute to its precision. Here's how to determine the number of significant figures in 811.40 grams:

All nonzero digits are always considered significant. In this case, the digits 8, 1, and 1 are all nonzero, so they are significant.

Any zeros between nonzero digits are also significant. Here, the zero between the 1s is significant.

Leading zeros (zeros to the left of the first nonzero digit) are not significant. In this measurement, there are no leading zeros.

Trailing zeros (zeros to the right of nonzero digits) are significant when they are after a decimal point. In this case, there are two trailing zeros after the 4, and they are significant because they are after the decimal point.

So, the significant figures in the measurement 811.40 grams are five: 8, 1, 1, 4, and 0.

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Which could make up a solution?

Check all that apply.

A. A gas in a liquid
B. Two gases
C. Two solids
D. A solid in a liquid

Answers

its C. Two solids
 I'm pretty sure its c because then you have to melt the solid

The formula for common table salt is nacl. what elements are in table salt? use the periodic table (given in last lesson) if necessary.

Answers

Table salt has sodium and chlorine. Na is sodium and Cl is chlorine.

Final answer:

Table salt, or sodium chloride (NaCl), is made up of sodium and chlorine elements in a 1:1 ratio, forming an ionic compound that is stable and mostly unreactive unlike its individual reactive elements.

Explanation:

The formula for common table salt is NaCl, indicating that table salt is composed of two elements: sodium and chlorine. These elements react to form sodium chloride, the chemical name for table salt. This compound is an ionic compound, meaning it is made of sodium ions (Na+) and chloride ions (Cl-), which are held together by ionic bonds. The reaction to form table salt is highly exothermic, releasing a significant amount of light and heat. The resulting compound has a formula mass of 58.44 amu, illustrating its stable, ionic structure in a 1:1 ratio of sodium to chloride ions. This stability is what makes table salt a mostly unreactive compound, unlike its highly reactive constituent elements, sodium, a very reactive metal, and chlorine, a corrosive gas.

A certain shade of blue has a frequency of 7.26 × 1014 Hz. What is the energy of exactly one photon of this light?

Answers

Answer:

Energy of one photon = [tex]4.81\times 10^{-19}J[/tex]

Explanation:

Frequency = [tex]7.26\times 10^{14}\ Hz[/tex]

Energy of a photon is given by:

E = hν

Where,

h = Plank's constant

ν = Frequency

h = [tex]6.626\times 10^{-34}J\ s[/tex]

ν = [tex]7.26\times 10^{14}\ Hz\ or\ 7.26\times 10^{14}\ s^{-1}[/tex]

E = hν

   [tex]=(6.626\times 10^{-34}Js)\times (7.26\times 10^{14}\ s^{-1})\\=4.81\times 10^{-19}J[/tex]

Energy of one photon = [tex]4.81\times 10^{-19}J[/tex]

Final answer:

The energy of a photon of blue light with a frequency of 7.26 × 10¹⁴ Hz is approximately 4.81 × 10⁻¹⁹ joules, calculated using Planck's formula E = hf.

Explanation:

The energy of exactly one photon of light with a frequency of 7.26 × 10¹⁴ Hz can be calculated using the formula E = hf, where E is the energy in joules, h is Planck's constant (6.626 × 10⁻³⁴ J·s), and f is the frequency in hertz. Substituting the given values into the formula:

E = (6.626 × 10⁻³⁴ J·s) × (7.26 × 10¹⁴ Hz)

This results in an energy of 4.81 × 10⁻¹⁹ J per photon. Thus, a blue photon with a frequency of 7.26 × 10¹⁴ Hz has an energy of approximately 4.81 × 10⁻¹⁹ joules.

Why might the amount of copper produced be less than 100% of the expected amount? Check all possible reasons.

There are impurities in the substances.

The reaction might not go to completion.

The amount of one of the reactants might be measured incorrectly.

The molar ratio may not be correct.

The expected amount might be based on measurements with error.

Answers

the first one the third one and the fifth one hope this helped

Answer:

The answers are options 1, 2, 3, and 5.

Explanation:

Hello!

Let's solve this!

