1) a 50.00 ml portion of hcl solution requires 29.71 ml of 0.01963 m ba(oh)2 to reach an end point with bromocresol green indicator. calculate the molar concentration of the hcl.

Answers

Answer 1

The molar concentration of HCL is  0.02333 M.

What is molar concentration?

The best approach to describe a solute concentration in a solution is in terms of molar concentration. Molarity is defined as the total number of moles of solute dissolved in one liter of solution, or M = mol/L.

What is mole?

A "mole" is the volume of a system with as many elementary particles as there are atoms in 0.012 kilos of carbon 12.

Volume of HCl solution : 50.00 mL = 0.050 L

molarity of Ba(OH)2  == 0.01963 M

reaction :   Ba(OH)2 (aq) + 2 HCl(aq) ===> BaCl2 (aq) + 2 H2O (l)

moles of Ba(OH)2 consumed  == 0.01963 mol/L * 0.02971 L =  0.0005832 moles

1 mole of Ba(OH)2  reacts 2 moles of HCl   ====> thus moles of HCl present : 0.0011664 moles

Molarity HCl == 0.0011664 moles/0.050 L = 0.02333 M

Therefore, the molar concentration of HCL is  0.02333 M.

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Related Questions

What type of reaction is CH o2 co2 H2O?

Answers

The reaction CH₄ + O₂→ CO₂ + H₂O is a combustion reaction.

The balanced chemical equation of the reaction of Methane with Oxygen gas to produce carbon dioxide and water as a product is,

CH₄ + O₂→ CO₂ + H₂O

As you can see from the above reaction Methane is getting combusted because of the presence of the Oxygen gas. Methane is producing carbon dioxide as a product along with water.

So, we can conclude here that the above reaction is a combustion reaction. Also, it can be noted that it is also a kind of combination reaction because new products are forming because of the combination of two different reactants.

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the amino acids whose carbon skeleton are degraded in to precursors for the formation of glucose are called .

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The amino acids whose carbon skeleton are degraded in to precursors for the formation of glucose are called is Glucogenic amino acids.

What is amino acids?

Proteins are made of substances called amino acids. The components of life are amino acids and proteins. Amino acids are what remain after proteins have been digested or broken down. In order to benefit the body: Food should be broken down.

What is glucose ?

The molecular formula of this monosaccharide is C6H12O6. It is also referred to as dextrose. Aldohexose is the name given to it since it has 6 carbon atoms and an aldehyde group. It comes in two varieties: open-chain and ring construction.

Amino acids that cause glucose production. The carbon skeletons are transformed into pyruvate, 2-oxoglutarate, succinyl-CoA, fumarate, and oxaloacetate, which serve as precursors to glucose.

Therefore, the amino acids whose carbon skeleton are degraded in to precursors for the formation of glucose are called is Glucogenic amino acids.

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as a general rule, if the electronegativity difference between two atoms is smaller than 0.4, the bond formed between them is said to be a(n)

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If the electronegativity difference between two atoms is smaller than 0.4, the bond formed between them is said to be Covalent Bond.

How is Covalent Bond formed?

A covalent bond is formed when two atoms exchange one or more pairs of electrons. The two atomic nuclei are concurrently drawing these electrons to them. When the difference between the electronegativities of two atoms is too tiny for an electron transfer to take place to create ions, a covalent bond is formed. Bonding electrons are collectively referred to as the electrons that are present between the two nuclei. The "glue" that holds the atoms in molecular units together is the bound pair.

The simplest material with a covalent link is the hydrogen molecule. Two hydrogen atoms, each with one electron in a 1s orbital, combine to produce it. The two electrons in the covalent link are shared by both hydrogen atoms, and each one takes on an electron configuration like that of helium.

If the electronegativity difference between two atoms is smaller than 0.4, the bond formed between them is said to be Covalent Bond.

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If you weigh out 0.205 g of salicylic acid, what is the theoretical yield for aspirin? 0.157g 0.267g 0.134g 0.0786g none of the above choices

Answers

If you weigh out 0.205 g of salicylic acid,  the theoretical yield for aspirin is the 0.267 g.

given that :

the mass of the salicylic acid = 0.205 g

the molar mass of the salicylic acid = 138.12 g /mol

the number of moles of salicylic acid acid = mass / mola mass

                                                                    =  0.205 / 138.12

                                                                    = 0.001484 mol

1 mole of salicylic acid = 1 mole of the aspirin

0.001484 mol of the salicylic acid = 0.001484 mol of aspirin

the molas mass of aspirin = 180 g /mol

the mass of aspirin = moles × molar mass

                                 = 0.001484 × 180

                                 = 0.267 g

Thus the theoretical yield = 0.267 g.

