gas which dissolve in ammonia copper(ii) chloride but insoluble in water is

Answers

Answer 1

Answer:

carbon monoxide

Explanation:

yes this is the answer

Answer 2

Carbon mono-oxide is the gas which dissolve in ammonia copper(ii) chloride but insoluble in water.

What is carbon mono-oxide?

Carbon monoxide (CO) is just a toxic gas that is colorless and odorless. It is created when various fuels, such as coal, wood, charcoal, oil, kerosene, propane, as well as natural gas, are burned incompletely.

What is gas?

One of the four basic states of matter is gas. Individual atoms, elemental molecules created from one type of atom can make up a pure gas.

Therefore, carbon mono-oxide is the gas which dissolve in ammonia copper(ii) chloride but insoluble in water.

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Related Questions

Students in Mr. Brant's class designed an experiment to test which baseball bat will hit the ball the longest distance? In this experiment what is the test variable?

A . The distance the ball traveled


B. The students in the class


C. The type of baseball bat


D. A baseball helmet

Answers

Answer is d.A baseball helmet

25 mL of 0.010 M I- solution is mixed with another solution to give a new total volume of 60 mL. What is the molarity of I- after mixing

Answers

Answer:

the answer of this question is 0.0041M

How does the carbonyl group increase the reactivity of carboxylic acids?

Answers

Answer:

The relative reactivity of carboxylic acid derivatives toward nucleophile substitutions is related to the electronegative leaving group's ability to activate the carbonyl. The more electronegative leaving groups withdraw electron density from the carbonyl, thereby increasing its electrophilicity.

Hope it helps you.

1. Based on the two video clips on titration from the links provided earlier on the watsApp Group and a study master, carry out the following tests , a define the forms(i) titrant (2) Strand or analyte (3) Indicator (4) end point (5) titration. b. write in point form (list), the steps inolved in titration (including the relevant apparatus used) - write a typed Laboratory report for this assignment where there is no data to put in, include the relevant headings but without data. (For those who can attempt to do some calculations based the presentations, you are encouraged The report should be handed in when you open back to college​

Answers

Answer:

1. Based on the two video clips on titration from the links provided earlier on the watsApp Group and a study master, carry out the following tests , a define the forms(i) titrant (2) Strand or analyte (3) Indicator (4) end point (5) titration. b. write in point form (list), the steps inolved in titration (including the relevant apparatus used) - write a typed Laboratory report for this assignment where there is no data to put in, include the relevant headings but without data. (For those who can attempt to do some calculations based the presentations, you are encouraged The report should be handed in when you open back to college​

Explanation:

the answer is end point

Phosphorous-32 has a half life of 14.3 days while radon-222 has a half-life of 3.8 days, so phosphorous-32 is considered more active.

a. True
b. False

Answers

The answer is B - False

6. During the titration, splatter from the drops of NaOH splashed some of the KHP solution onto the sides of the Erlenmeyer flask. If the student did not rinse these droplets back down into the solution with distilled water, how would that have affected the calculation of concentration of NaOH

Answers

Answer:

A titration is an analytical procedure used to determine the concentration of a sample by reacting it with

a standard solution. One type of titration uses a neutralization reaction, in which an acid and a base

react to produce a salt and water.

In a titration, the standard solution goes in a buret, which is a piece of glassware used to measure the

volume of solvent to approximately 0.1 mL of accuracy. The solution that you are titrating goes in an

Erlenmeyer flask, which should be large enough to accommodate both your sample and the standard

solution you are adding.

Question 25 of 30
Several dyes were mixed together and dissolved in water. You need to
determine which dyes are in the solution, but not separate the entire mixture.
How can you separate out a small sample of the dyes for identification
purposes, but not separate the entire mixture?
A. By distilling the dyes
B. By filtering the dyes
C. By using oils to distill the dyes
D. By using chromatography
SUBMIT

Answers

Answer: D, by using chromatography.

We can separate out a small sample of the dyes for identification purposes, but not separate the entire mixture by using chromatography.

What is Chromatography?

Chromatography is a technique of separation of mixtures of liquids according to the nature of those liquids.

