How many moles of water are produced when 7 moles of hydrogen gas react with 3 moles of oxygen gas?
2H₂O₂->2H2 ,O
O 2 moles of water
O 3 moles of water
O 5 moles of water
O 6 moles of water

Answers

Answer 1

5 moles of water is the correct answer

What is mole ?

A mole is a unit of measurement used in chemistry to quantify the amount of a substance. It is defined as the amount of a substance that contains Avogadro's number of entities, which is approximately 6.022 x 10^23 particles. The mole is used to express the amount of a substance in terms of its molecular or atomic count. The mole is particularly useful in chemical reactions, where it is used to balance the number of atoms or molecules of the reactants and products. For example, in a balanced chemical equation, the number of moles of each reactant must be equal to the number of moles of the corresponding product.

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Related Questions

Sulfuric acid reacts with most bases to give the corresponding?

Answers

Sulfuric acid reacts with most bases to give the corresponding sulfate. For example, reacting sulfuric acid with sodium hydroxide will produce sodium sulfate and water. The reaction can be represented as follows:

H2SO4 + 2NaOH → Na2SO4 + 2H2O.

These reactions show that sulfuric acid reacts with most bases to produce the corresponding sulfate salt and water. As the acidity of sulfuric acid increases, it becomes more reactive and more likely to produce the corresponding sulfate salt when reacting with a base.

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In 1863 John Newlands presented a paper, classifying the 56 discovered elements into 11 groups based on similar physical properties. He noted that pairs of similar elements existed which differed by some multiple of eight in atomic weight. In 1864 Newlands published his version of the periodic table and proposed the Law of Octaves, stating that any given element exhibits analogous behavior to the eighth element following it in the table. Dimitri Mendeleev noticed patterns in the properties and atomic weights of halogens, alkali metals and alkaline metals. He also observed similarities between the series CI-K-Ca, Br-Rb-Sr and I-Cs-Ba. In an effort to extend this pattern to other elements, Mendeleev created a card for each element, containing the element's symbol, atomic weight, and chemical and physical properties. As Mendeleev arranged the cards in order of ascending atomic weight, grouping elements of similar properties together, the periodic table was formed. Although Mendeleev's table demonstrated the periodic nature of elements, during the next century, scientists accurately explained why the properties of the elements recur periodically.
Rutherford discovered nuclear charge and this charge, later termed the atomic number, was used to number the elements within the periodic table. Finally variations of the same elements, or isotopes having the same number of protons and electrons but differing numbers of neutrons, were discovered. How did later discoveries change the model of Mendeleev's periodic table to what we accept today?

Answers

Elements were arranged by atomic number and properties of the elements varied periodically with atomic number.

This is because isotopes were not discovered during Medeleev’s time. Todays the elements are arranged according to increasing atomic number. That is also because not every element’s mass number increases with the atomic number, for example argon and potassium. Also, chemical and physical properties depend on the atomic number rather than the atomic mass.

hope this helps :)

What periodic trend does the atomic radius follow?
OA. It stays the same across the table.
OB. It decreases from top to bottom.
C. It increases from left to right.
OD. It decreases from left to right.

Answers

Answer:

OD. It decreases from left to right.

Explanation:

Radius decreases from left to right since proton counts increase but your shell stays same (same energy level)

Answer:

OD. It decreases from left to right.

Explanation:

pls tell me if wrong have a good day/night<3

Enzymes lower the activation energy required for a reaction without altering the cellular _______________, which would harm the cell.
a. Oxidants
b. Temperature
c. CO2
d. Triglycerides

Answers

Enzymes improve metabolic activity and protect the cell from harm by lowering the activation energy required for a process without altering the cellular temperature. The best choice is B.

What happens when the activation energy of enzymes is reduced?

By reducing energy and stabilizing the very energetic unstable transition state, enzymes (blue line) alter the creation of the transition state. This not only speeds up the reaction time but also makes the reverse reaction more likely.

What causes a reaction's activation energy to decrease?

