When carbon is burned in air, it reacts with oxygen to form carbon dioxide. when 18.0 g of carbon were burned in the presence of 62.3 g of oxygen, 14.3 g of oxygen remained unreacted. what mass of carbon dioxide was produced?

Answers

Answer 1
C + O2 --> CO2

18g C = 18/12.01 = 1.49 moles (Limiting Reagent) 
62.3-14.3 = 48g oxygen that reacted 
48g O = 3 moles 

Related Questions

Which has larger ionization energy and why: Ca or Mg

Answers

Consult a periodic table of elements online and check where Magnesium and Calcium are in relation to each other. There are two trends to consider when understanding how ionization energy increases or decreases. Ionization is the ability for an atom to become "ionized" or stripped of a electron. This ionization increases from left to right on the periodic table since it is harder for an atom to be ionized with more electrons filling the outer shell. Ionization decreases from top to bottom due to electron shielding which is the ability of inner electrons to shield valence electrons from the protons in the nucleus. 

What are the elements and number of atoms in the compound c6h12o6?

Answers

Carbon-6, Hydrogen-12, Oxygen-6
Number of atoms altogether: 24

Final answer:

The compound C6H12O6 is glucose, consisting of 6 carbon atoms, 12 hydrogen atoms, and 6 oxygen atoms. Its empirical formula is CH₂O, representing a 1:2:1 ratio.

Explanation:

The question is related to the molecular composition of a compound with the formula C6H12O6, which is glucose. In this formula, the numbers indicate the quantity of each type of atom present in a single molecule of glucose. There are 6 carbon atoms (C), 12 hydrogen atoms (H), and 6 oxygen atoms (O). The empirical formula of glucose, which represents the simplest whole-number ratio of the atoms, is CH₂O indicating a 1:2:1 ratio for C:H:O.

To find the molecular and empirical formulas of the compound, we can analyze the ratio of atoms by considering the molecular or molar mass. Using glucose as an example, we understand that (CH₂O)6 equals C6H12O6, demonstrating the relationship between the empirical and molecular formulas. This approach is equally valid when dealing with molar mass (g/mol) rather than molecular mass (amu).

Unstable isotopes undergo radioactive decay. what occurs during radioactive decay?

Answers

Final answer:

Radioactive decay occurs when an unstable isotope emits radiation to transform into a more stable nuclide. This process releases energy, and possibly mass, and it involves various types of emissions such as alpha, beta, and gamma decay. Each isotope has a specific half-life, the period needed for half of the isotope's atoms to decay.

Explanation:

During radioactive decay, an unstable isotope, also known as a radioisotope, changes spontaneously into another nuclide. This process occurs because the nuclei that are not within the band of stability are unstable and tend to achieve a more stable state. The transformation involves the release of energy and sometimes mass, as the atom's nucleus emits radiation to become more stable.

There are various types of radioactive decay, such as alpha, beta, and gamma decay. Each of these changes the composition of the original nucleus, known as the parent nuclide, resulting in a daughter nuclide. The daughter nuclide could be stable or might further decay if it is still outside the band of stability. An example of this decay process is Carbon-14, which decays into Nitrogen-14, a stable product.

In nuclear reactions, significant amounts of energy are released, which are much greater than the energies involved in chemical reactions. Furthermore, nuclear reactions, and thus radioactive decay, occur regardless of environmental conditions such as temperature and pressure. Each radioisotope has a characteristic half-life, the time required for half of its atoms to decay.

help please:)
One of the ways that acid rain is harmful is _____.

it causes chemical burns on the skin of animals.
it increases the temperature of small bodies of water.
it leaches nutrients out of plants.
it creates holes in the leaves of plants.

Answers

The answer would be that it leaches nutrients out of plants

Which best describes stellar equilibrium?

Answers

The balance between pressure cause heat and gravity caused by the stars mass

A sample of n2 effuses in 255 s. how long will the same size sample of cl2 take to effuse?