To get the process started, the mixture is dissolved in a substance called the mobile phase, which carries it through a second substance called the stationary phase.

The different components of the mixture travel through the stationary phase at different speeds, causing them to separate from one another. The nature of the specific mobile and stationary phases determines which substances travel more quickly or slowly, and is how they are separated. These different travel times are termed retention time.

Therefore, We can separate out a small sample of the dyes for identification purposes, but not separate the entire mixture by using chromatography.

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15. Which portion of a molecule of F20 has partial positive charge?
A. The central O atom
ОО
B. The partial charge on each atom is negative
C. The partial charge on each atom is zero
D. The F atoms

Answers

Answer:

the right answer is option A

Answer:

a.the central o atom oo

Explanation:

wala lang

Where does water pollution come from

Answers

The water pollution comes from trash

Answer:Water pollution can come from a variety of sources. Pollution can enter water directly, through both legal and illegal discharges from factories, for example, or imperfect water treatment plants. Spills and leaks from oil pipelines or hydraulic fracturing (fracking) operations can degrade water supplies.

Explanation:

How did you figure out the mass of each atom?

Answers

Answer:

Yeah, if you have the atomic number and neutron number

[tex]mass = protons + neutrons[/tex]

protons is the atomic number

How many elements have properties of both metals and non-metals?

Answers

Answer:

The elements boron, silicon, germanium, arsenic, antimony, and tellurium separate the metals from the nonmetals in the periodic table. These elements, called metalloids or sometimes semimetals, exhibit properties characteristic of both metals and nonmetals.

Elements: Oxygen

what is x if x - 2 =0​

Answers

Answer:

x-2 = 0

x = 2

hope this was help full

sheilding effect definition please

Answers

Answer:

give me brainliest

Explanation:

The shielding effect sometimes referred to as atomic shielding or electron shielding describes the attraction between an electron and the nucleus in any atom with more than one electron. The shielding effect sometimes referred to as atomic shielding or electron shielding describes the attraction between an electron and the nucleus in any atom with more than one electron.

Answer:

The shielding effect can be defined as a reduction in the effective nuclear charge on the electron cloud

Explanation:

i am not sure but i hope it will help you

At constant temperature, the volume of the container that a sample of nitrogen gas is in is doubled. As a result, the pressure of the nitrogen gas is halved. The amount of nitrogen gas is unchanged in this process. This is an example of:

Answers

Boyles law!! Pressure is inversely proportional to volume!

Que sucede cuando a una molécula sencilla se le sustituye un hidrógeno por un grupo oh

Answers

Answer: What happens when a single molecule is replaced by a hydrogen by an oh group

Explanation:

The products of the hydrolysis of cyclohexene

Answers

Answer:

CH3

Explanation:

Answer:

cyclohexene

One molecule of cyclohexanol should produce one molecule of cyclohexene. One mole (mol) of cyclohexanol should produce one mole of cyclohexene.

Explanation:

The major products of the complete hydrolysis of disaccharides and polysaccharides are three monosaccharide units: glucose, fructose, and galactose.

Please please help with #19 part a., b., and c.!! it’s due on monday and i am not terribly good at chemistry. if you could also give an elementary explanation that would be great too!

Answers

A. 0.2 mole of HCl is needed for the reaction

B. The molarity of NaOH solution is 0.04 M

C. The molarity of HCl is 0.043 M

Molarity is defined as the mole of solute per unit litre of the solution.

Molarity = mole / Volume

A. Determination of the mole of HCl.

We'll begin by calculating the number of mole of NaOH in the solution.

Volume = 0.1 L

Molarity of NaOH = 2 M

Mole of NaOH =?

Mole = Molarity x Volume

Mole of NaOH = 2 × 0.1

Mole of NaOH = 0.2 mole

Finally, we shall determine mole of HCl.

HCl + NaOH —> NaCl + H₂O

From the balanced equation above,

1 mole of NaOH required 1 mole of HCl.

Therefore, 0.2 mole of NaOH will also require 0.2 mole of HCl.

Thus, 0.2 mole of HCl is needed for the reaction.

