Addison warms a pure solid substance in a system closed off from the surroundings

Answers

Answer 1

This experiment shows that the elements of pure solid substance in a system closed off from the surroundings has increased temperature very fast.

What is a pure solid substance?

Pure substances are substances that are built up of only one kind of particle and have a fixed or abiding structure. Pure substances are further confidential as elements and compounds. An element is a substance that comprises only one type or kind of atom. a pure substance has a constant chemical composition.

No affair where you sample a substance, it is the same. For chemistry, the safest examples of pure substances are elements and compounds. So, examples cover gold, silver, helium, sodium chloride, and pure water.

So we can conclude that In chemistry, a pure substance is an element or compound made up of one type of particle.

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Related Questions

what are Faraday's laws of induction??? Grade 9.​

Answers

Answer:

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Explanation:

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Chlorine gas is bubbled through acalcium bromide solution. The solution turns brown, the color of bromine.
What type of reaction is this?

Answers

Chlorine gas is bubbled through a calcium bromide solution is a single displacement reaction.

Chlorine (in the form of a gas or dissolved in water) replaces bromine when added to calcium bromide solution. Chlorine replaces bromine in calcium bromide because it is more reactive than bromine. The solution darkens. The displaced bromine is responsible for this brown color. calcium chloride is the product of the chlorine.

A single replacement reaction, also known as a single displacement reaction, occurs when one element in a molecule is swapped out for another. Starting ingredients are always pure elements combined with an aqueous compound, such as pure hydrogen gas or zinc metal. A new aqueous compound and a different pure element will be produced as products when a replacement reaction takes place.

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724.4g of ammonium phosphate in 4500 mL of alcohol. what is the molarity?

Answers

The molarity of the 724.4g of ammonium phosphate in 4500 mL of alcohol is 1.0804m.

Ammonium  phosphate [tex]$\Rightarrow\left(\mathrm{NH}_4\right)_3 \mathrm{PO}_4$[/tex]

GMM of Ammonium Phosphate [tex]$\Rightarrow 109 \mathrm{~g}+40 \mathrm{~g}$[/tex] [tex]$\Rightarrow 149 \mathrm{~g}$[/tex]

No. of moles of Ammonium Phosphate [tex]$\Rightarrow\left\{\frac{724.4}{149}\right\} \Rightarrow 4.8$[/tex]

Molarity = 4.86/4.5 = 1.0804m.

Phosphates are low in toxicity, however they create nutrient contamination and nourish algae. Eutrophication and hazardous algal blooms result as a result of this. Many countries, notably the European Union and the United States, have outlawed the use of phosphates in detergent.

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In the cisconfiguration, the methyl groups are placed _____.


on the same side of the double bond

on opposite sides of the double bond

in between the double bonds

to the left of the double bond

Answers

on the same side!

- will never be between left or right
- only same = cis
or opposite = trans

What is the mass in grams of 7.64 x 10^25
molecules of l₂?

Answers

Mass of 7.64 x 10^25 molecules of l₂ is 3.04 grams

Calculation of mass here we are doing from the number of molecules given. To do so we use the Avogadro's number. Avogadro's number is one of the most  fundamental constants of chemistry. It helps us to compare the different atoms or molecules of given substances where the same number of atoms or molecules are being compared.

Along with that we will also be using the number mole as well here. number of moles is nothing but the given mass divided by the molecular mass of the compound.

To solve the above given question we use the below given formulas;

number of molecules = Number of moles × Avogadro number

Number of moles = Number of molecules

                                  Avogadro number

⇒ 7.64×[tex]10^{25}[/tex]    = 0.012 moles

   6.023×[tex]10^{23}[/tex]

Mass = Number of moles × Molecular mass

⇒ 0.012 × 253.80 = 3.045 grams

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The sun, moon, and planets of the solar system are shown with their orbits.
The loops in Ptolemy’s model, and those shown on the video, are called motion.
This phenomenon is caused by Earth’s orbit than those of other planets.