When an experiment is carried out and less product is obtained, it may be because:

There are impurities in the substances.

The reaction might not go to completion.

The amount of one of the reactants might be measured incorrectly.

The expected amount might be based on measurements with error.

We conclude that the answers are options 1, 2, 3, and 5.

I don’t understand this, can you help me?

Answers

An atom becomes stable if it has a full and complete ring. 2 of the choices are wrong off the start because you can't gain electrons and have a net positive charge, nor can you lose electrons and have a net negative charge. That leaves us with Option A or D. As I said earlier, an atom becomes stable if it has a full and complete ring. Obviously, if you lose 3 electrons from the last ring, the atom would be stable (because the 2nd ring is now full), and it also would have a net positive charge because it lost electrons.

I REALLY NEED HELP

Question 1 (1 point) Question 1 Unsaved

Orbitals are defined by which of the following?
Question 1 options:

number of electrons

spin direction

energy level

composition
Save
Question 2 (1 point) Question 2 Unsaved

An atom has 14 protons and 14 neutrons. What is the chemical symbol for the atom? Consult the periodic table.
Question 2 options:

Al

Cr

Mg

Si
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Question 3 (1 point) Question 3 Unsaved

An atom has an average atomic mass of about 63.5 amu. What is the chemical symbol for the atom? Consult the periodic table.
Question 3 options:

Pb

Cu

Eu

Fe
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Question 4 (1 point) Question 4 Unsaved

An atom has a charge of –3 in its orbitals. Which statement must be true in order for this atom to have no net charge?

Question 4 options:

There are three neutral neutrons in the nucleus.

There are three positively charged protons in the nucleus.

There are two positively charged protons in the nucleus and one in an orbital.

There are three positively charged protons outside the nucleus.
Save
Question 5 (1 point) Question 5 Unsaved

The number of protons in the nucleus of an atom is equivalent to which of the following?
Question 5 options:

mass number

atomic weight

atomic number

number of neutrons
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Question 6 (1 point) Question 6 Unsaved

You heat two substances, A and B. Both substances change color. When cooled, substance A returns to its original color, but substance B does not. What most likely happened?
Question 6 options:

A chemical change occurred in both substances.

A chemical change occurred in substance A, and a physical change occurred in substance B.

A physical change occurred in both substances.

A physical change occurred in substance A, and a chemical change occurred in substance B.
Save
Question 7 (1 point) Question 7 Unsaved

A material has a density of 8.9 g/cm3. You have six cubic centimeters of the substance. What is the material's mass in grams?

Question 7 options:

5.9 g


107 g


3.0 g


53 g

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Question 8 (1 point) Question 8 Unsaved

Which of the following describes an element?
Question 8 options:

C2H6


H2O2


CuSO4


CI2

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Question 9 (1 point) Question 9 Unsaved

Which of the following goes on the x-axis of a graph?

Question 9 options:

trend line

independent variable values


graph title

dependent variable values
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Question 10 (1 point) Question 10 Unsaved

A container has the dimensions of 30 cm x 50 mm x 0.2 m. The density of its contents is 2.5 g/cm 3. What is the mass of the substance in kilograms? ( D = m/V)
Question 10 options:

150 kg

75 kg

0.75 kg

7.5 kg
Save

Answers

1. number of electrons
2.Si
3.Cu
4.There are three positively charged proton in the nucleus
5.mass number
6. A physical substance occur in A and a chemical change occur in B
7.53
8. dont know what you talking about.sorry
9. Independent variable
10.7.5g
This is an answer I can come up with.

The balanced equation for combustion in an acetylene torch is shown below: 2C2H2 + 5O2 → 4CO2 + 2H2O The acetylene tank contains 35.0 mol C2H2, and the oxygen tank contains 84.0 mol O2. How many moles of CO2 are produced when 35.0 mol C2H2 react completely?

Answers

Final answer:

When 35.0 mol of C2H2 react completely according to the given equation, 70.0 mol of CO2 will be produced.

Explanation:

The student asked about the amount of CO2 produced when 35.0 mol C2H2 reacts completely, according to the balanced chemical equation provided for the combustion of acetylene (C2H2) in an acetylene torch: 2C2H2 + 5O2 → 4CO2 + 2H2O.