B. Determination of the molarity of NaOH.

HCl + NaOH —> NaCl + H₂O

From the balanced equation,

Mole ratio of the acid, HCl (nA) = 1

Mole ratio of the base, NaOH (nB) = 1

From the question given above above,

Volume of acid, HCl (Va) = 0.025 L

Molarity of acid, HCl (Ma) = 0.05 M

Volume of base, NaOH (Vb) = 0.034 L

Molarity of base, NaOH (Mb) =?

Mava / mbvb = na/nb

0.05 x 0.025 / Mb x 0.034 = 1

0.00125 / Mb x 0.034 = 1

Cross multiply

Mb x 0.034 = 0.00125

Divide both side by 0.034

Mb = 0.00125 / 0.034

Mb = 0.04 M

Therefore, the molarity of NaOH is 0.04 M

C. Determination of the molarity of the HCl

From the question given above above,

Volume of base, NaOH (Vb) = 0.054 L

Molarity of base, NaOH (Mb) = 0.1 M

Volume of acid, HCl (Va) = 0.125 L

Mole ratio of the acid, HCl (nA) = 1

Mole ratio of the base, NaOH (nB) = 1

Molarity of acid, HCl (Ma) =?  

Mava / mbvb = na/nb

Ma x 0.125 / 0.1 x 0.054 = 1

Ma x 0.125 / 0.0054 = 1

Cross multiply

Ma × 0.125 = 0.0054

Divide both side by 0.125

Ma = 0.0054/0.125

Ma = 0.043 M

Therefore, the molarity of the HCl is 0.043 M

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Of the four symbolic representations of different matter below, identify which best represents a single element.

Answers

The first one, I, as it represents only single objects of the same element. The others show compounds and mixtures rather than single elements.

9.
Unless specifically instructed to do so, what should you never put into a flame?

Answers

Answer:

Gas

Explanation:

Do not put any sub- stance into the flame unless specifically instructed to do so. Never reach over an exposed flame. Light gas (or alcohol) burners only as instructed by the teacher.

calculate the number of moles in 2.5 particle NaOH

Answers

Answer:

1.5055×10²⁴

Explanation:

................................

Assuming equimolar quantities of reactants, which compound will react to the greatest extent with boron trifluoride (BF3) in a Lewis acid-base reaction

Answers

BF3 is considered as lewis acid because it’s the acceptor of electron

NH3 is an example of a Lewis Base that will react extensively with BF3 to form the compound BF3NH3

To solve such this we must know the concept of acid-base reaction. Therefore, NH[tex]_3[/tex] is the compound that will react to the greatest extent with boron trifluoride (BF[tex]_3[/tex]) in a Lewis acid-base reaction.

What is chemical reaction?

Chemical reaction is a process in which two or more than two molecules collide in right orientation and energy to form a new chemical compound. The mass of the overall reaction should be conserved. There are so many types of chemical reaction reaction like combination reaction, double displacement reaction.

NH[tex]_3[/tex] is an example of a Lewis Base that will react extensively with BF[tex]_3[/tex] to form the compound NH[tex]_3[/tex] + BF[tex]_3[/tex] → [B (NH[tex]_3[/tex])F[tex]_3[/tex]].

Therefore, NH[tex]_3[/tex] is the compound that will react to the greatest extent with boron trifluoride (BF[tex]_3[/tex]) in a Lewis acid-base reaction.

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7. In the experiment discussed in the passage, what is the variable?

Answers

Answer:

A variable is anything that can change or be changed. In other words, it is any factor that can be manipulated, controlled for, or measured in an experiment.

a. Phenol (C6H5OH) is an aromatic compound and a colourless liquid widely used in household products
and medicine. When it reacts with chlorine liquid (chlorine is a diatomic molecule), in the presence of a
catalyst, one of the aromatic hydrogen atoms attached directly to a C atom is replaced with a chlorine
atom, and liquid chlorophenol is formed. This replacement process is called chlorination
Write a balanced chemical equation for the chlorination reaction and explain how you balanced it. Note
that hydrogen chloride gas (HCI) is also a product of this chemical reaction and you should ignore the
presence of the catalyst in the equation.