Answers

The loops in Ptolemy’s geocentric model, and those shown are called retrograde motion. This phenomenon is caused by Earth’s faster orbit than those of other planets.Ptolemy was a famed scientist in the past who believed that the solar system had a geocentric model which meant that the Earth was at the centre of the Solar system and other planets went around it.He came to this conclusion because of the retrograde motion which: Gives the illusion that when you pass something, it moves backward.Makes it seem as though the outer planets were moving forward and then backward and forward again Made it seem as though the outer planet are orbiting Earth as a result.The reason this was happening however, was because the Earth orbits the sun faster than these planets so it overtakes them and gives the illusion that they were moving backwards and then forward again when the Earth caught up.In conclusion, the retrograde motion made it seem as though the Earth was the centre of the solar system.

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Answer: 1 one is B 2 one is C 3 one is A

The sun, moon, and planets of the solar system are shown with their orbits.

The loops in Ptolemy’s

1 one

A retrograde

B geocentric

C retrograde

model, and those shown on the video, are called

2 one

A heliocentric

B geocentric

C retrograde

motion.

This phenomenon is caused by Earth’s

3 one

A faster

B slower

C larger

orbit than those of other planets.

Help asap!!! What is rock cycle? How to label?

Answers

hope this helps you out I would have typed an answer using my notes but that was taking to long anyways have a nice day

What mass of CaCl2 (in g ) should the chemist use?

Answers

The mass of the solute required is 250.25 g.

What is the mass of the solute?

We know that the number of moles of the solute can be used to obtain the mass of the solute that is  required. We can now try to find the mass of the solute that is required.

Concentration of the solution = 0.350M

Volume of the solution = 6.5 L

Number of moles of the solute = 0.350M *  6.5 L

= 2.275 moles

We now have the mass of the solute as;

2.275 moles  * 110 g/mol

= 250.25 g

Th measured mass of the solute that we would have to use is 250.25 g.

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Missing parts;

A chemist wants to make 6.5 L of a .350M CaCl2 solution. What mass of CaCl2(in g) should the chemist use?

Oxygen has a low boiling point because there are
A weak covalent bonds between the oxygen atoms
B
weak covalent bonds between the oxygen molecules
C
weak forces of attraction between the oxygen atoms
D weak forces of attraction between the oxygen molecules

Answers

The intermolecular forces between the oxygen molecules are very weak because of which a very less amount of energy is required for the oxygen to evaporate into a gas. There is no H-bonding or dipole movement present in oxygen molecules because of which the forces binding the molecules are absent in oxygen.

hence your correct option should be D

Hi, can someone please help me out with finding the answers.
write the IUPAC name and the Molecular formula ​

Answers

The IUPAC name and molecular formula for the following are,

a) prop-1-yne, C3H4

b) non-4-yne, C9H16

c) hex-3-yne, C6H10

What is IUPAC name?

International Unit for Pure and Applied Chemistry (IUPAC) is the method of naming the organic compounds in chemistry. It creates a standardized naming for the chemical compounds. There are prefixes, suffixes and parent chain considered while naming a compound.

The IUPAC name can be written by counting the parent chain carbons and considering the functional group present which is a triple bond in the given compounds. The molecular formula can be written by counting the number of different atoms present in the compound.

Therefore, the IUPAC name and molecular formula of the given compounds can be written as,

a) prop-1-yne, C3H4

b) non-4-yne, C9H16

c) hex-3-yne, C6H10

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1 gram of hydrogen ALWAYS reacts with 8 grams of oxygen. Precious mixes 2g of hydrogen with 20g of oxygen. (i) How much water is formed? [2​

Answers

Answer:

18g

Explanation:

1g H + 8g O = 9g H2O since H is limiting factor

0.620 L of a 2.6 MKCl solution Express your answer using two significant figures.

Answers

The number of moles in 0.620 L of a 2.6M KCl solution is 1.61 moles.

How to calculate number of moles?

Molarity is the concentration of a substance in solution, expressed as the number of moles of solute per litre of solution.