Lower activation energies are possible with enzymes. The activation energy required to change a reagent into a product is decreased by enzymes.

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given that a mineral has one plane of cleavage and splits into sheets, is the mineral mica, pyroxene, amphibole, halite, or calcite?

Answers

The mineral that is described here is Mica.

What is a mineral?

We would have to note that when we are talking about a mineral in this case, we are going to deal with a kind of substance that is composed of several atoms and is filled with various uses as a precious material.

In this case we are told that  a mineral has one plane of cleavage and splits into sheets. We know that mica is a mineral that could have cleavages as has been described in the question that we are supposed to deal with here.

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if a compound has four degrees of unsaturation and shows signals in its 1h nmr spectrum between 7.0 - 8.0 ppm, what structural feature is likely to be present in the compound?

Answers

Both compounds will exhibit five signals if a chemical exhibits signals in its 1h nmr spectrum between 7.0 and 8.0 ppm and has four degrees of unsaturation.

There are four distinct signals in the 1H NMR spectrum in all. In the 2,2-dibromopropane proton NMR spectrum, there will only be one singlet as a result. Therefore, the appropriate response is option d. One way to estimate the overall amount of hydrogens in a sample is to divide the integrated strength of a signal in a 1H NMR spectrum by the number of hydrogens that gave rise to the signal (this does not apply to 13C NMR). Two signals can be seen in the H NMR spectra of butane. The molecule has a plane of symmetry.

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what is the temperature change if the system is a monatomic gas?

Answers

The law VP= constant states that one mole of an ideal monatomic gas at temperature T0 expands slowly.

When an ideal monatomic gas changes from one state to another, its temperature doubles but its pressure increases by about two times. The process's entropy change will be (R=2 cal/mol K). Examples of monatomic gases are helium, radon, and neon, which are considered noble gases. Because monoatomic gases lack any rotational or vibrational energy, their thermodynamic behavior is much simpler than that of polyatomic gases. The only chemical elements that, at standard temperature and pressure (STP), we can claim are stable for single-atom molecules are the noble gases.When an ideal monatomic gas changes from one state to another, its pressure increases by around two times while its temperature doubles. The process's change in entropy will be (R=2 cal/mol K).

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which of the following would decrease salinity by decreasing the amount of dissolved material in the ocean? group of answer choices evaporation precipitation sea spray a large volcanic eruption

Answers

Precipitation would decrease salinity by decreasing the amount of dissolved material in the ocean.

Precipitation would decrease salinity by decreasing the amount of dissolved material in the ocean. When it rains, freshwater from the atmosphere mixes with the saltwater in the ocean, diluting the concentration of salt in the water. This can lead to a decrease in the overall salinity of the ocean.

Evaporation would have the opposite effect, as it removes water from the ocean and leaves behind a higher concentration of dissolved salts. Sea spray and a large volcanic eruption could also potentially impact the salinity of the ocean, but the overall effect would depend on the specific details of the event.

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Complete Question :

Which of the following would decrease salinity by decreasing the amount of dissolved material in the ocean?

A. evaporation

B. a large volcanic eruption

C. sea spray

D. precipitation

explain how the accelerometer and the emg electrodes work together to generate data on response time. how does graphical analysis 4 help you analyze this data?

Answers

An accelerometer and EMG (electromyography) electrodes work together to generate data on response time by measuring different aspects of a person's movement.

The accelerometer is a device that measures acceleration, or the rate of change of velocity. In this context, it can be used to measure the acceleration of a person's limb movement, providing information on the speed and direction of movement.

On the other hand, EMG electrodes are placed on the skin to detect the electrical activity generated by muscles. This electrical activity, known as an electromyogram (EMG), provides information on the contraction and relaxation of muscles during movement.

When combined, the data from the accelerometer and EMG electrodes can be used to determine a person's response time, or the time it takes for a person to initiate a movement in response to a stimulus. The data collected by the accelerometer provides information on the speed of movement, while the EMG data provides information on the activation of muscles during the movement.