Answers

For this problem, we use Graham's Effusion Law to find out the rate of effusion of chlorine gas. The formula is as follows:

R₁/R₂ = √(M₂/M₁)

Let 1 be N₂ while 2 be Cl₂

255/R₂ = √(28/70.8)
Solving for R₂,
R₂ = 405.5 s

Thus, it would take 405.5 s to effuse chlorine gas.
Final answer:

Apply Graham's law of effusion to compare the rates of effusion of Nitrogen gas (N₂) and Chlorine gas (Cl₂) and calculate the time it would take for the same volume of Cl₂ as N₂ to effuse.

Explanation:

The question is asking about the concept of effusion from the field of Chemistry, which refers to how quickly gases escape through a small hole. The rate of effusion for gases can be calculated using Graham's law of effusion, which states that the rate of effusion of a gas is inversely proportional to the square root of its molar mass.

In this case, the student is asking how long it would take for the same volume of Cl₂ as N₂ to effuse. Given that the molar mass of nitrogen (N₂) is approximately 28 g/mol and that of chlorine (Cl₂) is approximately 70 g/mol, we can use these values in the relation (Rate of N₂ / Rate of Cl₂) = sqrt(Molar mass of Cl₂ / Molar mass of N₂). We're told that the rate of N₂ is 255s. Hence, by inserting these values into the relation, we can find the effusion rate of Cl₂.

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How many liters of a mouthwash can be prepared from 105 ml of cinnamon flavor if its concentration is to be 0.5%?

Answers

25% is made of cinnamon flavour


Is pizza a element compound homogeneous mixture or heterogeneous mixture?

Answers

 Pizza is a heterogeneous mixture Can I get Brainliest??

Pizza is a heterogeneous mixture because the different components are not evenly distributed throughout the mixture.

Pizza is a heterogeneous mixture. A heterogeneous mixture is a mixture in which the components are not evenly distributed throughout the mixture. This means that the different components of pizza, such as the sauce, cheese, and toppings, can be easily distinguished from each other.

Pizza is not an element, because an element is a pure substance that cannot be broken down into simpler substances by chemical means. Pizza is also not a compound, because a compound is a substance that is made up of two or more elements that are chemically bonded together.

The components of pizza are not chemically bonded together, so they can be easily separated. For example, the cheese can be removed from the pizza, and the sauce can be removed from the pizza. This shows that pizza is a heterogeneous mixture.

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In a gravimetric analysis, if the water molecules are not completely removed from the salt during the heating process, will the reported salt-to-water mole ratio be high or low?

Answers

Presumably, any salt-to-water ratio would be low, if the water molecules are not removed from the solution, whatever it may be, as salt is typically a very small potion in saline water.

You just found a metallic object in a creek bed. You have found its mass to be 96.5 g, and it displaces 5 mL of water. What is the substance?

Answers

I believe the substance would be gold. 

yeah the answer is gold

How many grams of aluminum hydroxide are obtained from 13.7 g of aluminum sulfide??

Answers

 For that we need to know something about the chemistry aluminum sulfide and aluminum hydroxide. Aluminum sulfide will react with water to make insoluble aluminum hydroxide and hydrogen sulfide gas. Therefore, we need a balanced chemical equation. 

Al2S3(s) + 6HOH --> 2Al(OH)3(s) + 3H2S(g) 
17.7g ........................ ???g 

17.7g Al2S3 x (1 mol Al2S3 / 150.3 g Al2S3) x (2 mol Al(OH)3 / 1 mol Al2S3) x (78.0g Al(OH)3 / 1 mol Al(OH)3) = 18.4 g Al(OH)3 ...... to three significant digits.

Answer: The mass of aluminium hydroxide obtained is 14.196 grams.

Explanation:

To calculate the number of moles, we use the equation:

[tex]\text{Number of moles}=\frac{\text{Given mass}}{\text{Molar mass}}[/tex]    .....(1)

Given mass of aluminium sulfide = 13.7 g

Molar mass of aluminium sulfide = 150.158 g/mol

Putting values in equation 1, we get:

[tex]\text{Moles of sodium}=\frac{23g}{150.158g/mol}=0.091mol[/tex]

The chemical reaction of aluminium sulfide with water follows the equation:

[tex]Al_2S_3+6H_2O\rightarrow 2Al(OH)_3+3H_2S[/tex]

By Stoichiometry of the reaction:

1 mole of aluminium sulfide produces 2 moles of aluminium hydroxide.