The molarity of a solution can be calculated by dividing the number of moles of the substance by its volume as follows:

no of moles = molarity × volume

According to this question, 0.620 L of a KCl solution has a molarity of 2.6 M. The number of moles of the substance is as follows:

no of moles = 2.6M × 0.620L = 1.612moles

Therefore, 1.61 moles is the number of moles in the pottasium chloride solution.

The incomplete question is as follows:

Determine the number of moles contained in 0.620L of a 2.6 M KCl solution.

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An AM radio station broadcasts at 1030 kHz , and its FM partner broadcasts at 98.4 MHz

Answers

The energy from the photons in the FM station is greater than that from the AM station.

What is the energy of the both photons?

We have to recall that the radio waves are also a part of the electromagnetic spectrum and that the speed that is possessed by all of the waves waves that are in the electromagnetic spectrum is the speed of light (3 * 10^8 m/s).

We have;

E = hf

E = energy

h = Plank's constant

f = frequency

For the AM station;

E = 6.6 * 10^-34 Js * 1030 * 10^3 Hz

E = 6.798 * 10^-28 J

For the FM station;

E = 6.6 * 10^-34 Js * 98.4 * 10^6 Hz

= 6.494 * 10^-25 J

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Missing parts;

An AM radio station broadcasts at 1030 kHz , and its FM partner broadcasts at 98.5 MHz .

partA;Calculate the energy of the photons emitted by the AM radio station.

partB;Calculate the energy of the photons emitted by the FM radio station.

partC;Compare the energy of the photons emitted by the AM radio station with the energy of the photons emitted by the FM radio station.

You react 4.16g of sodium hydroxide with 5.81g hydrochloric acid according to the following reaction you produce 5.79 g of sodium chloride. What is your percent yield?

Answers

The limiting reactant in the reaction is NaOH. one mole or 40 g of NaOH gives 58.5 g of NaCl. Thus, 4.16 g have to give 6.08 g but the actual yield is 5.79 g. Thus the percent yield of the reaction is 95%.

What is percent yield?

Percent yield of a reaction is the ratio of actual yield to the theoretical  yield multiplied by 100.

The molar mass of NaOH is 40 g/mol. Thus number of moles of NaOH is 4.16 /40 = 0.10 moles. Similarly the molar mass of HCl is 36.5 g/mol and number of moles in 5.81 g is 5.81/ 36.5 = 0.15 moles.

One mole of HCl needs 1 mole of NaOH, thus 0.15 moles need 0.15 moles NaOH but we have 0.1 only. Thus, NaOH is the limiting reactant.

40 g of NaOH gives 58.5 g of NaCl (1 mole). Thus the theoretical yield for 4.16 g of NaOH  is :

=  ( 4.16 × 58.5 )/40

= 6.04 g.

The actual yield is 5.79 g. Thus percent yield =(5.79/6.04) × 100 = 95%.

Hence, the percent yield of the reaction is 95%.

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what did early chemist focus on answering 

Answers

Early "chemists" focused on practical problems - the production of dyes and perfumes, the production of soap, the use of metals, the production of glass, etc. The goal was not to make sense of the physical world.

Who were early chemists and what motivated them?

Tapputi (also known as Tapputi-Belatekallim, referring to the female attendants of the palace), believed to be the world's first recorded chemist and perfume maker, mentioned in a cuneiform tablet from Babylonian Mesopotamia, circa 1200 BC It is BC is mentioned.

Along with Lavoisier, Boyle, and Dalton, Berzelius is considered the father of modern chemistry. In 1828, using oxygen as a standard and fixing its weight at 100, he produced a table of relative atomic weights containing all the elements known at the time.

Very early chemists were often motivated primarily by achieving a particular goal or product. It didn't take a lot of theory to make perfume or soap, just a good recipe, and attention to detail. There was no standard way to name substances (and no periodic table we could all agree on).

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If we use 25.05 mL of the solution above to reach the endpoint titrating 10.00 mL of a 0.200 M HCl solution, what is the working (actual) concentration of the NaOH solution? Remember, you need a balanced chemical reaction for stoichiometry. (do not forget about SF)

Answers

The concentration of the solution is obtained as 0.08 M.

