How many moles of are in 179 mL of a 3.0 M of CaCl2 solution?

Answers

Answer 1

Answer: 0.537 moles

Explanation:

Hello, Let's first explain the term molarity

---> Molarity is the most commonly used term to describe the concentration of a solution. It is equal to the moles of solute divided by the liters of solution.

---> The solute is defined as the substance being dissolved, while the solvent is the substance where the solute is dissolved (usually water).

---> The solution is the combination of the solute and the solvent.

Molarity = moles of solution/Liters of

solution

Parameters given are

Volume(V) = 179ml of CaCl2 solution

Molarity = 3.0m

Therefore,

Molarity = number of moles of CaCl2 solution / Volume of CaCl2 in Liters (eqn 1)

First, convert 179ml to liters

1ml = 0.001L

179ml = ?

179ml = 179ml x 0.001L

= 0.179L

From (eqn 1)

Let the number of moles of CaCl2 solution be M

=> 3 = M/0.179

M = 0.179 x 3

= 0.537 moles

Hence the number of moles in 179ml of CaCl2 solution yields 0.537 moles


Related Questions

A large molecule of Tryptophan ( C11 H12 N2 O2) has a molar mass of about 612g/mol. What is it’s molecular formula?

Answers

C₃₃H₂₄N₆O₆ is the molecular formula of the large molecule of tryptophan (which is a derivative of tryptophan molecule)

Explanation:

For the large tryptophan molecule we have been given the empirical formula C₁₁H₁₂N₂O₂. The molecular formula will be (C₁₁H₁₂N₂O₂)ₐ which have the molar mass of 612 g/mol.

Now we calculate the molar mass of (C₁₁H₁₂N₂O₂)ₐ:

molar mass of (C₁₁H₁₂N₂O₂)ₐ = (12 × 11 + 1 × 12 + 14 × 2 + 16 × 2) × a

molar mass of (C₁₁H₁₂N₂O₂)ₐ = 204a g/mol

Now to find "a" we do the following calculus:

204 × a = 612

a = 612 /204

a = 3

The molecular formula of large molecule of tryptophan will be:

(C₁₁H₁₂N₂O₂)₃ = C₃₃H₂₄N₆O₆

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What is the specific heat of an unknown substance if a 2.50 g sample releases 12 calories as its
temperature changes from 25°C to 20°C?

Answers

Taking into account the definition of calorimetry, the specific heat of the unknown substance is 0.96 [tex]\frac{calories}{gC}[/tex].

Calorimetry

Calorimetry is the measurement and calculation of the amounts of heat exchanged by a body or a system.

Sensible heat is defined as the amount of heat that a body absorbs or releases without any changes in its physical state (phase change).

So, the equation that allows to calculate heat exchanges is:

Q = c× m× ΔT

where

Q is the heat exchanged by a body of mass m. c: specific heat substance. ΔT is the temperature variation.

Specific heat of an unknown substance

In this case, you know:

Q= - 12 caloriesc= ?m= 2.50 gΔT= Tfinal - Tinitial= 20 C - 25 C= - 5 C

Replacing in the expression to calculate heat exchanges:

-12 calories= c× 2.50 g× (-5 C)

Solving:

-12 calories÷ [2.50 g× (-5 C)]= c

0.96 [tex]\frac{calories}{gC}[/tex]= c

Finally, the specific heat of the unknown substance is 0.96 [tex]\frac{calories}{gC}[/tex].

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Final answer:

The specific heat of the substance is 0.96 cal/g°C, calculated by rearranging the formula q = mcΔT and substituting the known values for heat transferred, mass, and change in temperature.

Explanation:

The formula for calculating the specific heat (c) of a substance is:

q = mcΔT

where:

q is the amount of heat transferred,m is the mass of the substance,ΔT is the change in temperature.

To find the specific heat, rearrange the formula to solve for c:

c = q / (mΔT)

In this example, the given values are:

q = -12 cal (since the heat is released, it is negative),m = 2.50 g,ΔT = 20°C - 25°C = -5°C (since the temperature decreased, ΔT is negative).

