) write the balanced equation for the reaction that occurs when methanol, ch3oh (l), is burned in air. what is the coefficient of oxygen in the balanced equation

Answers

Answer 1

Answer : The coefficient used for the oxygen in balanced chemical reaction is, 3.

Explanation :

Balanced chemical reaction : It is defined as the number of atoms of individual elements present on reactant side must be equal to the product side.

When methanol is burned in air then it react to give carbon dioxide and water as a products.

The balanced chemical reaction will be,

[tex]2CH_3OH(l)+3O_2(g)\rightarrow 2CO_2(s)+4H_2O(g)[/tex]

This reaction is a combustion reaction in which a hydrocarbon react with oxygen to given carbon dioxide and water as a products.

By stoichiometry we can say that, 2 mole of methanol react with 3 moles of oxygen to give 2 moles of carbon dioxide and 4 moles of water.

Hence, from the balanced chemical reaction we conclude that the coefficient used for the oxygen is 3.

Answer 2

The balanced equation is:

2 CH3OH + 3 O2 -----> 2 H2O + 2 CO2 and the coefficient of oxygen is 3.

What is the balanced equation of the combustion of methanol?

Combustion is a reaction of a substance with oxygen with the release of heat and light.

In the combustion of methanol, carbon(iv) oxide and water are produced.

The balanced equation is:

2 CH3OH + 3 O2 -----> 2 H2O + 2 CO2

Based on the balanced equation, the coefficient of oxygen is 3.

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Related Questions

A fatty acid with only single bonds between carbon atoms is called a(n) ________ fatty acid.

Answers

Saturated fatty acid

Which is a component of John Dalton’s atomic theory? The ratio of atoms in a compound is fixed. The atoms of different elements are the same. An atom is a small particle of matter that can be broken down. A reaction can create or destroy atoms as well as rearrange them

Answers

The English scientist John Dalton were one of the early scientists who paved the way to science, particularly in atomic chemistry. His atomic theory jumpstarted further developments made by J.J Thomson, Rutherford, Bohr, Schrodinger and many more. 

Dalton's atomic theory can be summarized in 5 key points:

1. Atoms are tiny, indivisible and indestructible particles of an element.
2. Atoms of different elements vary in size and mass.
3. Atoms of an element are uniform in size and mass.
4. Compounds are formulated by a fixed ratio of individual atoms of elements.
5. Reactions undergo by rearranging the atoms of the reactants to form the products.

From the choices, the acceptable answer would be: The ratio of atoms in a compound is fixed. 

Answer:

The right answer is A

Explanation:

why does it take much longer for a car to stop when applying the brakes at a speed of 60 miles per hour then it 50 miles per hour

Answers

This is because its forward momentum is greater when it goes faster, therefore it requires more force/friction to slow it down to a halt.

Answer: force and friction

Explanation: because its forward momentum is greater when it goes faster, therefore it requires more force/friction to slow it down to a halt.

When an atom releases gamma radiation,
A. the mass number decreases by one.
B. the atomic number decreases by one.
C. the mass number increases by four.
D. the atomic number remains the same.

Answers

The answer is D. the atomic number remains the same.

Answer: The correct answer is Option D.

Explanation:

Gamma radiations are released when an atom undergoes gamma decay. During this decay process, a unstable nuclei gives off excess energy through a spontaneous electromagnetic process and it further releases [tex]\gamma -radiations[/tex]. The radiations released does not carry any charge and hence are electrically neutral.

Atomic number of the  atom going this decay does not change.

[tex]_Z^A\textrm{X}^*\rightarrow _Z^A\textrm{X}+_0^0\gamma[/tex]

Thus, the correct answer is Option D.

How many grams of water vapor (H2O) are in a 10.2 liter sample of 0.98 atmosphere and 26 C

Answers

Hey there! 

Use the equation of Clapeyron:

T in kelvin :

26 + 273.15 => 299.15 K

R = 0.082

V = 10.2 L

P = 0.98 atm

number of moles :

P *V = n * R * T

0.98 * 10.2 =  n * 0.082 * 299.15

9.996 = n * 24.5303

n = 9.996 / 24.5303

n = 0.4074 moles

Therefore:

Molar mass H2O = 18.01 g/mol

1 mole H2O ------------- 18.01 g
0.4074  moles ----------- m

m = 0.4074 * 18.01 / 1

m = 7.339 g of H2O

Solar energy breaks oxygen molecules (o2) apart in the stratosphere, releasing ____, that then combine with additional oxygen molecules (0) to form ____.