What is the concentration of sodium hydroxide?

We know that the reaction that occurs between the sodium hydroxide and the hydrochloric acid is one that may be referred to as neutralization reaction. We can see that the reaction is given by; [tex]NaOH(aq) + HCl(aq) --- > NaCl(aq) +H_{2} O(l)[/tex]

Thus;

Concentration of the acid CA =  0.200 M

Volume of the acid VA = 10.00 mL

Volume of the base VB = 25.05 mL

Concentration of the base CB = ??

Number of moles of the acid NA = 1

Number of moles of the base NB = 1

Then;

CAVA/CBVB = NA/NB

CAVANB = CBVBNA

CB= CAVANB/VBNA

CB = 0.200 M *  10.00 mL * 1/ 25.05 mL * 1

= 0.08 M

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What is ethanoic or acetic anhydride?​

Answers

¿What is ethanoic or acetic anhydride?

Acetic anhydride is a colorless liquid with a characteristic pungent odor. It is used in the manufacture of plastics, drugs, dyes, perfumes, explosives, and aspirin.

This chemical compound has a colorless liquid appearance, also called anhydride, acetic, smells like vinegar.

Please help (see file attached!!)

Answers

A = 2.86 x [tex]10^{23[/tex] molecules of  [tex]KMnO_4[/tex]

B = 323.76 grams of Al

C = 1.53 moles of Au

D = 7.71 x [tex]10^{23[/tex] molecules of [tex]H_3PO_4[/tex]

E = 4.52 x [tex]10^{23[/tex] total atoms

Avogadro's molecules

According to Avogadro, a single mole of any substance contains 6.022 x [tex]10^{23[/tex] molecules or atoms of the substance.

Also, the mole of a substance is the ratio of the mass of the substance and the molar mass of the substance. In other words;

mole = mass/molar mass

These theories are what we need to solve the outlined problems.

Molar mass of  [tex]KMnO_4[/tex] = 158 g/mol

       Mole of 75 g of [tex]KMnO_4[/tex]:

       mass/molar mass = 75/158

                                     = 0.4747 mol

        Since 1 mole = 6.022 x [tex]10^{23[/tex] molecules

         0.4747 mole = 0.4747 x 6.022 x [tex]10^{23[/tex]

                                = 2.86 x [tex]10^{23[/tex] molecules

7.23 x [tex]10^{24[/tex] Al atoms

       Since 1 mole =  6.022 x [tex]10^{23[/tex] molecules or atoms

        7.23 x [tex]10^{24[/tex] atoms = 7.23 x [tex]10^{24[/tex] / 6.022 x [tex]10^{23[/tex]

                                     = 12 moles

        Mass of 12 moles Al = 12 x 26.98

                                          =  323.76 grams    

9.23 x [tex]10^{23[/tex] Au atoms =  9.23 x [tex]10^{23[/tex]/6.022 x [tex]10^{23[/tex]

                                    = 1.53 moles

125 g of [tex]H_3PO_4[/tex] = 125/97.99

                                   = 1.28 moles

         1.28 moles = 1.28 x 6.022 x [tex]10^{23[/tex]

                            = 7.71 x [tex]10^{23[/tex] molecules

0.75 moles of [tex]CO_2[/tex] = 0.75 x 6.022 x [tex]10^{23[/tex]

                                        = 4.52 x [tex]10^{23[/tex] atoms

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How many protons and electrons are present in one Br -ion2

Answers

Answer:

Br- has 35 protons and 36 electrons

Explanation:

Do you mean Br-?

Br has atomic number of 35 => 35 protons.

Neutral Br has 35 electrons.

Br- has 1 extra electron, resulting in total of 36 electrons.

I really need help!

I promise I've been paying attention, it just goes in one ear and out the other ;-;

(question is in picture!)

Answers

Answer: the balanced equation is the same.

Explanation:

Every element must have the same number of atoms on each side of the equation (law of conservation of mass).

