Carbon disulfide has a vapor pressure of 363 torr at 25 ∘ C and a normal boiling point of 46.3 ∘ C . Find Δ H v a p for carbon disulfide.

Answers

Answer 1

The ΔHvap for carbon disulfide is 26.06J.

Derivation of the Clausius Clapeyron Equation in Thermodynamics

As the temperature rises, so does the water vapor saturation pressure. The rate at which vapour pressure rises for each degree that the temperature rises is determined by the Clausius-Clapeyron equation. Specify p as the saturation vapour pressure and T as the temperature.

In honor of Rudolf Clausius and Benoît Paul Émile Clapeyron, the Clausius Clapeyron equation is a way of explaining a discontinuous phase transformation between two phases of matter of a single constituent. There is no direct relationship between a liquid's temperature and vapour pressure.

Clausius-Clapeyron Equation,

In P = RT/ΔHvap + C

Given,

P = 363 torr,

R = 8.314

T = 46.3°C

C= 25°C

363 = 8.314×46.3/ΔHvap + 25

363 = 384.9/ΔHvap +25

ΔHvap = 384.9/363 + 25

ΔHvap = 26.06J.

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Related Questions

how to write a test variable and an outcome variable for science

Answers

Answer:

A test variable is a user-defined, name-value pair that stores and refers to information throughout a test and between tests.

Provide a default value to the variable during declaration.

Change the value of the variable using Set Variable statement. You can use the Add and Insert menus of the Test Editor to create Set Variable statements.

Set hard-coded value or value retried from a data source, such as dataset or reference that appears before the Set statement to the variable.

If a variable is initialized at various places such as test, compound test, schedule, or user group, the product uses the following order to initialize the value of the variable when running the test. The variable set in the variable table of the compound test editor takes the highest precedence followed by others:

Compound test setting in the variable table UI

Compound test specified in a var file

User group setting in the variable table UI

User group specified in a var file

Schedule specified setting in the variable table UI

Schedule specified in a var file

Command line

Outcome variables are usually the dependent variables which are observed and measured by changing independent variables. These variables determine the effect of the cause (independent) variables when changed for different values. The dependent variables are the outcomes of the experiments determining what was caused or what changed as a result of the study.

For a simple example, the marks a student obtains in an exam is a result of the hard word measured in the number of hours put behind studying and the intelligence measured in IQ are the independent variables. The marks obtained thus represents the dependent or outcome variable. When the values of the independent variables are changed, the marks may or may not change and hence dependent variables are dependent on the independent variables while the opposite is implausible i.e., when the marks are changed, it doesn’t change the number of hours of study or the IQ of the student.

The response variable is also called as the dependent variable because it depends on the causal factor, the independent variable. Depending on the various input values of the experimental variables, the responses are recorded.

A substance has a half-life of 2. 045 minutes. If the initial amount of the substance was 132. 8 grams, how many half-lives will have passed before the substance decays to 8. 3 grams? what is the total time of decay?.

Answers

The total time of decay is 8.18 min.

The half life is the time to takes a substance to decay. so, we half to find out the number of half lives that have passed for initial amount of 132.8 g.

         number of half -lives        amount of substances in g

                       0                                    132.8

                        1                                     66.4

                        2                                     33.2

                        3                                      16.6

                        4                                        8.3

so. it will take 4 half -lives for the substance to decay to 8.3 g.

the total time decay = 4 × 2.045 = 8.18 min.

Thus, A substance has a half-life of 2. 045 minutes. If the initial amount of the substance was 132. 8 grams, half - life will have passed before the substance decays to 8. 3 grams. the total time of decay is 8.18 min.

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based on figure 1, which of the following statements best predicts the effect that a change from a moderately acidic environment (phph near 6) to a basic environment will have on peroxidase activity?

Answers

Peroxidase activity increases and then decreases due to a change from a moderately acidic environment (pH near 6) to a basic environment.

What is peroxidase activity?

Peroxidase is an enzyme found in a wide variety of organisms, from plants to humans to bacteria. Its function is to decompose hydrogen peroxide (H₂O₂). Hydrogen peroxide is one of the toxins produced as a by-product of using oxygen to breathe. (The fact that hydrogen peroxide is toxic makes it useful in first aid kits.