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determine the wavelength of the light emitted when the electron in a hydrogen atom undergoes a transition from n

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The wavelength of light emitted when the electron in a hydrogen atom undergoes a transition from n is 486 nm.

What is wavelength?

Forms of electromagnetic radiation, such as radio waves, light waves, and infrared (thermal) waves, create unique patterns as they travel through space. Each wave has a specific shape and length. The distance between peaks (high points) is called the wavelength.

Therefore, The wavelength of light emitted when the electron in a hydrogen atom undergoes a transition from n is 486 nm. Forms of electromagnetic radiation, such as radio waves, light waves, and infrared (thermal) waves, create unique patterns as they travel through space. Each wave has a specific shape and length.

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A sample of gas weighs 4.84 g and occupies a volume of 0.918 l at 35 °c and 850 torr. identify the gas sample.
a. NH3 (molar = Mass 17,03 B/moll
b. CHCI3 (molar mass 119 4 B/mol)
c. SO2 (molar mass 64.07 g/mol)
d. Cl2 (molar mass 70.90 5 g/mol)
e. N2O (molar mass 44.02 g/moll)

Answers

Ideal gas law is valid only for ideal gas not for vanderwaal gas. Therefore, correct option is option B that is CHCl[tex]_3[/tex].  Ideal gas is a hypothetical gas.

What is ideal gas equation?

Ideal gas equation is the mathematical expression that relates pressure volume and temperature. There is no force of attraction between the particles.

Mathematically the relation between Pressure, volume and temperature can be given as

PV=nRT

where,

P = pressure of gas sample = 850 torr=1.11atm

V= volume of gas sample =0.918 L

n =number of moles of gas sample=?

T =temperature of gas =308K

R = Gas constant = 0.0821 L.atm/K.mol

Substituting all the given values, we get

1.11atm×0.918 L =n× 0.0821×308

On calculation we get

1.018=n×25.28

n=0.04moles

Molar mass =mass/moles

Molar mass = 4.84 g/0.04

                   =119. 4g/mol

Therefore, correct option is option B.

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Nutritionists express energy in calories, which are in fact 1000 real calories. one real calorie is equivalent to 4.18 joules, the universal energy unit. thus, one nutrition calorie is equivalent to:____.

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Nutritionists express energy in calories, which are in fact 1000 real calories. one real calorie is equivalent to 4.18 joules, the universal energy unit. thus, one nutrition calorie is equivalent to 4.18 kilojoules.

Joule is the fundamental energy unit of the metric system, or the International System of Units in a later, more thorough version (SI). In the end, the meter, kilogram, and second are used to characterize it.

Calorie (cal) (cal): In the past, the definition of a calorie included the heating of water. Consequently, according to a conventional definition, one calorie is the quantity of heat needed to raise the temperature of one gram of water by one degree Celsius, from 14.5 to 15.5 degrees.

The "calorie" measured for other temperature ranges differs slightly from this, which is frequently referred to as the 15 °C calorie. The calorie has more recently been defined in terms of the joule; historically, the calorie and joule have been equivalent to mechanical heat.

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A 1200 kg car runs head on into a 2500 kg truck, both traveling at 12m/s

Answers

The common velocity of the car and the truck after the collision is 12 m/s

How do I determine the common velocity?

From conservation of linear momentum, we understood that momentum before collision is equal to momentum after collision ie

Momentum before = Momentum after

m₁u₁ + m₂u₂ = v(m₁ + m₂)

Where

m₁u₁ are the mass and speed of the 1st object before collisionm₂u₂ are the mass and speed of the 2nd object before collisionv is the velocity of both object after collision.

Using the above formula, we can obtain the common velocity of the car and truck. This is shown below:

Mass of car (m₁) = 1200 KgMass of truck (m₂) = 2500 KgVelocity of car (u₁) = 12Velocity of truck (u₂) = 12 m/sCommon velocity (v) = ?

m₁u₁ + m₂u₂ = v(m₁ + m₂)

Divide both sides by (m₁ + m₂)

v = [m₁u₁ + m₂u₂] / (m₁ + m₂)

v = [(1200 × 12) + (2500 × 12)] / (1200 + 2500)

v = [14400 + 30000] / 3700

v = 44400 / 3700

v = 12 m/s

Thus, the common velocity is 12 m/s

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Complete question:

A 1200 kg car runs head on into a 2500 kg truck, both traveling at 12m/s. What is their common velocity after the collision?

