Convert 3.20 bar to atm

Answers

Answer 1

Answer:

~3.15815

Explanation:

Approximated Formula: Divide pressure value(bar)  by 1.013

Answer 2

Bar and atm are significant units of pressure where, 1 bar is equal to 0.98 atm. 3.20 bar of pressure is equivalent to 3.15 atm.

What is pressure?

Pressure is the force exerted in a surface per unit area. Hence, pressure has the unit of N/m². Pressure of a substance is depending on the volume and temperature.

The standard unit (SI unit) of pressure is atm or atmospheric pressure. Other units of pressure are bar, pascal, torr, mmHg etc. The normal  atmospheric pressure is 1 atm.

The units of pressures can be interchanged with the specific relation between them.

1 bar of pressure = 0.987 atm

then, 3.20 bar = 3.20 bar × 0.987 atm/1 bar = 3.15 atm.

Therefore, 3.20 bar pressure is 3.15 atm .

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Related Questions

2) What is the change in enthalpy when 3.400 moles of aluminum react with excess ammonium nitrate(NH4NO3) according to the equation? Is the reaction exothermic or endothermic?2AI + 3NH^4NO^3 →3N^2 + 6 H^2O + Al^2O^3AH = -2030kJ/mol

Answers

The given reaction is exothermic, we know igt because of the sign of the change in enthalpy given by the question, which is negative.

Exothermic reactions have negative changes in enthalpy.

The change in enthalpy can be found by multiplying the given amount of moles of aluminium by the given change in enthalpy:

[tex]-\frac{2030kJ}{mol}\cdot3.40mol=-6902kJ[/tex]

The change in enthalpy is -6902kJ.

Determine the molarity of NaOH to three decimal places if 21.77 mL of this NaOH were used to titrate 0.305 g of KHP (MM 204.22 g/mol)

Answers

Answer

The molarity of NaOH to three decimal places is 0.069 mol/L

Explanation

Given:

Volume of NaOH used = 21.77 mL

Reacting mass of KHP = 0.305 g

Molecular Mass of KHP = 204.22 g/mol

What to find:

The molarity of NaOH to three decimal places.

Step-by-step solution:

The first step is to write the balanced stoichiometric chemical equation of the reaction:

[tex]HKC_8H_4O_4+NaOH\rightarrow NaKC_8H_4O_4+H_2O[/tex]

From the balanced chemical equation;

1 mol KHP reacts with 1 mol NaOH

Thus, moles of KHP is:

[tex]\text{Moles of KHP }=\frac{Reacting\text{ mass}}{MM\text{ of KHP}}=\frac{0.305\text{ g}}{204.22\text{ g/mol}}=1.493\times10^{-3}\text{ mol}[/tex]

Since, 1 mol KHP reacts with 1 mol NaOH from the balanced equation,

Therefore, 1.493 x 10⁻³ mol KHP will react with:

[tex]\frac{1\text{ mol NaOH }\times1.493\times10^{-3}mol\text{ KHP}}{1\text{ mol KHP}}=1.493\times10^{-3}mol\text{ NaOH}[/tex]

The last step is to calculate the molarity of NaOH:

Conversion factor:

1 mL = 10⁻³ L

21.77 mL = 2.177 x 10⁻³ L

Molarity of NaOH is:

[tex]\begin{gathered} \text{Molarity of NaOH }=\frac{Moles\text{ of NaOH}}{Volume\text{ of NaOH in L}}=\frac{1.493\times10^{-3}\text{ mol}}{2.177\times10^{-3}\text{ L}} \\ \text{Molarity of NaOH }=0.069\text{ mol/L} \end{gathered}[/tex]

what does it add up to

Answers

Answer:

3N H

    2  2 (The 2 goes in the spaces for the lower numbers)

Explanation:

A solution of NaCl(aq) is added slowly to a solution of lead nitrate, Pb(NO3)2(aq), until no further precipitation occurs. The precipitate is collected by filtration, dried, and weighed. A total of 16.83g PbCl2(s) is obtained from 200.0mL of the original solution. Calculate the molarity of the Pb(NO3)2(aq) solution.

Answers

0.25 Molarity of lead nitrate aqueous solution is there when a solution of nacl is added slowly to  a solution of lead nitrate.

