calculate the total pressure (in atm) of the mixture when 1.00 atm of dinitrogen reacts with 5.00 atm of dihydrogen in a 1.0 l flask to give ammonia

Answers

Answer 1

The total pressure (in atm) of the mixture of the 1.00 atm of dinitrogen reacts with the 5.00 atm of the dihydrogen in the 1.0 l flask to give ammonia is 1.2 atm.

The reaction of ammonia formation is :

N₂  +  3H₂   --->  2NH₃

The pressure of the dinitrogen = 1 atm

The pressure of the dihydrogen = 5 atm

                  N₂  +  3H₂   --->  2NH₃

Initial           1          5            

Divided       1         1.6            

by mol          

End             0         0.6         0.6

The total pressure = partial of   N₂  + partial pressure of H₂

The total pressure  = 0.6 + 0.6

The total pressure = 1.2 atm

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Related Questions

given the balanced equation: 2 lioh co2 li2co3 h2o, how much h2o will be produced if 25.4 g lioh reacts with 64.8 g co2?

Answers

if 25.4 g of LiOH reacts with 64.8 g of CO2, 9.54 g of H2O will be produced.

We can start by using the coefficients in the balanced equation to convert the number of moles of one substance to the number of moles of another substance.

Convert the masses of LiOH and CO2 to moles:

moles of LiOH = 25.4 g / (23.9 g/mol) = 1.06 molmoles of CO2 = 64.8 g / (44.0 g/mol) = 1.47 mol

Determine the limiting reactant:

Since the ratio of the coefficients in the balanced equation is 2:1 for LiOH to CO2, we can see that the limiting reactant is LiOH. This means that we will run out of LiOH before CO2, so we will use the moles of LiOH to calculate the amount of H2O produced.

Calculate the number of moles of H2O produced using the balanced equation:

From the balanced equation, for every 2 moles of LiOH that react, 1 mole of H2O is produced. So, the number of moles of H2O produced is:

1.06 mol LiOH / 2 mol LiOH/mol H2O = 0.53 mol H2O

Convert the number of moles of H2O to mass:

Mass of H2O = 0.53 mol * (18.0 g/mol) = 9.54 g

So, if 25.4 g of LiOH reacts with 64.8 g of CO2, 9.54 g of H2O will be produced.

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Which of the following is a result of
differentiation?
a. An organism grows larger.
b. Cells in an embryo increase in number.
c. Cells in an embryo become different from
one another.
d. An organism reproduces.

Answers

The result of the cell differentiation is that cells in an embryo become different from one another. Option C

What is cell differentiation?

When we are talking about cell differentiation we mean the process by which the cells of the organisms would become different from each other. That is is the manner in which the cell would become to carry out the functions that are different from each other.

We should note that the embryo is just formed as a mass of cells that must be able to differentiate so that each of the cells can be able to perform an assigned task.

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what force will be necessary to slide a rubber puck of mass 0.55 kg on dry concrete? use the appropriate coefficients of friction from the previous lesson. (2 marks)

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The force required to slide the puck is approximately 4.13 N.

The force required to slide a rubber puck on dry concrete is equal to the friction force acting between the puck and the concrete. The coefficient of friction for rubber on concrete is typically around 0.75. To find the frictional force, you can use the equation:

f_friction = friction_coefficient * f_norm

where f_norm is the normal force pressing the puck against the concrete, which is equal to the puck's weight (mass * gravity). Thus,

f_friction = 0.75 * m * g

where m is the mass of the puck (0.55 kg) and g is the acceleration due to gravity (9.8 m/s^2).

Therefore, the force required to slide the puck is approximately 4.13 N. It is important to note that this force is only an estimate, as there are many factors that can influence the frictional force, such as the smoothness of the concrete surface, the temperature, and humidity.

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Based on the passage, which amino acid will most likely react with phosphine? cysteine has sulfhydryl groups and can make disulfide bonds. Methionine is the other amino acid that is sulfur containing, but cannot make disulfide bonds.

Answers

Cysteine is the amino acid that will most likely react with phosphine.

Cysteine contains sulfhydryl (-SH) groups that can form disulfide bonds (-S-S-) with other cysteine residues in a protein. This is important for maintaining the proper 3-dimensional structure of the protein.

Phosphine is a highly reactive gas that can react with the sulfhydryl groups of cysteine.

Methionine, on the other hand, is also a sulfur-containing amino acid, but it does not have the ability to form disulfide bonds. This means that it is unlikely to react with phosphine.