A dilute solution has ___ of solute in the solvent

Answers

Walter, hank, skyler , Marie , Jesse

How much heat is absorbed/released when 25. 00 g of nh3(g) reacts in the presence of excess o2(g) to produce no(g) and h2o(l) according to the following chemical equation?.

Answers

The heat 428.7 kJ is required for the of warmth are absorbed while 25.00 g of NH4 (g) reacts withinside the presence of extra O2(g) to provide NO(g) and H2O(l) .

Let's recollect the subsequent thermochemical equation.

4Nh3g) + 5O_(g) -> 4NO(g) + 6 H2O(l) triangle H deg = 1168kJThe widespread enthalpy of the response is positive, this means that that the response is endothermic, that is, warmness is absorbed.We will convert 25.00 g of NH3 to moles the usage of its molar mass (17.03 g/mol).25g * (1mol)/(17.03g) = 1.468mol1168 kJ of warmth are absorbed while four moles of NH3 react. The warmness absorbed while 1.468 moles of NH react is:1.468mol * (1168kJ)/(4mol) = 428.7kJ428.7 kJ of warmth are absorbed while 25.00 g of NH3(g) reacts withinside the presence of extra O2(g) to provideNO(g) and H2O(l)

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What type of reaction involves a single compound producing two or more simpler substances?

Answers

A decomposition reaction is one in which a single chemical disintegrates into less complex elements.

What kind of reaction produces just one component as the end result?

One material is created from several reactants in a composition reaction. Multiple products are created from a single reactant in a decomposition process. When a chemical and oxygen are combined, the result is a combustion reaction that produces oxides of other elements as a byproduct (although nitrogen atoms react to make N 2).

when does a chemical split into two or more different substances?

Decomposition reactions - These processes take place when a complex substance disintegrates into two or simpler ones. One illustration is the electrolysis of water, which produces hydrogen and oxygen gas when an electric current is conducted through the water.

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9. Calculate the percent error for a lab when the students determined the actual yield to be 66.89
theoretical yield is 74.65. SHOW ALL WORK, Box Final Answer!

Answers

Answer:11.60%

Explanation:

[tex]Percent Error = \frac{Actual - Theoretical}{Actual} (100)\\[/tex]

[tex]Percent Error = \frac{74.65-66.89}{66.89} (100) = 11.60%[/tex]%

in the lewis resonance structure for nitrous oxide (nno) in which the central n atom is doubly bonded to each of the other two atoms, what is the formal charge on the central n atom?

Answers

Nitrogen is the central atom in molecules of nitrous oxide (N2O)

Nitrogen (N) interacts with oxygen (O) and with another nitrogen to produce two resonance structures in nitrous oxide (N2O), as depicted below.

N-=N+=O N+-O- N

i. N N+-O-

In this structure, one of the two N atoms and O each have a single covalent bond, and the other two share a triple covalent link. Let's figure out the net formal charge as well as the formal charges of each individual atom.

One nitrogen

V = 5, N = 2, B = 6

Therefore,

qf = 5 – 2 – 6/2 = 0

2 Nitrogen

V = 5, N = 0, B = 8

Therefore,

qf = 5 – 0 – 8/2 = 1

Oxygen

V = 6, N = 6, B = 2

Therefore,

qf = 6 – 6 – 2/2 = -1

Since 0 + 1 - 1 = 0, the net formal charge is 0.

ii. N-=N+=O

Here, a double covalent connection is shared by two nitrogen atoms and one nitrogen atom also has a double covalent link with oxygen. Let's figure out the net formal charge as well as the formal charges of each individual atom.

One nitrogen

V = 5, N = 4, B = 4

Therefore,

qf = 5 – 4 – 4/2 = -1

2 Nitrogen

V = 5, N = 0, B = 8

Therefore,

qf = 5 – 0 – 8/2 = 1

Oxygen

V = 6, N = 4, B = 4

Therefore,

qf = 6 – 4 – 4/2 = 0

It is calculated as follows: -1 + 1 + 0 = 0

Therefore, for both the resonance structure, the formal charge of nitrous oxide is zero. This indicates the stability of both of these structures.

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How do you predict if a chloride is ionic or covalent?

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If a compound is made from a metal and a non-metal, its bonding will be ionic. If a compound is made from two non-metals, its bonding will be covalent.