What is molarity and how it is calculated out to be so?Molarity is the number of moles of substance present in one litre of solution and is measured in g/litres.Here in this question is given 16.83 g of lead nitrate is obtained from 200 ml of original solution.To calculate the molarity first we will have to calculate the number of moles of lead nitrate for which the formula is given mass/ molar mass.The mass that is given is 16.83 g and the molar mass is 331.2 g dividing we will get 5.02.Then dividing the number of moles by 0.2 L of solution we will get the answer as 0.25 g/litre molarity as the answer.

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What is characteristic of a covalent bond?

Answers

Answer:below

Explanation:

Some of the properties of covalent bonds are: Covalent bonding does not result in the formation of new electrons. The bond only pairs them. They are very powerful chemical bonds that exist between atoms.


3. Given the names of the following compounds, determine their correct chemical formula
e. Pentanitrogen tribromide

Answers

Answer:

N5Br3

Explanation:

What is the most abundant element in magma?Question options:OxygenMagnesiumIronSilicon

Answers

ANSWER

Oxygen

EXPLANATION

Magma is the molten or semi-molten natural materials from which all igneous rock is formed

Magma is composed of a mixture of molten materials with varying amounts of dissolved gases and small amount of solid materials.

Magma contains 46.6% of oxygen which is more than half of the total dissolved gases

Therefore, the most abundant element in magma is oxygen

The compound para-nitrophenol (molar mass = 139 g/mol) reacts with sodium hydroxide in aqueous solution to generate a yellow anion. Because the amount of para-nitrophenol is easily estimated from the intensity of the yellow color that results when excess NaOH is added, reactions that produce para-nitrophenol are commonly used to measure the activity of enzymes, the catalysts in biological systems. What volume of 0.105 M NaOH must be added to 50.0 mL of a solution containing 7.20 × 10−4 g of para-nitrophenol to ensure that formation of the yellow anion is complete?

Answers

The volume of the sodium hydroxide solution required is 4.9 * 10^-5 L.

What is the volume required?

We know that the reaction between the sodium hydroxide in aqueous solution and para-nitrophenol is a 1:1 reaction. We now have to find the volume of the sodium hydroxide solution that must be added to the solution in order to ensure that formation of the yellow anion is complete.

We should know that the reaction is equimolar so we can write that;

0.105 M * V =  7.20 × 10−4 g/ 139 g/mol

V = 7.20 × 10−4 g/ 139 g/mol/0.105 M

V = 4.9 * 10^-5 L

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Order these events of a chain reaction from first to last.swap_vertA number of atoms undergo fission.swap_vertOne atom undergoes fission.swap_vertA number of neutrons are produced.

Answers

This describes a fission chain reaction:

Initially, the reaction starts with the fission of an atom with an unstable nucleus. In fission, neutrons are produced, and they travel through the surrounding medium. Eventually, they meet other atoms and they are captured by their nuclei: the nuclei become unstable and they undergo fission as well.

The order will be: answer

1) One atom undergoes fission.

2) A number of neutrons are produced.

3) Each neutron finds another atom.

4) A number of atoms undergo fission.

During this CHE 113 experiment, you will create calcium oxalate monohydrate from
calcium chloride and potassium oxalate. If 0.444 g of Ca(C₂04) H₂O were produced,
how many grams of potassium oxalate, K₂(C₂O4), was used as a reactant? Assume a
100% yield, which means all of the reactant was converted to product. Report your
answer in grams to 3 decimal places.

Answers

It will take 3.07 m long to reach at its maximum height.

The volleyball will reach at the  maximum height at 0.673 s after it is served.The  Calculating for the height the volleyball  will reach before going to  downwards. Therefore the volleyball will do have a maximum height of 3.07 m  with respect to the ground.

3.78 m Ignoring resistance, the ball will travel upwards until it's velocity is 0 m/s. So we'll first calculate how many seconds that takes.

7.2 m/s / 9.81 m/s^2 = 0.77945s

 The distance traveled is given by the formula d = 1/2 AT^2, so substitute the known value for A and T, giving

d = 1/2 A T^2 d = 1/2 9.81 m/s^2 (0.77945 s)^2 d = 4.905 m/s^2 0.607542 s^2 d = 2.979995

m So the volleyball will travel 2.979995 meters straight up from the point upon which it was launched. So we need to add the 0.80 meters initial height.

d = 2.979995 m + 0.8 m = 3.779995

m Rounding to 2 decimal places gives us 3.78 m.