Plugging in these values gives:

c = -12 cal / (2.50 g x -5°C)

c = 12 cal / (12.5 g°C)

c = 0.96 cal/g°C

The specific heat of the substance is therefore 0.96 cal/g°C.

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Perform the following operation and express the answer in scientific notation. 7.0x10^3x1.1x10^7

Answers

Answer:

The answer is: [tex]7.7\times10^{10}[/tex]

Explanation:

Scientific notation is of the kind: [tex]a.bc\times10^{x}[/tex]

The given calculation:

[tex]7.0\times10^{3}\times1.1\times10^{7}=(7\times1.1)\times10^{(3+7)}[/tex]

[tex]=7.7\times10^{10}[/tex]

Therefore, the answer in scientific notation is: [tex]7.7\times10^{10}[/tex]

_Pb304 + _HNO3 → __Pb(NO3)2 + __PbO2 + __H2O​

Answers

Answer:

Pb₃O₄ + 4HNO₃ → 2Pb(NO₃)₂ + PbO₂ + 2H₂O​

Explanation:Balancing a chemical equation involves putting appropriate coefficients on the reactants and products to make the number of atoms of each element involved equal on both sides of the equation.When a chemical equation is balanced then it obeys the law of conservation of mass.The law of conservation of mass requires the mass of reactants to be equal to the mass of the products.In this case, to balance the equation, we put the coefficients 1, 4, 2, 1 and 2 receptively on the equation.

Thus, the balanced equation will be;

Pb₃O₄ + 4HNO₃ → 2Pb(NO₃)₂ + PbO₂ + 2H₂O​\

Therefore, on the reactants side there are 3 Pb atoms, 16 O atoms, 4 H atoms and 4 nitrogen atoms.Product side :  3 Pb atoms, 16 O atoms, 4 H atoms and 4 nitrogen atoms.

Thus, the equation obeys the law of conservation of mass.

The controlled Release of nuclear energy in a creator is accomplished by: allowing the critical mass of fuel to react . Controlling a chain reaction. Controlling fission without a chain reaction. All of the above.

Answers

Answer:

If a chain reaction takes place, the amount of energy released would increase exponentially, so in order to control the energy release, fission must be controlled without controlling a chain reaction, so the third option is correct.

Hope this helps!

Explanation:

Which sample or gas would you exert the greatest pressure, assuming that the volume of each sample is the same?

A) one mole of N2 at 100 K
B) one mole of H2 at 250 K
C) one mole of O2 at 175 K
D) one mole of CO2 at 330 K

Answers

D

Because the moles of the gases are the same,and the volume too, the gas with the highest temperature will exert the highest outward pressure to its environment. It, therefore, will require an equivalent pressure exerted on the gas to maintain its volume.

Explanation:

According to ideal gas laws, pressure, volume, and temperatures of gases are related in a formula;

PV/T = C

Whereby

P = Pressure

V = Volume

T= Temperatures

C = Constant

To understand how much pressure a gas exerts with change in temperature, while volume remains the same, we can evaluate the formulae in this way;

P = T/V

Therefore an increase in temperature, while volume is the same, means the Pressure will rise.

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Answer:

its right

Explanation:

An atom has the following electron configuration.
1s22s22p63s23p4s23d3
How many valence electrons does this atom have?

Answers

Final answer:

The atom with the given electron configuration, assuming the typo is corrected, has 5 valence electrons, which are the electrons from the 4s and 3d sublevels.

Explanation:

Valence electrons are the electrons in the outermost energy level of an atom and are involved in chemical bonding. According to the given electron configuration 1s22s22p63s23p4s23d3, we need to identify the outermost electrons. The configuration actually seems to contain an error as '3p4s23d3' is not a standard notation, but assuming the correct sequence and based on the highest principal quantum number, the valence electrons would be from the 4s sublevel (2 electrons) and the 3d sublevel (3 electrons), adding up to 5 valence electrons.