Ionic bonds, also known as electrovalent bonds, are a type of linkage created in a chemical molecule by the electrostatic attraction of ions with opposing charges. When the valence (outermost) electrons of one atom are permanently transferred to another atom, a bond of this kind is created. If an atom receives electrons, it becomes a negatively charged ion (cation), but if it loses them, it becomes a positively charged ion (cation) (anion). A basic study of ionic bonding follows. To learn more, go to chemical bonding: the ionic bonding process. Ionic or electrovalent compounds are produced via ionic bonding, and the compounds generated between nonmetals and alkali and alkaline-earth metals serve as the best examples of this type of compound.

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The movement of water and electrolytes between fluid compartments is regulated primarily by?

Answers

The movement of water and electrolytes between fluid compartments is regulated primarily by hydrostatic pressure and osmotic pressure.

Define electrolytes.

When dissolved in water, substances known as electrolytes acquire a natural positive or negative electrical charge.

The force that a fluid applies against a wall—hydrostatic pressure—is essentially moves fluid between compartments. The pressure that blood applies to the blood vessel walls as a result of the heart's pumping motion is known as the hydrostatic pressure of blood. The opposing "colloid osmotic pressure" in capillaries is greater than the blood's "constant" pressure, which is principally created by the circulation of albumin at the capillary's arteriolar end. This pressure pushes plasma and nutrients into the surrounding tissues from the capillaries.

Therefore, the movement of water and electrolytes between fluid compartments is regulated primarily by hydrostatic pressure and osmotic pressure.

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a compound is found to have an empirical formula of ch2o. what is the molecular formula when the molecular weight is 180.0 grams?

Answers

The compound's empirical formula is CH2O, which contains two hydrogen atoms and one oxygen atom for every carbon atom.CH2O has a mass of 30 (=12+2*1+16).The molecule has a molecular weight of about 180.As a result, the supplied molecule has the molecular formula C6H12O6.

What is the chemical structure of the equation for water, CH2O?

Therefore, a substance that is organic and has a molar mass pf 60 grams / mole as well as an empirical formula of CH2O also has a molecular formula or C2H4O2.

How much CH2O is in a mole?

A mol of CH2O has a molar mass of 30.026 g.The periodic chart must first be used to estimate its atomic mass of the each element in the compound.

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Of the following atmospheric gases, only _________ is an important greenhouse gas.hydrogen sulfide (H2S)oxygen (O2)water vapor (H2O)nitrogen (N2)argon (Ar)

Answers

Of the following atmospheric gases, only water vapor is an important greenhouse gas.

What is the greenhouse effect?

The greenhouse effect is an effect in which the heat that reaches the earth does not bounce back into space and by remaining allows an ideal temperature for life on earth. This effect is similar to that generated by plastic tents in greenhouses, hence its name.

This effect has become detrimental due to the effect of industries and human activity due to an increase in gases, increasing global temperature.

Within the greenhouse gases we find: water vapor, carbon dioxide, methane, nitrogen oxide, among others.

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a 0.300 g sample of an unknown compound occupies 203 ml at 298k and 2.32 atm. what is the molar mass of the unknown compound?

Answers

The molar mass of the unknown compound is 15.57 g/mol.

Describe a molar mass.

A substance's molar mass is defined as its molecular weight in grams. By adding the molar masses of a substance's constituent atoms, we can determine the substance's molar mass. Then, to convert between mass and the quantity of moles of the substance, we can use the calculated molar mass.

molecular mass A substance's molar mass, measured in grams, is what makes up one mole of a substance. There is only one molar mass for each element. For instance, the molar masses of magnesium are 24.3050 g/mol and 12.011 g/mol, respectively, for carbon.

Use the Ideal Gas Law,

PV = nRT

n = m/Mr

Mr is the relative molar mass

PV = (m/Mr)RT

Mr = mRT/PV

Mr = 0.3×0.08206×298/2.32×0.203

Mr = 7.336/0.4709

Mr = 15.57g/mol.

Therefore, the molar mass of the unknown compound is 15.57g/mol.

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What are 4 things to consider when storing chemicals?

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The 4 things to consider when storing chemicals is flammable and oxidizing chemical store separately , label the chemical , volatile chemicals in ventilated area and chemicals should be placed in the closed containers.

The chemicals should be stored in the closed container to keep it safe. the flammable and the oxidizing chemical should be store separately because they are incompatible to each other. the chemical should be placed sperate from the any kind of the ignition source. the volatile chemicals should be placed in the ventilated cabinets.