So, 0.091 moles of aluminium sulfide will produce = [tex]\frac{2}{1}\times 0.091=0.0182mol[/tex] of aluminium hydroxide.

To calculate the mass of aluminium hydroxide, we use equation 1:

Moles of aluminium hydroxide = 0.0182 moles

Molar mass of aluminium hydroxide = 78 g/mol

Putting values in equation 1, we get:

[tex]0.0182mol=\frac{\text{Mass of aluminium hydroxide}}{78g/mol}\\\\\text{Mass of aluminium hydroxide}=14.196g[/tex]

Hence, the mass of aluminium hydroxide obtained is 14.196 grams.

1. Electronegativity is:

A) how strongly an atom pulls electrons to itself when it is bonded to other atoms

B) how much energy is needed to take an electron away from an atom

C) how large an atom is

D) the energy needed to add an electron to an atom


2. Which element has the highest electronegativity?

A) Si
B) P
C) S
D) Cl

3.Which element has the lowest electronegativity?

A) Be
B) Sr
C) Ca
D) Mg

4.Order the following elements from lowest to highest electronegativity?
F, Li, C, N, O

A) F, Li, O, N, C

B) N, C, Li, F, O

C) Li, C, N, O, F

D) Li, C, O, N, F


5.On the periodic table, electronegativity increases going down a group and decreases going across a period.

A) True
B) False

Answers

1) Electronegativity is A) how strongly an atom pulls electrons to itself when it is bonded to other atoms. 2) D. Cl has the highest electronegativity. 3) B. Sr has the lowest electronegativity.

4) C) Li, C, N, O, F is the correct order  of elements from lowest to highest electronegativity. 5) B. False, Electronegativity increases from left to right across a period and decreases from top to bottom of a group.

Understanding Electronegativity in Chemistry

1. Electronegativity is the ability of an atom to attract electrons in a bond. 2.Chlorine (Cl) has the highest electronegativity among the given options because it is located further to the right on the periodic table and higher up compared to other options.3.Strontium (Sr) has the lowest electronegativity among the given options because it is located further down the group in the periodic table.4. The correct order from lowest to highest electronegativity is Li then  C, followed by N, then O, and F. This sequence shows how electronegativity increases across a period from left to right.5. Electronegativity actually decreases going down a group and increases going across a period.

1. How many valence electrons are in an atom of phosphorus? (atomic number 15)

a. 2
b. 3
c. 4
d. 5

2. How many electrons does barium have to give up to achive a noble-gas electron configuration?

a. 1
b. 2
c. 3
d. 4

3. Which of the following elements does NOT form an ion with a charge of 1+?

a. fluroine
b. hygrogen
c. potassium
d. sodium

Answers

1. D. 5
2. B. 2
3. A. fluroine
Hope this helps you!!
Have a wonderful day!
Final answer:

Phosphorus has 5 valence electrons, Barium needs to give up 2 electrons to achieve a noble gas configuration, and Fluorine does not form an ion with a 1+ charge.

Explanation:

The atom of phosphorus, with an atomic number of 15, has 5 valence electrons. We mostly determine the number of valence electrons from an element's position in the periodic table. The elements in group 15, including Phosphorus, have 5 valence electrons.

Barium, with two valence electrons, needs to give up 2 electrons to obtain a noble-gas electron configuration. It is a group II element in the periodic table and thereby has two valence electrons which it will readily give up to achieve stability.

Out of the given options, fluorine does not form an ion with a 1+ charge. It is located in group 17 in the periodic table (halogens) and forms a 1- ion instead. It does so by gaining one electron to complete its valence shell and achieve a stable, noble-gas configuration.

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The process that changes the identity and number of protons in a nucleus is

Answers

The process that changes the identity and number of protons in a nucleus is fusion, transmutation, and fission.

A certain ore yields an average of 64​% iron. how much ore is needed to obtain 896 lb of​ iron?

Answers

In this case, the ore yield 64% iron and you need 896 lb of iron. From this description you can get an equation like this:

Iron= iron ore mass * 64%

Then, to get 896 of iron the calculation should be:
Iron= iron ore mass * 64%
896 lb= iron ore mass * 0.64
iron ore mass= 896 lb/ 0.64= 1400lb

Final answer:

To extract 896 lb of iron from an ore that contains 64% iron, 1400 lb of ore is needed.

