How many grams of calcium chloride are needed to produce 1.50 g of potassium chloride? cacl2(aq) + k2co3(aq) → 2 kcl(aq) + caco3(aq) 1.12 g 2.23 g 0.896 g 4.47 g?

Answers

Answer 1

The calcium chloride needed to produce 1.5 grams of KCl is: 1.12 grams

Further explanation

Stoichiometry in Chemistry learn about chemicals mainly emphasizes quantitative, such as the calculation of volume, mass, number, which is related to numbers, molecules, elements, etc.

A reaction coefficient is a number in the chemical formula of a substance involved in the reaction equation. The reaction coefficient is useful for equalizing reagents and products.

In the reaction there are also manifestations of reagent substances namely gas (g), liquid (liquid / l), solid (solid / s) and solution (aqueous / aq).

Reactions that occur:

CaCl₂ (aq) + K₂CO₃ (aq) → 2 KCl (aq) + CaCO₃ (aq)

From the reaction equation above, the reaction coefficient shows the mole ratio of reagents and products

mol CaCl₂: moles of KCl = 1: 2

relative molecular mass KCl = 74.6

relative molecular mass of CaCl2 = 111

then the mole:

mole KCl = mass: relative molecular mass

mole KCl = 1.5 gram: 74.6

mole KCl = 0.020107

so that

mole CaCl₂ = 1/2. 0.020107

mole CaCl₂ = 0.0100535

So the mass of CaCl2 = mole x relative molecular mass

mass CaCl₂ = 0.0100535 x 111

mass CaCl₂ = 1.12 gram

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Keywords: CaCl2, KCl, mole, mass, relative molecular mass

How Many Grams Of Calcium Chloride Are Needed To Produce 1.50 G Of Potassium Chloride? Cacl2(aq) + K2co3(aq)
Answer 2

The mass calcium chloride needed is 1.12 g

The balanced equation for the reaction is illustrated below:

CaCl₂ + K₂CO₃ —> 2KCl + CaCO₃

Next, we shall determine the mass of CaCl₂ that reacted and the mass of KCl produced from the balanced equation.

Molar mass of CaCl₂ = 40 + (35.5×2)

= 40 + 71

= 111 g/mol

Mass of CaCl₂ from the balanced equation = 1 × 111 = 111 g

Molar mass of KCl = 39 + 35.5

= 74.5 g/mol

Mass of KCl from the balanced equation = 2 × 74.5 = 149 g

Thus,

From the balanced equation above,

111 g of CaCl₂ reacted to produce 149 g of KCl.

Finally, we shall determine the mass of CaCl₂ needed to produce 1.5 g of KCl as follow:

From the balanced equation above,

111 g of CaCl₂ reacted to produce 149 g of KCl.

Therefore, X g of CaCl₂ will react to produce 1.5 g of KCl i.e

X g of CaCl₂ = [tex]\frac{1.5 * 111}{149}[/tex]X g of CaCl₂ = 1.12 g

Thus, 1.12 g of calcium chloride, CaCl₂ is needed to produce 1.5 g of KCl.

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Related Questions

A solid fuel designed for a rocket has an air pocket inside. What is the DANGER OF THIS?

A. The rocket might not generate enough lift
B. The rocket might slow down and fall from space
C. The rocket might explode from the added pressure when the combustion reaction hits the air pocket
D. the rocket might not be able to regulate its speed

Answers

Answer:

C. The rocket might explode from the added pressure when combustion reaction hits the air pocket.

Explanation:

Correct answer for *APEX quiz!

The rocket might explode from the added pressure when combustion reaction hits the air pocket. Hence, option C is correct.

What is combustion?

Combustion is another word for burning. In a combustion reaction, a fuel is heated and it reacts with oxygen.

In a rocket engine , fuel and a source of oxygen, called an oxidizer, are mixed and exploded in a combustion chamber.

The combustion produces hot exhaust which is passed through a nozzle to accelerate the flow and produce thrust.

Hence, option C is correct.

