how do two sublevels of the same principal energy level differ from each other?

Answers

Answer 1

Two sublevels of the same principal energy level differ from each other through shape and size.

There are mainly 4 energy level s, p, d and f.

The s level has one orbital and one orbital have two electrons. So the maximum number of electron in s sublevel is 2.

The p level has three orbital and one orbital have two electrons. So the maximum number of electron in s sublevel is 6.

The d level has five orbital and one orbital have two electrons. So the maximum number of electron in s sublevel is 10.

The f level has 7 orbital and one orbital have two electrons. So the maximum number of electron in s sublevel is 14.

They may be differ in magnetic level.

Thus, we concluded that Two sublevels of the same principal energy level differ from each other through shape and size.

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Related Questions

Household bleach is approximately a 0.850 m solution of sodium hypochlorite (naocl). how many grams of naocl are present in a cup (~250. ml) of bleach?

Answers

There's approximately 15.8 g of NaOCl in a cup of bleach. To calculate this we need to use the molarity of the bleach solution and the molar mass of sodium hypochlorite.

In order to convert the molarity to mass, we need the molar mass of sodium hypochlorite. We can calculate it by adding up the relative atomic masses of sodium (23), oxygen (16), and chlorine (35.5):

M (NaOCl) = (23 + 16 + 35.5) g/mol = 74.5 g/mol

Now we calculate the amount (in moles) of sodium hypochlorite present in 250 mL (0.25 L) of bleach:

c = n/V ⇒ n = c*V = 0.850 M * 0.250 L = 0.2125 mol of NaOCl

Using the molar mass, we can now calculate the mass required:

n = m/M ⇒ m = n*M = 0.2125 mol * 74.5 g/mol = 15.8 g of NaOCl

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Can someone describe what is the role of hemoglobin?

Answers

Hemoglobin contains iron, which allows it to pick up oxygen from the air we breathe and deliver it everywhere in the body. You can think of hemoglobin as the iron ("heme"), oxygen transport protein, ("globin") found in red blood cells. It's the hemoglobin that gives red blood cells their color, too.

HELP QUICK PLEASE

The table shows the number of charged particles in an ion.

A negatively charged substance is brought near the ion. What will most likely happen and why?

A: The ion will repel the substance because the ion has more electrons than protons.
B: The ion will repel the substance because the ion has more protons than electrons.
C: The ion will attract the substance because the ion has more electrons than protons.
D: The ion will attract the substance because the ion has more protons than electrons.

Answers

Answer:

The ion will repel the substance because it has more electrons than protons.

Explanation:

there are more electrons (negative) than protons (postitive)

a pure sample of a new chemical compound was analyzed and was found to have the following mass percentages: al 31.5 %; o 56.1 %; s 12.4 %. which of these could be the empirical formula of the compound?

Answers

Answer: supercalifragilisticexpialidocuos

Explanation:

given a solution of 0.01 m nacl and 0.01 m zncl2, which solution would you expect to have the lowest freezing point, or is the freezing point the same for both solutions? support your decision by showing some simple calculations.

Answers

According to the Van’t Hoff factor, 0.01M [tex]ZnCl_2[/tex] will have the lowest freezing point.

The difference between a substance's concentration as determined by its mass and the concentration of particles that are actually formed when it dissolves is known as the Van 't Hoff factor, or i.

The quantity of ions that are produced during the dissolution of an ionic substance is the ideal Van 't Hoff factor.

According to Van’t Hoff factor, i, NaCl = 2

Therefore, 2 x 0.01 = 0.02M

According to Van’t Hoff factor, i, [tex]ZnCl_2[/tex] = 3

Therefore, 3 x 0.01 = 0.03M

ΔT = i x m x Kf

Higher the concentration of the particles, the lower the freezing point will be.

Therefore, 0.01M [tex]ZnCl_2[/tex] will have the lowest freezing point among the two solutions.

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how do u do this? I keep getting diff answers with every method I try

Answers

The masses of each of the substances after the reaction is;

Iron III oxide = 160 gCarbon monoxide = 0 gIron = 560 gcarbon dioxide = 660 g

What is the limiting reactant?