To find the amount of CO2 produced, we apply stoichiometry using the balanced equation. According to the equation, 2 moles of C2H2 produce 4 moles of CO2. Therefore, if 35.0 mol C2H2 react completely, the amount of CO2 produced can be calculated by setting up a ratio:

(35.0 mol C2H2) × (4 mol CO2 / 2 mol C2H2) = 70.0 mol CO2

Thus, 35.0 mol of C2H2 will produce 70.0 mol of CO2 when they react completely.

Magnified we see that the carbon atom _______ in place. flashcard

Answers

Magnified we see that the carbon atom VIBRATE in place.
When microscope is used to view the carbon atom at the atomic level, it was discovered that the atom vibrate in place. Each individual atom is spherical and have fuzzed edges.

Whether calculating speed or acceleration, this data is required
a. velocity
b.time
c.acceleration
d.deceleration

Answers

the awncer is B. Time                

What was Johann Dobereiner's contribution to the development of the periodic table?

Answers

He identified triads of elements that had similar properties.

Please Help :((
What is the resulting formula unit when strontium (Sr) and phosphorus (P) bond?

Answers

The resulting formula would be Sr3P2

Answer: The chemical formula of the compound is [tex]Sr_3P_2[/tex]

Explanation:

Strontium is the 38th element of the periodic table. The electronic configuration of this element is [tex][Kr]5s^2[/tex]

This element will loose 2 electrons to attain stable electronic configuration to attain +2 oxidation state.

Phosphorus is the 15th element of the periodic table. The electronic configuration of this element is [tex]1s^22s^22p^63s^22p^3[/tex]

This element requires 3 electron to attain stable electronic configuration to attain -3 oxidation state.

So, by criss-cross method, the oxidation state of the ions are exchanged and they form the subscripts of the other ions. This results in the formation of a neutral compound.

Hence, the chemical formula of the compound is [tex]Sr_3P_2[/tex]

Human activities can accelerate the process of

A) physical weathering
B) chemical weathering
C) both

Answers

I believe the answer is C) both

Hope this helps
Final answer:

Human activities can indeed accelerate the process of both physical and chemical weathering. Option C) is the correct answer.

Explanation:

Physical weathering involves the degradation of rock through physical processes, such as freeze-thaw cycles or abrasion. Chemical weathering, on the other hand, involves the decomposition of rock through chemical reactions, such as oxidation and hydration.

Human activities, such as deforestation, mining, and construction, can accelerate these processes. For instance, the removal of trees (deforestation) can lead to more intense freeze-thaw cycles, accelerating physical weathering. Mining, meanwhile, exposes more rock to air and water, facilitating chemical reactions and thus speeding up chemical weathering.

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A nuclear waste site. cesium-137 is a particularly dangerous by-product of nuclear reactors. it has a half-life of 30 years. it can be readily absorbed into the food chain and is one of the materials that would be stored in the proposed waste site at yucca mountain (see the article opening this section). suppose we place 3000 grams of cesium-137 in a nuclear waste site.how much cesium-137 will be present after 60 years, or two half-lives?

Answers

The mass decay rate is of the form
[tex]m(t) = m_{0} e^{-kt}[/tex]
where
m₀ = 3000 g,the initial mass
k = the decay constant
t = time, years.

Because the half-life is 30 years, therefore
[tex]e^{-30k} = \frac{1}{2} \\\ -30k = ln(0.5) \\ k = \frac{ln(0.5)}{-30} =0.0231[/tex]

After 60 years, the mass remaining is
[tex]m = 3000 e^{-0.0231*60} = 750 \, g[/tex]

Answer: 750 g

Which element has six energy levels

Answers

The elements in the carbon family all will have four valence electrons, the elements in the nitrogen family will have five, the elements in the oxygen family will have six, the halogens will have seven valence electrons and aside from helium, the elements in the last column - the noble gases - will all have eight 

You live 15.0 miles away from a shopping center and wish to calculate the distance in feet. There are 5280 ft in one mile

Answers

79,200 feet.
Just multiply the total miles times the amount of feet in a single mile.
15 X 5280 ft= 79,200 feet

What is a mineral phase change?
a. when a mineral melts from a solid state to a liquid state
b. the exterior of a mineral weathers and changes color
c. a mineral changes density because of the addition of water
d. atoms in a mineral are rearranged into a more stable and denser structure?