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Which technique is used to compare ink on a suspect document?
A) thin-layer chromatography
B) infrared spectrophotometry
C) blotting with alcohol method
D) ultraviolet spectrophotometry

Answers

Final answer:

The technique of thin-layer chromatography is used to compare ink on a suspect document. This is done by creating a chromatogram through exposing the ink to a solvent and observing the resulting pattern of spots.

Explanation:

The technique used to compare ink on a suspect document is A) thin-layer chromatography. Thin-layer chromatography is a type of chromatography that is widely used to separate mixtures in forensic analysis. In this process, the ink sample from the suspect document is placed on a thin layer of absorbent material.

The sample is then exposed to a solvent, which moves up the stationary phase, carrying different components of the ink at different rates. This results in a series of spots, that form a chromatogram, can then be compared to known samples for identification.

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The acid dissociation constant for an acid dissolved in water is equal to the ____.
a. equilibrium constant
b. equilibrium constant times the concentration of water
c. equilibrium constant divided by the concentration of water
d. equilibrium constant times the equilibrium constant of water

Answers

equilibrium constant times the concentration of water. - 100% guaranteed correct

Answer:The correct answer is option b.

Explanation:

[tex]HA+H_2O\rightleftharpoons A^-+H_20^+[/tex]

The equilibrium constant expression is given as:

[tex]K_{eq}=\frac{[A^-][H_3O^+]}{[HA][H_2O]}[/tex]

[tex]K_a=K_{eq}\times [H_2O]=\frac{[A^-][H_3O^+]}{[HA]}[/tex]

The acid dissociation constant is product of equilibrium constant and concentration of water.

Hence,from the given options the correct answer is option b.

Question 3 given that au-197 is the only natural isotope of gold, what is the mass of one au atom and the mass of avogadro's number of au atoms, respectively? 196.97 g and 196.97 amu 197 amu and 197 g 197 g and 197 amu 196.97 amu and 196.97 g none of the above

Answers

The mass of one Au atom is 196.97 amu from periodic table and the mass of Avogadro's number of Au atoms is 196.97 g due to this is the mass of one mole of gold

Explanation:

The mass number of an element is a weighted average of all the isotopes of that element.

If Au has only one isotope then the atomic weight of that isotope matches the mass number.

Au-197 ==> mass number 197

Mass of one atom=mass number 197 amu

Mass of one mol of atoms:

[tex]m=197 amu*1.66054*10^{-24}g/amu*6.022*10^{23}[/tex]

[tex]m=196.97 g[/tex]

A certain radioactive material has a half-life of 36 minutes. Starting with 10.00 grams of this material, how many grams will be left after 2 hours?

A) 1.00 grams
B) 1.5 × 10-4 grams
C) 3.33 grams
D) 0.25 gram

Answers

I think it's c hope it's right

Answer: The correct answer is C) 3.33 grams

Explanation: 1/8 of the initial 10 grams is a little more than 1 gram, while 1/16 of 10 grams is a little more than 1/2 gram. The only answer that falls in that range is 1.00 gram. Use the integrated rate equation: ln(g0/gt) = kt, also ln(2) = kt1/2. Therefore k = (0.693)/36 min = 0.0193 min-1. In addition to the specific chemical properties that distinguish different chemical classifications, chemicals can exist in several phases. For the most part, the chemical classifications are independent of these bulk phase classifications; however, some more exotic phases are incompatible with certain chemical properties. A phase is a set of states of a chemical system that have similar bulk structural properties, over a range of conditions, such as pressure or temperature. Physical properties, such as density and refractive index tend to fall within values characteristic of the phase. The phase of matter is defined by the phase transition, which is when energy put into or taken out of the system goes into rearranging the structure of the system, instead of changing the bulk conditions.

Sometimes the distinction between phases can be continuous instead of having a discrete boundary' in this case the matter is considered to be in a supercritical state. When three states meet based on the conditions, it is known as a triple point and since this is invariant, it is a convenient way to define a set of conditions.