Let us recall that the limiting reactant is the reactant that is present in the least amount that is possible. This implies that  once the limiting reactant is exhausted, then the reaction would have to come to a stop.

Now;

Number of moles of iron III oxide = 960 g/160 g/mol = 6 moles

Number of moles of CO = 420 g/28 g/mol = 15 moles

Now;

1 mole of iron III oxide reacts with 3 moles of CO

x moles of iron III oxide reacts with 15 moles of CO

x = 1 mole * 15 moles / 3 moles

= 5 moles

Hence iron III oxide is the excess reactant

It the follows that;

Mass of iron;

If 3 moles of CO produced 2 moles of Fe

15 moles of Co would produce 15 moles * 2 moles /3 moles = 10 moles

Mass of Fe = 10 moles * 56 g/mol = 560 g

Mass of carbon dioxide

3 moles of CO produced 3 moles of carbon dioxide

Mass of carbo dioxide =  15 moles * 44  g/mol = 660 g

Mass of iron III oxide left over;

1 mole * 160 g/mol = 160 g

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a bomb calorimetry measurement indicates that a single potato chip has a heat content os 20,000j. what is on the label of a bag of potato chips that contains 20 chips?

Answers

The label of a bag of potato chips that contains 20 chips using calorimetry will be 400,000J.

What is calorimetry?

Calorimetry is the science of measuring the heat absorbed or evolved during the course of a chemical reaction or change of state.

A bomb calorimeter is a type of constant-volume calorimeter in which material is burned to measure its heat content.

According to this question, a bomb calorimetry measurement indicates that a single potato chip has a heat content of 20,000J. This amount is specifically for only one chip, hence, the amount of multiple chips can easily be calculated as follows:

Heat energy of 20 chips = 20,000J × 20 chips

Heat energy of 20 chips = 400,000J

Therefore, 400,000J of energy will be on the label bag.

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Select the correct answer from each drop-down menu.
A
scientists
is scientific knowledge established through direct observation and remains constant. Scientific knowledge can change when

Answers

A scientists is scientific knowledge established through direct observation and remains constant. Scientific knowledge can change with facts and conduct of experiment.

What happens to scientific knowledge as it becomes older?

Scientific theories that have been accepted for a long time may change throughout time. Changes in societal, political, or religious ideas could occur together with new scientific discoveries. To obtain a deeper understanding, students should perform historical research on the era when scientific theories were developed.

What needs to happen for science to advance?

Observations and supporting data are the basis of scientific understanding. It could change as new facts and observations are discovered. Examining recent discoveries will advance science.

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12. The atomic number of an element represents the number of ______________ in the nucleus?

Answers

Protons.

The number of protons in a nucleus is called the atomic number.

Answer:

atoms in the nucleus

Explanation:

if you read very well

How can the number of electrons be predicted in a neutral atom? _________________________________________________________________________ _________________________________________________________________________

Answers

The number of electrons can be predicted in a neutral atom  because the number of protons and electrons in a neutral atom will be identical, we can readily calculate the electron number from the atomic number.

What can be used to predict the number of electrons?

An atom's atomic number can be used to forecast its electrical structure. The atomic number can be used to forecast the total number of electrons because neutral atoms have an equal number of protons and electrons.

So, If you know what group the atom's element belongs to and the group number correlates to the number of electrons on the valence shell and you can determine how many atoms are on the atom's valence shell.

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A researcher grew a plant in an illuminated chamber with 18o-radiolabeled co2. After allowing time for photosynthesis, where will the radiolabeled 18o be found?.

Answers

The plant's glucose, C6H12O6, will include the 18O-radiolabeled CO2 when enough time has passed for photosynthesis. Option D

How does photosynthesis work?

Green plants use the power of sunshine to produce their nourishment via a process called photosynthesis.

In the process of photosynthesis, plants use the energy of the sun to drive chemical processes that transform atmospheric carbon dioxide, or CO2, and water vapor into glucose.

Taking into account the provided research:

In an illuminated room with 18O-radiolabeled CO2, a researcher cultivated a plant.