Graphical analysis software, such as Graphical Analysis 4, can help you analyze this data by providing visual representation of the data collected from the accelerometer and EMG electrodes. The software allows you to plot the data over time, compare different movements, and identify patterns and trends in the data. This makes it easier to understand the relationship between the acceleration of movement and the activation of muscles, which is essential for analyzing response time.

In conclusion, the accelerometer and EMG electrodes work together to generate data on response time by measuring different aspects of movement, and graphical analysis software helps to analyze and visualize this data for a better understanding of the relationship between movement and muscle activation.

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2. a mixture contains 0.4 grams of ammonium chloride, 1.0 grams of salt, and 1.6 grams of sand. what is the percentage by mass of each component of the mixture?

Answers

The percentage by mass of ammonium chloride is  13.33%. The percentage by mass of salt is  33.33%. The percentage by mass of sand is  53.33%.

Percentage Composition of a Mixture

A mixture is made up of different components and it is important to determine the proportion of each component in the mixture. This can be determined by calculating the percentage by mass of each component. The percentage by mass of a component is found by dividing the mass of the component by the total mass of the mixture and multiplying the result by 100. The total mass of the mixture is calculated by summing up the masses of all the components. In this way, we can determine the proportion of each component in the mixture, expressed as a percentage of the total mass. This information can be useful in various fields such as chemistry, pharmacy, and food science, to name a few.

To find the percentage by mass of each component in the mixture, we need to divide the mass of each component by the total mass of the mixture and multiply by 100.

The total mass of the mixture is 0.4 grams + 1.0 grams + 1.6 grams = 3.0 grams.

The percentage by mass of ammonium chloride is (0.4 grams / 3.0 grams) * 100 = 13.33%.

The percentage by mass of salt is (1.0 grams / 3.0 grams) * 100 = 33.33%.

The percentage by mass of sand is (1.6 grams / 3.0 grams) * 100 = 53.33%.

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you have 76.6 grams of silver and have raised it to its melting point. how much additional heat is required to melt the silver?

Answers

No additional heat is required to melt the silver as it has already been raised to its melting point.

What is the melting of silver?

The melting point of silver is 961.8 °C. Hence, all that is needed is to keep the silver at that temperature until it has completely melted.

The calculation involves determining the temperature at which the silver needs to be heated to in order to melt it. This can be done by calculating the energy required to raise the silver's temperature from its initial state to its melting point.

The energy required is calculated using the formula:

[tex]Energy = Mass * Specific Heat Capacity * Change in Temperature[/tex]

The equation would be:

[tex]Energy = 76.6 grams * 0.235 J/g°C * (961.8 °C - Initial Temperature)[/tex]

The initial temperature will depend on the temperature of the environment the silver is in before it is heated. It can be used to determine how much energy must be added to the silver in order to raise it to its melting point.

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what is the cause of the strange thermal properties of water? group of answer choices the molecule is very polar and so has multiple strong hydrogen bonds that hold the molecules together very strongly the fact that there are is a huge amount of it on earth and that it is gathered into the oceans the covalent bonds making up the water molecule which bind the atoms together very strongly

Answers

The thermal characteristics of water, so mystifying and exceptional, are brought about by the awe-inspiring power of hydrogen bonds between the water molecules.

Its distinct positive and negative poles foster the formation of bonds that are incredibly more robust than the average intermolecular interactions.

This hydrogen bonding not only leads to a high boiling and melting point but also results in a significant heat capacity and remarkable surface tension.

The abundance of water on our planet, collected into massive oceans, magnifies these extraordinary qualities, rendering water an indispensable component of life as we know it.

This hydrogen bonding mechanism, which underlies the strange thermal properties of water, continues to captivate scientists and spark wonder in the minds of all who study it.

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What type of bond is a disulfide bridge?

Answers

A covalent type of bond is a disulfide bridge. The coupling of two thiols (-SH) groups results in the formation of a disulfide bond, which is a covalent link between two sulfur atoms (-S-S-).

What kind of molecule are disulfide bonds?