View the table.
Which would be the most appropriate headers for column
1 and column 2?
1
sugar
ice
diamond
S
AS
rubber
wax
plastic
column 1 Atoms
column 2. lons
column 1 Crystalline
column 2 Noncrystalline
column 1. Definite shape
column 2. Definite volume
column 1 Viscous
column 2 Nonviscous

Answers

Answer:n creating a table from a dataset that does not have a column and a row, the most important thing that you have to ... The answer to your question is C. column headers.

Explanation:

Answer:

column 1: they are solids that form crystals.

column 2: Are liquid solutions.

Explanation:

Crystals are solids, some of them can have viscosity like glass.

Liquid solutions, are formed by some ions dissolved in water, so they can have a definite volume and could be a liquid that is nonviscous because they are dissolved in water.

Hope this info is useful.

Which of the following pairs of elements is most likely to form an ionic bond? Sulfur and Oxygen Carbon and Chlorine Phosphorous and Bromine Aluminum and Nitrogen

Answers

Aluminum” and “Nitrogen” form an ionic bond.

Option: D

Explanation:

Aluminum and nitrogen are most likely to form an “ionic bond” among given pairs of elements in form of aluminum nitride. AlN is partially covalent and also show ionic characteristics as N needs 3 electrons to fill outer shell and Al has 3 electrons in valence shell. Hence [tex]\mathrm{Al}^{+3}[/tex] is cation and [tex]\mathrm{N}^{-3}[/tex] is anion and have “electrostatic force” of attraction between these oppositely charged ions. Here ionic behavior is seen as nitrogen is more “electronegative” hence attract the shared pair of electrons which is earlier responsible for partial covalent bond formation.

Which of the following groups in the periodic
table contain elements so reactive that they are
never found in the free state?
(1) 1 and 2
(3) 2 and 15
(2) 1 and 11
(4) 11 and 15

Answers

Elements of Group 1 and  group 2  in the periodic table contain elements so reactive that they are  never found in the free state

Explanation:

The metals in group 1 of  periodic table consisting of 'alkali metals' which include lithium, potassium, sodium, rubidium, Francium and caesium. They are highly reactive because they have low ionisation energy and larger radius. The group 2 metals consist of 'alkaline earth metals' which include calcium, strontium, barium, beryllium, radium and magnesium.  These alkaline earth metal have +2 oxidation number, hence are highly reactive.

These both group metals are mostly reactive and so are never found in a free state. When they are exposed to air they would immediately react with oxygen. Hence, are stored in oils to avoid oxidation.

Chemistry tests that are not stat are typically drawn in what type of tube

Answers

lithium heparin tube i think, could be wrong but i think this is right.

Final answer:

Chemistry tests like blood tests for plasma analysis generally use tubes containing K2EDTA, followed by centrifuging. Urinalysis, on the other hand, uses disposable test strips without prior sample preparation.

Explanation:

Chemistry tests that are not stat (immediate) are typically drawn in various types of tubes depending on the tests to be carried out. For tests that require plasma, blood samples are usually collected into tubes containing K2EDTA and then centrifuged to obtain plasma.

The plasma samples may sometimes be quenched with methanol before analysis. This is different from urinalysis, where physicians often use disposable test strips to measure the amounts of various substances in a patient's urine, without the need for any preparation before analysis. The diverse techniques and sample preparations in clinical chemistry underscore the importance of tailoring collection methods to specific tests, allowing for accurate and comprehensive diagnostic assessments in medical laboratories.

A sample of glucose is found to have 34.92 g of carbon, 5.87 g of hydrogen and 46.56 g of oxygen. Another sample is found to have 0.4471 g of carbon, 0.07510 g of hydrogen, and 0.5962 g of oxygen. Show that these results are consistent with the law of definite proportions.

Answers

Answer:

See explanation below.

Explanation:

You just need to show that the ratio of all elements within the compound is always the same. The easiest way to do this is to divide everything by the lowest mass in each group:

[tex]34.92 C : 5.87H : 46.56O \rightarrow \frac{34.92}{5.87} C : \frac{5.87}{5.87}H : \frac{46.56}{5.87}O \rightarrow 6C : 1H : 8O\\\\0.4471 C : 0.0751H : 0.5962O \rightarrow \frac{0.4471}{0.0751} C : \frac{0.0751}{0.0751}H : \frac{0.5962}{0.0751}O \rightarrow 6C : 1H : 8O\\[/tex]

**Please keep in mind that this ratio is DIFFERENT from the stoichiometric ratio of the elements within the compound and does not tell you the empirical formula. The ratio just says there are 6g of C for every 1g of H and 8g of O. It does NOT mean the empirical formula is C6HO8.