Peroxidase activity is strongly influenced by pH factors. Peroxidase works best at pH 7, but increasing or decreasing pH adversely affects its activity. Therefore, when moving from a weakly acidic environment close to pH 6 to a basic one, the peroxidase activity increases as the neutral environment approaches and decreases as the basic environment approaches, so that the peroxidase activity varies with the pH of the solution.

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The complete question is as follows:

Researchers investigated the influence of environmental pH on the activity of peroxidase, an enzyme that catalyzes the conversion of hydrogen peroxide to water and oxygen gas. In an experiment, the researchers added a hydrogen peroxide solution containing guaiacol to several identical test tubes and adjusted the solution in each test tube to a different pH . The researchers included the guaiacol because it caused the solutions to change color as the reactions proceeded, which the researchers relied on for measuring reaction rates. Finally, the researchers added the same amount of peroxidase to each test tube and measured the rate of each reaction at 23°C . The results of the experiment are represented in Figure 1.

Based on Figure 1, which of the following statements best predicts the effect that a change from a moderately acidic environment ( pH near 6) to a basic environment will have on peroxidase activity?

answer choices

Peroxidase activity will decrease.

Peroxidase activity will increase.

Peroxidase activity will stay the same.

Peroxidase activity will increase at first and then decrease.

Write a balanced half-reaction for the reduction of nitrate ion to gaseous nitrogen dioxide in acidic aqueous solution. Be sure to add physical state symbols where appropriate.

Answers

To determine the number of atoms of each element we need to multiply stoichiometry that is written in front of the molecule to the number that is written on the foot of the element. Hence, the balanced chemical equation for the reduction of nitrate ion to gaseous nitrogen dioxide in acidic aqueous solution is NO₂ (g) + H₂O (l) → NO³⁻ (aq) + 2H⁺ + e⁻.

Balanced chemical equation

Balanced equation is defined as the reaction where the number of atoms of each species is same on reactant and product side. In balanced equation mass can neither be destroyed nor be created.

The skeletal equation can be written as:

NO₂ (g) + H₂O (l) → NO³⁻ (aq) + 2H⁺ + e⁻.

The number atoms of N on reactant and product side is 1 so N is balanced.

The number of atoms of H is 2 on reactant and on product side it is 2. So, H is balanced.

The number of atoms of O is 3 on reactant and on product side it is 3. So, O is balanced.

Hence, the balanced chemical equation for the reduction of nitrate ion to gaseous nitrogen dioxide in acidic aqueous solution is:

NO₂ (g) + H₂O (l) → NO³⁻ (aq) + 2H⁺ + e⁻

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show between force pressure and area​

Answers

Answer:

Relationship: The Pressure on an Area and the Force Acting Perpendicularly to the Area. The pressure, , on an area, , is given by = , where is the force acting perpendicularly to all the sides of the area

choose the best lewis structure for icl5

Answers

The formation of molecule can easily be shown by drawing Lewis dot structure. Since atom's Lewis dot structure has three dots. Therefore, the valence electron around Iodine is 7, out of 7 electron, 5 electron will make single bond with one electron of chlorine.

What is Lewis dot structure?

Lewis dot structure is a way to represent the valence electron of an element in the form of dot.

These are mainly beneficial in understanding the chemical formula of covalent compound. The valence electron around Iodine is 7, out of 7 electron, 5 electron will make single bond with one electron of chlorine.

Therefore, the valence electron around Iodine is 7, out of 7 electron, 5 electron will make single bond with one electron of chlorine.

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How would an increase in temperature affect evaporation?

F) it would end evaporation
G) it would speed up evaporation
H) it would slow down evaporation
J) temperature does not affect evaporation

Answers

Answer:

G) It would speed up evaporation.

Explanation:

As the temperature increases, the rate of evaporation also increases.

What are two ways in whitch electrons in atoms are in constant motion
Must be two
WIll GIVE BRAINLIST

Answers

Answer:

1. an electron moving around the nucleus

2. an electron moving on its axis

Explanation:

The best way to remember how atoms move is by comparing them to a solar system. Just like a solar system atoms have a core, in this case the nucleus, and each atom rotates around the nucleus just like planets revolve around a star. They also rotate just like a plant does.

patterns of reactivity quick check

Answers

Reactivity decreases as you move from left to right. The farther to the left and down the periodic chart you move, easier it is for electrons to be given or taken away, hence resulting in higher reactivity.