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Name: _____________________________________________ Date: ________________________
Second Read of “Investigating Landforms on Venus”
Gerya and his team wanted to answer the question What formed the novae on Venus? Their idea was that the higher surface temperature and thinner crust of Venus caused the novae to form.
• Reread the final three paragraphs of the “Investigating Landforms on Venus” article.
• Then, highlight or add annotations to parts of the text that relate to the questions next to the article.
• Using your annotations, answer the questions below.
How were the novae on Venus similar to the landforms in Gerya’s computer model? ________________________________________________________________________

Answers

The thing that formed the novae on Venus is As a result of the interaction between mantle diapirs and the lithosphere and radial fracture brought on by the emplacement of novae are believed to have formed.

The parts of the text that relate to the questions  are:

"Rock rising up from the underground""Temperature of Venus was hotter than that of earth"

Novae on Venus similar to the landforms in Gerya’s computer model as the model's output corresponded to Venusian novae. This supported Gerya's hypothesis that novae may emerge as melted rock was allowed to push up toward the surface due to a thinner crust and higher surface temperature.

What is the name of the Venusian landform being studied?

Venus has dome-shaped features called novae. They have cracks radiating from their centers in all directions, making them simple to observe from above. The plural of the word "nova" is "novae."

As a result of the interaction of mantle diapirs with the lithosphere and radial fracture brought on by the emplacement of novae are believed to have formed.

Note that Venus planet is comparable to Earth on the inside and is a tad smaller than Earth. Venus's surface is obscured by dense clouds, so we can't see it from Earth. However, its space missions have revealed that its surface is covered with craters, volcanoes, mountains, and other geological features.

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A system does 571 kJ of work and loses 276 kJ of heat to the surroundings.
What is the change in internal energy, AE, of the system? Note that internal energy is symbolized as AU in some sources

Answers

A system does 571 kJ of work and loses 276 kJ of heat to the surroundings. thus,  the internal energy change is -847kj .

What is internal energy ?

The internal energy, which results from the molecular state of motion of matter, is an energy form that exists in every system. The internal energy is denoted by the letter U, and the measurement unit is the joule (J).

Rising temperature and changes in state or phase from solid to liquid and liquid to gas cause a rise in internal energy. Planetary bodies can be viewed as a fusion of heat engines and heat reservoirs. Internal energy E is stored in the heat reservoirs, and some of it is converted into different kinds of mechanical, electrical, and chemical energies by the heat engines.

Given ,

the work done by the system is 571KJ.  

and heat energy loses to the surrounding is 276kj .

Now , according to the 1st law of thermodynamics , the internal energy change is given by ,

ΔU = Q -W = -276KJ - 571KJ = -847kj

Hence the internal energy change is -847kj .

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what is the full answer with steps​

Answers

After adding the next amounts of NH, the final solution's pH was 4.98. Strong acid plus weak base equals an acidic pH, which is supported by this.

If you'll note, NH3 and HNO3 have the same volume and concentration, while HNO3 only contains one H.

As a result, you should persuade yourself that these react exactly as they should because their mol quantities are equivalent.

Make use of the following equation to determine pH:

pH = -log [H+]

The pH formula can be used to determine the pH of a chemical solution and how acidic or basic it is: pH equals -log10[H 3 O +]. Anything below 7 is acidic, and everything over 7 is basic. Learn how to calculate the pH of any chemical solution using the procedures listed below.

To Identify pH true meaning:

The concentration of hydrogen ions in a solution is determined by the pH scale. A solution having a lot of hydrogen ions in it is acidic. Normally, the pH scale is displayed from 0 to 14. The solution is more straightforward the larger the number.

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I did lab about solubility using sugar, table salt, and baking soda. My results show High solubility: Sugar>salt>baking soda. But i still don't get it why...Why does sugar high solubility than salt? Why does salt have high solubility than baking soda?

Answers

Sugar has high solubility than salt and baking soda due to the big size of sugar molecules as compared to the molecules of dissolved salt and baking soda.

Why does sugar have a high solubility?

Sugar has high solubility than salt because the sugar molecules are bigger than the molecules of dissolved salt. This allows more water molecules to surround a single particle of sugar that pulling it into a solution faster as compared to salt and baking soda. Sugar dissolves in water due to high solubility because energy is given when the partially polar sucrose molecules can result in the formation of intermolecular bonds with the polar water molecules. The weak bonds that form between the sugar and the water needed the energy to break the structure of both the pure solute which is sugar and the solvent i.e. water.