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you have a box of sodium chloride (salt), which has a molecular weight of 58.4 grams/mol. you weigh out 5.84 grams of sodium chloride and dissolve it in water to give a total volume of 0.2 liter. what is the molarity (m) of the solution that you have made?

Answers

Answer:

Molarity (M) is a unit of concentration that expresses the number of moles of solute (in this case sodium chloride) per liter of solvent (water). To calculate the molarity of the solution, you need to know the number of moles of sodium chloride present and the total volume of the solution.

To find the number of moles of sodium chloride present, you can use the formula:

moles = mass / molar mass

where mass is the amount of sodium chloride you weighed out (5.84 grams) and molar mass is the molecular weight of sodium chloride (58.4 grams/mol).

moles = 5.84 / 58.4 = 0.1

To find the molarity of the solution, you can use the formula:

molarity = moles / liters

where moles is the number of moles of sodium chloride present (0.1) and liters is the total volume of the solution (0.2 liters).

molarity = 0.1 / 0.2 = 0.5 M

So the molarity of the solution is 0.5 M

which of the following options correctly describe hydrated ionic compounds? select all that apply. multiple select question. a hydrate has a specific number of water molecules associated with each formula unit. hydrates are ionic compounds that are dissolved in water. the water molecules of a hydrate cannot be removed. heating a hydrate can remove some or all of the water molecules. a greek prefix is used to indicate the number of h2o molecules per formula unit.

Answers

Each formula unit of a hydrate is related with a specified quantity of water molecules. The number of H2O molecules per formula unit is indicated by a Greek prefix. When a hydrate is heated, part or all of the water molecules are removed.

What is molecules?

A molecule is a collection of two or more atoms bound together by chemical bonds; depending on the context, the phrase may or may not include ions that meet this definition. The smallest particle of a material that possesses all of its physical and chemical characteristics. One or more atoms make form a molecule. A molecule is a collection of two or more atoms of the same or distinct elements that are chemically linked together. For example, two hydrogen atoms combine with one oxygen atom to generate one molecule of water.

Here,

Each hydrate formula unit corresponds to a certain number of water molecules. A Greek prefix indicates the quantity of H2O molecules per formula unit. When a hydrate is heated, it loses some or all of its water molecules.

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2KCIO3 --> 2KCI + 302
If 5.0g KCIO3 of is decomposed, how many grams of KCI are producted?

Answers

The mass of the KCl that is produced is  3.1 g.

What is the mass of the KCl produced?

Stoichiometry is the branch of chemistry that deals with the quantitative relationships between the reactants and products in a chemical reaction, expressed in terms of the relative numbers of moles of each substance involved.

We have to note that;

Number of moles of the KClO3 =  5.0g/122.55 g/mol

= 0.041 moles

Hence;

2 moles of the perchlorate produces 2 moles of the KCl hence;

Mass of the KCl =  0.041 moles * 75 g/mol

= 3.1 g

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How many grams are there in 1.5 x 10^25 molecules of CO2

Answers

Answer:

It would be 1096.2

Explanation:

My math might be incorrect but I am 110% sure

Please solve this asap.​

Answers

The results indicate that the black food colouring contains components A, B, C, D, and E.

What do the results tell you about the composition of the black food colouring?The results of Diagram 2 suggest that the black food colouring is composed of five components, labeled A, B, C, D, and E.\The start line of the chromatogram is at the far left, followed by component A, component B, component C, component D, and component E, in that order.Component E is the farthest right and is the component that contains the black food colouring.This indicates that component E is the component of the black food colouring that is most strongly attracted to the solvent and therefore has the highest polarity.The other components of the black food colouring, components A, B, C, and D, have lower polarities and are less strongly attracted to the solvent.This suggests that the black food colouring is composed of a mixture of components of varying polarities.

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acids release protons when they dissolve in water. how does the proton (h ) released by an acid compare to the proton found in the nucleus of an atom?

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Acids, when they dissolve in water releases positively charged hydrogen atoms as ions (H⁺). It is similar to the protons. So there is no actual difference.

Proton is a positively charged sub-atomic particle found in the nucleus of an atom. It along with chargeless neutrons form the Centre of the atom. Due to the presence of protons, the electrons are revolving around the nucleus.

When an acid is dissolved in water Hions are produced. Hydrogen atom has a proton in its nucleus and only one electron. There are no neutrons in the hydrogen atom. So when the electron is released and positive hydrogen ion is formed, it is basically a single proton in the nucleus.