What is the pattern of reactivity in periodic table?

Reactivity decreases as we move down the column. As you learn more about the table, you will be able to find that this pattern is true for other families.

The atoms get bigger, as the atomic number increases. The chemical properties change slightly when compared to the element right above them on the table. The non-metal elements in Group 7 that are known as the halogens, get less reactive as you move to the down of the group.

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Write the formula for each of the following:
a. tin(II) carbonate
b. lithium phosphide
c. silicon tetrachloride
d. manganese(III) oxide
e. bromine
f. calcium bromide

Answers

Hope this answer helps you

A strip of paw paw was placr in a beaker of water.After 30 minutes what happen to the strip?

Answers

Anything that moves in a net direction from a region of higher concentration to a region of lower concentration is said to be diffusing. Because the particles in liquids and gases travel randomly from one location to another, diffusion occurs in these media.

What is diffusion ?

Diffusion is the overall net movement of anything from a higher concentration to a lower concentration. A gradient in the Gibbs free energy or chemical potential drives diffusion.

The molecules' kinetic energy causes random motion, which causes diffusion. This mechanism happens in simple diffusion without the help of a transport protein. The molecules travel from an area of high concentration to an area of low concentration due to their random mobility.

Thus, Because the particles in liquids and gases travel randomly from one location to another, diffusion occurs in these media.

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item 3 select the representation(s) for the solution that results when dimethyl ether is dissolved in water

Answers

When dimethyl ether is dissolved in water results in,

CH₃OCH₃(aq)(g) + H2O(l) ⇌ CH₃OCH₃(aq)

What is Dimethyl ether?

Dimethyl ether (also known as DME) is a colorless, flammable gas with a faint, ether-like odor. It is the simplest ether, a derivative of methane, and is a promising alternative fuel for diesel engines. It is produced from the reaction of methanol and hydrogen or by steam reforming of natural gas.

What are Ethers?

Ethers are organic compounds containing an oxygen atom connected to two alkyl or aryl groups. Generally, ethers are colorless and have low boiling points, making them volatile. Ethers are widely used in the production of pharmaceuticals, fragrances, and other chemicals.

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How Many Carbonyl Groups Are Generated Upon Treatment Of The Molecule Below With Ozone, Followed By Zinc Metal And Water? A) 1 B) 2 C) 3 E) 8

Answers

The answer will be E if the query is correct. Following the treatment of the molecule below with ozone, zinc metal, and water, eight carbonyl groups are produced.

Exactly what is a carbonyl group?

A double bond connecting a carbonyl carbon atom and a carbonyl oxygen atom makes up a carbonyl group. Two of the six valence electrons that the carbonyl oxygen atom has are shared with the carbonyl carbon atom. Two sets of electron lone pairs make up the four valence electrons that are still present.

How many different kinds of carbonyl groups exist?

Aldehydes, ketones, carboxylic acids, acid chlorides, acid anhydrides, esters, lactones, amides, and lactams are examples of compounds that include carbonyl groups..

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What mass of magnesium bromide is formed when 1 g of magnesium reacts with 5g of bromine.

Answers

The 5.76 grams of MgBr₂ produced from the reaction of bromine and magnesium.

Balanced chemical equation

Mg + Br₂ ⇒MgBr₂

Number of moles of Mg and Br₂ present

n(Mg) = 1/24.3 = 0.0412 mol

n(Br₂) = 5/159.8 = 0.0313 mol

Checking the limiting reagent in the reaction.

Magnesium and Bromine react in 1:1 ratio

Then Limiting reagent will be bromine. The values of bromine will be used to calculate amount of magnesium bromide(Molar mass =5.76g).

0.0313 x 184.1 = 5.76 grams.

Hence, 0.0313 mole of bromine will produce 5.76 grams of magnesium bromide.

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Produces pyruvate. The multienzyme complex catalyzes the oxidative of pyruvate to yield carbon dioxide and acetyl coa. The overall equation for the reaction is acetyl coa is the main form in which carbon compounds enter the.