The most familiar examples of phases are solids, liquids, and gases. Many substances exhibit multiple solid phases. For example, there are three phases of solid iron (alpha, gamma, and delta) that vary based on temperature and pressure. A principal difference between solid phases is the crystal structure, or arrangement, of the atoms. Another phase commonly encountered in the study of chemistry is the aqueous phase, which is the state of substances dissolved in aqueous solution (that is, in water).

In the compound cah2 calcium has an oxidation number of 2+ and hydrogen has an oxidation number of

Answers

The oxidation number of H is -1.

Sum of the oxidation numbers in each element = charge of the complex

CaH₂ has 1 Ca atom and 2H atoms. The charge of the complex is zero. Let’s say Oxidation number of H is "a".

Then,

    (+2) + 2 x a = 0

        +2  + 2a  = 0

                  2a = -2

                    a = -1

Hence, the oxidation number of Hydrogen atom in CaH₂ is -1


Final answer:

In the compound CaH2, calcium has an oxidation number of +2, and hydrogen has an oxidation number of -1, balancing the charges. The oxidation states of elements in a compound like CaH2 influence their properties and reactivity.

Explanation:

In the compound CaH2, calcium has an oxidation number of +2 and hydrogen has an oxidation number of -1.

Hydrogen usually has an oxidation number of +1 except when bonded to metals in hydrides where it is -1. This is the case in compounds like CaH2.

Each hydrogen atom in CaH2 carries a charge of -1, balancing with the +2 charge of calcium to maintain overall charge neutrality.

Renewable resources are those that can be synthesized by humans. True or False?

Answers

False because they are resources that are created repeatedly by nature so it doesn't end. For example solar or wind energy.

Answer:

False

Explanation:

But with proper argument both sides have a point. Yes, the earth naturally makes there energy sources, but with out human motivation and work ethic we wouldn't have the power to harness the energy and use it in our every day lives. But the answer is FALSE

Object A has a density of 10 g/cm3 and a mass of 9 g. Object B has a density of 10 g/cm3 and a mass of 4 g. Which object has a greater volume and by how much?

Answers

mass=Density * volume
volume=mass/Density
volume A=mass A/Density A=9g/10g/cm³=0.9 cm³

volume B=mass B/Density B=4g/10g/cm³=0.4 cm³

0,9 cm³>0.4 cm³
volume A>volume B

Explain how solid naphthalene in mothballs is distributed evenly through clothes in a drawer

Answers

It's a vapor that penetrates fibers. Don't let their appearance fool you.

When calcium carbonate is heated strongly, it forms calcium oxide and carbon dioxide. what mass of calcium carbonate is needed to make 50.0 g of calcium oxide?

Answers

The mass is 34 g needed

To produce 50.0 g of calcium oxide, 89.29 g of calcium carbonate is required. The amount is calculated based on the fixed ratio of the decomposition reaction of calcium carbonate, which aligns with the law of conservation of mass.

To determine the mass of calcium carbonate ([tex]CaCO_3[/tex]) needed to produce 50.0 g of calcium oxide (CaO), it's essential to refer to the stoichiometry of the chemical reaction. The balanced chemical equation for the decomposition of calcium carbonate is:

[tex]CaCO_3(s) \rightarrow CaO(s) + CO_2(g)[/tex]

From the given examples, we can deduce that when 10.0 g of calcium carbonate decompose, they produce 5.6 g of calcium oxide. This means there is a fixed ratio of mass of calcium carbonate to calcium oxide, which is:

Mass of CaCO3 : Mass of CaO = 10.0 g : 5.6 g

To produce 50.0 g of calcium oxide, we can set up a proportion based on the fixed ratio:

10.0 g CaCO3 / 5.6 g CaO = x g CaCO3 / 50.0 g CaO

By solving for x, which represents the mass of calcium carbonate needed, we can cross-multiply and divide to find the answer:

[tex]x = (10.0 g CaCO3 \times 50.0 g CaO) / 5.6 g CaO[/tex]

x = 89.29 g of CaCO3

Therefore, to obtain 50.0 g of calcium oxide, you would need 89.29 g of calcium carbonate. This calculation is in agreement with the law of conservation of mass, which states that mass is neither created nor destroyed in a chemical reaction.