So we can conclude that the sugar molecules have large than the molecules of dissolved salt, so that's why Sugar has high solubility than salt and baking soda

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The volume of a given mass of gas is 410. mL at 380. mm Hg. What will its volume in mL be ifthe pressure changes to 2.00 atm?

Answers

Answer:

[tex]102.5\text{ mL}[/tex]

Explanation:

Here, we want to get the final volume of the gas

According to Boyles' law, the volume is inversely proportional to the pressure

Mathematically:

[tex]P_1V_1\text{ = P}_2V_2[/tex]

where:

P1 is the initial pressure of the gas which is 410 ml

V1 is the initial volume of the gas which is 380 mmHg

P2 is the final pressure of the gas which is 2 atm (we convert this to mmHg by multiplying by 760 mmHg: we have that as 2 * 760 mmHg = 1520 mmHg)

V2 is the final volume of the gas which is what we want to calculate

Substituting the values:

[tex]\begin{gathered} V_2\text{ = }\frac{P_1V_1}{P_2} \\ \\ V_2\text{ = }\frac{410\times380}{1520}\text{ = 102.5 mL} \end{gathered}[/tex]

URGENT HELP PLEASE. Identity the element represented by the orbital diagram below.

Answers

Answer: 4.023938398328392932838398293892839839829382938928938298928392839239829389329808091808208210808208018820801808208093829898081080282

Explanation:

A covalent compound is formed by

a. metal atoms losing valence electrons to non-metal atoms
b. non-metal atoms losing valence electrons to non-metal atoms
c. metal atoms sharing valence electrons
d. non-metal atoms sharing valence electrons

Answers

The answer is b I took the test

design a concept map that shows the relationships among ionic bond strength physical properties of ionic compounds lattice energy and stability

Answers

Answer:

Explanation: I have included a picture of the concept map. Feel free to ask any questions.

Higher lattice energy means that more force is needed to break the ionic solid apart into its individual ions. Ionic bonding hence becomes stronger than lattice energy increases.

What is lattice energy ?

The energy that changes when one mole of a crystalline ionic compound is formed from its component ions, which are believed to begin to be in the gaseous state, is known as the lattice energy. It gauges the cohesive forces that hold ionic solids together.

One mole of a solid ionic compound can be formed when gaseous ions react, releasing a particular amount of energy. Lattice energy can also be used to describe the energy required to aid the dissociation of one mole of a solid ionic compound into its component gaseous ions.

Thus, Ionic bonding hence becomes stronger than lattice energy increases.

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Why is it the principle about the relationship between mass and volume always true of substance, but not always true of mixtures

Answers

Answer:

For pure substances, the mass and volume will always be the same or will always change the same way because all substance are the same throughout.

While for mixtures, you can have varying amount of each component therefore mass and volume will not change the same way for substances

10. 250.0 ml of 0.650 M zinc ll chloride is mixed with 200.0 ml of 0.750 M sodium hydroxide according to the equation: ZnCl2 + 2NaOH —> Zn(OH)2 + 2NaCl

What is the concentration of the sodium ion left in solution?

What is the concentration of the chloride ion left in solution?

What is the concentration of the excess zinc ion left in solution?

Answers

Based on the concentration and volume of reactants:

the concentration of Na⁺ ion in solution is 0.333 Mthe concentration of Cl⁻ in solution is 0.722 Mthe concentration of Zn²⁺ left is 0.028 M

What is the concentration of each of the ions in the solution at the end of the reaction?

The concentration of each of the ions in the solution at the end of the reaction is calculated as follows:

Equation of reaction : ZnCl₂ + 2 NaOH —> Zn(OH)₂ + 2 NaCl

moles of ZnCl₂ = 250/1000 * 0.65

moles of ZnCl₂ = 0.1625 moles

Moles of NaOH = 200/1000 * 0.750

moles of NaOH = 0.15 moles

NaOH is the limiting reactant

Moles of Zn(OH)₂ formed = 0.15 / 2

Moles of Zn(OH)₂ formed = 0.075 moles

final volume of solution = 450 ml

the concentration of Na⁺ ion in solution = 0.15/450

concentration of Na⁺ ion = 0.333 M

concentration of Cl⁻ in solution = 0.1625 * 2 / 450

concentration of Cl⁻ = 0.722 M

concentration of Zn²⁺ left = (0.1625 - 0.15)/450

concentration of Zn²⁺ = 0.028 M

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How many moles of Al2O3 are produced if we use 5.7 moles of Al?
4 Al + 3 O2 --> 2 Al2O3

Answers

Moles of Al₂O₃ are produced if we use 5.7 moles of Al is 2.85 moles .

