Describe a method for making pure crystals of magnesium chloride from magnesium and dilute hydrochloric acid. In your method, you should name the apparatus you will use. (6 mark question)

Answers

Answer 1

Answer:

Check Explanation.

Explanation:

Magnesium and dilute hydrochloric acid react with each other to produce Magnesium Chloride and liberate hydrogen gas according to the reaction

Mg (s) + 2HCl (aq) → MgCl₂ (aq) + H₂ (g)

The procedure to obtain pure magnesium chloride from the reaction is as thus

Step 1: Reaction

- Leave the dilute hydrochloric acid in a beaker.

- Add Magnesium slowly until it is in excess or until no more gas seem to be getting liberated.

Step 2: Filtration

- Filter with filter paper and funnel.

- Filter off the excess magnesium as magnesium chloride will be in aqueous form (liquid) and will come out with the filtrate. The residue is the excess magnesium.

Step 3: Crystallization to obtain solid crystals from the filtrate.

- Pour filtrate solution into evaporating dish/basin

- Provide heat using Bunsen burner

- Pour solution into an evaporating basin and heat over a water bath

- Stop heating when crystals start to form

allow water to evaporate until pure crystals remain.

- Dry crystals using absorbent paper or warm oven.

Precautions

- Use personal protective equipment such as gloves, a lab coat and wear eye protection, especially when heating.

- Avoid inhaling unnecessary gases during the whole process.

Hope this Helps!!!

Answer 2

Pure crystals of magnesium chloride using dilute hydrochloric acid can be prepared by using three steps, Reaction, Filtration, and Crystallization.

[tex]\bold {Mg (s) + 2HCl (aq) \rightarrow MgCl_2 (aq) + H_2 (g)}[/tex]

According to the reaction, when Magnesium react with dilute hydrochloric acid, produce Magnesium Chloride and hydrogen gas.

1: Reaction

Put dilute hydrochloric acid in a beaker and add Magnesium slowly  until no more gas seem to be produced. .

2: Filtration

Use filter paper and funnel.Since, magnesium chloride is in aqueous form and will come out with the filtrate(solution).

3: Crystallization:

Use water bath to evaporate water of filtrate.Turn of the water bath as crystals start forming.

Therefore, pure crystals of magnesium chloride using dilute hydrochloric acid can be prepared by using three steps, Reaction, Filtration, and Crystallization.

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Related Questions

Consider the following unbalanced equation. How many Liters of bromine are needed to produce 12 moles of Aluminum bromide? The density of bromine is 3.1 g/mL.
Al (s) + Br2 (l)= AlBr3 (s)

Answers

Answer:

0.92787 liters of bromine are needed to produce 12 moles of aluminum bromide.

Explanation:

You have the following balanced equation:

2 Al (s) + 3 Br₂ (l) ⇒ 2 AlBr₃ (s)

First of all, the following rule of three should be applied to know the amount of moles of bromine needed: if 2 moles of aluminum bromide are produced by stoichiometry (that is, the relationship between the amount of reagents and products in a chemical reaction) for 3 mole of bromine, 12 moles of aluminum bromide with how many moles of bromine are produced?

[tex]moles of bromine=\frac{12 moles of aluminum bromide*3 mole of bromine}{2 mole of aluminum bromide}[/tex]

moles of bromine= 18

Being the molar mass of the bromine Br₂  159.8 g/mol then the mass of 18 moles of Br₂ is:

18 moles* 159.8 g/mol= 2,876.4 grams

Density is a property that indicates the amount of mass per unit volume.  Then the following rule of three applies: if by the definition of density 3.1 grams of bromine are present in 1 mL, 2,876.4 grams of bromine are present in how much volume is it?

[tex]volume=\frac{2,876.4 grams*1mL}{3.1 grams}[/tex]

volume= 927.87 mL

Being 1,000 mL= 1 L, then 927.87 mL= 0.92787 L

0.92787 liters of bromine are needed to produce 12 moles of aluminum bromide.