How many grams of lead (ii) chloride will dissolve in a 0.750 l of 0.650 m pb(no3)2 solution? the ksp of lead (ii) chloride is 1.7 x 10-5 ?

Answers

if you do it is 2130 

If an endothermic process absorbs 256j how many kilocalories are absorbed

Answers

There are several units for expressing energy, Most common are joules and kilocalories.

The conversion factor of joule to kilocalories is 
 1 kilo calorie  = 4184 J
∴ x kilo calorie = 256 J

x = [tex] \frac{256}{4184} = 0.0611 [/tex] kilo calories

Thus, 256 J = 0.0611 kilocalories

Answer: 0.0612 kcalories

Explanation:

Endothermic processes are those processes in which heat is absorbed and exothermic processes are those processes in which heat is released.

Standard units for heat measurement are Joules and calories wherein

1 joule = 0.239 calorie.

As 1 Joule is equivalent to 0.239 calorie

256 Joules are equivalent to=[tex]\frac{0.239}{1}\times 256=61.2calories[/tex]

Now 1 cal = 0.001 kcalories

Therefore 61.2 calories=[tex]\frac{0.001}{1}\times 61.2=0.0612kcal[/tex]

Nitric acid can be produced by the reaction of gaseous nitrogen dioxide with water. 3 no2(g) + h2o(ℓ) −→ 2 hno3(ℓ) + no(g) if 854 l of no2 gas react with water, what volume of no gas will be produced? assume the gases are measured under the same conditions. answer in units of l.

Answers

the balanced equation for the above reaction is as follows;
3NO₂ + H₂O --> 2HNO₃ + NO
stoichiometry of NO₂ to NO is 3:1
molar volume is where 1 mol of any gas occupies a volume of 22.4 L
volume of gas is directly proportional to number of moles of gas.
therefore stoichiometry can be applied for volume as well.
volume ratio of NO₂ to NO is 3:1
volume of NO₂ reacted - 854 L
therefore volume of NO formed - 854 L /3 = 285 L
volume of NO formed - 285 L

Final answer:

To determine the volume of NO gas produced from 854 L of NO₂ gas reacting with water, the stoichiometry of the balanced reaction (3 NO₂(g) + H₂O(l) → 2 HNO₃(aq) + NO(g)) indicates a 3:1 ratio. Using this ratio, the calculated volume of NO gas produced is 284.67 L.

Explanation:

To calculate the volume of NO gas produced when 854 L of NO₂ gas react with water, we can use the stoichiometry of the balanced chemical equation:

3 NO₂(g) + H₂O(l) → 2 HNO₃(aq) + NO(g)

According to the equation, 3 moles of NO₂ produce 1 mole of NO. This ratio can be applied to the volumes of the gases involved, as they are both measured under the same conditions and thus follow the ideal gas law where volume is directly proportional to moles.

To find the volume of NO produced:

Determine the mole ratio from the chemical equation: 3 moles of NO₂ produce 1 mole of NO.

Use the mole ratio to find the volume ratio for NO₂ to NO, which is also 3:1.

Apply the volume ratio to the given volume of NO₂: 854 L of NO₂ × (1 mole NO / 3 moles NO₂) = 284.67 L of NO.

So, under the same conditions, the volume of NO gas produced would be 284.67 L.

The molar mass of I2 is 253.80 g/mol and the molar mass off NI3 is 394.71 g/mol. how many moles of I2 will form 3.58 g of NI3

Answers

the balanced equation for the above reaction is as follows;
N₂ + 3I₂ --> 2NI₃
stoichiometry of I₂ to NI₃ is 3:2
mass of NI₃ formed - 3.58 g
The number of NI₃ moles formed - 3.58 g / 394.71 g/mol = 0.00907 mol
according to molar ratio,
when 2 mol of NI₃ is formed - 3 mol of I₂ reacts
therefore when 0.00907 mol is formed - 3/2 x 0.00907 mol = 0.0136 mol of I₂
mass of I₂ reacted - 0.0136 mol x 253.80 g/mol  = 3.45 g
therefore mass of I₂ formed - 3.45 g

The moles of I₂ that will form 3.58 g of  NI₃ is  0.0135 moles

The mole is an amount unit similar to familiar units like pair, dozen, gross, etc. It provides a specific measure of the number of atoms or molecules in a bulk sample of matter.