The 18O-radiolabeled CO2 will be absorbed into the glucose the plant produces during photosynthesis when enough time has passed for photosynthesis.

After being generated, glucose is subsequently stored as starch.

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Complete question:

A researcher grew a plant in an illuminated chamber with ¹⁸O-radiolabeled CO₂. After allowing time for photosynthesis, where will the radiolabeled ¹⁸O be found?

A. O₂ in the chamber

B. H₂O in the plant

C. H₂O vapor in the chamber

D. C₆H₁₂O₆ in the plant

Some solar power plants use mirrors to focus sunlight on a central collector. The energy from sunlight causes water in the central collector to boil and produce steam. A generator uses the kinetic energy of the steam to produce electricity. How could a molten salt battery help this type of power plant generate electricity 24 hours per day?

Answers

Answer:

concentrated solar energy

Explanation:

Solar thermal power systems use concentrated solar energy

All solar thermal power systems have solar energy collectors with two main components: reflectors (mirrors) that capture and focus sunlight onto a receiver.

94. Determine the number of moles of oxygen atoms in each sample. a. 4.88 mol H₂O₂ b. 2.15 mol N₂O c. 0.0237 mol H₂CO3 d. 24.1 mol CO₂​

Answers

a)The 4.48 mol H₂O₂ contains 8.96 moles of oxygen atoms.

b)The 2.15 mol N₂O contains 2.15 moles of oxygen atoms.

c)The 0.0237 moles H₂CO₃ contains 0.0711 moles of oxygen atoms.

d)The 24.1 mol CO₂ contains 48.2 moles of oxygen atoms.

What is a mole ?

A mole is 6.02214076 x 1023 of any chemical unit, comprising atoms, molecules, ions, and others. Due to the large number of atom, molecules, or other components that comprise any material, the mole is an useful unit to utilize.

Briefing:

There are two moles of H and two moles of O in every mole of H₂O₂

There are two moles of N and one mole of O in every mole of N₂O

There are 2 moles of H, 1 mole of C, and 3 moles of O in a mole of H₂CO₃

1 moles of C and 2 moles of O are present for every mole of CO₂

Taking this into account:

The number of moles of oxygen atoms present in a 4.88 moles sample of H₂O₂ can be determined by:

[tex]\text { 4.48 molesof } \mathrm{H}_2 \mathrm{O}_2 x \frac{2 \text { moleso foxygen }}{1 \text { moleof } \mathrm{H}_2 \mathrm{O}_2}=[/tex]8.96 moles of oxygen atoms

The 4.48 mol H₂O₂ contains 8.96 moles of oxygen atoms.

The number of moles of oxygen atoms present in a 2.15 moles sample of N₂O can be determined by:

[tex]2.15 \text { molesof } N_2 O x \frac{1 \text { molesofoxygen }}{1 \text { moleof } N_2}=[/tex]2.15 moles of oxygen atoms

The 2.15 mol N₂O contains 2.15 moles of oxygen atoms.

The number of moles of oxygen atoms present in a 0.0237 moles sample of H₂CO₃ can be determined by:

[tex]0.0237 \text { molesof } \mathrm{H}_2 \mathrm{CO}_3 x \frac{3 \text { moleso foxygen }}{1 \text { moleof } \mathrm{H}_2 \mathrm{CO}_3}=[/tex]0.0711 moles of oxygen atoms

The 0.0237 moles H₂CO₃ contains 0.0711 moles of oxygen atoms.

The number of moles of oxygen atoms present in a 24.1 moles sample of CO₂ can be determined by:

[tex]24.1\text { molesofC } \mathrm{CO}_2 x \frac{2 \text { moleso foxygen }}{1 \text { moleof } \mathrm{CO}_2}[/tex]=48.2 moles of oxygen atoms

The 24.1 mol CO₂ contains 48.2 moles of oxygen atoms.

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Which of the following is the best balance to maintain low levels of carbon dioxide in the atmosphere?

a small volume of plants with a small number of carbon sources
a small volume of plants with a large number of carbon sources
a large volume of plants with a small number of carbon sources
a large volume of plants with a large number of carbon sources

Answers

Answer:  a large number of plants with a small number of carbon sources.  