In biochemistry, a functional group with the formula RSSR′ is referred to as a disulfide. The connection, which is frequently created by the binding of two thiol groups, is also known as an SS-bond or occasionally as a disulfide bridge.

What other name would you give disulfide bonds?

Covalent bonds between two sulfur atoms are referred to as disulfide bonds, S-S bonds, disulfide bridges, and disulfide bonds. The majority of the cross-linkages in polypeptides are these.

A disulfide contains how many bonds?

Disulfide bond structures that are commonplace

Each IgG has 12 intra-chain disulfide bonds, each of which is connected to a specific IgG domain.

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jamila makes zinc sulfate
she uses an acid and zinc metal
the diagram shows the stages jamila uses to make zinc sulfate
the stages are not in the correct order

Answers

The diagram shows the stages jamila uses to make zinc sulfate and the stages in the correct order include the following below:

Add excess zinc to the acid then gently heat.Filter the reaction mixture.Dry the zinc sulfate with filter papers.Heat the filtrate to concentrate the solution.Leave the filtrate to evaporate slowly.

What is Filtration?

This is referred to as a process used to separate solids from liquids or gases using a filter medium.

In the formation of zinc sulfate, the zinc is usually added to concentrated H₂SO₄ and filtered with the use of filter paper through several techniques to ensure that the filtrate is dry and concentrated.

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Which of the substances have a standard enthalpy of formation (NHf) equal to zero?a. C (diamond).b. F2(g).c. NH3(g)d. Hg (l).

Answers

From the given list of compounds, [tex]F_2[/tex](g)  and Hg(l) are at their standard state and therefore have a standard enthalpy of formation equal to zero.

The enthalpy change required to produce one mole of a compound from an element in its standard state is known as the standard enthalpy of formation. The standard states represent the shape an element would take at 1 bar of pressure and 25 °C. Since the energy would be different for the ridiculous reaction carried out with the diamond form of carbon, carbon is designated as graphite. Under normal circumstances, hydrogen exists as a molecular gas, thus this form is necessary for the typical reaction.

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conclusions: in winter, you can buy a variety of salts to use on your sidewalk. two of the most popular choices are nacl and cacl2. which of the two salts is more effective? justify your answer.

Answers

Total 2 ions in water,

The greater the number of dissolved ions in water, the greater the disorder of the puddle, and the lower the freezing point.

when we spread cacl2 is a better road salt than Nacl because it makes more ions per formula unit of the salt dissolved.

A chemical response is a manner that leads to the chemical transformation of 1 set of chemical substances to any other. Classically, chemical reactions embody modifications that handiest involve the positions of electrons inside the forming and breaking of chemical bonds among atoms, without exchange to the nuclei (no change to the factors gift), and may regularly be described with the aid of a chemical equation. Nuclear chemistry is a sub-area of chemistry that involves the chemical reactions of risky and radioactive elements where both electronic and nuclear modifications can arise.

The substance (or materials) initially worried in a chemical reaction are called reactants or reagents. Chemical reactions are commonly characterized by using a chemical trade, and they yield one or greater merchandise, which usually have residences exclusive from the reactants. Reactions often encompass a sequence of man or woman sub-steps, so-referred to as fundamental reactions, and the statistics on the correct path of movement are part of the response mechanism.

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what type of reaction combines a carbon-hydrogen compound with oxygen to form carbon dioxide and water?

Answers

The process of a hydrocarbon reacting chemically with oxygen to produce carbon dioxide, water, and heat is known as hydrocarbon combustion. Molecules with both hydrogen and carbon make up hydrocarbons.

What kind of process produces the byproducts of water and carbon dioxide?

When oxygen gas (O2) combines with specific types of chemicals, a combustion reaction happens. The other compound fuel is commonly known as. Burning is a more common term for combustion processes. Water and carbon dioxide are two of the most frequent byproducts of combustion reactions.

A combustion is a form of reaction, right?

A fuel and an oxidant, often atmospheric oxygen, engage in a high-temperature exothermic (heat-releasing) redox (oxygen-adding) chemical reaction during combustion that results in oxidized, frequently gaseous products in a mixture known as smoke.