A mole is defined as the amount of substance containing the same number of atoms, molecules, ions, etc. as the number of atoms in a sample of pure 12C weighing exactly 12 g.

Given,

Molar mass of I₂ = 253.8 g/mol

Molar mass of NI₃ = 394.71 g/mol

N₂ + 3I₂ = 2NI₃

Mass of NI₃ = 3.58g

Moles of NI₃ = mass / molar mass

= 3.58 / 394.71

= 0.009 moles

from the reaction, 2 moles of NI₃ need 3 moles of I₂

1 mole of NI₃ will need 3/2 moles of I₂

So, 0.009 moles of NI₃ will need = 1.5 × 0.009 = 0.0135 moles of  I₂

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Write the equation for the dissolution of sr(no3)2 in water. how many moles of strontium ions and nitrate ions are produced by dissolving 0.5 mol of strontium nitrate?

Answers

                                    Sr(NO3)2 ---> Sr²⁺ +       2 NO3⁻
from the reaction         1 mol            1 mol           2 mol
from the problem         0.5 mol         0.5 mol        1 mol

Answer: Moles of strontium and nitrate ions formed by dissolving 0.5 moles of strontium nitrate in water are 0.5 moles and 1 mole respectively.

Explanation:

We are given a chemical compound known as strontium nitrate having chemical formula [tex]Sr(NO_3)_2[/tex]. This is an ionic compound and when it is dissolved in water, it will dissociate into its respective ions.

We are given:

Moles of strontium nitrate = 0.5 moles

The chemical equation for the ionization of strontium nitrate follows:

[tex]Sr(NO_3)_2(aq.)\rightarrow Sr^{2+}(aq.)+2NO_3^-(aq.)[/tex]

By Stoichiometry of reaction:

1 mole of strontium nitrate produces 1 mole of strontium ions and 2 moles of nitrate ions.

So, 0.5 moles of strontium nitrate will produce = [tex](1\times 0.5)=0.5mol[/tex] of strontium ions and [tex](2\times 0.5)=1mol[/tex] of nitrate ions.

Hence, moles of strontium and nitrate ions formed by dissolving 0.5 moles of strontium nitrate in water are 0.5 moles and 1 mole respectively.

there is a total of seventeen constitutional isomers for the molecular formula c5h13n. draw the skeletal formula of all three constitutional isomers that are tertiary amines.

Answers

Final answer:

The skeletal formulae for the three tertiary amines according to the molecular formula C5H13N are N(CH3)3, N(CH3)(C2H5), and N(CH3)(C3H7). These demonstrate the concept of constitutional isomerism in organic chemistry.

Explanation:

Tertiary amines are those amines in which the nitrogen atom is bonded to three organic groups. In the context of the given molecular formula - C5H13N - the three constitutional isomers that are tertiary amines can be represented as follows:

N(CH3)3: The nitrogen atom here is bonded to three methyl groups. N(CH3)(C2H5): Here, the nitrogen atom is bonded to two methyl groups and one ethyl group. N(CH3)(C3H7): In this case, the nitrogen atom is bonded to one methyl group and one propyl group.

To draw these, remember that each carbon atom is at the end of each branch and the N indicates the central nitrogen atom. The formation of these distinct structures from the same molecular formula demonstrates the concept of constitutional isomerism in organic chemistry.

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A "fizz saver" pumps air under pressure into a soda bottle to keep gas from escaping. will this keep co2 in the soda bottle? explain your answer.