How much energy is required to heat a 40 g sample of ice with an initial temperature of -10°C until it reaches a final temperature of 105°C

Answers

Answer:

The total energy required is 121.56 kJ

Explanation:

The energy required to heat a m = 40g sample of ice is calculated using the following information:

The specific heat of ice =[tex]s_{ice}[/tex] = 2.108 J/g-K

The specific heat of water =[tex]s_{water}[/tex] = 4.187 J/g-K

The specific heat of steam = [tex]s_{steam}[/tex] = 1.996 J/g-K

The latent heat of fusion for ice = L = 336 kJ/kg

The latent heat of vaporisation = l = 2260 kJ/kg

The latent heat of fusion is the amount of energy required to change one kg of ice into water without a change in temperature.

Firstly, we find the energy required to change the temperature of 40 g of ice from -10°C to 0°C.

[tex]Energy\:required=ms_{ice}\Delta T\\ \Delta T\:is\:the\:change\:in\:temperature\\Energy\:required=40\times2.108\times(0-(-10))=40\times2.108\times10=843.2J[/tex]

Then, the energy required to convert 40g of ice at 0°C to water at 0°C.

[tex]Energy\:required=mL=40\times336=13440J[/tex]

Then, the energy required to convert water at 0°C to water at 100°C.

[tex]Energy\:required=ms_{water}\Delta T=40\times4.187\times(100-0)=40\times4.187\times100=16748J[/tex]

The energy required to convert water at 100°C to steam at 100°C.

[tex]Energy\:required=ml=40\times2260=90400J\\[/tex]

The energy required to convert steam at 100°C to steam at 105°C.

[tex]Energy\:required=ms_{steam}\Delta T=40\times1.996\times(105-100)=399.2J[/tex]

Total Energy required = 843.2 + 13440 + 16748 + 90400 + 399.2 = 121560.4J = 121.56 kJ

What temperature, pressure, and water vapor concentration would you expect to see in the
Stratopause?

Answers

The expected parameters in Stratopause are; Temperature: -15 degrees Celsius, Pressure: 1 milibar and Water vapor concentration: cannot be determined.

Explanation:

"Stratopause" is the interaction between the ionosphere and the stratosphere. It is 50-55 km high above the earth surface that is why temperature is very less approximately -15 degrees Celsius (5 degrees Fahrenheit). As it is a thin layer separating the stratosphere and ionosphere actual water vapor concentration cannot be determined. The atmospheric pressure is around 1/1000 of the pressure at sea level.

Final answer:

The stratopause, located at about 50 km above Earth, has a constant temperature close to 0°C, low pressure, and very low water vapor concentration due to the absence of conditions that support water in other phases.

Explanation:

In the stratopause, which is the boundary layer between the stratosphere and the mesosphere located approximately 50 kilometers above the Earth's surface, one could expect to see a fairly constant temperature sufficing approximately at 0°C or 273.16 K. The temperature increases slightly in the stratosphere because it is heated from below by the absorption of ultraviolet radiation by ozone.

The pressure and density are much lower than at the Earth's surface due to the height in the atmosphere, and because the temperature is constant, pressure and density decrease together as altitude increases. In the stratosphere, there is almost no water vapor, much less than in the troposphere, so the concentration of water vapor in the stratopause would be very low. This is because the atmosphere's temperature at this layer does not support the presence of much water vapor, which would predominantly be in gaseous form if present.

Consider the redox reaction below.
Mg(s) + Fe2+ (aq) —>Mg2+ (aq) + Fe(s)
Which equation is a half reaction that describes the reduction that is taking place?
Fe2+ (aq) + 22 -> Fe(s)
Mg(s) — Mg2+ (aq) + 2e
Fe2+ (aq) –>Fe(s) + 2e-
Mg(s)+2e--> Mg2+ (aq)

Answers

Answer:

Fe2+ (aq) + 2e -> Fe(s)

Explanation:

Oxidation:

Oxidation involve the removal of electrons and oxidation state of atom of an element is increased.