Answers

Pyruvate is produced by the reaction of a glycolysis. The multienzyme complex catalyzes the oxidative of pyruvate to yield carbon dioxide and acetyl coa. Its reaction is given as

Pyruvate+CoA+NAD⁺→acetyl CoA+NADH+H⁺+CO₂

Acetyl CoA→Citric acid cycle

Glycolysis process is defined as the conversion of a glucose(C₆H₁₂O₆) into the pyruvate(CH₃COCO₂H). In the glycolysis reaction, high energy ATP molecules and reduced nicotinamide adenine dinucleotide is created. The series of ten enzyme-catalyzed process makes up glycolysis.

One of the metabolic route which does not require is glycolysis(In anaerobic conditon, pyruvate is converted to lactic acid). It is occurred in various species, which tells us that it is old metabolic route.

Therefore, the glycolysis reaction produces pyruvate and its complete reaction is

Pyruvate+CoA+NAD⁺→acetyl CoA+NADH+H⁺+CO₂

Acetyl CoA→Citric acid cycle

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hi
i need help with this

Answers

The dissociation equations are shown as;

a) [tex]HCl ------ > H^+ + Cl^-[/tex]

b) [tex]H C_{2} H_{3}O_{2} ---- > C_{2} H_{3}O_{2} ^- +H^+[/tex]

C) [tex]NH_{4} ----- > NH_{3} + H^+[/tex]

D) [tex]C_{6} H_{5} NH_{3} ^+ ------- > C_{6} H_{5} NH_{2} + H^+[/tex]

E) [tex][Al(H_{2} O)_6}] ^{3+} ------ > Al^{3+}[/tex]

What is dissociation?

The term dissociation has to do with the procedure by which a substance can be broken up into its components. The components of a substance are those that have to come together so as to form the compound.

When the compound is to be broken up, the components that came together to make up the compound can broken up and then we have the original compounds tat we have at the start of the reaction.  In this case, the decomposition equations have been shown with the exclusion of water.

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Produces pyruvate. The multienzyme complex catalyzes the oxidative of pyruvate to yield carbon dioxide and acetyl coa. The overall equation for the reaction is acetyl coa is the main form in which carbon compounds enter the.

Answers

The Glycolysis produces pyruvate.

What is pyruvate?

Pyruvate is a three-carbon molecule which is the end product of glycolysis, the first step in the breakdown of glucose for energy. It is also the starting point for the Krebs cycle, the second stage of cellular respiration. Pyruvate is formed from the cleavage of the six-carbon sugar molecule, glucose, and is then further oxidized to form acetyl-CoA and enter the Krebs cycle. The enzymes responsible for pyruvate production are known as pyruvate kinases and are found in most eukaryotic cells. Pyruvate is an important molecule in the production of energy within the cell, as it acts as both a source of energy and a precursor to other metabolic pathways. Additionally, pyruvate is involved in the synthesis of fatty acids, amino acids, and other biomolecules. Pyruvate is also used in the fermentation process to produce lactic acid and ethanol.

The pyruvate dehydrogenase (PDH) enzyme is part of the multienzyme PDC, which catalyzes the physiologically irreversible decarboxylation of pyruvate to acetyl-CoA and is often referred to as a 'gatekeeper' in the oxidation of carbohydrate.

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Insoluble sulfide compounds are generally black in color. which of the following combinations could yield a black precipitate?
a.Na2S(aq)+KCl(aq)
b.Li2S(aq)+Pb(NO3)2(aq)
c.Pb(CIO3)2(aq)+NaNO3(aq)
d.AgNO3(aq)+KCl(aq)
e.K2S(aq)+Sn(NO3)4(aq)

Answers

Answer:

the answer for the question is B and E

Part F
Why is it a good idea to perform three trials at each concentration? How
experiment to produce more reliable results?

Answers

Answer:

If one is analyzing a solution, for the best accuracy, the volume of titrant used should fall in the upper range of the burette that delivers the titrant. If one is using a 50 ml burette, one would like the volume to fall in maybe the 30 to 45 ml range. If on the first trial, the volume of titrant used is only a few ml, then a larger volume of solution being analyzed should be taken. If the volume of titrant exceeds 50 ml, then a smaller volume of solution should be taken. One should not need three trials. Based on the first trial, one should be able to determine the optimum volume of solution to be analyzed. If one is lucky, the optimum amount may occur on the first trial.