Answers

A fizz saver forms an airtight seal around the now-upsidedown soda bottle, and the pressure exerted by the drink and the atmospere outside pushes out the drink through the slightly-elevated spout. The CO2 gas does not fizz out because it stays at the bottom of the upside-down bottle. Thus the CO2 gas is trapped and the drink is carbonated at a longer time.

Answer:

yeah...what he/she said...lol

Explanation: I was going to say that anyways.....btw am i the only one who has a problem with chemistry right now??? I need a tutor right about now....like baddddd!!!!

Draw the lewis structure for the molecule ch3ch2cch. how many sigma and pi bonds does it contain?

Answers

Answer:
             The structure of 1-Butyne is shown below and it contains;

                                         Nine Sigma Bonds

                                             Two Pi Bonds

Explanation:
                     
In given structure the sigma bonds are highlighted with blue colour and pi bonds are highlighted by Black colour and indicated by red arrows.
                     Remember the very first covalent bond between two atoms is always the sigma bond. After formation of sigma bond if further p orbitals with unpaired electrons are available they will form pi bond, or two pi bonds as in given scenario.
Final answer:

The molecule CH3CH2CCH has a Lewis structure of H3C-CH2-C≡CH. It contains 11 sigma bonds and 2 pi bonds, which represent the different forms of covalent bonds due to the overlap of atomic orbitals.

Explanation:

The molecule CH3CH2CCH, also known as 1-Butyne, is composed of hydrogen (H) and carbon (C) atoms. Its Lewis structure can be represented as:

H3C-CH2-C≡CH.

Here, each line represents a bond between two atoms, which could be a sigma (σ) or a pi (π) bond. In the case of CH3CH2CCH, there are a total of 11 sigma bonds. You can see these as the bonds between H and C in the CH3 and CH2 groups, the single bond between the two C atoms in the center, and the bond between the last C and H atoms. As for the pi bonds, represented by two lines (double/triple bonds), there are 2, which can be seen in the triple bond of C≡C.

Sigma bonds represent the overlap of atomic orbitals to form a covalent bond, with the electron density concentrated along the internuclear axis. Conversely, pi bonds occur due to the side-by-side overlap of atomic orbitals where the electron density is concentrated on two parallel lines.

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Which compound is most likely to have a sweet smell? which compound is most likely to have a sweet smell? ch3−ch2−nh2 o∥ch3−c−o−ch3 ch3−ch2−o−ch3 ch3−ch2−ch2−oh?

Answers

The compound that will have a sweet smell would be the one, whereby the molecular formula closely resembles that of an ether

R-O-R.

I believe the third one

Compounds are substances made up of similar molecules with atoms of various elements. The atoms of two or more elements form bonds and combine to yield a compound.

[tex]\rm CH_{3} - CH_{2} -O - CH_{3}[/tex]  will have a sweet smell.

What are the functional groups?

Functional groups are specific atoms or molecules bonded with the compound that gives a characteristic property to a compound. Some examples are alcohols, amines, ethers, carboxylic acids etc.

Ether [tex]\rm (R-O-R^{'})[/tex]  is one of the functional groups with a sweet and pleasant smell that is a volatile and flammable compound and is used in solvent and other industrial processes.

The compound [tex]\rm CH_{3} - CH_{2} -O - CH_{3}[/tex] is ether as it has the general formula of ether where the oxygen is linked with two different groups on its two sides.

Therefore, option C. [tex]\rm CH_{3} - CH_{2} -O - CH_{3}[/tex]  is the sweet-smelling compound.

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When determining whether a chemical reaction has taken place, you observe and look for several indicators. Which would be considered an indication that a chemical reaction or chemical change has taken place?

A) Solid melts.
B) Heat is given off.
C) Substance dissolves
D) Substance changes shape.

Answers

the answer would be (B), Heat is given off.






Hope that helps!!!!

the answer is b i just got it right on usatestprep

If the reactants of a reaction have one s and four o atoms, what will the products have?

Answers

Answer:
            The products will also have one S and four O atoms.