So hydrogen ion formed as a result of ionization when acid dissolves in water is same as the proton.

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2. what are the two ways we write the formula for a proton?

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The formula for a proton, also known as a hydrogen ion, can be written in two ways: H+ and H3O+

H+: This is the most commonly used symbol for a proton, representing a single positively charged hydrogen ion.

H3O+: This represents a proton in its hydronium ion form, which is a hydrogen ion bonded to a water molecule (H2O). The symbol H3O+ is used to indicate that the proton is hydrated, or surrounded by water molecules.

A proton, represented by the symbol H+, is a subatomic particle with a single positive charge. It is found in the nucleus of an atom and is one of the building blocks of matter. The hydrogen ion is a key player in many chemical reactions and is important in a variety of biological processes, including acid-base reactions, metabolic reactions, and energy transfer reactions.

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how would the 1h nmr spectrum of an alcohol be affected by the addition of d2o to replace the oh protons with d atoms?

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When adding D2O to an alcohol, the hydrogen atoms of the OH groups are replaced by deuterium atoms (D).

This affects the 1H NMR spectrum of the alcohol by shifting the peaks of the OH protons. The chemical shift of the hydroxyl group is shifted from its original position at a chemical shift of ~10-12 ppm to a higher chemical shift of ~4-6 ppm for the deuterium atom. This shift is due to the higher mass of the deuterium atom compared to the hydrogen atom. As a result, the peaks of the OH protons are shifted downfield and are seen more prominently in the 1H NMR spectrum. This can be calculated using the equation:

Chemical shift (δ) = (δD - δH) × (M/m)

where δD is the chemical shift of the deuterium atom, δH is the chemical shift of the hydrogen atom, M is the mass of the deuterium atom (2) and m is the mass of the hydrogen atom (1).

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What happened to the rate of the reaction when the temperature was decreased?

Explain the effect of temperature on reaction rate in terms of collision theory. Your answer should include at least four complete sentences.

detailed please, thank you.

Answers

When a temperature decreases in a reaction, this means the reaction is slowing down. When the reaction slows down, the particles aren’t colliding as much and therefore a decreased collision theory since there isn’t much left of a reactant to react to. If you mixed this reaction, then the particles would collide more, probably generating more heat since its particles are reacting, which is exothermic.

consider an atom moving in a vacuum. provide an appropriate expression for kinetic energy according to:

Answers

Consider an atom moving in a vacuum. provide an appropriate expression for kinetic energy according to:

The expression for the kinetic energy (KE) of an atom moving in a vacuum is given by:

KE = 1/2 * m * v^2

About Atom

The atom is a basic unit of matter, consisting of an atomic nucleus and a cloud of negatively charged electrons that surrounds it. The atomic nucleus consists of positively charged protons and neutrally charged neutrons (except in the atomic nucleus of Hydrogen-1, which has no neutrons).

The electrons in an atom are bound to the nucleus by electromagnetic forces. A collection of such atoms can also bond with each other, and form a molecule. Atoms containing the same number of protons and electrons are neutral, while those containing a different number of protons and electrons are positive or negative and are called ions. Atoms are grouped based on the number of protons and neutrons contained in the atomic nucleus. The number of protons in an atom determines the chemical element of that atom, and the number of neutrons determines the isotope of that element.

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Which of the following describes the pattern observed for an ethyl group in a 'H NMR spectrum? a) The spectrum contains a 2H quartet and a 3H triplet. b) The spectrum contains a 2H doublet and a 3H triplet. c) The spectrum contains a 2H triplet and a 3H doublet. d) The spectrum contains a 2H triplet and a 3H quartet.

Answers

In an H NMR spectrum of an ethyl group, the protons of the ethyl group appear as a 2H triplet and a 3H quartet.

The 2H triplet and 3H quartet in NMR spectroscopy are due to the two protons in the methyl group of the ethyl group and the three protons in the ethyl group respectively. The triplet has a higher intensity than the quartet as the three protons in the ethyl group are further apart, resulting in a smaller coupling constant.

Conversely, the quartet has a lower intensity due to the small distance between the two protons in the methyl group, resulting in a larger coupling constant. The 2H triplet can be distinguished from the 3H quartet as the triplet has a single peak, while the quartet has four peaks.

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Teacher Tom makes a cup of coffee and leaves it on his table. Its temperature ( HC) is modelled by the function H = (65)22 +25, where is the time in minutes after Tom makes the coffee.a. State the initial temperature of the coffee. b. Find the temperature of the coffee after 3 minutes. c. Tom likes to drink his coffee when it is 40°C or cooler. Find, to the nearest minute, how long he should he wait to drink his coffee. d. Determine the temperature of the room where Tom set down his coffee.