Thus, it very important to store the chemicals very safely so that it can not be hazardous to anyone.

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A sample of gas weighs 4.84 g and occupies a volume of 0.918 l at 35 °c and 850 torr. identify the gas sample.
a. NH3 (molar = Mass 17,03 B/moll
b. CHCI3 (molar mass 119 4 B/mol)
c. SO2 (molar mass 64.07 g/mol)
d. Cl2 (molar mass 70.90 5 g/mol)
e. N2O (molar mass 44.02 g/moll)

Answers

The gas sample is CHCl₃ having molar mass of 119.135 g/mol.

Calculate the molar mass of the gas, by using the equation given by Ideal gas equation,

PV = nRT

PV = w/M RT

Where,

P = Pressure of the gas = 850 torr

V = Volume of the gas = 0.918 L

w = Weight of the gas = 4.84 g

M = Molar mass of gas = ?

R = Gas constant = 62.36 L

T = Temperature of the gas = [35 + 273] K = 308 K

Substituting the values we get,

850 torr × 0.918 L = 4.84 g/ M × 62.36 L × 308 K

⇒ M = (4.84 g× 62.36 L × 308 K) / (850 torr × 0.918 L)

⇒ M = 119.135 g/mol

Hence, the gas sample is CHCl₃ having molar mass of 119.135 g/mol.

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why is El nino considered to be a trouble maker?
a. because scientists have to use satellites to chart its progress
b. because it occurs every year late in december
c. because it can cause droughtsflooding and other extreme or unusual weahter events
d. because it prevents a la nina from occuring

Answers

The correct answer is C. Hope this helps. Please mark brainliest

100 POINTS WILL MARK BRAINLIEST HELP PLEASE

Answers

Answer: D

Explanation:

Assuming this is a diagram to show how different substances react with each other, each number is representing a different substance.

Therefore, for example, substance 2 reacts with substance 1 to create a new substance. Or substance 4 reacts with substance 3 to create a new substance.

You can think about it like this:

Orange + water --> orange juice

or

Apple + orange --> a rather depressing fruit salad

However, what do you get when you add water + water?

Water + water --> surprise... WATER!!!

Therefore between the same substances, there will no reaction.

Hoped this helped! :)

The inner planets are terrestrial and the outer planets are Jovian. Why?

Answers

The terrestrial planets originated near to the Sun, where the temperature was ideal for the condensing of rock and metal. Outside of the so-called frost line, where temperatures were low enough for ice condensation, the jovian planets formed.

Terrestrial Planets: Mercury, Venus, Earth, and Mars are examples of the terrestrial planets, which derive from the Latin word "terra," which means "land."

The remaining planets in the solar system (apart from Pluto)—Jupiter, Saturn, Neptune, and Uranus—are collectively referred to as the jovian planets. They were given this moniker because of their likeness to Jupiter.

Planets that are terrestrial have solid surfaces, a slower rotation, and less dense metal cores.

Jovian planets have non-solid surfaces, rapid rotation, and cores made of significantly denser hydrogen and metal.

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A chemist prepares a solution of vanadium bromide by measuring out of into a volumetric flask and filling to the mark with distilled water. Calculate the molarity of anions in the chemist's solution.

Answers

The molarity of Bromides ions in the chemist solution is 4.05 x 10^-3 M.

Molarity (M) refers to the amount of a substance in a given volume of solution and is defined as the moles of a solute per liters of a solution.

The equation for calculating the molarity of solution is given by:

Molarity of the solution = Mass of solute/ (Molar mass of solute x Volume of solution in L)

According to the given information,

Given mass of Vanadium (III) bromide = 0.12 g

Molar mass of Vanadium (III) bromide = 295.65 g/mol

Volume of solution = 300 mL or 0.3 L

Hence,

Molarity of the solution = 0.12/ (295.65 x 0.3) = 0.001352 or 1.3 x 10^-3 M

As the formula for Vanadium (III) bromide is VBr3. Hence, 1 mole of Vanadium(III) bromide produces 1 mole of V 3+ ions and 3 moles of  Br -ions.

Molarity of bromide ions = 3 * 1.3 x 10^-3 M = 4.05 x 10^-3 M.

Note: The question is incomplete. The complete question probably is: A chemist prepares a solution of Vanadium (III) bromide (VBr) by measuring out 0.12 g of VBr into a 300 ml. volumetric flask and filling to the mark with distilled water. Calculate the molarity of Bromide ions in the chemist's solution. Be sure your answer is rounded to significant digits.