Explanation:  the Formula for photosynthesis is

6CO2 + 6H2O → C6H12O6 + 6O2

So to use the carbon dioxide from the atmosphere to produce sugar and oxygen the more the atmosphere CO2 is available rather than other sources of carbon would allow plants to fully utilize the CO2 in the atmosphere.  

a large number of plants would use more CO2 than a small number of plants.  

this is math but they can't help you I understand here it's English if it's math help me with the procedure by putting the procedure

Answers

According to the solving the density of the marble is:

D = 2.5 g/cm^3

What is density?

The amount of mass that a substance has per unit volume is known as its density. If two materials occupy the same volume, the one with a higher density would weigh more than the one with a lower density.

The formula for density:

Utilizing the density formula is another approach to determining an object's weight-to-volume ratio. Since you only need to perform one operation to find it, the computation is not too difficult.

The density formula is as follows:

D = m / v,

where:

D - density;

m - mass; and

v - volume.

According to the give data:

m - 5grams

v - 2cm

D -

Putting the value in the formula we get:

D = 5/ 2,

D = 2.5 g/cm^3

According to the solving the density of the marble is:

D = 2.5 g/cm^3

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1
Students completed a flame test lab and recorded their results in the data table
below.
Compound
Potassium chloride
Sodium chloride
Lithium chloride
Calcium chloride
Unknown
Color
Lavender
Yellow-orange
Red
Orange
Red
Which of the following choices best explains why the students were able to identify
the unknown as lithium chloride?

Answers

The student observed the solution before it wind put into the flame and realized it was similar in texture and colour to,  the lithium chloride the teacher showed them. When they  saw that both lithium chloride and the unknown produced a red flame, they were sure that the unknown must have been lithium chloride as well

What is chemical compound?

A compound refers to a substance consisting of identical molecules composed of atoms of two or more chemical elements.  That is called a chemical compound. A chemical compound means a chemical substance consisting of several similar molecules containing elements of several elements.

Most notably, these molecules are linked by chemical bonds.  A chemical formula expresses the number of atoms of each element in a molecule of a compound. In addition, this chemical formula uses standard abbreviations for chemical elements with numerical signatures.

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the conversion of malate to oxaloacetate in the citric acid cycle takes place with the conversion of nad to nadh. in this reaction, nad is a(n) and is to nadh.

Answers

In the citric acid cycle, the conversion of NAD to NADH triggers the conversion of malate to oxaloacetate. NAD is a(n) reduced to NADH, the oxidizing agent, in this process.

What is an oxidizing agent?

In a redox chemical process, an oxidizing agent is a material that obtains or "accepts" or "receives" an electron from reducing agent (also known as an oxidant, oxidizer, electron recipient, or electron acceptor) (called reductant, reducer, or electron donor). So then every substance that oxidizes another substance is an oxidant. By saying that the oxidizers "undergo reduction" and "are reduced" while reducers "undergo oxidation" and "are oxidized," it can be indicated that the oxidizer's oxidation state, which characterizes the degree of the electron loss, falls while the reductant's increases. Oxygen, hydrogen peroxide, and halogens are the frequently used oxidizing agents.

An oxidizing agent is a chemical species that goes through a chemical reaction in which it obtains one or more electrons, to put it simply. It is a part of an oxidation-reduction (redox) reaction in that sense. An oxidizing agent, in the second sense, is a chemical species that donates electronegative atoms, often oxygen, to a substrate. Atom-transfer reactions are found in many explosives, combustion, and organic redox reactions.

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14. The element chlorine occurs in nature as a mixture of two iso-
topes. Chlorine-35 has an atomic mass of 34.969 amu and
makes up 75.77% of chlorine atoms. Chlorine-37 atoms make
up the remaining 24.23% of all chlorine. Use the average
atomic mass of chlorine from the periodic table to calculate the
atomic mass of Cl-37 atoms.