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What will happen to the rate if the concentration of B doubles, holding everything else constant?
А. Nothing
B. Doubles
C. Decreases by 1/2
D. Quadruples
E. Decreases by ¼

Answers

If the concentration of B doubles, the rate of reaction will also double while holding all other factors constant.

What is chemical reaction?

One set of chemical substances can change into another through a process known as a chemical reaction. It is distinguished by a chemical alteration that generates new compounds with distinct characteristics. The atoms and molecules that make up the reactants are rearranged during chemical reactions.

The concentration of the reactants has a direct relationship with the rate of a chemical reaction. The rate of reaction will likewise double if the concentration of B doubles. In other words, the concentration of each reactant directly affects the rate of reaction. Therefore, doubling the concentration of B will likewise twice the rate of reaction.

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if you have 1.0 mol of each of the following compounds, which will have the greatest mass? A. NO
B. NO2
C. N2O
D. N2O5

Answers

N2O5 has the highest mass if you combine 1.0 mol each of the preceding chemicals, according to the supplied statement.

What purpose does N2O5 serve?

Dinitrogen pentoxide (N2O) applications

used in high-fuel rockets as a powerful oxidizer. used throughout fluids that are not dependent on water to make it easier to nitrate compounds that are extremely sensitive to water. Nitrating agent used in contemporary synthetic organic chemistry.

Why is N2O5 so acidic?

Since the oxides in an item's higher oxidation number are more acidic than those in its lower oxidation state, dinitrogen result in higher levels the most caustic oxide compared to no2 and nitrogen tetraoxide. N 2 O 5 becomes the most acidic dioxide as a result.

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which particle is not used in calculating the atomic mass?

Answers

The smallest and least massive atomic particle is the electron, which is negatively charged.Due to the electron's extremely small mass, it is not counted inside the element's atomic number.

What particle does not add to mass?

Although they are very small and possess a mass of 1/1850 of that of a protons or neutron, electrons carry a negative charge.Since they are so tiny, they do not, in reality, add to the weight of the atom.

What three particles make up an atom?

These particles are frequently referred to it as subatomic particles since they are the building blocks of atoms.There are protons, neutrons, and electrons, three types of subatomic particles.Protons and electrons, two of a subatomic particles, each have an electrical charge of one or the other.

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if you have 10.0 grams of a mixture of salt and water and you find that there are 1.3 grams of salt in the mix, what is the percent composition of salt in the original mixture? what is the percent composition of the water?

Answers

If 10.0 grams of mixture of salt and water and you find that there are 1.3 grams of salt in the mix, the percent composition of salt is 13 %. The percent composition of the water is 87 %.

The total mass of the mixture = 10 grams

The mass  of the salt = 1.3 grams

The  percent composition of salt  = ( mass of salt/mas of solution ) × 100%

The  percent composition of salt  = ( 1.3 / 10 ) × 100 %

The  percent composition of salt = 13 %

The mass of the water = 10 - 1.3 = 8.7 grams

The  percent composition of water = ( 8.7 / 10 ) × 100 %

The  percent composition of water = 87 %

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how mayn grams of sodium acetate mustbe added to 1.00 l of a .200 m acetic acid solutioj to form a buffer of 4.20

Answers

18.04g of sodium acetate must be added to 1.00L of a .200M acetic acid solution to form a buffer of 4.20.

The formula for sodium acetate (NaC2H3O2) is Na+ + C2H3O2-.

To calculate the amount of sodium acetate needed to form a buffer of 4.2, we need to use the Henderson-Hasselbalch equation:

pH = pKa + log([base]/[acid]) where [base] is the concentration of the base (sodium acetate) and [acid] is the concentration of the acid (acetic acid).