Explanation:

The student asked how much ore is needed to obtain 896 lb of iron if the ore yields an average of 64% iron. To find the amount of ore required, we use the following mathematical relationship:

First, express 64% as a decimal, which is 0.64.

Next, divide the desired amount of iron by the percentage (as a decimal) of iron in the ore to find the total amount of ore needed. The equation for this is Total Ore Needed = Amount of Iron Required / Percentage of Iron in Ore.

Therefore, we divide 896 lb by 0.64 to find the total ore needed.

Performing the division, we get 896 lb divided by 0.64 equals 1400 lb of ore needed.

To summarize, 1400 lb of ore is needed to extract 896 lb of iron from an ore that contains 64% iron.

Could someone please help me with this question?

When an electric current is passed through water during the process of electrolysis, two gases are formed. One has a boiling point of -183°C and the other has a boiling point of -253°C. Has a physical change or chemical change occurs? Explain.

Answers

during electrolysis of H²0 we have Hydrogen nd oxygen gas evolution,
ideally the molecular structure of water has been broken down into Oxygen nd hydrogen
now a chemical change brings about such molecular dynamics, wherein a physical change only scratches the state of matter,
but since molecular configuration is involved, then it's a chemical change

Which step in the scientific method is conducted before a controlled experiment?
A. Form a hypothesis
B.Draw a conclusion
C.Communicate results
D.Analyze results

Answers

You should always do A. form a hypothesis before performing an experiment also the other options cannot happen until after an experiment.

An atom has 27 protons and 22 neutrons. what is the chemical symbol for the atom

Answers

the chemical symbol would be Co for it being Cobalt

The pressure exerted by each individual gas in a mixture is called the

Answers

Each gas in a mixture exerts a partial pressure.

How is 6.3 written in scientific notation

Answers

63 multiplied 10^1 youre welcome
6.3*10 that is your answer

How do thermal energy and intermolecular forces behave with each other?

Answers

When there is more thermal energy, there are less intermolecular forces. I hope this answers your question ☺️☺️

In the combustion chamber of an engine, the initial volume is 450 cm3 at a pressure of 1.0 atmosphere. If the piston displaces 402 cm3 of the total, what is the resulting pressure in the combustion chamber? (Assume negligible temperature change.) Hint: Calculate the new volume by subtracting the amount of space the piston takes up from the initial volume

Answers

9.0 atm is the answer 

Answer:

9.375 atm  

Explanation:

Initial volume = 450 cm³

Volume displaced by the piston = 402 cm³

Final volume = Initial volume – displaced volume = 450 cm³ – 402 cm³ = 48 cm³

Initial pressure = 1.0 atm

According to Boyle’s Law,  

P₁V₁ = P₂V₂  

where P₁, P₂ are the initial and final pressure respectively, V₁ and V₂ are the initial and final volume respectively.  

Substituting the given data we have,  

450 cm³ x 1 atm = 48 cm³ x P₂  

P₂ = (450 cm³ x 1 atm) / 48 cm³ = 9.375 atm  

How many significant figures are used in expressing a measurement as 0.2503 l?

Answers

There are four significant figures that are used

8.Based on Kepler’s work, which best describes the orbit of a planet around the Sun?

a circle with the Sun at the very center
an ellipse with the Sun at the very center
a circle with the Sun at one edge
an ellipse with the Sun at one focus

9.The table shows information about the moons of Mars.

Moon Orbital Period (days) Average Distance from Mars (km)
Phobos 0.319 9378
Deimos 23,459
What is the orbital period of Deimos?

0.0806 days
0.798 days
1.26 days
1.59 days

10.Kepler’s first law states that the orbits of planets are ellipses with the Sun at one
_______

Answers

Final answer:

The orbit of a planet around the Sun is best described as an ellipse with the Sun at one focus, in line with Kepler's First Law. Planetary motion is further described by Kepler's Second and Third Laws.