Answers

Because there are 2 Cl on the left, we will put a coefficient 2in front of HCl on the right side to balance out the Cl. This would result in an unequal amount of H, with 6 on the right side and 7 in the left, so we have to put a coefficient of 2 in front of C6H5OH and C6H4OH on both sides to balance out the H. By doing this, we would obtain an equal amount of H on both sides. The Carbon is already balanced, and so is the Oxygen.

The balanced chemical reaction equation for the reaction between aromatic phenol and chlorine gas in the presence of FeCl3 as catalyst is as follows;

C6H6O + Cl2 -------> C6H5OCl + HCl

An aromatic compound has 4n + 2 number of pi electrons. This condition is satisfied by phenol. Hence, phenol has the stability associated with aromatic compounds.

The reaction of phenol with chlorine in the presence of a catalyst such as FeCl3 is an aromatic electrophillic substitution reaction.

This reaction yields a chlorinated phenol (one of the aromatic hydrogen atoms attached directly to a C atom is replaced with a chlorine  atom and chlorophenol is formed).

A balanced chemical reaction equation is one in which the number of atoms of each element at the reactant side and the product side are equal. This condition is satisfied for the reaction;

C6H6O + Cl2 -------> C6H5OCl + HCl

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A gas cylinder filled with argon is kept at a pressure of 177 atm and 25 degrees C. What is the gas pressure when the temperature of the cylinder and its contents are heated to 195 degrees C by exposure to fire?

Answers

Answer:

278 atm

Explanation:

We're gonna use this formula: [tex]\frac{P_1}{T_1} =\frac{P_2}{T_2}[/tex]

P₁ = 177 atm

T₁ = 298 (Convert Celsius to kelvins by adding 273)

P₂ = ?

T₂ = 468 (195 + 273)

We got

[tex]\frac{177}{298} =\frac{P_2}{468}[/tex]

We can cross-multiply or multiply both sides by 468

I'm gonna go with the latter

[tex](468)\frac{177}{298} =\frac{P_2}{468}(468)[/tex]

[tex]P_2 = \frac{(468)(177)}{298}[/tex]

[tex]P_2 = 277.973[/tex]

Answer:

[tex]\boxed {\boxed {\sf 278 \ atm}}[/tex]

Explanation:

We are asked to find the gas pressure when the temperature of a gas is changed. We will use Gay-Lussac's Law, which states the pressure of a gas is proportional to the temperature of the gas. The formula for this law is:

[tex]\frac{P_1}{T_1}=\frac{P_2}{T_2}[/tex]

Initially, the pressure is 177 atmospheres and the temperature is 25 degrees Celsius or 298 Kelvin.

[tex]\frac {177 \ atm}{298 \ K}=\frac{P_2}{T_2}[/tex]

Then, the gas cylinder is exposed to fire and the temperature is raised to 195 degrees Celsius or 468 Kelvin, but the pressure is unknown.

[tex]\frac {177 \ atm}{298 \ K }=\frac{P_2}{468 \ K}[/tex]

We are solving for the new pressure, so we must isolate the variable P₂. It is being divided by 468 Kelvin. The inverse operation of division is multiplication, so we multiply both sides of the equation by 468 Kelvin.

[tex]468 \ K *\frac {177 \ atm}{298 \ K}=\frac{P_2}{468 \ K}*468 \ K[/tex]

[tex]468 \ K *\frac {177 \ atm}{298 \ K}=P_2[/tex]

The units of Kelvin cancel.

[tex]468 \ K *\frac {177 \ atm}{298 \ K }=P_2[/tex]

[tex]468 * 0.593959731544 \ atm = P_2[/tex]

[tex]277.973154362 \ atm = P_2[/tex]

The pressure in the cylinder after exposure to fire is approximately 278 atmospheres.

Hydrochloric acid is used to produce fertilizers and dyes, to pickle and clean metal products, and as a reagent in the photographic and rubber industries. Which of the following is a chemical property of hydrochloric acid?


Liquid hydrochloric acid can vaporize into a gas at 48 degrees Celsius

All of these are chemical properties of hydrochloric acid

Hydrochloric acid is soluble in water

Hydrochloric acid reacts with the materials to produce bubbling, or fizzing, a gas, and heat.