Provide a systematic name of the following compound below:
CCC(C)CC(C)C(C)CC

Answers

Thr IUPAC or systematic name for the compound given from the task above is an organic compound known as undecane.

What are organic compounds?

Organic compounds simply refers to those groups of chemical substances which contains carbon and hydrogen. All organics substances within their respective homologous families has the same general characteristics. From the task given above, it contains 11 carbons atoms which is bonded to 24 hydrogen atoms. That is, why the systematic name of the compound C11H24 is undecane.

Homologous series is a family of organic compound which follows a regular pattern and in which successive members differs from one another by the molecular formula of CH₂. Below are some classes of homologous families:

AlkanesAlkenesAlkynesAlkanoatesAlkanolsAlkanoic acids and so on and so forth

In conclusion, the compund CCC(C)CC(C)C(C)CC given in the problem above belongs to an alkane family.

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Solutes are returned to the blood during: _________

Answers

During tubular reabsorption, solutes are transferred back to the circulation. Glomerular filtration involves the passive transfer of small substances from the blood towards the filtrate.

The location of tubular reabsorption

The second crucial step in the production of urine is tubular reabsorption. Many of the glomerular filtration of solutes needed for proper bodily operation, like amino acids, glucose, et salts, begins in the proximal section of the tubule.

What are tubular reabsorption and secretion?

The reverse of reabsorption, tubular secretion is the movement of substances from peritubular capillaries into the renal tubular lumen. Passive diffusion and active transport are the main causes of this secretion. Usually, only a small number of substances—usually waste products—are excreted.

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predict the ordering, from shortest to longest, of the bond lengths in co, co2, and co2−3. but why does (CO3)2− have a longer bond length than CO2?

Answers

The bond length order becomes: CO < CO₂ < CO₃⁻².

What is bond order?

The total amount of covalent bonds that two atoms have together. A single bond exists when two atoms share one pair of electrons (bond order = 1). Two pairs of electrons make up a double bond (bond order = 2), whereas three pairs of electrons form a triple bond (bond order = 3).

CO has triple bond.

CO₂ has double bond and

CO₃⁻² has a nature in between double and triple bond.

Thus, the bond length order becomes: CO < CO₂ < CO₃⁻².

As, we all know, bond order has an inverse relationship with bond length. That is, longer bonds are stronger bonds. CO has a bond order of 3 (triple bond), CO₂  has a bond order of 4 (two double bonds), and CO₃⁻² has a bond order of 1.33. ( bond nature between single and double bonds). That's why CO₃⁻² have a longer bond length than CO₂.

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If the reaction of 150. G of ammonia with 150. G of oxygen gas yields 87. G of nitric oxide (no), what is the percent yield of this reaction?.

Answers

The percentage yield of the given reaction is 77.33%.

What is percentage yield?
Reactants
frequently produce fewer product quantities than predicted by the chemical reaction's formula. The percentage of a theoretical yield that's been produced in a reaction is calculated using the percent yield formula. Working through a stoichiometry problem yields the theoretical yield, which is the ideal quantity of the final product. The actual yield is determined by calculating the volume of the product formed. We can determine the percentage yield by dividing the actual yield by the theoretical yield.

Moles is calculated by using the formula:
Moles of Ammonia:
Given mass of ammonia = 150g
Molar mass of ammonia = 17 g/mol
Putting values in above equation, we get:

Moles of Oxygen
Given mass of oxygen = 150g
Molar mass of oxygen = 32 g/mol
Putting values in above equation, we get:
For the given chemical equation:

By Stoichiometry,
5 moles of oxygen reacts with 4 moles of ammonia.
So, 4.6875 moles of oxygen will react with =  of ammonia
As, moles of ammonia required is less than the calculated moles. Hence, ammonia is present in excess and is termed as excess reagent.
Therefore, oxygen is considered as a limiting reagent because it limits the formation of products.

By Stoichiometry of the given reaction:
5 moles of oxygen gas produces 4 moles of nitric oxide
So, 4.6875 moles of oxygen gas will produce =  of nitric oxide

Now, to calculate the theoretical amount of nitric oxide, we use equation 1: Molar mass of nitric oxide = 30 g/mol
 Given mass of nitric oxide = 112.5 g
Now, to calculate the percentage yield, we use the formula:
Experimental yield = 87 g
Theoretical yield = 112.5 g
Putting values in above equation, we get:
Hence, the percentage yield of the given reaction is 77.33%.