Given that the acetic acid concentration is 0.200 M,

we can solve for the concentration of sodium acetate needed to achieve a pH of 4.2 when pKa of acetic acid = 4.75 then:

4.2 = 4.75 + log([base]/0.200)

log([base]) = -0.55

[base] = 0.22 M

Now, we can calculate the amount of sodium acetate needed to achieve this concentration in 1.00 L of solution:

0.22 mol/L × 1.00 L = 0.22 mol

Then, we can convert this amount of moles to grams using the molar mass of sodium acetate.

Molar mass of sodium acetate = 82g/mole

Mass of sodium acetate required = 0.22 x 82 = 18.04g

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Whats wrong with the KCl in the water

Answers

The presence of KCl in water is not inherently problematic, but it can cause issues depending on the specific circumstances and the intended use of the water.

Theoretically, there shouldn't be anything inherently "wrong" with potassium chloride (KCl) in water. KCl is a common salt that is soluble in water, meaning it dissolves in water to form a clear, homogeneous solution. The solubility of KCl in water depends on various factors such as temperature, pressure, and the presence of other dissolved substances. However, in certain specific circumstances, the presence of KCl in water can lead to issues.

For example, if the concentration of KCl in water is too high, it can cause the water to become saturated and can lead to the precipitation of solid KCl. This can cause scaling and deposit buildup on surfaces and equipment, leading to operational problems in industrial processes. The dissolution of KCl in water is a simple chemical process that results in the formation of a clear, homogeneous solution.

The reaction is not spontaneous and does not produce an explosion and can be safely carried out under normal conditions. It's important to note that while some chemical reactions can be exothermic and release heat, the dissolution of KCl in water is not one of them.

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estimate the age of an artifact that has 73% of the amount of c-14 (relative to c-12) compared to living organisms. The half life of C-14 is 5730 years. Remember that all radioactive processes follow first order kinetics.
A) 1500 years
b) 2000 years
c) 2600 years
d) 3200 years

Answers

B.2000 years should be the estimated age of an artifact .

what is the molarity of a 11.0 % by mass glucose (c6h12o6) solution? (the density of the solution is 1.03 g/ml .)

Answers

11.0 grams of glucose in 100 grams of solution.

Grams of H2O = 100 – 11.0 = 89 H2O

11.0 grams glucose x 1 mole glucose/ 180 grams = 0.0611 moles glucose

1.03 grams solution/ 1 mL solution x 1000 mL liter = 1030 grams solution/liter

[11.0 grams glucose/100 grams solution] x 1030 grams/liter =113.3 grams glucose/1 liter

113.3 grams glucose/1 liter x 1 mole glucose/180 g = 0.629 M

Molarity = 0.629

molality = moles of glucose/kilogram H2O

0.0611 moles/ 89 g H2O x 1000 g/1kilogram = 0.686 molality

A solution of glucose (C6H12O6) that is 11.0% by mass has a molarity of 11.0 grams of glucose per 100 grams of solution has 0.686 molality.

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Full question:

A) What is the molarity of a 10.5% by mass glucose (C6H12O6) solution (density of solution is 1.03 g/mL).

B) What is the molality of the above glucose solution

imagine, you are boiling an egg. what would be the best method for raising the boiling point of water in a kettle by a few degrees celsius to have it done sooner?

Answers

Adding a solute to water can be an effective way to raise its boiling point and speed up the boiling process.

What is the method of raising boiling point?

To raise the boiling point of water in a kettle by a few degrees Celsius and have the boiling process done sooner, you could add a solute that can increase the boiling point of water. Some common solutes used for this purpose are salt (sodium chloride), sugar, and baking soda (sodium bicarbonate).

When a solute is added to water, it disrupts the hydrogen bonding between water molecules and requires more heat to convert the solution into steam. This increase in the energy required to boil the solution results in a higher boiling point.

For example, adding salt to water can increase its boiling point by about 1°C for each 58 g of salt per liter of water. However, it is important to note that adding too much solute can also reduce the solubility of the solute, and the solute may precipitate out of solution if the concentration becomes too high.

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which of the following statements about subatomic particles are true? i. protons and neutrons have charges of opposite signs but the same magnitude. ii. protons and neutrons have about the same mass. iii. a neutral atom always has the same number of neutrons and electrons.