2. Balancing the equation can be done only by adjusting the coefficients.

C

is a balanced element because there is the same number of atoms of

C

in each side of the equation.

C

is a balanced element

H

is a balanced element because there is the same number of atoms of

H

in each side of the equation.

H

is a balanced element

O

is a balanced element because there is the same number of atoms of

O

in each side of the equation. O is a balanced element. Na is a balanced element because there is the same number of atoms of Na on each side of the equation. Na is a balanced element H is a balanced element because there is the same number of atoms of H on each side of the equation. H is a balanced element C is a balanced element because there is the same number of atoms on each side of the equation. C is a balanced element. O

is a balanced element because there is the same number of atoms of

O in each side of the equation. O is a balanced element. All elements have the same number of atoms on each side of the equation, which means that the law of conservation of mass is satisfied and thus the chemical equation is balanced.

A 98.3 g piece of copper (specific heat 0.380 J/g・°C) is heated and then placed into 400.0 g of water initially at 20.7°C. The water increases in temperature to 22.2°C. What is the initial temperature (in °C) of the copper? (The specific heat of water is 4.184 J/g・°C)

Answers

The initial temperature of copper is 89.41°C.

How to calculate temperature?

Calorimetry is the science of measuring the heat absorbed or evolved during the course of a chemical reaction or change of state.

According to this question, a 98.3 g piece of copper with specific heat of 0.380 J/g・°C is heated and then placed into 400.0 g of water initially at 20.7°C. The water increases in temperature to 22.2°C. The initial temperature can be calculated as follows;

Q = mc∆T

Where;

Q = quantity of energym = mass of substancec = specific heat capacity∆T = change in temperature

Q(water) = -Q(metal)

400 × 4.184 × 1.5 = -(98.3 × 0.38 × {22.2 - x})

2510.4 = - (829.26 - 37.354x)

2510.4 = -829.26 + 37.354x

3339.659 = 37.354x

X = 89.41°C

Therefore, 89.41°C is the initial temperature of the copper metal.

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Final answer:

The initial temperature of the copper piece is approximately 0.72°C.

Explanation:

To find the initial temperature of the copper piece, we can use the equation Q = mcΔT, where Q is the heat energy, m is the mass of the substance, c is the specific heat capacity, and ΔT is the change in temperature.

First, let's calculate the heat energy gained by the water. The mass of the water is 400.0 g, and the change in temperature is 22.2°C - 20.7°C = 1.5°C.

Using the equation Q = mcΔT, we have:

Q_water = (400.0 g)(4.18 J/g • °C)(1.5°C) = 2490 J

Next, let's calculate the heat energy lost by the copper piece. The mass of the copper is 90.7 g, and the change in temperature is the same as the water, 1.5°C.

Using the equation Q = mcΔT, we have:

Q_copper = (90.7 g)(0.380 J/g • °C)(1.5°C) = 51.8 J

Since energy is conserved, the heat energy gained by the water is equal to the heat energy lost by the copper piece:

Q_water = Q_copper

2490 J = 51.8 J

Now, let's solve for the initial temperature of the copper piece. Rearranging the equation Q = mcΔT to solve for the initial temperature, we have:

T_initial = (Q_copper) / (m_copper * c_copper)

Substituting the values, we get:

T_initial = (51.8 J) / (90.7 g * 0.380 J/g • °C) ≈ 0.72°C

Therefore, the initial temperature of the copper piece is approximately 0.72°C.

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1-Give some examples of buffer solutions.

2-Mention some applications of buffer solutions in Pharmaceutical Sciences.

Answers

Examples of buffer solutions include:

ammonia (NH₃)sodium acetate (NaC₂H₃O₂)acetic acid (HC₂H₃O₂)

Some applications of buffer solutions in Pharmaceutical Sciences include:

to establish hydrogen ion activity for calibration of the pH meter using a buffer solution.to prepare isotonic dosage form formulations.to adjust the pH of systems in analytical procedures with the buffer solution.to maintain the stability of dosage forms.

What are buffer solutions?