Answer:

[tex]V=929mL[/tex]

Explanation:

Hello,

In this case, the balanced chemical reaction is:

[tex]2Al (s) + 3Br_2 (l)\rightarrow 2AlBr_3 (s)[/tex]

In such a way, we use the 2:3 molar ratio between aluminum bromide and bromine and its atomic mass which is 160 g/mol to find the grams  of bromine that are produced:

[tex]m_{Br_2}=12molAlBr_3*\frac{3molBr_2}{2molAlBr_3} *\frac{160gBr_2}{1molBr_2} =2880gBr_2[/tex]

Then we compute the volume:

[tex]V=\frac{m}{\rho}=\frac{2880gBr_2}{3.1g/mL}\\ \\V=929mL[/tex]

Regards.

ASAPPP. Describe how you could determine the specific heat of a sample of a solid substance. You may
assume that the substance does not react with water. In your answer, make sure to include a
description of what equipment you would use and how you would interpret the data you collected.

Answers

Answer:

I would use calorimetric to determine the specific heat and I would measure the mass of a sample

Explanation:

I would use calorimetry to determine the specific heat.

I would measure the mass of a sample of the substance.

I would heat the substance to a known temperature.

I would place the heated substance into a coffee-cup calorimeter containing a known mass of water with a known initial temperature.

I would wait for the temperature to equilibrate, then calculate temperature change.

I would use the temperature change of water to determine the amount of energy absorbed.

I would use the amount of energy lost by substance, mass, and temperature change to calculate specific heat.

Answer:

I would use calorimetry to determine the specific heat. Then I would measure the mass of a sample of the substance. After that I would heat the substance to a known temperature. I would place the heated substance into a coffee-cup calorimeter containing a known mass of water with a known initial temperature. The coffee cup would be Styrofoam because it keeps the temperatures on the outside from getting on the inside and I would wait for the temperature to equilibrium, then I would calculate the temperature change. I would use the temperature change of water to determine the amount of energy absorbed. lastly, I would use the amount of energy lost by substance, mass, and temperature change to calculate specific heat.

Explanation:

Kick a ball and it'll fly up into the air before falling back down to the ground. A force is a pushing or pulling action that can make things move, change direction, or change shape. Which of these is NOT a force acting on the football?





A) The force of gravity is pulling the ball back to the ground.

B) Kicking the ball applies a force that sends it into the air.

C)The force of gravity sends the ball sailing through the goal post.

D)As the ball rolls across the ground, the force of friction brings it to rest.

Answers

Answer:

c

Explanation:

i think this is the answer hope this helps

mechanism with a small activation energy or one with large activation energy​

Answers

Answer:

Rate depends on the rate constant. The rate constant depends on temperature and activation energy. If you have lower activation energy the rate will be higher. This is why catalysts are added since catalysts provide an alternate pathway that requires lower activation energy and catalysts are added to increase the rate of reaction.

Explanation:

This is only the answer if you were asking:

"Which corresponds to the faster rate: a mechanism with a small activation energy or one with a large activation energy?"

Thats what I understood about your question.

What did John Dalton publish?
A The plum-pudding atomic eory
O B. An explanation of the photoelectric effect
O C. An early theory describing properties of atoms
OD. A paper calculating the charge of an electron

Answers

Answer:

The answer is C. An early theory describing properties of atoms

John Dalton published an early theory describing properties of atoms, thus the correct option is C.

An atom is defined as the smallest unit of matter that forms an element. Every form of matter whether it is solid,liquid , gas is made up of atoms . Each atom has a nucleus which is comprises of protons and neutrons and shells in which the electrons revolve.

The protons are positively charged and neutrons are neutral species and hence the nucleus is positively charged. The electrons which revolve around the nucleus are negatively charged  speciesand hence the atom as a whole is neutral and stable due to presence of oppositely charged particles.The early theory on atom was given by Dalton.

Thus,  the correct option is C.

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An ultraviolet ray of light has a wavelength of 1.5x10^-8 m. What is the ray's
frequency?

Answers

Answer:

2 E16 Hz    or     2 * 10^16 Hz

Explanation:

The formula to determine frequency is f = c / λ.

f = frequency

c = speed of light

λ = wavelength

f = 3E8 / 1.5E-8

f = 2E16

This makes sense because UV light exists roughly

between 8E14 Hz and 3E16 Hz ----- 2E16 Hz falls in that range

The ray frequency is 2 *[tex]10^{16}[/tex] Hz

How to find Ray's frequency?

The formula to determine frequency is f = c / λ.

f = frequency

c = speed of light

λ = wavelength

f = 3*[tex]10^{8}[/tex] / 1.[tex]5^{-8}[/tex]

f = 2*[tex]10^{16}[/tex]

Frequency is the number of occurrences of a repeating event per unit of time.