Answers

What is described here is actually the formation of ozone in the atmosphere. Ozone is what makes up the ozone layer, the shield in the Earth’s atmosphere that absorb the sun’s harmful UV radiation.

Now when solar energy hits O2 molecules, this results to a release in Oxygen atoms. When these Oxygen atoms combine with O2 molecules, Ozone or O3 is formed.

The correct answers are:

Oxygen atoms

Ozone

Oxygen has an electronegativity of 3.5, and carbon has an electronegativity of 2.5. how is charge distributed on an oxygen atom when it bonds with a carbon atom?

Answers

When oxygen has an electronegativity of 3.5, and carbon has an electronegativity of 2.5, then the oxygen atom would have a slightly negative charge. The oxygen atom in  the carbon monoxide molecule would pull more electrons to its side since it has higher electronegativity making it slightly negative and the carbon would have a slightly positive charge as it would contain less electrons. This results to the formation of a polar molecule. A polar molecule is made when the molecule contains a slightly positive end and a slightly negative end. It would have a net dipole which is a result of the partial opposing charges in the molecule.

Final answer:

In a carbon-oxygen bond, oxygen, being more electronegative, pulls the bonding electrons closer, resulting in oxygen having a slight negative charge and carbon a slight positive charge, forming a polar covalent bond.

Explanation:

When a carbon atom bonds with an oxygen atom, the distribution of charge between them reflects their difference in electronegativity. Oxygen, with an electronegativity of 3.5, has a stronger pull on the bonding electron pairs than carbon, which has an electronegativity of 2.5. This results in the electrons being drawn more towards oxygen, making the oxygen atom slightly negatively charged (δ-) and the carbon atom slightly positively charged (δ+). The carbon-to-oxygen double bond, being more polar than a carbon-to-oxygen single bond, emphasizes this effect, making the oxygen even more electronegative in comparison to carbon. Therefore, in this bond, oxygen ends up with a partial negative charge, while carbon acquires a partial positive charge, exemplifying a polar covalent bond.

Complete each nuclear fission reaction. What is A?

Answers

(235+1)-(90+(1*3)) = 143

Answer:

143

Explanation:

Thinking process:

The equation is balanced by balancing the charges. This gives:

235 + 1 = 90 + A + 3(1)

236 =    90 + A + 3

236  = 93 + A

     A = 236 - 93

         = 143

therefore, the value of A is 143

One mole of calcium ions has the same number of representative particles as which of the following? one mole of calcium nuclei one mole of calcium atoms 6.02 x 1023 calcium ions All of these are correct.

Answers

One mole is always the same number: 6.02 * 10^ 23.

So, one mole of cars = 6.02 * 10 ^23 cars; one mole of pencils = 6.02 * 10^23 pencils; one mole of atoms = 6.02 * 10^23 atoms; one mole of molecules = 6.02 * 10^23 molecules.

So, all the options are correct: one mole of calcium ions has 6.02 * 10^23 representative particles, such as one mole of calcium nuclei and one of calcium atoms.

The product formation was decreased when a substance b was added to an enzyme reaction. more substrate being added did not increase the amount of produce formed. based on this we assume that substance b could be

Answers

When the product formation is decreased if a substance B is added to an enzyme reaction and more substrate being added would not increase the amount of produce formed, then we assume that substance b could be a noncompetitive inhibitor. This type of inhibitor would be one that would bind to the enzyme with or without the presence of a substrate in different sites at the same time. It would change the conformation of the enzyme and also the active sites. As a result, the substrate would not be able to bind to the enzyme more effectively than the usual. The overall efficiency would decrease.

A piece of copper metal is dipped into an aqueous solution of agno3. which net ionic equation describes the reaction that occurs?

Answers

The complete equation would be

Cu + AgNO3 --> Cu(NO3)2 + Ag+

This is a single replacement reaction wherein Copper replaces the Silver atom. In the net ionic equation, you set the compounds into ionic forms and remove the spectator ions. These are the ions that appear in the left and right side of the equations. They are called spectator ions because they do not really play an active role in the equation.