Answers

Chemical element chlorine has the atomic number 17 and the symbol Cl. The second-lightest halogen, fluorine is situated between bromine and fluorine in the periodic table and has most of its features in the middle of those two elements. Chlorine is an odorless, yellow-green gas at room temperature.

Chlorine is found in nature in the ratios of 75.53% and 24.47% as the isotopes "CI35" (atomic mass = 34.969 amu) and "CI37" (atomic mass = 36.966 amu). The atomic masses of the two chlorine isotopes are 35 u and 37 u.

The two chlorine isotopes, 35Cl and 37Cl, have a respective ratio of 3:1.

Cl-37 atoms has a total of 37 nucleons17 protons and 20 neutrons—make up its nucleus. Natural chlorine is composed of chlorine-37, which makes up 24.23%, and chlorine-35, which makes up 75.77%. This gives chlorine atoms in bulk an apparent atomic weight of 35.453(2) g/mol.

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A different mass of sodium hydroxide was used to make another 25.0 cm' solution.
35.0 cm' of 0.250 mol/dm' hydrochloric acid was required to neutralise this solution.
Calculate the mass of sodium hydroxide in the 25.0 cm' solution that was used in the titration.
Relative formula mass (M) of NaOH = 40
Mass=..
[4]

Answers

0.003 moles of NaOH was used in the titration.

What is titration?

The concentration of an identified analyte can be found using a simple laboratory technique called titration. As a standard solution with a given concentration and volume, a reagent known as the titrant or titrator is created.

By using a solution with a known concentration to measure the concentration of an unknown solution, this process is known as titration. To a known volume of the analyte (the unknown solution), the titrant (the known solution) is typically added from a buret until the reaction is finished. To ascertain the unknown concentration of an identifiable analyte, titration, commonly referred to as titrimetry, is a widely used quantitative laboratory analytical technique (Medwick and Kirschner, 2010). Volume measurements are a crucial component of titration

Concentration in mol/dm3 =

Amount of solution mol

= concentration in mol/dm3 × volume in dm3

Amount of sodium hydroxide

= 0.100 × 0.0250

= 0.00250 mol

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ammonia reacts with oxygen according to the following equation. 4 nh3(g) 5 o2(g) equilibrium reaction arrow 4 no(g) 6 h2o(g) the enthalpy of reaction for this reaction is negative. identify two changes that could be made to the system to shift the equilibrium toward the products and two changes that could be made to shift the equilibrium toward the reactants. (select all that apply.) changes that would shift the equilibrium toward the products: increasing the volume of the system increasing the concentration of no or h2o decreasing the concentration of nh3 or o2 reducing the temperature of the system changes that would shift the equilibrium toward the reactants: increasing the volume of the system increasing the concentration of no or h2o decreasing the concentration of nh3 or o2 reducing the temperature of the system

Answers

Based on the number of particles involved and the enthalpy of the reaction, changes that would shift the equilibrium to the right would, according to Le Chatelier's principle, include increasing the volume of the system, reducing the pressure of the system, reducing the temperature of the system, increasing the concentration of ammonia and/or oxygen and reducing the concentration of NO and/or water. Changes in the opposite direction would cause the equilibrium to shift towards the reactants.

Upon increasing pressure or reducing volume, the equilibrium shifts in the direction that produces fewer gaseous particles. In this case, that's the reactants (9 molecules) and not the products (10 molecules). When considering temperature, it is useful to consider heat as one of the reaction components. When the enthalpy of the reaction is negative, heat is produced so it can be considered to be one of the products. Le Chatelier's principle states that upon changing one of the variables, the equilibrium will shift in the direction that counteracts the effects of the change. So, when reducing the temperature of the system, we are taking the heat out of the system, so equilibrium will shift to the products so that it can produce more heat, and vice versa. The same principle applies to the concentrations of ammonia, oxygen, water, and NO.

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|x-8|=3x
whats the solution for x

Answers

the answer for |x-8|=3x will be x=2

how many significant digits are in 38 students

Answers

Answer: 2

Explanation: Every non-zero digit is a significant digit.

Answer:

2 significant figures.

Explanation:

38 contains 2 significant figures.