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What forces are in CH2O?

Answers

The formaldehyde CH₂O atom contain the forces of covalent bond.

The carbon atom has 4 valence electron.

It cannot directly gain or loose for electron that is why it shares the electrons with other atoms to form bonds with it.

In the formaldehyde CH₂O atom the carbon present at the center forms Bond with the oxygen and the hydrogen atom.

The hydrogen atom requires one electron each while the oxygen item requires to electrons for a stable electronic configuration.

When these of hydrogen and oxygen shares electrons with the central carbon atom they experience is a force created due to the covalent bonds.

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the following is the predicted 1h-nmr spectrum for an unknown compound with molecular formula . this compound is a liquid at room temperature, is slightly soluble in water, and reacts with sodium metal with the evolution of a gas.

Answers

The following is the predicted 1h-nmr spectrum for an unknown compound with molecular formula C₆H₄O is as follows :

CH₃ - CH₂ - CH - CH - CH₃

                     |        |

                   OH    CH₃

The  1h-nmr spectrum for an unknown compound with molecular formula . this compound is a liquid at room temperature, is slightly soluble in the water, and reacts with the sodium metal with the evolution of a gas is given as below :

                                           CH₃ - CH₂ - CH - CH - CH₃

                                                                  |        |

                                                                OH    CH₃

The 1 h nmr spectrum means the proton nuclear magnetic resonance. it helps to identify the organic compound an the structure of the organic compound.

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consider the following reaction at equilibrium. what effect will increasing the volume of the reaction mixture have on the system? 2 h2s(g) 3 o2(g) 2 h2o(g) 2 so2(g) a) the reaction will shift to the right in the direction of products. b) no effect will be observed. c) the reaction will shift to the left in the direction of reactants. d) the equilibrium constant will decrease. e) the equilibrium constant will increase.

Answers

Option (a) is correct. If a reaction is at equilibrium and we will increase the volume of the reaction then the Reaction will shift to the right in the direction of product.

The Reaction is,

2H2S(g) + 3O2(g) ----> 2H2O(g) + 2SO2(g) a)

According to Le Chatelier's principle, if a dynamic equilibrium is disturbed by changing the conditions the position of equilibrium shifts to counteract the change to reestablish an equilibrium. If a chemical reaction is at equilibrium and experiences a change in pressure, temperature or concentration of products or reactants, the equilibrium shifts in the opposite direction to offset the change. A change in one of the variables that describe a system at equilibrium produces a shift in the position of the equilibrium that counteracts the effect of this change.

We are increasing pressure here. Reaction will try to decrease the pressure. Hence it will move in a direction which have lesser gaseous molecules. Here product has less gaseous molecule. So equilibrium will move to right. Equilibrium moves to product side.

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One of a class of elements having properties intermediate to metals and nonmetals are called?

Answers

Metalloids are one of a class of elements having properties intermediate to metals and nonmetals.

Metalloids

Metalloids are the smallest class of elements consisting of only seven elements from the entire periodic table of elements. The periodic table is built with periodic properties in mind. Metalloids, which are transitional elements, form the boundary between metallic and non-metallic elements in the periodic table.

Elements belonging to the metalloid elements are: Boron (B), Silicon (Si), Germanium (Ge), Arsenic (As), Antimony (Sb), Tellurium (Te), and Polonium (Po).

Metalloid elements are generally semiconductors, so they are widely used as materials for electronic components such as transistors, ICs, and diodes.

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What is density of argon gas in g ml at STP?

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1.78 g/L is density of argon gas in g ml at STP

To comparing various gas characteristics, standard temperature and pressure (STP) is a helpful set of reference conditions. Gases have a volume of 22.4 L per mole at STP. The ideal gas law may be used to calculate gas densities. The ideal gas law equation's variable "R" is referred to as the "gas constant." A constant number is always equal to the product of the pressure times the volume of a gas divided by the number of moles and the gas's temperature. The units that the temperature, pressure, and volume are expressed in determine the constant's numerical value.

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What is the risk of exposure to chemical agents?

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The risk of chemical exposure are skin blistering and difficulties breathing.

There are certain methods in which a person might be exposed to a dangerous chemical while working in a chemical laboratory. It is quite likely that a person might inhale a chemical if it is present in the form of a gas.

Breathing may become difficult as a result of this.

It is a given that we occasionally need concentrated acid and base while doing chemical experiments.

Human skin is severely harmed by both acid and base. Therefore, a burn might result from an acid or base coming into touch with the skin directly.

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