Cu + Ag+ + NO3- --> Ag+ + Cu2+ + NO3-

The spectator ion is the nitrate ion (NO3-) and the silver ion (Ag+). Then, the balanced net ionic equation would be

Cu ----> Cu2+

Answer: The net chemical equation is written below.

Explanation:

When copper metal displaces an aqueous solution of silver nitrate, it leads to the formation of silver metal and aqueous copper nitrate solution.

This reaction is an example of single displacement reaction.

Net ionic equation of any reaction does not include any spectator ions.

Spectator ions are defined as the ions which does not get involved in a chemical equation. They are found on both the sides of the chemical reaction when it is present in ionic form.

The chemical equation for the reaction of copper metal and silver nitrate is given as:

[tex]Cu(s)+2AgNO_3(aq.)\rightarrow Cu(NO_3)_2(aq.)+2Ag(s)[/tex]

Ionic form of the above equation follows

[tex]Cu(s)+2Ag^+(aq.)+2NO_3^-(aq.)\rightarrow Cu^{2+}(aq.)+2NO_3^-(aq.)+2Ag(s)[/tex]

As, nitrate ions are present on both the sides of the reaction. Thus, it will not be present in the net ionic equation and are spectator ions.

The net ionic equation for the above reaction follows:

[tex]Cu(s)+2Ag^+(aq.)\rightarrow Cu^{2+}(aq.)+2Ag(s)[/tex]

Hence, the net ionic equation is written above.

Under what conditions will a low temperature make a reaction spontaneous

Answers

The spontaneity of a reaction can be predicted by the amount of Gibbs free energy. If it is negative, then the reaction is spontaneous. The reaction for Gibb's energy is

ΔG=ΔH-TΔS, where H is the enthalpy, T is the temperature and S is the entropy.

If the reaction favors low temperature, the enthalpy must be negative so that it will yield a negative ΔG. In other words, an exothermic reaction is spontaneous even at low temperatures. Also, the reaction could still be spontaneous if entropy is high, meaning, the system is not in order.

Answer: if delta h and delta s are both negative

Explanation: you’re welcome

Write the complete balanced equation for the following reaction: Na2SO4 + Pb(NO3)2 -->NaNO3 + PbSO4

Answers

The balanced equation for the reaction between sodium sulfate (Na₂SO₄) and lead(II) nitrate (Pb(NO₃)₂) to form sodium nitrate (NaNO₃) and lead(II) sulfate (PbSO₄) is as follows:

2 Na₂SO₄ + Pb(NO₃)₂ ⇒ 2 NaNO₃ + PbSO₄

In this equation, we balance the number of atoms on both sides of the equation. There are two sodium (Na) atoms on both sides, two sulfate (SO₄) ions on both sides, two nitrate (NO₃) ions on both sides, and one lead (Pb) atom on both sides. The equation is now balanced.

On the left-hand side of the equation, we have 2 sodium sulfate molecules and 1 lead(II) nitrate molecule.

On the right-hand side of the equation, we have 2 sodium nitrate molecules and 1 lead(II) sulfate molecule.

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Final answer:

The complete balanced chemical equation for the reaction of sodium sulfate with lead(II) nitrate to form sodium nitrate and lead(II) sulfate is Na2SO4(aq) + Pb(NO3)2(aq) → 2NaNO3(aq) + PbSO4(s).

Explanation:

The question pertains to writing a complete and balanced chemical equation for a double-replacement reaction between sodium sulfate (Na2SO4) and lead(II) nitrate (Pb(NO3)2), resulting in the formation of sodium nitrate (NaNO3) and lead(II) sulfate (PbSO4), the latter being a precipitate. To balance this reaction, we must ensure that the number of atoms of each element is the same on both sides of the equation. The balanced chemical equation, by inspection, is:

Na2SO4(aq) + Pb(NO3)2(aq) → 2NaNO3(aq) + PbSO4(s)

We now verify the balance by counting atoms:

2 sodium (Na) atoms on both sides

1 sulfate (SO4) group on both sides

1 lead (Pb) atom on both sides

2 nitrate (NO3) groups on both sides

Each element and polyatomic ion is balanced, confirming that the equation is correctly balanced.

One characteristic of a scientific theory is that _______

a. it can never be proved
b. it can be proved
c. it cannot be modified
d. it summarizes a set of observations

Answers

Answer;

a. it can never be proved

Explanation;

-One characteristic of a scientific theory is that it can never be proved.