Explanation:
                   According to Law of Conservation of Matter, " Matter can neither be created nor destroyed, but it can be changed from one form into another".
                   So, in given scenario the number of atoms in reactants and products will also remain the same, but their chemical composition can vary. They might have no similarity in chemical composition but their numbers will remain the same.
                   The reaction might be the decomposition of sulfuric acid,, 

                                        H₂SO₄     →     SO₃  +  H₂O

In above case number of S and O on both sides are same, but chemical composition has changed.

Answer:

one S four O atoms

Explanation:

what is fry's reagent used for?

Answers

Fry's Reagent a chemical used on metals such as firearms, it corrodes them and allows you to see the etching that could have been scratched off by the criminal, such as the serial number of the gun.  It is a chemical that can restore a serial number that has been removed from a gun by dissolving the area that has been flattened when the number was stamped on.

Fry's reagent is a chemical tool used to detect aldehydes through a color change to bright magenta, offering a simple and fairly reliable test for the presence of these functional groups in various chemical applications.

Fry's reagent is a chemical reagent commonly used in a method to detect aldehydes. It consists of a decolorized fuchsin dye that can be activated by sulfur dioxide. When Fry's reagent comes into contact with aldehydes, it will cause a color change to bright magenta, indicating the presence of these functional groups. This method is known for its simplicity and reliability, although it is important to note that it might not always produce clear-cut results as anticipated.

Detecting aldehydes is crucial in various applications, such as confirming the presence of specific biomolecules in biochemistry or determining the purity of chemical compounds in synthetic chemistry. The color change of Fry's reagent provides a visual cue that can be quickly interpreted by researchers.

A chef is going to use a mixture of two brands of italian dressing. the first brand contains 7% vinegar, and the second brand contains 11% vinegar. the chef wants to make 240 milliliters of a dressing that is 8% vinegar. how much of each brand should she use?

Answers

Answer is: 180 mL of 7% vinegar and 60 mL of 11% vinegar.

ω₁ = 7% ÷ 100% = 0.07.
ω₂ = 11% ÷ 100% = 0.11.
ω₃ = 8% ÷ 100% = 0.08.
V₁ = ?.

V₂ = ?.
V₃ = V₁ + V₂.
V₃ = 240 mL.

V₁ = 240 mL - V₂.
ω₁ · V₁ + ω₂ ·V₂ = ω₃ · V₃.

0.07 · (240 mL - V₂) + 0.11 · V₂ = 0.08 · 240 mL.

16.8 mL - 0.07V₂ + 0.11V₂ = 19.2 mL.

0.04V₂ = 2.4 mL.

V₂ = 2.4 mL ÷ 0.04.

V₂ = 60 mL.

V₁ = 240 mL - 60 mL.

V₁ = 180 mL.

Which type of van der walls force is responsible for holding polar molecules together? london dispersion dipole-dipole hydrogen bonding gravitational force?

Answers

Answer:

dipole-dipole

Explanation:

Polar molecules are formed as result of covalent bonds between atoms.

Dipole-dipole attraction are intermolecular bonds. Both London dispersion forces and dipole-dipole attraction are van der waals forces.

In dipole-dipole attraction, polar molecules (unsymmetrical molecules) line up such that the positive pole of one molecule attracts the negative pole of another. Example of such is found in HCl.

Answer:

Dipole-dipole forces are the van der Waals forces that hold polar molecules together!!

When iocnic solids dissolve in water, the break down into the ____ ions (cations) and ___ ions (anions) that they contain?

Answers

what are the answers

A chemical is classified as being volatile if it is __________.

Answers

A chemical is classified as being volatile if it is readily evaporated at room temperature.  Volatility is related to a substance's vapor pressure. At a given temperature, a substance with higher vapor pressure vaporizes more readily than a substance with a lower vapor pressure.

the enthaply of a reaction can be measured using a ____

Answers

The answer is calorimeter. The amount of heat released or absorbed in the system inside the calorimeter can be measured since the calorimeter is insulated. Measuring the mass and the change in temperature of the system, and knowing the specific heat of the materials, we can then measure the heat transfer that is equal to the enthalpy of the reaction. 