25. The Lewis dot symbol for I has how many dots?
7
5
6
4

Answers

[tex]\quad \huge \quad \quad \boxed{ \tt \:Answer }[/tex]

[tex]\qquad \tt \rightarrow \:7 [/tex]

____________________________________

[tex] \large \tt Solution \: : [/tex]

Iodine (I) has 7 electrons in its outermost shell, so the lewis dot symbol for I has 7 dots ( representing 7 valance electrons )

Answered by : ❝ AǫᴜᴀWɪᴢ ❞

Complete and balance the following half-reaction in basic solution. be sure to include the proper phases for all species within the reaction so32- aq -> so42-(aq)

Answers

SO32-(aq) ==> SO42-(aq)  ...  unbalanced

SO32-(aq) + H2O ==> SO42-(aq) ...  balanced for O

SO32-(aq) + H2O + 2OH- ==> SO42-(aq) + 2H2O  ...  balanced for O and H using base OH-

SO32-(aq) + H2O + 2OH- ==> SO42-(aq) + 2H2O + 2e-  ...  balanced for O, H and charge = balanced equation

What is half-reaction?

Half-reaction is the oxidation or the reduction reaction of a redox reaction. The oxidation is given as the loss of electrons, and reduction is given as the gain of electrons.

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Plss answer and I will give the brainliest.

If a typical aluminum beverage can weighs 13.5 grams, how much alum could you produce for every 210 cans collected. Show your work, based on your own experiment.

The following is what I got from my experiment.
- mass of aluminum can: 0.4996 grams
- mass of alum produced:- 5.183 grams
Molar mass of aluminum: 26.98 grams

Answers

The alum produced during experiment for every 210 can is 38.21 kg

What is experiment?

Experiment can be defined as a technique used to establish or refute a hypothesis, or to determine the efficacy or likelihood of anything new.

It can also be defined as a series of acts and observations carried out in the context of attempting to solve a specific problem or question.

According to your experiment 0.4996 gram of aluminum will produce 5.183 grams of alum.

Mass of 1 aluminum can = 13.5 g

Mass of 210 can = 13.5 x 210 = 2835g

Mass of alum produced by one gram of aluminum = 13.48 g

Mass of alum produced by 2835 g = 13.48 x 2835

                                                          = 38.21 kg

The amount of alum produced by 210 can = 38.21 kg

Thus, the alum produced during experiment for every 210 can is 38.21 kg

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Ethanol, C2H5OH, is considered clean fuel because it burns in oxygen to produce carbon dioxide and water with few trace pollutants. If 230.0 g of H2O are produced during the combustion of ethanol, how many grams of ethanol were present at the beginning of the reaction?

Have both the unbalanced and balanced chemical equations.
Explain how to find the molar mass of the compounds.
Explain how the balanced chemical equation is used to find the ratio of moles
Explain how many significant figures your answer needs to have.
The numerical answer

Answers

Answer:

I don't understand much that I need to know more

The equations of the reaction are given below:

The unbalanced equation: C₂H₅OH + O₂ ---> CO₂+ H₂OThe balanced  equation:  C₂H₅OH + 3 O₂ ---> 2 CO₂+ 3 H₂O

The mass in grams of ethanol present at the beginning of the reaction was 196.0 g to four significant figures.

What is the equation of the reaction of the combustion of ethanol?

The equation of the reaction of the combustion of ethanol is given below as follows:

The unbalanced  equation: C₂H₅OH + O₂ ---> CO₂+ H₂O

The balanced  equation:  C₂H₅OH + 3 O₂ ---> 2 CO₂+ 3 H₂O

The mole ratio of ethanol to water is 1 : 3

Considering the given question:

If 230.0 g of H2O is produced during the combustion of ethanol, how many grams of ethanol were present at the beginning of the reaction?

The mass of water produced depends on the mass of ethanol present.