-A scientific theory is a series of statements about the causal elements for observed phenomena. It is a hypothesis or a group of hypotheses about some phenomena that have been supported through research using the scientific method.

Answer: Option (d) is the correct answer.

Explanation:

A scientific theory is the result or output of a number of experiments, research, tests, observations etc.

A scientific theory is checked and verified at each and every step in order to provide a fact to the world. Hence, a scientific theory is that it summarizes a set of observations.

On the basis of these observations, a conclusion or theory is established.













The formula of the compound formed in the reaction between aluminum and sulfur is

Answers

The formula is Al2S3

Which of these organelles produces h2o2 as a by-product?

Answers

Final answer:

Peroxisomes, an organelle found in both animal and plant cells, produce hydrogen peroxide (H2O2) as a by-product during detoxification and metabolic processes. They also safely break down H2O2 into water and oxygen, shielding the rest of the cell from this compound's potential toxicity.

Explanation:

The organelle that produces H2O2 (hydrogen peroxide) as a by-product is the peroxisome. Peroxisomes are small, round organelles enclosed by single membranes. They perform oxidation reactions that break down fatty acids and amino acids, and also detoxify many poisons that may enter the body. During these oxidation reactions, they release H2O2, which can damage cells. However, these reactions are confined to peroxisomes, where enzymes safely break down the H2O2 into oxygen and water. This makes peroxisomes crucial for neutralizing harmful toxins in cells.

For example, alcohol is detoxified by peroxisomes in liver cells. Glyoxysomes, which are specialized peroxisomes in plants, play a role in converting stored fats into sugars. Therefore, peroxisomes fulfill numerous crucial roles in both animal and plant cells which includes producing and then safely breaking down H2O2.

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The peroxisome is the organelle that produces H2O2 as a by-product during oxidation reactions and detoxification processes, but contains enzymes to convert it into harmless substances.

The organelle in question that produces hydrogen peroxide (H2O2) as a by-product is the peroxisome. Peroxisomes perform a variety of metabolic processes, primarily oxidizing fatty acids and detoxifying harmful substances. The toxic by-product of these reactions is H2O2, which peroxisomes contain within themselves to prevent cellular damage. Enzymes such as catalase within peroxisomes convert H2O2 into water and oxygen, mitigating the potentially harmful effects of hydrogen peroxide on the cell.

Which is a typical characteristic of an ionic compound?
a. electron pairs are shared among atoms.
b. the ionic compound has a low solubility in water.
c. the ionic compound is described as a molecule?

Answers

Answer:

Chemistry A Unit 4: Chemical bonding Lesson 5: Molecular compounds

1. D. The ionic compound has a high meting point.

2. A. The arrangement of bonded atoms

Explanation:

Ionic compounds have a high melting point is a typical characteristic of an ionic compound.

What are ionic compounds?

Ionic compounds can be defined as crystalline solids generated by closely packed ions of opposite charge. An Ionic compound is commonly formed whenever metal reacts with nonmetal.

In ionic compounds, the ions are generally held by ionic bonds. The ions are created by losing or gaining electrons to get their nearest noble gas configuration.

In a reaction, the metals lose electrons to gey filled octet while non-metals will gain electrons to get a complete octet.

Ionic compounds have high melting points and are hard as well as brittle. They dissociate into ions whenever dissolved in water. Solutions of ionic compounds can conduct electricity even in the molten state, but solid materials do not.

Ionic compounds form crystals and have higher enthalpies of fusion as well as vapourization than molecular compounds.

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Rifampin is a nonspecific cyp450 inducer that may:

Answers

Rifampin is a nonspecific cyp450 inducer that may induce drugs' metabolism. This can occur when it is coadministered.
Due to this, Rifampin is used as an antibiotic that can treat several bacterial infections including Legionnaire's disease and leprosy.

Rifampin is a nonspecific cyp450 inducer that may: inhibit bacterial transcription by blocking RNA polymerase.

This interaction is important to consider when co-administering medications.

Rifampin is a semisynthetic member of the rifamycin class that works by blocking bacterial RNA polymerase activity, thereby inhibiting transcription. This process prevents the bacteria from synthesizing mRNA, which is crucial for protein synthesis and bacterial growth.

As a nonspecific CYP450 inducer, rifampin can increase the metabolism of drugs that are substrates of the cytochrome P450 enzyme system. Consequently, this induction can reduce the effectiveness of other medications metabolized by CYP450, such as certain anticoagulants, contraceptives, and antivirals.