Answers

After 3 minutes, the temperature of the coffee can be calculated by replacing in the equation with 3, H = [tex](65)(3)^2 + 25 = 65(9) + 25 = 585°C[/tex].

a. The initial temperature of the coffee is 65°C.

b. After 3 minutes, the temperature of the coffee can be calculated by replacing in the equation with 3, H = [tex](65)(3)^2 + 25 = 65(9) + 25 = 585°C[/tex].

c. To find how long Tom should wait to drink his coffee, we need to find when the temperature of the coffee will reach 40°C. Solving the equation H = 40, we get [tex]40 = 65t^2 + 25[/tex]. Rearranging, we get [tex]65t^2 = 15[/tex], which gives t = [tex]\sqrt{} (15/65) = \sqrt{} (3/13)[/tex]. To the nearest minute, Tom should wait about 2 minutes to drink his coffee.

d. The temperature of the room where Tom set down his coffee cannot be determined from the information given.

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Based on the graph above, what is the relationship between CO2 level and air temperature?

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Based on the image, an increase in carbon dioxide levels leads to an increase in air temperature, which fits with the global warming process.

Why an increase in carbon dioxide levels leads to an increase in air temperature?

An increase in carbon dioxide levels leads to an increase in air temperature because carbon dioxide is a greenhouse gas that traps solar radiation.

Therefore, with this data, we can see that an increase in carbon dioxide levels leads to an increase in air temperature due to the nature of this gas and it may lead to global warming.

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what is the strength (expressed as a percent) of a 500 milliliter solution that contains 35 milliliters of pure iodine?

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The strength of a 500 milliliter solution that contains 35 milliliters of pure iodine is 7%.

To calculate the strength of the solution, we need to find out the amount of solute (in this case, pure iodine) in the solution as a percentage of the total solution volume. To do this, we divide the volume of the solute (35 milliliters) by the volume of the solution (500 milliliters), then multiply by 100. This gives us 7%.

The strength of a solution is often used to express the concentration of a solute in a solution, which can be useful in various applications, such as medicine, chemistry, and food and beverage production. The concentration of a solute in a solution can affect various properties, such as the taste, texture, and stability of the solution, and it is important to accurately measure and control the concentration of a solute in a solution to produce consistent and high-quality products.

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which example best distinguishes filter bubbles and echo chambers according to the study guide?

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A filter bubble involves the personalization of information through algorithms, while an echo chamber refers to the reinforcement of beliefs through interactions with like-minded individuals.

Filter bubbles and echo chambers are similar concepts, but they can be distinguished based on the mechanism by which information is filtered.

A filter bubble is a situation in which an individual is exposed only to information that is in line with their personal beliefs and opinions. This occurs when online algorithms, such as those used by search engines and social media platforms, prioritize content that is likely to be of interest to the user based on their previous behavior and preferences. This creates a personalized information environment that can limit exposure to diverse perspectives and ideas.

An echo chamber, on the other hand, refers to a situation in which individuals primarily interact with others who hold similar beliefs and opinions. This often occurs in online communities, such as social media groups or forums, where like-minded individuals gather to discuss and reinforce their shared beliefs. Within an echo chamber, it can be difficult for new or alternative viewpoints to penetrate and be heard.

An example that distinguishes filter bubbles and echo chambers is a person who only gets their news from a conservative news outlet, such as Fox News, and interacts primarily with friends who also share their political views on social media. This person is experiencing both a filter bubble, as the news source they use prioritizes content that aligns with their political beliefs, and an echo chamber, as they are only interacting with others who hold similar views.

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calculate the formal charge on each second-row atom: 2xsafari o

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Formal charge on an atom is calculated by subtracting the amount of valence electrons associated with the atom from the number of electrons assigned to it in the Lewis structure of a molecule.

To calculate the formal charge on a second-row atom, we must first determine the molecule's Lewis structure. The formal charge on the second-row atoms cannot be determined without knowing the Lewis structure.  the formal charge on each second-row atom: 2xsafari o charge on an atom is calculated by subtracting the amount of valence electrons associated with the atom from the number of electrons assigned to it in the Lewis structure of a molecule. calculate the formal charge on a second-row atom, we must first determine the molecule's Lewis structure.

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How are seismic wave similar to sonar technology?