Answers

The following statements about subatomic particles are true:

i. Protons and neutrons have charges of opposite signs but the same magnitude.ii. Protons and neutrons have about the same mass. iii. A neutral atom always has the same number of protons and electrons.

The answer to the question is that protons and neutrons have charges of opposite signs but the same magnitude, protons and neutrons have about the same mass, and a neutral atom always has the same number of protons and electrons.

Protons have a positive charge of +1, while neutrons have no charge. Electrons have a negative charge of -1. Neutral atoms contain an equal number of protons and electrons, so that the overall charge of the atom is zero.

Isotopes are atoms of the same element that have the same number of protons but different numbers of neutrons, and thus have different atomic masses.

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. what quantity of energy in kj does it take to convert 0.250 kg of solid methanol (ch3oh) at 120 k to gaseous methanol at 400 k?

Answers

The total energy required to convert 0.250 kg of solid methanol to gaseous methanol is 0.066 kJ + 47.49 kJ + 3.41 kJ = 51.00 kJ.

To convert 0.250 kg of solid methanol to gaseous methanol, we need to perform three separate energy exchanges: 1) melting the solid to liquid, 2) heating the liquid to its boiling point, and 3) converting the liquid to gas.

First, we need to melt the solid methanol at 120.0 K to liquid methanol at 176.0 K. This requires an energy transfer of 0.250 kg * 2.2 kJ/mol / (32.04 g/mol) = 0.066 kJ.

Next, we need to heat the liquid methanol from 176.0 K to 338.0 K. This requires an energy transfer of 0.250 kg * (81.3 J/mol K) * (338.0 K - 176.0 K) / (32.04 g/mol) = 47.49 kJ.

Finally, we need to convert the liquid methanol to gas at 338.0 K to 400.0 K. This requires an energy transfer of 0.250 kg * 35.2 kJ/mol / (32.04 g/mol) = 3.41 kJ.

The total energy required to convert 0.250 kg of solid methanol to gaseous methanol is 0.066 kJ + 47.49 kJ + 3.41 kJ = 51.00 kJ.

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Complete question:

What quantity of energy in kJ does it take to convert 0.250 kg of solid methanol at 120.0 K to gaseous methanol at 400.0 K? Molar mass of methanol = 32.04 g/mol

Melting point - 176.0 K

Boiling point - 338.0 K

Heat of fusion - 2.2 kJ/mol

Heat of vaporization - 35.2 kJ/mol

Specific heat (solid) - 105 J/mol K

Specific heat (liquid) - 81.3 J/mol K

Specific heat (gas) - 48.0 J/mol K

graphite and diamond are polymorphs in that they have the same chemical compositions but different crystalline structures true false

Answers

The given statement is true. Graphite and diamond are both pure carbon, but they have different crystalline structures and thus different physical properties such as hardness and electrical conductivity.

The crystalline form of carbon element is graphite. It is consists of stacked layers of graphene. Graphite is the most stable form of carbon under some standard conditions. Graphite is soft and has good electrical conductivity.

Diamond is a solid form of carbon element with its atoms will arranged in a crystal structure called as diamond cubic. Another solid form of carbon called as graphite and it is the chemically stable form of carbon at room temperature as well as pressure, but diamond is metastable and it will converts to it at a negligible rate under those conditions. Diamond is the hardest known substance and an insulator.

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Which of the following would be the best way to model the Milky Way Galaxy?

Answers

It would be preferable to design the Milky Way Galaxy as a huge barred spiral galaxy.

The Milky Way is what?

The Milky Way makes it possible to examine a medium-sized spiral galaxy's functioning in great detail. Similar to how the sun provides the basis for our complete study of stars, it serves as the basis for our knowledge of what occurs within galaxies.

Can humans emigrate from the Milky Way?

The technology needed to move between galaxies is much beyond what humanity is now capable of, and it is currently solely the stuff of science fiction. Theoretically speaking, however, there is nothing that demonstrates definitively that interstellar travel is not feasible.

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