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classify each molecule as a purine or a pyrimidine.

Answers

Answer:

Purines make up two of the four nucleobases in DNA and RNA: adenine and guanine and Pyramidines make up the other bases in DNA and RNA: cytosine, thymine.

Explanation:

Pyrimidines are heterocyclic compounds with  single  rings whereas purines are heterocyclic compounds with fused  ring. Among the given nitrogen bases, adenine is purine  and cytosine and thymine are pyrimidines .

What are nitrogen bases in DNA ?

In DNA molecule, the two strands are connected together like a stair case with steps. The steps here are called nitrogen bases. There are 4 different types of nitrogen bases in DNA molecules.

The nitrogen bases are namely, adenine, guanine, cytosine and thymine. The adenine of one strand is bonded to thymine of the other strand through 2 hydrogen bonds. Whereas, cytosine and guanine are connected by three hydrogen bonds.

Adenine and guanine are purine bases and thymine and cytosine are pyrimidine bases. The fused heterocyclic rings with an imidazole ring is called purines. Single ring heterocyclic bases are the pyrimidines.

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Your question is incomplete. But your complete question is as follows:

classify each molecule as a purine or a pyrimidine.

adenine

cytosine

thymine

Radio wave in the AM region have frequencie in the rang 539 to 1700 kilocycle per econd (530 to 1700 KHz). Calculate the wavelength correponding to a radio wave of grequncy 1460000/ (that i 1460 KHz)

Answers

The wavelength is 241.77m.

What is frequency?

Hertz gives the frequency at which a recurring event occurs once every second (Hz). The number of vibrations or cycles per unit of time is the definition of frequency, as we are all aware.

What is wavelength?

A wave's wavelength is the separation between its successive crests, notably between the points of an electromagnetic wave.

frequency = 1.240*10^6 s^-1

speed of light = 2.998*10^-8 m/s

λ = wavelength

C= λv

λ=c/v

λ= 2.998*10^-8 m/s/1.240*10^6 s^-1

λ= 241.77m

Therefore, wavelength is 241.77m.

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The graph below shows the volume of hydrogen evolved against time for the reaction of a piece of solid magnesium metal with 1.00 mol dm-3 hydrochloric acid, HCl(aq). Mg(s) + 2HCl(aq) → MgCl2(aq) + H2(g) (a) Deduce the rate of the reaction at time t = 1.5 minutes. (i) Assuming magnesium is the limiting reagent and the gas was collected at STP (i) Calculate the mass of the piece of magnesium metal used. (ii) Describe how the graph would have looked if the magnesium metal had been in powdered form.

Answers

(a) Rate of reaction = 13.33 dm³/min.

(b) Assuming magnesium is the limiting reagent:

Mass of magnesium = 486 gIf the magnesium metal had been in powdered form, the rate of reaction will be higher and the graph is attached belowWhat is rate of reaction?

Reaction rate or rate of reaction is the rate at which a chemical reaction occurs and is defined as proportional to the increase in concentration of products per unit time and the decrease in concentration of reactants per unit time. Reaction rates can change dramatically.

Rate of reaction = Volume change/time

At 1.5 minutes volume of 20 dm³ H₂

So rate will be:

20/1.5 = 13.33 dm³/min.

Mg(s) + 2HCl(aq) → MgCl₂(aq) + H₂(g)

For moles of H₂:

n = M × V

Where, n = number of moles

M = Molarity (1.00 mol/dm³)

V = Volume (20 dm³)

n = 1.00 × 20

n = 20 moles

Since the mole ratio of Mg and H₂ is 1:1, the moles of Mg are 20 moles.

m = n × Mm

Where, m = mass

n = number of moles (20 moles)

Mm = molar mass of Mg (24.30 g/mol)

m = 20 × 24.30

m = 486 g

Powders react faster than blocks - they have a larger surface area and reactions occur on the surface, so they are faster.