If a patient on rifampin is also taking an oral contraceptive pill, the effectiveness of the contraceptive can be decreased due to the enhanced metabolism caused by rifampin, leading to a higher risk of unintended pregnancy.

What is the ph of a solution containing the strong base ba(oh)2 at a concentration of 0.064 mol/l?

Answers

The pH of a solution is a measure used to evaluate the acidity of a solution. It is related to the hydronium ion concentration in the solution. It is expressed as pH = -log [H+]. Also, it is related to pOH by the equation 14 = pH + pOH. It is stated that the substance given in the problem is a strong base which means that it completely dissociates into ions. It dissociates as follows:

Ba(OH)2 = Ba^2+ + 2OH-

To determine the pH of the solution, we need to determine the OH- concentration. Then, find pOH. We do as follows:

[OH-] = 0.0064 mol Ba(OH)2 / L ( 2 mol OH- / 1 mol Ba(OH)2 ) = 0.0128 mol OH- / L

pOH = -log (0.0128) = 1.8928
pH = 14 - 1.8928 = 12.1072

Which statement regarding nuclear and chemical reactions is not true?

Chemical reactions involve outer electrons.

Only chemical reactions result in atom stability.

Nuclear reactions release more energy per mole.

Nuclear reactions occur in the nucleus of the atom.

Answers

the second one ,I hope I'm right .

Answer: Option (b) is the correct answer.

Explanation:

A chemical reaction is a reaction that causes change in chemical composition of a substance. This change occurs due to the involvement of outer electrons.

Whereas a nuclear reaction is a reaction in which particles in the nucleus, that is, protons and neutrons participate in order to form a new compound.

For example, [tex]^{6}_{3}Li + ^{2}_{1}H \rightarrow 2^{4}_{2}He[/tex]

Both chemical and nuclear reactions are able to release energy in certain reactions and they both are able to form stable atoms.

Thus, we can conclude that the statement only chemical reactions result in atom stability regarding nuclear and chemical reactions is not true.

Upon balancing the equation below, how many moles of sodium cyanide are needed to react completely with 3.6 moles of sulfuric acid? H2SO4 + NaCN yields HCN + Na2SO4

Answers

You would need 7.2 moles of sodium cyanide to completely react with 3.6 moles of sulfuric acid

Explanation:

The given chemical equation is as follows.

    [tex]H_{2}SO_{4} + NaCN \rightarrow HCN + Na_{2}SO_{4}[/tex]

Number of reactant atoms are as follows.

H = 2[tex]SO_{4}[/tex] = 1Na = 1CN = 1

Number of product atoms are as follows.

H = 1[tex]SO_{4}[/tex] = 1Na = 1CN = 1

Thus, in order to balance the equation, multiply NaCN by 2 on the reactant side and multiply HCN by 2 on the product side. Therefore, the balanced chemical equation will be as follows.

      [tex]H_{2}SO_{4} +2NaCN \rightarrow 2HCN + Na_{2}SO_{4}[/tex]

Hence, we need [tex]2 \times 3.6[/tex]  = 7.2 moles of NaCN to react completely with 3.6 moles of [tex]H_{2}SO_{4}[/tex].

At 25 °c only 0.0700 mol of the generic salt ab is soluble in 1.00 l of water. what is the ksp of the salt at 25 °c?

Answers

"Ksp" stands for solubility product constant. It is the equilibrium constant for a substance that is solid dissolving in a solvent forming an aqueous solution. It describes the degree at which the solute would dissolve in the solution. It calculated by the product of the equilibrium concentration of the dissociated ions in the solutions. These concentrations should be in the units of molarity or mol/ L. The general dissociation reaction would be expressed as follows:

AB = A+ + B-

The molarity of the species is as follows:

[AB] = [A+] = [B-] = 0.0700 mol AB / 1.00 L solution = 0.0700 M

Ksp = [A+] [B-]
Ksp = (0.0700) (0.0700)
Ksp = 0.0049 

Therefore, the Ksp of the generic salt AB would be 0.0049

"what is the volume (in cm3) of a 9.37 g piece of metal with a density of 4.66 g/cm3?"