Answers

Answer:

Hydrochloric acid reacts with the materials to produce bubbling, or fizzing, a gas, and heat.

Explanation:

I need 100 ml of a 20 uM solution of a protein with a molecular weight of 50,000. How much protein do I need

Answers

I need 0.1g of protein

HOW TO CALCULATE NUMBER OF MOLES?

The number of moles of a substance in a solution can be calculated by multiplying the volume by the molarity of the solution i.e.

no of moles (n) = Molarity (M) × Volume (V)

In this question, 100 ml of a 20 uM solution of a protein was given.

Since 1uM = 10^-6M

20uM = 20 × 10-⁶

= 2 × 10-⁵M

1L = 1000ml

100mL = 100/1000

= 0.1L

no of moles = 2 × 10-⁵M × 0.1L

no of moles = 2 × 10-⁶mol

HOW TO CALCULATE MASS:

Mass of a substance can be calculated by multiplying the molar mass and the number of moles i.e.

Mass = moles × Molar mass

Molecular mass of protein = 50,000g/mol

Mass = 2 × 10-⁶mol × 50000g/mol

Mass = 0.1g

Therefore, 0.1gram of protein is needed

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You will need 0.1 g of the protein.

Molarity of a solution is simply defined as the mole of solute per unit litre of water.

Mathematically, it is expressed as:

[tex]Molaity = \frac{Mole }{Volume }[/tex]

With the above information in mind, we can determine the amount of the protein needed as follow:

Step 1:

Data obtained from the question

Volume = 100 mL

Molarity = 20 μM = 20×10¯⁶ M

Molecular weight of protein = 50000 g/mol

Mass of protein=?

Step 2

Conversion of 100 mL to litre (L).

1000 mL = 1 L

Therefore,

[tex]100 mL = \frac{100 mL * 1 L}{100 mL }\\\\100 mL = 0.1 L[/tex]

Step 3

Determination of the mole of the protein

Volume = 0.1 L

Molarity = 20×10¯⁶ M

Mole of protein =?

Mole = Molarity × Volume

Mole of protein = 20×10¯⁶ × 0.1

Mole of protein = 2×10¯⁶ mole

Step 4

Determination of the mass of the protein

Mole of protein = 2×10¯⁶ mole

Molecular weight of protein = 50000 g/mol

Mass of protein =?

Mass = mole × molar mass

Mass of protein =  2×10¯⁶ × 50000

Mass of protein = 0.1 g

Therefore, the amount of the protein needed is 0.1 g

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1. Based on the following balanced equation:
2 H2 + O2 + 2H2O
a. How many moles of O2 are required to react completely with 2.00 moles of H2?
1.00 1.50 2.00 2.50 3.00 3.50 4.00 4.50 5.00
b. How many moles of H2O are produced after complete reaction of 2.00 moles of H2?
1.00 1.50
2.00 2.50 3.00 3.50 4.00 4.50 5.00

Answers

Answer:

a. 1 mole O2

b. 2 moles H2O

Explanation:

a. 2 moles H2 x [tex]\frac{1 mole O2}{2 moles H2}[/tex] = 1 mole O2

B. 2 moles H2 x [tex]\frac{2 moles H2O}{2 moles H2}[/tex] = 2 moles H20

Carbohydrates make up 75% of the mass of dried plant material. Cotton is at least 95% carbohydrate. Why do humans not include cotton in their diet?​

Answers

Answer:

the carbohydrates in cotton are mainly cellulose, but our body does not possess the proper enzymes to process cellulose, no we don't eat cotton on in our daily diet.

Convert 355 km/s into m/ns.

Answers

Answer:

3.55e-7

Explanation:

describe five factors which affect propagation of sound.. please describe in details.​

Answers

Answer:

Explanation:

Image result for describe five factors which affect propagation of sound.. please describe in details.​

There are several important factors which affect the propagation of sound: geometric spreading, atmospheric effects, and surface effects. These are discussed separately below. This refers to the spreading of sound energy as a result of the expansion of the wavefronts.

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