What is the celsius temperature of 100.0 g of chlorine gas in a 55.0-l container at 800 mm hg?

Answers

Given, pressure = P = 800 mm Hg = 1.066 X 10^5 Pa
Volume = V = 55 l = 0.055 m^3
number of moles of Cl2 gas = n = [tex] \frac{weight}{\text{molecular weight}} [/tex] = [tex] \frac{100}{71} [/tex] = 1.408

Now, based on ideal gas equation, we have
PV=nRT
∴ T = PV/RT
where R = universal gas constant = 8.314 J /mol K
∴ T = [tex] \frac{1.066X 10^5X0.055}{1.408X8.314} [/tex] = 500.8 K

Now, we know that [tex] 0^{0}C = 273.15 K [/tex]
∴ 500.8 K = [tex] 227.65^{0}C [/tex]
Final answer:

To calculate temperature of a gas, use the ideal gas law PV=nRT. Substitute the given values, including the number of moles calculated from the mass and molar mass of chlorine, and solve for the temperature. The result will be in Kelvin, so convert to Celsius.

Explanation:

The celsius temperature of 100.0 g of chlorine gas in a 55.0-l container at 800 mm hg can be calculated by using the ideal gas law: PV = nRT. Here, P = Pressure = 800 mm hg (we must convert this to atmospheres by using the conversion factor 1 atm = 760 mm hg), V = volume = 55.0 liters, n = number of moles (which we can calculate by using chlorine's molar mass), R = ideal gas constant = 0.08206 L.atm/(mol.K), T = temperature (which is what we're solving for). After substitifying and calculating values, the final temperature would be expressed in Kelvin, which could be easily converted to Celsius by subtracting 273.15.

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Which type of solute is present in aqueous solution predominantly as hydrated ions rather than as molecules?

Answers

Answer is: strong electrolyte.

Strong electrolytes better separates into particles (ions) in water because of their ionic bond.

For example sodium chloride is ionic compound and strong electrolyte and dissociates in water on hydrated sodium cations and chlorine anions:

NaCl(aq) → Na⁺(aq) + Cl⁻(aq).


Final answer:

The type of solute that predominantly exists as hydrated ions in an aqueous solution includes salts with small, highly charged ions like Mg²⁺, Al³⁺, SO₄²⁻, and PO₄³⁻. These ions are stabilized in solution through hydration by water molecules due to the polar nature of water, making it a powerful solvent for ionic compounds.

Explanation:

The type of solute that is present in an aqueous solution predominantly as hydrated ions rather than as molecules is typically composed of salts containing small, highly charged ions such as Mg²⁺, Al³⁺, SO₄²⁻, and PO₄³⁻. These ions have a greater tendency to form ion pairs due to strong electrostatic interactions, but in aqueous solutions, they are often found as hydrated ions surrounded by a shell of water molecules. Hydration helps to stabilize these solutions by preventing the positive and negative ions from reassociating and precipitating. This process is critical for understanding the behaviors of electrolytic solutions, where salt dissolves in water and dissociates into its component ions, leading to the formation of solvated ions which can conduct electricity.

The stabilization of ions in solution through hydration is fundamental to many chemical processes, including reactions in aqueous solutions and the biochemical activities inside cells. The water molecules' ability to surround and stabilize ions is largely due to the polar nature of water, arising from the differences in electronegativity between hydrogen and oxygen. This property makes water an excellent solvent for ionic compounds.

which energy source has been developed and improved by chemist

Answers

nuclear hope this helps

                                                                                             

Answer:

Nuclear energy

Explanation:

There are many sources of energy available in nature which are harnessed by humans for their use. Some of these sources are present in abundant quantity (solar energy) while others take million of years to renew (coal and petroleum).

Nuclear energy is generated when two nuclei fuse into a larger nuclei (nuclear fusion) or a large nuclei dissociates into smaller ones (nuclear fission) .

A small quantity of nuclear fuel produces a large amount of energy. It is difficult to control the energy production process on which chemist hve worked. Also, the disposal of radioactive waste produced was also a challenge.

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