Answers

we know that, Density = mass/ volume 
So, volume = mass / density = 9.37g / 4.66 g/cm³ = 2.011 cm³
 


Answer : The volume of a piece of metal is [tex]2.01cm^3[/tex]

Explanation :

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

Formula used for density :

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

Given :

Mass of a piece of metal = 9.37 grams

Density of metal = [tex]4.66g/cm^3[/tex]

Now put all the given values in the above formula, we get the volume of a piece of metal.

[tex]4.66g/cm^3=\frac{9.37g}{Volume}[/tex]

[tex]Volume=\frac{9.37g}{4.66g/cm^3}[/tex]

[tex]Volume=2.01cm^3[/tex]

Therefore, the volume of a piece of metal is [tex]2.01cm^3[/tex]

A gas has a temperature of 273.15 K and a pressure of 101.325 kPa. What can be concluded about the gas?
It has reached standard temperature and pressure.
The pressure needs to be increased to reach the standard pressure.
The temperature needs to be increased to reach the standard temperature.
Both the temperature and pressure need to be lowered to reach STP.

Answers

A gas has a temperature of 273.15 K and a pressure of 101.325 kPa. It can be concluded that this gas has reached standard temperature and pressure.

Standard temperature is zero degree celcius which corresponds to 273.15 degree kelvin.

Standard pressure is 760 mmHg which corresponds to 101.325 kPa.

A It has reached standard temperature and pressure.


Consider the hypothetical atom x. if the molecular formula for lithium carbonate is li2co3 and the formula of x chloride is xcl3. what is the molecular formula for x carbonate?

Answers

First step is to determine the valency of each of x and CaCO3 from the given compounds:

1- As for Li2CO3: we can deduce that the valency of lithium is one while that of CO3 is two

2- As for XCl3: we can deduce that the valency of chlorine is one while that of X is three

Second step is to write the required compound: 
X : CO3  (elements involved)
3 : 2        (write the valency of each)
Then write the positive ion (X) followed by the valency of the negative ion (2) and then the negative ion (CO3) followed by the valency of the positive ion (3).
The final x carbonate is written as: X2(CO3)3
Final answer:

The atom 'x' has valency 3 based on xCl3 formula. The carbonate ion has a charge of -2. Hence, to balance the charges, the formula for 'x' carbonate should be X2(CO3)3.

Explanation:

The hypothetical atom is represented as 'x'. The formula provided, xCl3, indicates that there are three chloride ions for every atom of 'x'. This suggests that the valency of 'x' is 3. Assuming that 'x' is a metal, when it forms a carbonate, it will combine with the carbonate ion (CO3) which has a charge of -2.

As 'x' has a valency of 3 and carbonate has a charge of -2, to balance the charges the formula for 'x' carbonate would be X2(CO3)3. This formula implies there are two atoms of 'x' for every three carbonate ions in the compound. Therefore, the molecular formula for 'x' carbonate is X2(CO3)3.

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Fill in the coefficients that will balance the following reaction: a0Na + a1H2O → a2NaOH + a3H2

Answers

Hey there !  :

Na + 2 H2O = 2 NaOH + 1 H2

Sodium + Dihydrogen Monoxide = Natriumhydroxid + Hydrogen

Coefficients:

Reagents  :  Na = 2
                    H2O = 2
   

Products :  NaOH = 2
                  H2 = 1

Answer : The balanced chemical reaction will be,

[tex]2Na+2H_2O\rightarrow 2NaOH+H_2[/tex]

Explanation :

Balanced chemical reaction : It is defined as the number of atoms of individual elements present on reactant side must be equal to the product side.

The given unbalanced chemical reaction is,

[tex]a_0Na+a_1H_2O\rightarrow a_2NaOH+a_3H_2[/tex]

This chemical reaction is an unbalanced reaction because in this reaction, the number of atoms of hydrogen are not balanced while all the atoms are balanced.

In order to balanced the chemical reaction, the coefficient 2 is put before the [tex]Na,H_2O\text{ and }NaOH[/tex]

Thus, the balanced chemical reaction will be,

[tex]2Na+2H_2O\rightarrow 2NaOH+H_2[/tex]

Three treatments of different starting materials are listed. Which statement explains the treatments? Substance 1 was activated by a decrease in temperature, Substance 2 was activated by the change in concentration, and Substance 3 decreased the surface area. Substance 1 was activated by a decrease in temperature, Substance 2 was activated by the change in pressure, and Substance 3 increased the surface area. Substance 1 was activated by the heat and inactivated by ice, Substance 2 was activated by the change in pressure, and Substance 3 decreased the surface area. Substance 1 was activated by the heat and inactivated by ice, Substance 2 was activated by the change in concentration, and Substance 3 increased the surface area.