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The probability that a person has immunity to a particular disease is 0.6. Find the mean number who have
immunity in samples of size 12

Answers

Answer:

20

Explanation:

12 divide by 0.6 equal to 20 mean

Look at the reaction below.

H2SO4(aq) + Mg(s)->MgSO4(aq) + H2(g)

Which substance is the acid in the reaction?

Mg(s)

H2(g)

MgSO4(aq)

H2SO4(aq)

Mark this and return

Answers

Answer:

H2SO4

Explanation:

H2SO4 is actually one of the strongest acids, coming to pH value very close to 1 . Acids transfer their hydrogen ions to other substances , such as water , and usually have hydrogen their formula . In this case , H2SO4 has hydrogen in its formula and is acid in the case .

Hope it helps you !!

Answer:

person above me is right :)

Explanation:

NEED HELP!
Please refer to the picture for the question!

Answers

Answer: i think the best bet i can give you is Option C (2:3)

Explanation: i apologize i haven't done chem in 2 years

but however to put it in retrospect the finished equation is 2(AL)^+3 3(O)^-2

When a 1.0 M KCl solution is electrolyzed using silver electrodes, a precipitate forms at the anode. Explain this result please.

Answers

Hope this answer will help you

Describe the relationship between the cell cycle and mitosis and the overall goals of each process.

Answers

Answer:

Explanation:

The cell cycle refers to the cell's lifecycle or the period of cellular growth and DNA replication. Mitosis represents the final step in the cell cycle—mitosis produces two identical daughter cells.

What is the electron configuration of chlorine (CI)?
1s22s s23p3
1s22s22p 3s 3p5
1s22s22p3s24s23p3
1s22s 23d

Answers

Answer:

1s²2s²2p⁶3s²3p⁵

Explanation:

Please see attached picture for working. (Answer using periodic table)

(See 2nd picture)

Alternatively, we can look at the subshell filling sequence.

Chlorine has 17 electrons.

So we start by filling the subshell with the lowest energy level, 1s.

The s subshell can fill a maximum of 2 electrons.

So what we have now is 1s²... with 15 electrons left.

Next, we look at the 2s subshell. Again, it can fill a maximum of 2 electrons.

1s²2s²... and we have 13 electrons left.

Moving on to the 2p subshell. The p subshell has 3 orbitals so it can fill a maximum of 6 electrons.

1s²2s²2p... and we have 7 electrons left.

For the 3s orbital, it can fill another 2 electrons.

1s²2s²2p3s²... 5 electrons to go!

Look at the 3p subshell. It can fill 6 electrons.

1s²2s²2p3s²3p

and we have obtained the electronic configuration of chlorine!

The electronic configuration of chlorine (CI) is 1s² 2s²2p⁶ 3s²3p⁵. None of the option is correct

How to write the electronic configuration of chlorine?

Electronic configuration is defined as the arrangement of electrons in the orbital of an atom.

The s, p d, f notation has been the most widely used format in writing the electronic configurations of atoms.

Now, we shall write the electronic configuration of chlorine (CI). Details below:

Element: Chlorine, ClAtomic number = 17Electronic configuration =?

Electronic configuration = 1s² 2s²2p⁶ 3s²3p⁵

Thus, the electronic configuration of chlorine is 1s² 2s²2p⁶ 3s²3p⁵. None of the options are correct.

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Consider the graph. A graph labeled Heating Curve has time as the horizontal axis and Temperature as the vertical axis. A line starts at 0 and rises to 1500 degrees where it levels off briefly; this section of line is labeled solid. The line continues to rise until it levels off at about 2750; this curve is labeled Liquid. After running horizontal for some time, the line rises again; this curve is labeled Gas. Based on the information in the graph, which statement best applies to a gas? Its particles have the highest average kinetic energy. Its particles have the smallest volume of all three states of matter. Its particles are slowing down because of a temperature increase. Its particles are moving apart due to repulsion between them.

Answers

Answer:

Its particles have the highest average kinetic energy

Explanation:

This can be explained by the Kinetic Molecular Theory which explains the physical characteristics of solid, liquid, gas and how phases change from one to another.