A buffer solution is an aqueous solution consisting of a mixture of a weak acid and its conjugate base, or vice versa.

Buffers are broadly divided into two types

1. acidic buffer solutions and

2. alkaline buffer solutions.

Acidic buffers are solutions that have a pH below 7 and contain a weak acid.

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A chemist needs 16.61 mL of 1.312 M NaOH. What volume in mL of 3.6 M NaOH must be diluted in water to form this solution?
Please report your answer in mL to 3 decimal places.

Answers

A chemist must take 6.053 mL of 3.6 M NaOH in water to form 16.61 mL of 1.312 M NaOH solution.

In the laboratory, high-concentration solutions are prepared for using a longer duration. This solution is known as a stock solution. These solutions are diluted based on chemical needs.                                               We need 6.61 mL of 1.312 M NaOH solution                                                                                The stock concentration of NaOH solution = 3.6 M                                                  We have to find the volume of this stock solution that should be taken Given M₁ = 3.6 M M₂ = 1.312 M V₂ = 16.61 mL V₁ =?

M₁V₁ =M₂V₂

3.6 × V₁ = 1.312 × 16.61

V₁ = 1.312 × 16.61 ÷ 3.6

V₁ = 6.053 mL

Hence, 6.053 mL of 3.6 M NaOH is needed to form 16.61 mL of 1.312 M NaOH solution

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If a gas that has a pressure of 15 atm, a volume of 28 liters, and a
temperature of 400 K, has an increased pressure to 18 atm and increase
the temperature to 500 K, what is the new volume of the gas?
о 8,571 L
о 29.17 L
525 L
18.9 L
*
2 points

Answers

To calculate the new volume of a gas, we must first understand the atm.

What is atm?

oceanic atmospheric pressure At sea level, it has a mean value of about and is defined as the pressure created by the weight of the atmosphere. Sometimes, this figure is used as a standard pressure or a reference pressure. The unit of pressure is atm.

What does one atmosphere of pressure equal?

760 cm of mercury is equal to one atmosphere of pressure at sea level.

Using the atm formula,

P1 V1/T1 = P2 V2/T2

15×28/500= 18×V2/500

15×28×400/500×18 = V2

V2=29.166

V2=29.17 L

Therefore the option (B) is correct.

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Choose all the molecules in which the central atom has an expanded octet.
BrF3
BF3
SF2
SF6

Answers

The molecules in which the central atom has an expanded octet is BrF₃ ans SF₆.

Hypervalent compound is the compound in which central atom contains more than 8 electrons or expanded octet.  Hypovalent is the compound in which atom posses less than eighth electron in the valence shell. in  In  BrF₃ , Bromine has 7 valence electron and fluorine seven electrons . the three F atom complete their octet after the bonding with Br but In Br there are 10 electrons in valence shell . so,  BrF₃ has expanded octet. SF₆, the sulfur , sulfur has 6 valence electron and Fluorine has 7 valence electron F atom complete there octet with sulphur but S atom has 12 valence electrons that is expanded octet.

Thus, The molecules in which the central atom has an expanded octet is BrF₃ ans SF₆.

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Mn2+
ions is prepared by dissolving 1.584 g of pure manganese metal in nitric acid and diluting to a final volume of 1.000 L. The following solutions are prepared by dilution. For solution A, 50.00 mL of stock solution is diluted to 1000.0 mL. For solution B, 10.00 mL of A is diluted to 250.0 mL. For solution C, 10.00 mL of B is diluted to 500.0 mL. Calculate the molar concentrations of the stock solution and solutions A, B, and C.

Answers

The molarity of the stock Mn²⁺ ions is 0.0288 M

Based on the dilution formula;

The molarity of A is 0.00144 MThe molarity of B is 0.0000576 MThe molarity of C is 0.000001152 M

What is the molarity of a solution?

The molarity of a solution is the number of moles of a solute dissolved in a given volume of solution in liters.