Moles of a substance = mass / molar mass

The molar mass of water, H₂O =  2 * 1 + 16 = 18.0 g/mol

The molar mass of ethanol, C₂H₅OH = 12 * 2 + 1 * 6 + 16 = 46 g/mol

Mole of water produced = 230 / 18 = 12.78 moles

Moles of ethanol reacted = 12.78 / 3

Moles of ethanol reacted = 4.26 moles

Mass of ethanol reacted = 4.26 * 46

Mass of ethanol reacted = 195.96 g

Mass of ethanol reacted = 196.0 g to four significant figures

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Determine the mass of water produced from 50g of hydrocloric acid and excess potassium hydroxide HCl+KOH—>H2O+KCl

Answers

The mass of water produced from 50 g of hydrochloric acid and excess potassium hydroxide is determined to be 24.7 grams.

The balanced chemical reaction of equation is :

HCl + KOH  →  H₂O + KCl

First we will convert the mass of HCl from grams to moles,

Molar mass of HCl = 1.008 g/mol + 35.45 g/mol

Molar mass of HCl = 36.45 g/mol

Then, we will convert the mass of H₂O from grams to moles,

Molar mass of H₂O = 2 x (1.008 g/mol) + 16.00 g/mol

Molar mass of H₂O = 18.01 g/mol

Now, we will calculate the moles of HCl

Moles of HCl = Given mass

                         Molar mass

Moles of HCl =  50 g     = 1.37 mol

                         36.45 g

We know that,

1 mole of HCl is required to produce 1 mole of water

Then, 1.37 mole of HCl forms 1.37 mole x 18.01 g = 24.7 grams

                                                          1 mole

Hence,

The mass of water produced is 24.7 grams.

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consider the following gas samples: 4.0 g of hydrogen gas, 4.0 g of helium gas, 1.0 mole of fluorine gas, 44.0 g of carbon dioxide gas, and 146 g of sulfur hexafluoride gas. arrange the gas samples in order of increasing number of total atoms present.

Answers

A negatively charged core nucleus and one or more orbiting negatively charged electrons make up an atom. Neutrons and positively charged protons are present.

A gas has 6.023 * 10 23 atoms per mole.

The order is -

sulfur hexafluoride > Hydrogen > carbon dioxide  > nitrogen gas > helium gas

The inorganic compound sulphur hexafluoride, has the formula SF6. It is a gas that has no colour, no smell, is not combustible, and is not harmful. The octahedral geometry of SF 6 is made up of six fluorine atoms attached to one another.

The letter H and atomic number 1 stand in for the chemical element hydrogen. The lightest element is hydrogen. Hydrogen is typically a gas with the formula H2 made up of diatomic molecules. It is very combustible, tasteless, colourless, odourless, and non-toxic.

The molecules that make up carbon dioxide each have one carbon atom covalently doubly bonded to two oxygen atoms. It's a gas when it's at room temperature.

Nitrogen is the name of the chemical element that has the letter N and the atomic number 7. It is a common element in the universe and is thought to rank ninth in terms of overall abundance in both the Milky Way and the Solar System.

Chemical element helium has the atomic number 2 and the symbol He. It is the first member of the noble gas group in the periodic table and is a colourless, odourless, tasteless, non-toxic, inert, monatomic gas.

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Which one of the following is NOT equal to 1 mole?

6.02 x 1023 atoms of carbon

6.02 x 1023 molecules of oxygen

14.0 grams of nitrogen

26.0 grams of calcium

Answers

The compound that is not equal to 1 mole is 26 grams of calcium

A mole of a compound contains 6.02 x 10^{23}  atoms.

6.02 x 10^{23}  atoms of carbon = 1 mole

6.02 x 10^{23} molecules of oxygen = 1 mole

No. of moles = Atomic mass / Molar mass

No. of moles of nitrogen = 14 / 14 = 1 mole

14.0 grams of nitrogen = 1 mole

No. of moles of calcium = 26 / 40

26.0 grams of calcium = Not equal to 1 mole

Thus, the compound that is not equal to 1 mole is 26 grams of calcium

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Q23. Ammonium nitrate is an important fertiliser. It is made by reacting nitric acid with the alkali
ammonia.
State the type of reaction taking place.

Answers

Answer:

It is a neutralization reaction.

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