Reduction:

Reduction involve the gain of electron and oxidation number is decreased.

Consider the following reaction:

Mg(s) + Fe2+ (aq) —>Mg2+ (aq) + Fe(s)

Magnesium loses its two valance electrons and oxidized while iron accept two electrons get reduced.

Magnesium is reducing agent while iron is oxidizing agent.

Oxidizing agents:

Oxidizing agents oxidize the other elements and itself gets reduced.

Reducing agents:

Reducing agents reduced the other element are it self gets oxidized.

Hector uses the apparatus below to separate a mixture. [image}

How do the substances compare?
A. Substance 1 has a lower density than Substance 2.
B. Substance 1 has a higher density than Substance 2.
C. Substance 1 has a lower boiling point than Substance 2.
D. Substance 1 has a higher boiling point than Substance 2.

Answers

Answer:

The answer for this question is option D

A patient's blood test shows that her hemoglobin concentration is 15.2 g/dL. How many milligrams of hemoglobin are in
every 3.50 mL of the patient's blood?
mass of hemoglobin =
mg

Answers

532 mg of hemoglobin

Explanation:

The concentration of hemoglobin in the blood is 15.2 g/dL. It we transform the g in mg and the dL in mL we have the value for the concentration to be 15200 mg / 100 mL.

Knowing the concentration we devise the following reasoning:

if there are         15200 mg of hemoglobin in 100 mL of blood

then there are            X mg of hemoglobin in 3.5 mL of blood

X = (15200 × 3.5) / 100 = 532 mg of hemoglobin

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Taking into account the definition of mass per volume concentration and the change of units, 532 milligrams of hemoglobin are in  every 3.50 mL of the patient's blood.

You know that the concentration of hemoglobin in the blood is 15.2 [tex]\frac{g}{dL}[/tex]. So, in first place, you need to change units: the g in mg and the dL in mL.

You know that 1 dL= 100 mL and 1 g= 1000 mg. Then:

[tex]\frac{15.2 g}{dL}=\frac{15.2*1000 mg}{100 mL} =152 \frac{mg}{mL}[/tex]

Then you can apply the following rule of three: if 1 mL contains 152 mg of hemoglobin, 3.5 mL contains how much mass of hemoglobin?

[tex]mass of hemoglobin =\frac{3.5 mLx 152 mg}{1 mL}[/tex]

mass of hemoglobin= 532 mg

Finally, 532 milligrams of hemoglobin are in  every 3.50 mL of the patient's blood.

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QUESTION 1

Which of these quantities determines the amount of heat released when freezing a given amount of a substance?

specific heat capacity

thermal energy

latent heat of fusion

latent heat of vaporization


QUESTION 2

The enthalpy of freezing for water is −6.02 kJ/mol. What does this indicate?

No heat transfer occurs.

Heat is absorbed.

Heat is released.

The process is endothermic.


QUESTION 3

What does a positive value for enthalpy of vaporization indicate?

The process is endothermic.

The process is exothermic.

No heat transfer occurs.

Heat is released by the liquid.

Answers

Answer:

The answers are:

1) Latent heat of fusion

2) Heat is released

3) The process is endothermic

Explanation:

(1) The amount of energy required to freeze one kg of a substance is called latent heat of fusion.

(2) In a process, if heat is absorbed, the change in enthalpy for the substance is positive.

In a process, if heat is released, the change in enthalpy for the substance is negative.

The enthalpy of freezing for water is -6.02 kJ/mol. Heat is released as the enthalpy is negative.

(3) A positive value for enthalpy of vaporization indicates that the process is endothermic.

An exothermic process is one in which energy is released. The enthalpy for the process is negative.

An endothermic process is one which energy is absorbed. The enthalpy for the process is positive.