Explanation:

Based on Kepler's work, the best description of the orbit of a planet around the Sun is an ellipse with the Sun at one focus. This statement is in accordance with Kepler's First Law of Planetary Motion. Furthermore, Kepler's Second Law also states that each planet moves so that an imaginary line drawn from the Sun to the planet sweeps out equal areas in equal times, emphasizing the dynamical aspect of planetary motion. Lastly, Kepler's Third Law establishes that the ratio of the squares of the periods of any two planets is proportional to the ratio of the cubes of their average distances from the Sun, which is a foundational law in understanding the motion of celestial bodies within our solar system.

The orbital period of Deimos, one of Mars' moons, is not provided directly in the question, but it can usually be found in detailed astronomical datasets or scientific literature.

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The basic principle in balancing a chemical equation is to ______. hints

Answers

Answer:  obey the "law of conservation of mass".
_____________________________________

Answer is: obey the Law of conservation of mass.

For example, balanced chemical reaction:  

Pb(NO₃)₂(aq) + Li₂SO₄(aq) → PbSO₄(s) + 2LiNO₃(aq).

According to principle of mass conservation, number of atoms must be equal on both side of balanced chemical reaction.  

There are two lithium atoms, one lead atom, one sulfur atom, ten oxygen atoms and two nitrogen atoms on both side of reaction.

If the density of chloroform is 1.5g /cm3 what is the mass of 50.0cm of chloroform

Answers

Assuming you meant 50.0 cm³. Just multiply by the density to get grams.

[tex]50.0 cm ^{3} * \frac{1.5 g}{1cm^{3} } = 75 g[/tex]

Answer: The mass of chloroform is 75 grams.

Explanation:

To calculate density of a substance, we use the equation:

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

We are given:

Density of chloroform = [tex]1.5g/cm^3[/tex]

Volume of chloroform = [tex]50cm^3[/tex]

Putting values in above equation, we get:

[tex]1.5g/cm^3=\frac{\text{Mass of chloroform}}{50cm^3}\\\\\text{Mass of chloroform}=75g[/tex]

Hence, the mass of chloroform is 75 grams.

An atom that contains six protons six neutrons and six electrons has a mass of approximately

Answers

Six protons, six electrons, and six neutrons. The atom you are looking for is Carbon. The mass number is 12.

Mass number = protons + neutrons 
Final answer:

This atom is a carbon atom and the sum of its protons and neutrons, each with a mass of approximately 1 atomic mass unit, gives it an atomic mass number of 12.

Explanation:

The atom in question, with six protons, six neutrons, and six electrons, is a carbon atom. In atomic mass units, protons and neutrons each have a mass of approximately 1. Therefore, the approximate atomic mass of this atom, given that electrons contribute minimally to atomic mass due to their very small size, is 12 (6 protons + 6 neutrons = 12). This is also known as the atomic mass number.

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Enthalpy change depends on the rate at which a substance is heated or cooled true or false

Answers

Enthalpy is a thermodynamic quantity that describes the heat content of a system, that can not be measured directly. That's why we measure change in enthaply, measured in the units joules. The statement that enthalpy change depends on the rate at which a substance is heated or cooled is false. Enthalpy change depends only on the following factors:
-physical state of reactants and products
- quantity of reactants
- allotropic modifications
- temperature and pressure

Which type of elements on the periodic table would you expect to have low ionization energy?

Answers

As we go to the right along a period,the ionization energy usually becomes more and more(except about the groups 2-13 and 15-16).Also,when we go to the bottom along a group,the energies reduce.Therefore,robidium has the least ionization energy.

What is the definition of a physical property of matter?

Answers

Physical properties are any properties of matter which can be perceived or observed without changing the chemical identity of the sample.

The physical property is characteristic of matter that is independent of its chemical composition. Examples of physical properties are density, hardness, color, electrical conductivity, and melting and boiling points.

What is physical property?

The matter is composed of tiny particles known as atoms and can be represented as something that occupies space. It must represent both the mass and volume properties.

Properties are the features that capable us to differentiate one material from another. A physical property is a characteristic of matter that does not depend on its chemical composition.

For example, color, hardness, density, melting points, electrical conductivity, etc.

Any properties of matter that can be measured, such as density, color, length, mass, volume, melting point, malleability, hardness, odor, and temperature are considered properties of matter. The physical properties of matter can be intensive or extensive. Intensive properties are independent of the amount of matter while extensive properties depend upon the quantity of matter.

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