Molarity = number of moles/volume

The molarity of the stock solution is:

moles of Mn²⁺ ions = mass / molar mass

molar mass of  Mn²⁺ ions = 55.0 g/mol

moles of Mn²⁺ ions = 1.584 / 55

moles of Mn²⁺ ions = 0.0288 moles

molarity of Mn²⁺ ions = 0.0288 / 1

molarity of Mn²⁺ ions = 0.0288 M

The dilution formula is used to determine the molarities of A, B, and C.

C₁V₁ = C₂V₂

C₂ = C₁V₁ / V₂

Where;

C₁ = initial molarityV₁ = initial volumeC₂ = final molarityV₂ = final volume

Molarity of A = 50 * 0.0288 / 1000

Molarity of A = 0.00144 M

Molarity of B = 10 * 0.00144 / 250

Molarity of B = 0.0000576 M

Molarity of C = 10 * 0.0000576 / 500

Molarity of C = 0.000001152 M

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The greatest distance across the moon's orbit is 772,000 km; the eccentricity of its orbit is 0.055. How far
apart are the foci of the moon's orbit?

Answers

14036363. 64 kmThe distance apart are the foci of the moon's orbit.

The Moon is Earth's handiest natural satellite tv for pc. it's miles the fifth largest satellite within the solar gadget and the biggest and big relative to its parent planet, with a diameter about one zone that of Earth.

The foci of the moon's orbit  = 772,000 km/ 0.055

                                             = 14036363. 64 km.

The Moon takes approximately one month to orbit Earth (27. three days to finish a revolution, but 29.5 days to alternate from New Moon to New Moon). because the Moon completes each 27. three-day orbit around Earth, each Earth, and the Moon are transferring across the solar.

The Moon orbits Earth inside the same course as our planet rotates. So, the Moon clearly acts from west to east through our sky, albeit so slowly that we almost by no means note it.

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At a crime scene, Lorenzo finds a gun in shallow pond water. How should he transport the gun to BEST preserve the evidence?

A.
He should drain the water and then put the gun in a plastic bag.

B.
He should rinse the gun, dry it, and then put it in a paper bag.

C.
He should clean the gun and collect a separate water sample.

D.
He should keep the gun submerged in water as he transports it.

Answers

Answer:d

Explanation:

In the SI system of units [International System of Units], the mole is one of seven base units. It is frequently used in chemical calculations. However, a mole of something is just a particular quantity of it. It is not a unit of measure in the way that meters, seconds, and kilograms are. Calculations performed with the number of moles of a substance could also be performed with the number of particles of a substance. Based on this information, do you think that the mole should be considered a base unit in the SI system? Explain why or why not.

Answers

The mole is an SI unit that links the microscopic and macroscopic world that is why yes, mole is the base of SI unit.

What is a mole?

A mole is a popular scientific measurement unit for large quantities of very small items like atoms, molecules, or other specified particles in chemistry. It can also be spelt mol.

A extremely big amount, 6.02214076 1023 units, are designated by the mole. As of May 20, 2019, the General Conference on Weights and Measures defined the mole as this quantity for the International System of Units (SI). The mole was traditionally defined as the number of atoms found by experimentation to be present in 12 grammes of carbon-12.

The quantity of units in a mole is also referred to as Avogadro's number or Avogadro's constant in honour of the Italian physicist Amedeo Avogadro. Equal volumes of gases under the same conditions, according to Avogadro.

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A buffer system is set up with [A] = 1.5[HA ]. If pKa = 5.4, what is the pH of the buffer?​

Answers

5.57  is the pH of the buffer .

What is buffer ?

Buffer, in chemistry, usually a solution containing acids and bases or salts that tends to maintain a constant concentration of hydrogen ions. An ion is an atom or molecule that has lost or gained one or more electrons. A common buffer is a solution of acetic acid (CH3COOH) and sodium acetate. In aqueous solution, sodium acetate completely dissociates into sodium (Na+) and acetate (CH3COO-) ions. Buffer solutions with different hydrogen ion concentrations can be prepared by varying the buffer ratio and choosing acids of appropriate intrinsic strength. Commonly used buffers include phosphate, citrate, or borate and their salts

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