A female bear leaves her bear cubs in their den to go out in search of food. She travels one mile in 30 minutes, heading east. She travels quickly at first, but then she becomes tired and begins moving more slowly. She finds no food, so she then heads north for another 10 minutes. She finds a river so she is able to catch a few fish for her bear cubs. She then turns around and heads back toward her den. She travels southwest and returns home to feed her cubs.

Identify and describe all points of acceleration in the scenario about the bear and her cubs.
Make sure to explain why each example is a point of acceleration.

Answers

Answer:

Points of acceleration:

1. When female bear goes quickly

2. After becoming tired, when she becomes slow

3. When she changes direction from east to north

4.When she slows down when she reaches the river bed

5. When she turns around

6.When she increases speed to travel southwest to return home

7. When she comes to a stop at home

Explanation:

1. When she is going quickly she is increasing her velocity thus positively accelerating

2. When she becomes slow, she is having negative acceleration.

3. When there is a change in direction of velocity there is an acceleration.

4. Again negative acceleration when she comes to a stop at the river bed

5. Turning around to the southwest direction requires acceleration

6. To increase the velocity to reach home, positive acceleration

7. To decrease the velocity to stop upon reaching home, negative acceleration

What is the final volume of NaOH solution prepared from 100.0 mL of 0.500 M NaOH if you wanted the final concentration to be 0.150 M?

Answers

Answer:

The final volume of NaOH solution is 30ml

Explanation:

We all know that

              V1S1 = V2S2

             or V1= V2S2÷S1

             or  V1= V2×S2×1/S1

             or   V1=100×0.15×1/0.50

                    V1= 30

30 ml NaOH solution is required to prepare 0.15 M from 100ml 0.50 M NaOH solution.

Final answer:

The final volume of the NaOH solution, with the desired concentration of 0.150 M, can be calculated using the concept of molarity. Plugging the initial molarity, volume, and final molarity into the formula M1V1 = M2V2 gives a final volume of approximately 333.3 mL.

Explanation:

To calculate the final volume of the NaOH solution, we will use the concept of molarity, which is represented by the equation M1V1 = M2V2 where M1 and V1 are the initial molarity and volume, and M2 and V2 are the final molarity and volume. In the given problem, the initial molarity (M1) is 0.500 M, the initial volume (V1) is 100 mL, and the desired final molarity (M2) is 0.150 M.

Accordingly, we rearrange the equation to solve for V2: V2 = (M1V1) / M2. Substituting the given values, we find V2 = (0.500 M × 100 mL) / 0.150 M = 333.3 mL.

So, you would need to dilute the initial 100 mL of 0.500 M NaOH solution to a final volume of approximately 333.3 mL to achieve a final concentration of 0.150 M.

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the building blocks of the universe are called ______.

1)ions
2)elements
3)compounds
4)nuclei ​

Answers

"Nuclei " are called as building blocks of the universe.

Option: D

Explanation:

Smallest unit of this universe was considered to be an atom but “Rutherford 's Nuclear Model of Atom” in 1911 discovered nucleus which is small and heavy positively charged body present in center of atom. An atom also have extra nuclear part which is space around nucleus, where electrons (negative charged) are distributed. Nucleus is contained with protons (positive charged) and neutrons (neutral) which are definitely very smaller than nuclei but as a building unit or block of the universe nuclei is considered.  

Why are electromagnetic waves used instead of sound waves?

Answers

Answer: Electromagnetic waves are not like sound waves because they do not need molecules to travel. This means that electromagnetic waves can travel through air, solid objects and even space. This is how astronauts on spacewalks use radios to communicate. Radio waves are a type of electromagnetic wave.

Explanation:

Answer:

Electromagnetic waves can travel in vacuums.

Explanation:

Scientists use different types of telescopes to find and study supernovas. Some telescopes use visible light to observe the supernova's colors, while others study the X-rays and gamma rays dispersed in the explosion. These electromagnetic waves are used because electromagnetic waves can travel in vacuums, like space, whereas sounds waves cannot. In addition, the electromagnetic spectrum travels at the speed of light (much faster than sound waves), can be absorbed, and are not created by physical vibrations.