The balanced equation is :

4Al  +   3O₂  ----->   2Al₂O₃

here given that :

moles of Al = 5.7 moles

from the equation it is clear that

four mole of Al produced 2 moles of Al₂O₃

so we can calculated the moles of Al₂O₃ produce by 5.7 moles of Al

5.7 moles of Al produced = (5.7 × 2 ) / 4 moles of Al₂O₃

                                           = 2.85 moles of Al₂O₃

Thus, Moles of Al₂O₃ are produced if we use 5.7 moles of Al is 2.85 moles .

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In an underground gas reserve, a bubble of methane gas (C H4) has a volume of 45.0 m L at 1.60 atm pressure.part A: What volume, in milliliters, will the bubble occupy when it reaches the surface where the atmospheric pressure is 744 m m H g, if there is no change in the temperature and amount of gas?part B: What is the new pressure, in atmospheres, when the volume of the methane gas bubble expands to 125 m L, if there is no change in the temperature and amount of gas?

Answers

Answer:

[tex]0.58\text{ atm}[/tex]

Explanation:

Here, we want to getthe new pressure

From Boyles' law, we know that the volume of a given mass of gas is inversely proprttional to the pressure at a constant temperature

Mathematically:

[tex]P_1V_1\text{ = P}_2V_2[/tex]

where:

P1 is the initial pressure hich is 1.6 atm

P2 is the final pressure which is 744 mmHg (converting to atm by dividing by 760 mmHg, we have the aluea as 744/760 = 0.98 atm

V1 is 45 ml

V2 is ?

[tex]V_2\text{ = }\frac{1.6\times45}{0.98}\text{ = 73.5 mL}[/tex]

Now, the gas expanded from 73. mL to 125 mL

The initial pressure woud now be 0.98 atm

Thus, we have the new pressure as:

[tex]\begin{gathered} P_2\text{ = }\frac{73.5\times0.98}{125} \\ \\ P_2\text{ = 0.58 atm} \end{gathered}[/tex]

Determine the reaction type Potassium Phosphate + Tin (II) Chlorate →

Answers

Answer

Reaction type = Double displacement.

Explanation

Solution:

[tex]2K_3PO_4\text{ + 3SnCl}_2\rightarrow Sn_3(PO_4)_2+\text{ 6KCl}[/tex]

Reaction type = Double displacement.

Determine the mass of sodium metal that contains the same number of moles as 81.7 g of copper
metal.

Answers

The mass of sodium metal that contains the same number of moles as 81.7 g of copper metal is 2.3 grams.

What is Sodium Metal?

Since sodium is a soft metal, it tarnishes quickly when exposed to air. Water also causes a strong reaction. In some nuclear reactors, sodium is employed as a heat exchanger. It is also used as a reagent in the chemical sector. In contrast, sodium salts are more useful than sodium itself.

Mass of copper =  81.7 g

1 Mole of Cu = 8.17 g

Now, 1 mole of Copper contains 6.022×10^23 atoms

So 0.1 moles of Copper contains 6.022 × 10^22 atoms.

So we need to find the weight of 6.022× 10^22 Sodium atoms.

We know that 6.022 ×10^22 Na atoms is 0.1 mole of Na.

So we need to find the weight of 0.1 mole of Na.

1 mole of Na = 23 g

So 0.1 mole of Na = 2.3 grams

So, answer is 2.3 grams.

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I need to fill in the blanks if you can only do one question can you please do the first one

Answers

Answer

34.40 grams of H₂O are made.