Answers

A mineral phase change involves the action of a mineral changing physical form. This can involve changing from a solid to a liquid, changing in to a gas form, etc. This phenomenon may sometimes be referred to as metamorphism.

A compound consists of 4.50 g of nitrogen for every 7.71 g of oxygen and has the same empirical and molecular formula identify the compound

Answers

The compund of N2O3 has the same empirical and molecular formula when the compund consist of 4.5g of nitrogen for every 7.71 grams of oxygen.

Answer:

[tex]N_2O_{3}[/tex]

Explanation:

Hi, the empirical formula is the minimal expression of the molecule composition and doesn't always represent the molecule in the reality.

On the other hand the molecular formula is a multiple of the empirical and represents how the molecule is composed in reality.

In this case they are the same.

Now, nitrogen has an atomic weight of 14 g/mol and oxygen one of 16 g/mol:

[tex]n_{nitrogen}=\frac{4.5g}{14g/mol}[/tex]

[tex]n_{nitrogen}= 0.321mol[/tex]

[tex]n_{oxygen}=\frac{7.715g}{16g/mol}[/tex]

[tex]n_{oxygen}= 0.482mol[/tex]

So the formula would be:

[tex]N_{0.321}O_{0.482}[/tex]

Dividing per 0.321:

[tex]NO_{1.5}[/tex]

In natural numbers:

[tex]N_2O_{3}[/tex]

what mass of magnesium would combine with exactly 16.0 grams of oxygen

Answers

1.65g MgO = 1g Mg
1.65 - 1 = 0.65 g of O in MgO

solve it using proportion:
1g Mg / 0.65g O = x (g) Mg / 16g O
or 1 / 0.65 = x / 16

24.6 g is the answer.

if 1 gram of oxygen requires 1.65 grams of Mg
then 16 grams of oxygen will require 16 ( 1.65) or 26.4 grams.

Final answer:

The mass of magnesium that would combine with 16.0 grams of oxygen is 12.16 grams.

Explanation:

The balanced chemical equation for the reaction between magnesium and oxygen is:

2Mg + O2 → 2MgO

From the equation, we can see that 2 moles of magnesium combine with 1 mole of oxygen to form 2 moles of magnesium oxide. The molar mass of magnesium is 24.31 g/mol, and the molar mass of oxygen is 16.00 g/mol.

To find the mass of magnesium that would combine with 16.0 grams of oxygen, we first convert the mass of oxygen to moles using its molar mass:

16.0 g O2 ÷ 16.00 g/mol = 1.00 mol O2

Since the magnesium-to-oxygen molar ratio is 2:1, there will be half the number of moles of magnesium as there are moles of oxygen:

1.00 mol O2 × (1 mol Mg ÷ 2 mol O2) = 0.50 mol Mg

Finally, we can find the mass of magnesium using its molar mass:

0.50 mol Mg × 24.31 g/mol = 12.16 grams of magnesium

Which subatomic particle did james chadwick discover? compare its mass to that of a proton. presi?

Answers

The subatomic particle James Chadwick discover is no other than NEUTRON. Neutron is a subatomic particle discovered by James Chadwick, its symbol n or n0 and it has no net electric charge. When we compare its mass to that of proton, the neutrons mass is slightly greater than the proton. 

In a solution the solute is the substance present in the greatest amount true or false

Answers

Solute is something that is being dissolved { ex : sugar , salt} 

Solvent is something that has ability to dissolve things { ex : water}

False because the solvent is present in larger amounts...

Answer: False

Explanation:

Binary Solution is a homogeneous mixture of two components called as solute and solvent.

Solute is the component which is present in smaller proportion and is solid for solid in liquid solution and solvent is the component which is present in larger proportion and is liquid for solid in liquid solution.