450g of chromium(iii) sulfate reacts with excess potassium phosphate. How many grams of potassium sulfate will be produced? (ANS: 6.0*10^2g K2SO4) I need the working and there are a couple more of these if someone's tryna help my dumb self.

Answers

Answer:

600 g K₂SO₄

Explanation:

First write down the complete, balanced chemical equation for such question. In this case:

Cr₂(SO₄)₃ + 2K₃PO₄ →  3K₂SO₄ + 2CrPO₄

Next, calculate molar masses of required compounds mentioned in the question. In this case it is for Cr₂(SO₄)₃ and K₂SO₄.

Molar mass(MM) of Cr₂(SO₄)₃:

        = 2*(MM of Cr) + 3*( MM of S) + 3*4*( MM of O)

        = 2*(52) + 3*(32) + 12*(16)

        = 104 + 96 + 192

        = 392 g

Molar mass(MM) of K₂SO₄:

        = 2*(MM of K) + 1*( MM of S) + 4*( MM of O)

        = 2*(39) + 32 + 4*(16)

        = 78 + 32 + 64

        = 174 g

Here comes the concept of Limiting reagent:

The limiting reagent in a chemical reaction is the substance that is totally consumed when the chemical reaction is complete. The amount of product formed is limited by this reagent, since the reaction cannot continue without it. The other reactants present with this are usually in excess and called excess reactants. If quantities of both the reactants are given, then one should apply unitary method and find out the limiting reagent out of the two. Then, determine the amount of product formed or percentage yield.

Also, 1 mole( 392 g) of Cr₂(SO₄)₃ gives 3 moles( 174*3 = 522 g) of K₂SO₄.

Using unitary method, if 392g of Cr₂(SO₄)₃ gives 522 g of K₂SO₄ , then 450 g of Cr₂(SO₄)₃ will give how much of K₂SO₄?

Yeild of K₂SO₄ : [tex]\frac{522 * 450}{392}[/tex]

That is 599.3 g.

Since we have not considered molecular masses of individual atoms to 6 decimal places, this number can be approximated to 600g.

Therefore, 600g of K₂SO₄ is produced.

A car tyre has a pressure of 2.6 atm at 10°C. If the pressure inside
reaches 5 atm, the tyre will fail. How hot would the tyre have to get for
this to happen?

Answers

Answer:

T = 271.23 degree celcius

Explanation:

For the gas inside the tyre

PV = nRT

So, P is directly proportional to T.

[tex]\frac{P_{1} }{P_{2} }[/tex] = [tex]\frac{T_{1} }{T_{2} }[/tex]

[tex]\frac{2.6}{5}[/tex] = [tex]\frac{283}{T}[/tex]

T = 544.23 K = 271.23 degree celcius

So, Tyre have to get the temperature 271.23 degree celcius for this to happen.

1s22s22p63s23p64s23d104p65s24d105p5

What is the name of the element?

Answers

Final answer:

The element with the electronic configuration 1s²2s²2p⁶3s²3p⁶4s²3d¹104p⁶5s²4d¹105p⁵ is Iodine (I).

Explanation:

The electronic configuration provided, 1s²2s²2p⁶3s²3p⁶4s²3d¹104p⁶5s²4d¹105p⁵, corresponds to the element Iodine (I). Iodine is a member of the halogen group, situated in group 17 of the periodic table. This halogen is commonly known for its use in antiseptics and as a necessary component of the human diet.

Group 7A (or VIIA) of the periodic table are the halogens: fluorine (F), chlorine (Cl), bromine (Br), iodine (I), and astatine (At). The name "halogen" means "salt former", derived from the Greek words halo- ("salt") and -gen ("formation").

Final answer:

The electron configuration corresponds to the element iodine (I), which is located in group 17 of the periodic table and has an atomic number of 53.

Explanation:

The electron configuration given in the question corresponds to an element's distribution of electrons across different orbitals. The full configuration is:

1s²2s²2p⁶3s²3p⁶4s²3d¹4p⁶5s²4d¹5p⁵

When assessing this electronic arrangement, we look at the last energy levels or shells being filled, which are 5s, 4d, and 5p. By looking at the periodic table, we can match this configuration to an element.