Answers

 Substance 1 was activated by the heat and inactivated by ice, Substance 2 was activated by the change in concentration, and Substance 3 increased the surface area.

The treatment is explained by temperature in the first substance, concentration in substance 2, and surface area in substance 3. Thus, option D is accurate.

What are the factors of reaction rate?

The rate of the reactions is concerned with the temperature concentration, surface area, etc. Their involvement increases and decreases the reaction rate of the substance present in the reaction mixture.

An increase in temperature by heat increases rate, and ice decreases temperature hence decreasing rate. The second substance starts with an increase in the concentration and the third by increasing surface area.

Therefore, option D. is the treatment for the substances.

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Element x is a poor conductor of heat, has a low boiling point, and is a brittle solid at room temperature. where on the periodic table would element x most likely be found?

Answers

Answer is: nonmetals.

Nonmetals are far right at Periodic table, except hydrogen (H).

The nonmetals are divided into two categories: reactive nonmetals and noble gases.

The type of bond in nonmetal is covalent bond, there is no free electrons, so they do not conduct heat.

Intermolecular forces are weak, so they have low boiling points.

Nonmetals have low electrical and thermal conductivity .

Final answer:

Element x would most likely be found on the right side of the periodic table, where nonmetals are located.

Explanation:

The periodic table is a tabular arrangement of chemical elements, organized by increasing atomic number and similar chemical properties. Elements are grouped into rows (periods) and columns (groups or families) based on their electron configurations. This table provides a systematic way to understand and study the properties and relationships of all known elements.

Based on the given information, Element x is a nonmetal that is a poor conductor of heat, has a low boiling point, and is a brittle solid at room temperature. Nonmetals are typically found on the right side of the periodic table. Therefore, Element x would most likely be found on the right side of the periodic table, where nonmetals are located.

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a radioisotope spontaneously emits charged particles and energy
which is NOT a characteristic of a radioisotope?
a. it is radioactive
b. it is stable
c. it undergoes nuclear decay
d. it emits energy

Answers

B. it is stable

if something spontaneously emits charged particles, there's no way it's stable

The isotopes which are radioactive in nature is said to be radioisotopes. Radioisotope has  unstable atomic nucleus and to attain a stable form, they emit particles and energy.

Since, radioisotopes are very reactive in nature as they are unstable and hence, they decay to form other particles. Energy may be released in the form of alpha particles (helium nuclei), beta particles, (electrons or positrons), or gamma particles (electromagnetic energy).

Hence, incorrect statement is: radioisotope is stable.

When nitrogen gas reacts with hydrogen gas to form ammonia, what is the coefficient on nitrogen in the balanced equation?

Answers

Nitrogen gas has a chemical formula of N₂, hydrogen gas is H₂ and ammonia is NH₃. If you see the reaction, it would be

N₂ + H₂  → NH₃

You should note that the fundamental laws of nature must apply. According to Dalton's Atomic Theory, one of its postulates states that each compound is composed of a fixed ratio of the number of its individual atoms. This is where the Law of Definite Proportions is coming from. In order to obey this law, you must balance the equation such that the number of moles of each element in a reaction is equal for both sides of the reaction. Thus, the balance reaction is

N₂ + 3 H₂  → 2 NH₃

Thus, the coefficient of Nitrogen is 1.

Final answer:

The coefficient on nitrogen in the balanced equation is 1.

Explanation:

When nitrogen gas reacts with hydrogen gas to form ammonia, the coefficient on nitrogen in the balanced equation is 1. The balanced chemical equation for this reaction is: 3H2 (g) + N2 (g) → 2NH3 (g). In the equilibrium constant expression, the partial pressure of nitrogen is raised to the first power due to the coefficient 1. According to Dalton's Atomic Theory, one of its postulates states that each compound is composed of a fixed ratio of the number of its individual atoms. This is where the Law of Definite Proportions is coming from. In order to obey this law, you must balance the equation such that the number of moles of each element in a reaction is equal for both sides of the reaction. Thus, the balance reaction is

N₂ + 3 H₂  → 2 NH₃

Thus, the coefficient of Nitrogen is 1.

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