Answers

They have similar waves
Longitudinal waves to be exact

which of the 10 reactions of glycolysis are (a) phosphorylations, (b) isomerizations, (c) oxidation–reductions, (d) dehydrations, and (e) carbon–carbon bond cleavages?

Answers

Phosphorylations: reactions 1, 3, 7, 9, Isomerizations: reaction 3, Oxidation-reductions: reactions 4 and 10, Dehydrations: none, Carbon-carbon bond cleavages: reaction 2

Glycolysis is the metabolic pathway that converts glucose, a six-carbon sugar, into pyruvate, a three-carbon molecule, producing energy in the form of ATP and NADH. It occurs in the cytoplasm of cells and is anaerobic, meaning it does not require oxygen. It is the first step in cellular respiration and is a critical process for energy production in all living cells. Glycolysis is a sequence of 10 enzymatic reactions that occur in the cytoplasm of cells. These reactions break down a single molecule of glucose into two molecules of pyruvate, releasing energy in the form of ATP and NADH. The 10 reactions of glycolysis can be grouped into two phases: the investment phase and the pay-off phase. The investment phase uses energy in the form of ATP to prepare glucose.

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which of the 10 reactions of glycolysis are

(a) phosphorylations

(b) isomerizations

(c) oxidation–reductions

(d) dehydrations

(e) carbon–carbon bond cleavages

How is nature affected (the sea, beaches, birds, fish, etc.) in the event of an oil spill?

Answers

Nature is affected because if/when an oil spill happens it can get into the fishes gills and make the fish sick. When the birds eat the fish, the oil that gets into the fish's lungs goes into the birds' digestive track. This will happen to almost all of the marine animals that live in the area where the oil spill happens

Explanation:

Oil spills are dangerous to humans that eat the contaminated marine animals, and to the environment itself.  

three non-metallic elements x, y, and z have electronegativities of 2.8, 3.9, and 1.5 respectively and form compounds xy, yz, an xz. what type of bonding do you expect in each of the three compounds?

Answers

Three non-metallic elements x, y, and z have electronegativities of 2.8, 3.9, and 1.5 respectively and form compounds xy, yz, an xz. type of bonding expect in each of the three compounds For each compound:

xy: Based on the difference in electronegativities between x and y (2.8 and 3.9, respectively), there is a large difference in electronegativity, indicating that y will have a stronger pull on the electrons in the bond, and thus a polar covalent bond is expected.yz: With electronegativities of 3.9 and 1.5 for y and z, respectively, there is a significant difference in electronegativity, suggesting that y will have a stronger pull on electrons in the bond and leading to an ionic bond.xz: With electronegativities of 2.8 and 1.5 for x and z, respectively, the difference in electronegativity is not significant, indicating that the bond between x and z is likely to be covalent and non-polar.

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How can you determine the Lewis dot structure for BF4?

Answers

The initial stage consists of determining the total number of valence electrons.

Step 2: Outline the molecule's skeletal structure.

Step 3: Form each connection in the skeletal structure using two valence electrons.

Step 4: Try to distribute the leftover electron density as non - bonding electrons in order to fill the atoms' octets.

How many dots should be placed in a Lewis structure structure?

The quantity of dots corresponds to the atom's valence electron count. And no and over two dots on such a side, these dots are positioned to the right, left, above, and below the sign.

What is the BF4 structure?

Tetrahedral is the form of the BF4 chemical structure. Each covalent bond in boron receives one electron from each of four fluorides, which each have three valence electrons. Another electron is added by the molecule's total negative charge.

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Which steps are necessary for cleaning a spill involving broken glass? Select one or more:
a. Stop the spread of the spill. b. Soak up any spilled liquid with absorbent material.
c. Pick up large pieces of glass with gloved hands. d. Wash off the broken glass for recycling.

Answers

a Stop the spread of the spill, b Soak up any spilled liquid with absorbent material, and c Pick up large pieces of glass with gloved hands are necessary for cleaning a spill involving broken glass.

Cleaning a spill involving broken glass involves several steps to ensure the safety of those cleaning the spill and to prevent further spread of the glass or any hazardous substances.

Step a, stopping the spread of the spill, involves containing the spill so that the glass does not spread further. This can be done by using caution tape, a barrier, or another method that prevents the spill from spreading.

Step b, soaking up any spilled liquid with absorbent material, helps to prevent any hazardous substances from spreading further and to make cleaning up the broken glass easier. This can be done using paper towels, rags, or another absorbent material.