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The complete question is as follows:

The graph below shows the volume of hydrogen evolved against time for the reaction of a piece of solid magnesium metal with 1.00 mol dm-3 hydrochloric acid, HCl(aq). Mg(s) + 2HCl(aq) → MgCl2(aq) + H2(g) (a) Deduce the rate of the reaction at time t = 1.5 minutes. (i) Assuming magnesium is the limiting reagent and the gas was collected at STP (i) Calculate the mass of the piece of magnesium metal used. (ii) Describe how the graph would have looked if the magnesium metal had been in powdered form.

Use MO diagrams to place B2+, B2, and B2- in order of (a) decreasing bond energy; (b) decreasing bond length.

Answers

We use the MO diagram for a homonuclear diatomic species (since C and N are neighbours, we treat them as the "same").

The first two electrons contribute to bonding. The next two are anti-bonding.

The next six contribute to bonding, and the following six are anti-bonding.

So, if we start with CN+, which has 4+5-1 (8) valence electrons, we note that the first two electrons contribute to bonding, while the next two cancel this out; the next four contribute to bonding, so the bond order is 4/2 = 2.

If we add one more electron to get CN, there are now 5 bonding electrons, giving bond order 5/2=2.5.

Adding one more to give CN- would give the bond order 6/2 = 3. (If we added more electrons, each one would lower the bond order.)

Given a series of molecules with identical skeletal structures, the one with the highest bond order has the highest bond energy:

CN+ < CN < CN-

Lewis structures will verify that CN- has a triple bond, but they do not work particularly well for CN+ and CN.

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h3no lewis structure

Answers

Answer:

It is attached below.

Explanation:

The Lewis structure for H₃NO, also known as ammonia oxide or nitroxyl is given in the image.

Count the total number of valence electrons:

Hydrogen (H) has 1 valence electron.

Nitrogen (N) has 5 valence electrons.

Oxygen (O) has 6 valence electrons.

Total valence electrons = (3 × 1) + 5 + 6 = 14

Determine the central atom:

In this case, nitrogen (N) is the central atom, as it is less electronegative than oxygen (O) and hydrogen (H).

Connect the atoms with single bonds:

Place a single bond (represented by a line) between nitrogen (N) and each hydrogen (H). This accounts for 3 electrons.

Distribute the remaining electrons:

Place the remaining 11 electrons as lone pairs around the atoms to satisfy the octet rule. In this case, nitrogen (N) will have a lone pair, and oxygen (O) will have a lone pair.
Each line represents a single bond, and the lone pairs are represented by pairs of dots or dashes. The hydrogen atoms are bonded to the nitrogen atom, and the oxygen atom has a lone pair.

Hence, the Lewis structure is in the image.

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hydroiodic acid
Express your answer as a chemical formula.

Answers

The chemical formula of hydroiodic acid is HI.

What is chemical formula?

Chemical formula is as used in chemistry is a notation indicating the number of atoms of each element present in a compound. It shows the type and number atoms of an element present in a compound.

For example, the molecular or chemical formula for ethane is C₂H₆.This shows that ethane contains 2 carbon atoms and 6 hydrogen atoms.

Hydroiodic acid is a compound made up of two elements namely;

HydrogenIodine

Therefore, the chemical formula for hydroiodic acid is HI.

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Consider the buffer system of hydrofluoric acid, HF, and its salt, NaF. HF(aq)+H2O(l)?H3O+(aq)+F?(aq) 1) The purpose of this buffer system is to: a) maintain [HF] b) maintain [F?] c) maintain pH 2) If OH? is added, it is neutralized by: a) the salt b) H2O c) H3O+

Answers

The purpose of the buffer system is to maintain pH (option C)If OH is added, it is neutralised by H₃O⁺ (option C)

What is a buffer system?

Buffer is a solution used to stabilize the pH (acidity) of a liquid.

A buffer system in chemistry is a type of solution that is able to resist changes in its pH when small amounts of an acidic or basic substance is added to it.

Many chemical reactions are carried out at a constant pH. In nature, there are many systems that use buffering for pH regulation

According to this question, a buffer system of hydrofluoric acid, HF, and its salt is given. The purpose of the buffer system is to stabilise the pH of the hydrofluoric acid solution.

Also, hydroxide ion (OH) can be added to the solution to neutralise the acid content of the solution as characterized by the presence of hydronium ions (H₃O⁺).

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