Kinetic Energy ∝ Temperature

The theory states the that average kinetic energy of particles is directly proportional to the temperature. When a solid is heated, its temperature and kinetic energy increase, eventually melting it into a liquid. If the temperature is raised even more, kinetic energy will increase even more and the liquid will eventually become a gas. This show that the gas has the highest temperature and hence the highest average kinetic energy compared to solid and liquid.

Answer:

Its particles have the highest average kinetic energy

Explanation:

This can be explained by the Kinetic Molecular Theory which explains the physical characteristics of solid, liquid, gas and how phases change from one to another.

Kinetic Energy ∝ Temperature

The theory states the that average kinetic energy of particles is directly proportional to the temperature. When a solid is heated, its temperature and kinetic energy increase, eventually melting it into a liquid. If the temperature is raised even more, kinetic energy will increase even more and the liquid will eventually become a gas. This show that the gas has the highest temperature and hence the highest average kinetic energy compared to solid and liquid.

Which of the following is a possible definition of a base?

Select one:
a. A substance that increases the concentration of hydronium ions in a solution
b. A compound that is a hydrogen ion acceptor in an acid-base reaction
c. A substance that is an electron pair acceptor in a reaction
d. A compound that gives off hydrogen ions in a reaction or solution

Answers

Answer:

The correct answer is B. A compound that is a hydrogen ion acceptor in an acid-base reaction

what is it called when a nucleus ejects high energy photons

Answers

Answer:

Photodisintegration!

Explanation:

also called Phototransmutation, in physics, nuclear reaction in which the absorption of high-energy electromagnetic radiation (a gamma-ray photon) causes the absorbing nucleus to change to another species by ejecting a subatomic particle, such as a proton, neutron, or alpha particle.

The Weak Ionization constant (Ka) for HCOOH is equal to:


Please help me lol

Answers

Answer:

[tex]Ka=\frac{[H^+][HCOO^-]}{[HCOOH]}[/tex]

Explanation:

Hello,

In this case, the weak ionization reaction for formic acid is:

[tex]HCOOH(aq)\rightleftharpoons H^+(aq)+HCOO^-(aq)[/tex]

In such a way, we simply recall the law of mass action in order to represent the weak ionization constant, Ka, for such process, by taking into account that the concentration of products is divided over the concentration of reactants as shown below:

[tex]Ka=\frac{[H^+][HCOO^-]}{[HCOOH]}[/tex]

Best regards.

Answer:

[tex]Ka=\frac{[CH_3COO^-][H^+]}{[CH_3COOH]}[/tex]

Explanation:

In this case we have to start with the ionization reaction of [tex]CH_3COOH[/tex], so:

[tex]CH_3COOH~<->~CH_3COO^-~+~H^+[/tex]

With this in mind we can calculate the mathematical expression of Ka (The production of hydronium ions [tex]H^+[/tex]), so:

[tex]Ka=\frac{[CH_3COO^-][H^+]}{[CH_3COOH]}[/tex]

I hope it helps!

Mr. Holmes sure likes to play with Legos now that he is staying home these days. He was thinking that nuclear reactions were just like playing with lego pieces. Here are his three ideas why legos are like nuclear reactions.


1. If he builds a project that is too big, it will fall apart on its own because the connections are not strong enough to hold the pieces together.


2. Putting smaller lego pieces together to create bigger objects provides Mr. Holmes lots and lots of energy. He could keep doing this for a very long time.


3. While it causes a mess, Mr. Holmes gains energy by taking large objects and smashing them into smaller objects. While this is fun, it only lasts a limited time, because the large objects to smash are pretty scarce.


Which of the following reactions nuclear reactions is Mr. Holmes thinking of in this scenario?

Question 21 options:

1 – Fission 2 – Fusion 3-Radioactive Decay


1 – Radioactive Decay 2 – Fission 3 – Fusion


1 – Fusion 2 – Radioactive Decay 3- Fission


1 – Radioactive Decay 2- Fusion 3 – Fission

Answers

Answer:

1 – Fission 2 – Fusion 3-Radioactive Decay

Explanation:

The first scenario described in (1) is a fission reaction. Recall that in a nuclear fission, large nuclei disintegrate spontaneously. This is because the nuclei has a large number of nucleons hence a greater repulsion between them. This causes the large nuclides to be unstable and disintegrate spontaneously, releasing neutrons in the process.