Step c, picking up large pieces of glass with gloved hands, is necessary for removing the broken glass from the spill area. This should be done carefully and with the use of gloves to prevent cuts or other injuries.

Step d, washing off the broken glass for recycling, is not necessary for cleaning the spill and can actually be dangerous, as broken glass may contain hazardous substances that should not be washed off. The broken glass should be placed in a safe container for disposal.

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a 280.0 ml sample of water is heated to its boiling point.how much heat (in kj ) is required to vaporize it? (assume a density of 1.00 g/ml .)

Answers

If a 280.0 ml sample of water is heated to its boiling point then the heat that is required to vaporize it is 632.8 kJ.

The volume of water is: V = 280.0mL

The density of water is: ρ = 1.00g/mL

Write the expression for the mass of the water.

m = ρ V

Substitute the known values.

m = (1.00g/mL) (280.0mL) = 280.0g = 0.280 kg

Write the expression for the heat required to vaporize the water.

Q = m ΔHvap

Here, the heat of vaporization of water is

ΔHvap ≈ 2260kJ/kg.

Substitute the values to get the value of Q,

Q = 0.280 kg × 2260kJ/kg

⇒ Q = 632.8 kJ

Hence, when a 280.0 ml sample of water is heated to its boiling point then the heat that is required to vaporize it is 632.8 kJ.

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Pentane is a particularly nonpolar liquid. Which of the following is likely to be very miscible with pentane?
Select all that apply: A very polar liquid A liquid that is slightly less polar than pentane A liquid that has precisely the same polarity as pentane
None of the above

Answers

Here are the two correct options i.e. (B) & (C) i.e. A liquid that is slightly less polar than pentane & A liquid that has precisely the same polarity as pentane respectively.

Pentane is a nonpolar liquid, meaning that it has an evenly distributed distribution of electrical charge across its molecular structure. A very polar liquid, meaning one with a highly uneven distribution of electrical charge, is unlikely to be miscible with pentane because the polar and nonpolar molecules will not mix due to their opposite charges. A liquid that is slightly less polar than pentane is more likely to be miscible with pentane. This is because the difference in polarity between the two liquids is not as significant, and they will have a greater tendency to mix. A liquid that has precisely the same polarity as pentane is also likely to be miscible with pentane. This is because the two liquids have an equal distribution of electrical charge and will therefore mix easily.

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Question - Pentane is a particularly nonpolar liquid. Which of the following is likely to be very miscible with pentane? Select all that apply: (A) A very polar liquid

(B) A liquid that is slightly less polar than pentane  

(C) A liquid that has precisely the same polarity as pentane

(D) None of the above

How might researchers identify which ion enters the cell from outside, causing the rapid rise in membrane potential that initiates the action potential in additional experiments?
change the concentration of Na+ ions in the solution bathing the axon
In order to identify which ion (1) enters the cell from outside and (2) causes the increase in voltage, a researcher would want to manipulate a positive ion such as Na+.

Answers

Researchers could change the concentration of Na+ ions in the solution bathing the axon.

The elements that impact the membrane potential in neurons are many. They contain a wide range of ion channels, some of which are chemically gated and others of which are voltage-gated. Because voltage-gated ion channels are regulated by the membrane potential, and the membrane potential is impacted by these ion channels, feedback loops that allow for complex temporal dynamics, such as oscillations and regenerative events like action potentials, emerge.

A cell's membrane potential is ultimately determined by two factors: electrical force and diffusion. Electrical force is produced by the mutual attraction of particles with opposite electrical charges (positive and negative) and the mutual repulsion of particles with the same charge type (both positive or both negative).

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how many moles of gas are in a 60.8 l container with a pressure of 2.44 atm at a temperature of 275 k?

Answers

Answer: 24.7 moles of gas

Explanation:

The number of moles of gas in a container can be determined using the Ideal Gas Law, which states that PV = nRT, where P is the pressure, V is the volume, n is the number of moles, R is the ideal gas constant, and T is the temperature in Kelvins.

We know that:

V = 60.8 L

P = 2.44 atm

T = 275 K

R = 0.0821 L·atm/mol·K

We can rearrange the Ideal Gas Law to solve for n:

n = PV/RT

We can substitute in the given values to find the number of moles of gas:

n = (2.44 atm)(60.8 L) / (0.0821 L·atm/mol·K)(275 K)

n = (2.44)(60.8) / (0.0821)(275)

n = approx. 24.7 mol

Therefore, there are approximately 24.7 moles of gas in the container at the given temperature and pressure.

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