Considering that the 5p sublevel contains 5 electrons, we look at the p-block of the periodic table, in the fifth period (row). Counting in from the left of the p-block (taking into account the s-block and d-block orbitals which come before in the period), we find that the element iodine (I) matches this electronic configuration.

Therefore, the last electron enters the 5p subshell, and with 5 electrons in 5p subshell, confirms that the element is iodine (I).

Iodine is located in group 17, which comprises the halogens, and it has an atomic number of 53. Thus, the name of the element with the given electron configuration is iodine.

The process by which a solid changes to a liquid is

Answers

a process called melting.

Answer:

the process is melting

Explanation:

got it right on edge

What is a atom of chemistry

Answers

Answer:

Atom is the smallest particle of matter.

Elements are made up of same atoms.

Atom consist of electron, proton and neutron.

Explanation:

Atom was first discovered by John Dalton.

word "Atom" came from Greek word, that means something that could not split. he explained that atom is indivisible particle.

In the end of 18th century J.J. Thomson put forward a new concept of atom. he said that atom have negative charged particles called electrons but overall atom is neutral.

In 1909 Rutherford with his students discovered positive charged particles and nucleus and said that it is in the center of atom.

He explain a model of atom and said that electrons revolve around a hard core in the center called nucleus.

In 1913 Niels Bohr  explains the atomic spectra and put forward the concept of shells and sub-shells.

So overall Structure of an Atom is

consist of Neutrons in nucleus+ve charged protons in nucleusA -vely charged electrons revolving around the nucleusthe electron revolve in shells i.e. K, L, M, and N Each shell divide in sub-Shell such as s, p,d and f.

Atom has a specific atomic mass and atomic number

Atomic number = number of protons or electron

Atomic mass = number of protons +  number of neutrons in nucleus.

C12H22O11(s) + H2SO4(aq) + 1/2 O2(g) → _C(s) + CO2(g) + 12H2O(g) + SO2(g)
What law is demonstrated by this chemical reaction shown by the equation above, when this equation is balanced?

Answers

Answer:

Law of Conservation of Mass

Explanation:

tells us that matter is neither created nor destroyed during any chemical reaction

A chemical reaction is a process that leads to the chemical transformation of one set of chemical substances to another.

A balanced chemical equation occurs when the number of atoms involved in the reactant side is equal to the number of atoms on the product side.

As the reaction,

[tex]C_{12}H_{22}O_{11}(s) + H_2SO_4(aq) + \frac{1}{2}O_2(g) --> CO_2(g) + 12H_2O(g) + SO_2(g)[/tex]

As the reaction, it states the law of conservation of mass

Law state that the mass of the elements remains the same during the course of a reaction.

For more information, refer to the link:-

https://brainly.com/question/2817451

convert 3.0x1p^24 molecules H2O=________ mol H2O​

Answers

Answer:

3.0x1p^24 molecules H2O=____5____ mol H2O​

Explanation:

We une the number of Avogadro:

6, 02 x 10 ^23 molecules------- 1 mol

3, 01 x 10 ^24 molecules----x=

x= (3, 01 x 10 ^24 moleculesx 1 mol)/6, 02 x 10 ^23 molecules)

x= 5 mol

A radar gun records the speed of a projectile to be 120.090 m/s. How many significant digits are present in this measurement?

Answers

The measurement of 120.090 m/s recorded by the radar gun contains six significant digits, with all digits being significant.

In physics, understanding the concept of significant figures is essential for accurately reporting the measurements we make. The speed of a projectile recorded by a radar gun as 120.090 m/s contains six significant digits. This is because all non-zero numbers are always significant, any zeros between non-zero numbers are significant, and any trailing zeros to the right of the decimal point are also significant. Therefore, each digit in the measurement, 1, 2, 0, 0, 9 and 0, are all significant, giving us a total of six significant figures in the speed of the projectile.

The number of significant digits in a measurement is determined by the certainty of the measuring device.

In the given speed measurement of 120.090 m/s, there are five significant digits because each non-zero digit is significant, the trailing zero after the decimal point counts, and any zero between significant digits is also counted.

In this case, the significant digits are 120.090.

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