For example: NaCl in water will have NaCl as solute and will be lesser in amount and water will be solvent and will be greater in amount.

Thus the statement that in a solution the solute is the substance present in the greatest amount is false.

A 1.25-g sample contains some of the very reactive compound Al(C6H5)3. On treating the compound with aqueous HCl, 0.951 g of C6H6 is obtained.
Al(C6H5)3(s) + 3HCl(aq) --> AlCl3(aq) + 3C6H6(l)
Assuming that Al(C6H5)3 was converted completely to products, what is the weight percent of Al(C6H5)3 in original 1.25-g sample?

Answers

83.9% First, determine the molar masses of Al(C6H5)3 and C6H6. Start by looking up the atomic weights of the involved elements. Atomic weight aluminum = 26.981539 Atomic weight carbon = 12.0107 Atomic weight hydrogen = 1.00794 Molar mass Al(C6H5)3 = 26.981539 + 18 * 12.0107 + 15 * 1.00794 = 258.293239 g/mol Molar mass C6H6 = 6 * 12.0107 + 6 * 1.00794 = 78.11184 g/mol Now determine how many moles of C6H6 was produced Moles C6H6 = 0.951 g / 78.11184 g/mol = 0.012174851 mol Looking at the balanced equation, it indicates that 1 mole of Al(C6H5)3 is required for every 3 moles of C6H6 produced. So given the number of moles of C6H6 you have, determine the number of moles of Al(C6H5)3 that was required. 0.012174851 mol / 3 = 0.004058284 mol Then multiply by the molar mass to get the number of grams that was originally present. 0.004058284 mol * 258.293239 g/mol = 1.048227218 g Finally, the weight percent is simply the mass of the reactant divided by the total mass of the sample. So 1.048227218 g / 1.25 g = 0.838581775 = 83.8581775% And of course, round to 3 significant digits, giving 83.9%

By using the reaction and given data, we find that the 1.25 g sample contains approximately 83.9% Al(C₆H₅)₃.

The primary calculations involve moles and molecular weight to determine the mass percentage.

The result shows a high concentration of Al(C₆H₅)₃ in the sample.

To determine the weight percent of Al(C₆H₅)₃ in the original 1.25-g sample, we need to work step-by-step through the given reaction:

Al(C₆H₅)₃ (s) + 3HCl(aq) → AlCl₃(aq) + 3C₆H₆(l)

Given that 0.951 g of benzene (C₆H₆) is produced, we can use this information to find the moles of Al(C₆H₅)₃ reacted:

Molecular weight of C₆H₆ = 12(6) + 1(6) = 78 g/mol.Moles of C₆H₆ = 0.951 g / 78 g/mol = 0.0122 mol.From the balanced equation, 1 mol of Al(C₆H₅)₃ produces 3 mol of C₆H₆.So, moles of Al(C₆H₅)₃ = 0.0122 mol / 3 = 0.00407 mol.

Next, we calculate the mass of Al(C₆H₅)₃:

Molecular weight of Al(C₆H₅)₃ = 27 (Al) + 3 × (12(6) + 1(5)) (C₆H₅ each) = 27 + 3 × 77 = 258 g/mol.Mass of Al(C₆H₅)₃ = 0.00407 mol × 258 g/mol = 1.049 g.

Finally, we calculate the weight percent of Al(C₆H₅)₃ in the original sample:

Weight percent = (1.049 g / 1.25 g) × 100% ≈ 83.9%

Therefore, the weight percent of Al(C₆H₅)₃ in the original 1.25-g sample is approximately 83.9%.

Correct question is: A 1.25-g sample contains some of the very reactive compound Al(C₆H₅)₃ .On treating the compound with aqueous HCl, 0.951 g of C6H6 is obtained.
Al(C₆H₅)₃ (s) + 3HCl(aq) --> AlCl₃(aq) + 3C₆H₆(l)
Assuming that Al(C₆H₅)₃ was converted completely to products, what is the weight percent of Al(C₆H₅)₃ in original 1.25-g sample?