Explanation

The first step is to balance the chemical equation for the reaction:

C₃H₈ + 5O₂ → 3CO₂ + 4H₂O

From the balanced equation;

1 mole of C₃H₈ produced 4 moles of H₂O

1 mole of C₃H₈ = 44.1 g/mol

1 mole of H₂O = 18.015 g/mol

This implies;

(1 mol x 44.1 g/mol) = 44.1 g of CH₈ produced (4 mol x 18.015 g/mol) = 72.06 of H₂O

Therefore, 23.5 g of CH₈ will produce

[tex]\frac{23.5g\text{ }C₃H₈}{44.1g\text{ }C₃H₈}\times72.06g\text{ }H₂O=38.40\text{ }gram\text{ }H₂O[/tex]

Hence, 34.40 grams of H₂O are made

If someone falls at a rate of 2 kg/s, how long in seconds will it Take someone with a mass of 119 lb To fall Off a hill?

Answers

Answer:

27 s.

Explanation:

We have to do the calculations with the right units, so let's convert from 119 lb to kg. Remember that 1 lb equals 0.454 kg. Based on this information we can state a rule of three and the conversion will look like this:

[tex]119\text{ lb}\cdot\frac{0.454\text{ kg}}{1\text{ lb}}=54.0\text{ kg.}[/tex]

Now, we have to do a dimensional analysis to obtain the answer. We want to find the time that this person falls off a hill, and time is in seconds, so we have to 'cancel' the mass in kg to obtain seconds and this would be a multiplication. A 2 kg mass falls in one second, this multiplied by the mass of the person is:

[tex]54.0\text{ kg}\cdot\frac{1\text{ s}}{2\text{ kg}}=27\text{ s.}[/tex]

The answer would be 27 s.

Calculate the pH of 0.15M sodium acetate

Answers

Answer:

12 +12 24

Explanation:

explationnnnnn ph 0.15=30

An unknown compound is analyzed gravimetrically and found to contain 77.6 ± 0.1 % of bromine. You know the initial compound could be the bromide salt of sodium, potassium or calcium. Determine the molecular formula of the initial unknown salt. Show your work.

I will will name brainliest to whoever answers quickly and correctly

Answers

An unknown compound is analyzed gravimetrically and found to contain 77.6 ± 0.1 % of bromine. Molecular formula is NaBr (sodium bromide)

This is further explained below.

What is the Molecular formula?

Generally,  Here given the 77.6+1-0.1 \%bromine Mass percentage of [tex]$\mathrm{Br}$ in $\mathrm{NaBr}=\frac{79.9}{102.89} \times 100$[/tex]

=0.776 *100

=77.6%

Therefore the mass percentage of Br in NaBr is 77.6 % matched with the given bromine mass percentage 77.6 [tex]\pm[/tex]0.1 %

Mass percentage of

[tex]$$\begin{aligned}\mathrm{Br} \text { in } \mathrm{KBr} &=\frac{79.9}{119} \times 100 \\&=0.671 \times 100 \\&=67.1 \%\end{aligned}$$[/tex]

Mass percentage of Br in CaBr_2[tex]=\frac{159.8}{199.8} \times 100$$=79.9 \%$[/tex]

Therefore, the mass % of B_r in k B r on d CaBr_2 is a hot match with the given mass % $77.6[tex]\pm[/tex] 0.10%

Therefore, the Molecular formula of an unknown salt is NaBr

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I have no idea how to do these

Answers

The frequency of a radio wave with an energy of 8.3 x 10⁻²⁴ J  is 1.25 x 10¹⁰ Hz.

Energy is directly proportional to the frequency. The relationship between energy and frequency can be given as -

E = hν

where,

E = energy

h = Planck's constant

ν = frequency

Waves carries energy. Therefore, the energy carried by the waves is related to the frequency and their amplitude.

If the frequency is higher, energy will be more for a wave. If wavelength increases, the energy and the frequency gradually decreases.

We know that,

E = 8.3 x 10⁻²⁴ J

h = 6.62 x 10⁻³⁴

We will calculate frequency using the above equation,

E = hν

ν = E

     h

ν = 8.3 x 10⁻²⁴

     6.62 x 10⁻³⁴

ν = 1.25 x 10¹⁰ Hz

Hence, the frequency of radio wave is 1.25 x 10¹⁰ Hz.

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How many electrons in an atom can have the quantum numbers in n equal 3, L equal 2

Answers

Answer:

10 electrons in an atom can have the quantum numbers in n=3 and l=2.

Explanation:

In the principal quantum number n=3, we can have, within the orbital quantum number l=2, a maximum of 10 electrons, because there, electrons can be located in the 3d orbital.

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