The second scenario is typical of nuclear fusion, two light nuclei combine together to form a lager nucleus with a tremendous release of energy. This is typified in the fusion of hydrogen isotopes to form helium.

The third scenario depicts radioactive decay, radioactive decay often involves the spontaneous disintegration of a radioactive nucleus to form daughter nuclei with the emission of beta, gamma or alpha rays.

What is the name of this molecule? A. cis-2-pentene B. 2-pentyne C. 2-methylpentane D. Pentane

Answers

Answer:

Im sure its 2-Pentyne

So B. 2-Pentyne is the right answer

The name of the molecule which is present in the given image is 2-Pentyne as double bond is present at 2nd position.

What will bond show in structure?

Presence of any bond in any structure of any molecule will tells about the unsaturation.

Double bonded molecule is known as alkene and triple bonded molecule is known as alkyne.

In the given diagram total 5 carbon atoms are present, two at the sides of triple bond, two at the corners and one at the bent position and triple bond is present at the middle of 2nd and 3rd carbon atoms. So, the name of the given compound is 2 pentyne.

Hence name of the compound is 2 pentyne.

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what are the products in a chemical reaction

Answers

Answer:

are species formed by chemical reaction

Explanation:

example when one element react with other new thing which is formed called product

eg. when oxygen react with hydrogen gas we obtain water so water is the product.

Answer:

The products of a chemical reaction are the substances formed from the reaction of two reactants. Basically, they are what is produced from the reaction and are usually written on the right side of the yield arrow in an equation.

K+1 P-3 what is the formula for this ionic compound ? And the name ?

Answers

Answer:

1. K3P.

2. Potassium phosphide

Explanation:

During bonding of K^+1 and P^3-, there will be exchange of ions as follow:

K^+ + P^3- —> K3P

Therefore, the formula for the Ionic compound is K3P and the name of the compound is Potassium phosphide

The formula for this ionic compound  K3P. Potassium phosphide.

Thus, The inorganic semiconductor compound potassium phosphide has the formula K3P. It appears as a powder or solid with white crystals.

It reacts violently with water and is poisonous when ingested, inhaled, or absorbed via the skin.  Its shape is hexagonal and potassium phosphide.

White crystalline or powdered potassium phosphide is a solid. It might react strongly and catch fire if it comes into contact with water. It is harmful when ingested, inhaled, or absorbed via the skin. It is a component of other compounds.

Thus, The formula for this ionic compound  K3P. Potassium phosphide.

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Convert 85.3 kl/sec into ml/min

Answers

Answer:

Then 85.3 [tex]\frac{kL}{sec}[/tex]=511,798,976.4 [tex]\frac{mL}{min}[/tex]≅ 5.118*10⁹ [tex]\frac{mL}{min}[/tex]

Explanation:

The rule of three or is a way of solving problems of proportionality between three known values and an unknown value, establishing a relationship of proportionality between all of them. That is, what is intended with it is to find the fourth term of a proportion knowing the other three. Remember that proportionality is a constant relationship or ratio between different magnitudes.

If the relationship between the magnitudes is direct, that is, when one magnitude increases, so does the other (or when one magnitude decreases, so does the other) , the direct rule of three must be applied. To solve a direct rule of three, the following formula must be followed:

a ⇒ b

c ⇒ x

So,

[tex]x=\frac{c*b}{a}[/tex]

The direct rule of three is the rule applied in this case where there is a change of units.

You know:

1 kL= 1,000,000 mL1 minute=60 sec or, which is the same, 1 second = 0.0166667 minutes

Then:

[tex]85.3 \frac{kL}{sec} =85.3 \frac{1,000,000 mL}{0.0166667 min} =511,798,976.4 \frac{mL}{min}[/tex]

Then 85.3 [tex]\frac{kL}{sec}[/tex]=511,798,976.4 [tex]\frac{mL}{min}[/tex]≅ 5.118*10⁹ [tex]\frac{mL}{min}[/tex]

What are energy levels

Answers

Answer:

set distances were electrons can be sensed.

Explanation:

Energy levels are set distances from the nucleus of the atom where electrons can be sensed. Electrons are small, negatively charged particles in the atom that pass through the positive nucleus in the center. The energy levels are a little like the steps of the stairs. You may stand on one step or the other, but not between the moves. The same thing goes with electrons. 

hope this helped!

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