Identify the compound with the highest standard free energy of formation. identify the compound with the highest standard free energy of formation. no(g)

Answers

The compound with the highest standard free energy of formation is O3(g)


Final answer:

The standard free energy of formation of nitric oxide (NO(g)) is 86.55 kJ/mol at 25 degrees Celsius. This refers to the energy change during the formation of one mole of the compound from its elements in their standard states. However, different compounds might have higher or lower values depending on various conditions.

Explanation:

The standard free energy of formation, or ΔGo°f, refers to the change in energy that occurs when one mole of a compound is formed from its elements in their most stable states at standard conditions (1 atm and 25 °C). It is zero for elemental substances in their standard states.

Nitric oxide (NO) in its gaseous form, specifically, has a ΔGo°f of 86.55 kJ/mol at 25 °C. This value may vary based on the temperature and other conditions of the reaction.

It's important to note that even though NO(g) has a high standard free energy of formation, it doesn't imply that NO(g) is the compound with the 'highest' ΔGo°f across all compounds. The ΔGo°f of a compound would depend on the complexity of the molecule, its elemental composition, and other factors. Therefore the ΔGo°f of different compounds can be looked up in tables in chemical reference books or databases.

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According to the vsepr theory, which shape represents the molecule, cf4?

Answers

VSEPR is an acronym which stands for Valence Shell Electron Pair Repulsion. The theory is most commonly used as basis for establishing the shapes of the substances. 

CF4, as can be seen, has only one carbon atom and four fluorine atoms. The most preferred shape of the chemical is therefore, tetrahedral. 

When preparing a buret for use in lab the buret must always be cleaned thoroughly prior to being filled with solution what is burette rinsed with?

Answers

it is rinsed with ionised water to remove any impurities that may be present

A mixture of helium, neon and argon gases have a total pressure of 790 mmhg. if there is 118.5 mmhg of argon, 474 mmhg of helium, what is the partial pressure of the neon gas?

Answers

The total pressure of a mix of gasses in a certain volume equals the total of the partial pressures of the individual gasses added together. Algebraically. Total(790) = argon(118.5) + helium(474) + neon(unknown) neon = Total - argon - helium neon = 790 - 474 - 118.5 neon = 197.5 mmhg

When two atoms collide, what determines whether they will react by transferring electrons or by sharing electrons?

Answers

If it is an ionic bond (metal with nonmetal) the electrons will be transferred. If it is a covalent bond (nonmetal with nonmetal) the electrons will be shared. It depends on the electronegativities; the closer the electronegativities of the two atoms, the more covalent the bond is, making the electrons more equally shared. But if the electronegativities are very different, one atom (the nonmetal) will pull the electrons from the other (the metal).

Answer:

Explanation:

The covalent bond is the chemical bond between atoms where electrons are shared, forming a molecule. Covalent bonds are established between non-metallic elements, such as hydrogen H, oxygen O and chlorine Cl. These elements have many electrons in their outermost level (valence electrons) and have a tendency to gain electrons to acquire the stability of the electronic structure of noble gas.

An ionic bond is produced between metallic and non-metallic atoms, where electrons are completely transferred from one atom to another. During this process, one atom loses electrons and another one gains them, forming ions. Usually, the metal gives up its electrons forming a cation to the nonmetal element, which forms an anion.

So, a way to determine the type of bond will be knowing if the atoms are metallic or non-metallic.

How many more h+ ions does a solution with a ph of 4 than a solution with a ph of 5?

Answers

Ph 4=100 ions
Ph5=10.0 or 1,000
Each Ph unit has 10 times as many hydrogen ions as the unit above it.

A 0.82 kg piece of wood floats in water but is found to sink in alcohol (sg=0.79), in which it has an apparent mass of 0.059 kg .

Answers

upthrust = loss in weight = 0.82 - 0.059 = 0.761 Kg
upthrust = weight of the displaced fluid = 0.79*Vg where Vg is the volume of the piece of wood

Therefore:
0.761 = 0.79 Vg
Vg = 0.96329 

Density of wood (sg of wood) = mass / volume
density of wood = 0.82 / 0.96329 = 0.85 

Calculate the mass of 2.60 mol of CH3OH(l)

Answers

2.6mol x 32g/mol = 83.2g
Other Questions
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