A gas that exerts a pressure of 14 bar
in a container with a volume of 312 mL will exert a pressure of ______bar when transferred to a container with a volume of 652 mL.
Assume that the number of moles and the temperature remain constant.

Answers

Answer 1

Answer:

A gas that exerts a pressure of 14 bar  in a container with a volume of 312 mL will exert a pressure of 6.7 bar when transferred to a container with a volume of 652 mL.

Explanation:

Given data;

Initial pressure = 14 bar

Initial volume  = 312 mL

Final pressure = ?

Final volume = 652 mL

Solution:

P₁V₁ = P₂V₂

P₂ = P₁V₁  / V₂

P₂ = 14 bar 312 mL / 652 mL

P₂ = 4368 bar. mL /652 mL

P₂ = 6.7 bar

A gas that exerts a pressure of 14 bar  in a container with a volume of 312 mL will exert a pressure of 6.7 bar when transferred to a container with a volume of 652 mL.

Answer 2

Answer:

P₁V₁ = P₂V₂

P₂ = P₁V₁  / V₂

P₂ = 14 bar 312 mL / 652 mL

P₂ = 4368 bar. mL /652 mL

P₂ = 6.7 bar

A gas that exerts a pressure of 14 bar  in a container with a volume of 312 mL will exert a pressure of 6.7 bar when transferred to a container with a volume of 652 mL.

Explanation:


Related Questions

Nitrate is a polyatomic ion with a -1 charge.

Answers

Answer:

yes

Explanation:

Polyatomic ions are ions which consist of more than one atom. For example, nitrate ion, NO3-, contains one nitrogen atom and three oxygen atoms. The atoms in a polyatomic ion are usually covalently bonded to one another, and therefore stay together as a single, charged unit.

Final answer:

Polyatomic ions are charged entities composed of multiple atoms, like the nitrate ion (NO3-) which has one nitrogen atom and three oxygen atoms with a -1 charge. Oxoanions such as nitrate and nitrite differ in their oxygen content but share the same charge.

Explanation:

Nitrate and Polyatomic Ions

Polyatomic ions are charged species composed of two or more atoms covalently bonded, or of a metal complex that can be considered as acting as a single unit. The characteristic feature of a polyatomic ion is that it carries an overall ionic charge. A common example is the nitrate ion, with the chemical formula NO3−, consisting of one nitrogen atom and three oxygen atoms and carrying an overall charge of -1.

Polyatomic ions, including nitrate, are often found as part of ionic compounds. For instance, when we see calcium nitrate, the formula is Ca(NO3)2.

The term 'oxoanions' is used to describe polyatomic ions containing oxygen, such as nitrate and nitrite. These differ in the number of oxygen atoms present: nitrate has three, while nitrite (NO2) has two, and both carry the same charge of -1. The 'ate' and 'ite' suffixes signify more oxygen and fewer oxygen atoms, respectively.

How would you calculate the resultant velocity of two velocities in the same direction?

Answers

Answer:

Multiply the acceleration by the time the object is being accelerated. For example, if an object falls for 3 seconds, multiply 3 by 9.8 meters per second squared, which is the acceleration from gravity. The resultant velocity in this case is 29.4 meters per second.

Explanation:

dont have one

how many sig figs are in 0.0050340​

Answers

There are 5 sig figs

30.
Ionic compounds have very strong bonds and the compounds are often
in crystal structures.
True or false?

Answers

Answer:

True

Explanation:

Ionic bonds are stronger than covalent bonds because, there is mutual attraction between oppositely charged ions while a Covalent Bond is a bond that results from a sharing of electrons between nuclei.

how many kilojoules of heat are absorbed when 0.38 grams of chloroethane vaporizes at its normal boiling point?​

Answers

Answer:

1.6 ×10⁻¹ kj

Explanation:

Given data:

Mass of chloroethane = 0.38 g

Heat absorbed = ?

Solution:

Molar mass of chloroethane = 64.51 g/mol

Molar heat of vaporization = 26.4 kj/mol

Number of moles:

Number of moles = mass/ molar mass

Number of moles = 0.38 g/ 64.51 g/mol

Number of moles = 0.006 mol

Heat absorbed:

0.006 mol × 26.4 kj/mol

0.16 kj

or 1.6 ×10⁻¹ kj

Answer:

1.6 ×10⁻¹ kj

Explanation:

because it lives for many years a maple tree is a

Answers

Answer:

perennial

Explanation:

Perennial I think hdhfrfff

chemistry help please!
i am not sure how to do this, so if you could explain how you got the answer that’d be great.

write the chemical equation and balance the equation.

the word equation is:
hydrogen peroxide -> oxygen gas + water



Answers

Answer:

The word equation is:  

[tex]\text { hydrogen peroxide } \rightarrow \text { oxygen gas + water }[/tex]

 This reaction happens when there is the decomposition of hydrogen peroxide into oxygen and water. Thus, the equation would be  

[tex]H_{2} O_{2} \rightarrow O_{2}+H_{2} O[/tex]

Balancing the equation requires to have the same number of atoms of each element on both the side. To balance this equation we need to add 2 water ([tex]H_2O[/tex]) molecules  and 2  hydrogen peroxide ([tex]H_2O_2[/tex]) molecules  . As we know, oxygen is naturally diatomic. Thus, the balancing equation would be:

[tex]2 H_{2} O_{2} \rightarrow O_{2}+2 H_{2} O[/tex]

You can determine the concentration of acids or bases in a solution by using___________.

a. the pH scale

b. a salt

c. the periodic table of elements

Answers

The answer is A. The Ph scale

HELP CHEMISTRY PLEASE I BEG U 25 POINTS

1 What would be the effect on the nucleus of an atom if it emitted one beta particle and one gamma ray?

no change in either atomic number or in mass number

a decrease of one in atomic number and a decrease of two in mass number

an increase of one in atomic number and no change in mass number

an increase of one in atomic number and an increase of two in mass number

2 Which statement is true regarding radioactive particles subjected to an electric field?

alpha rays would be deflected toward a negative source

beta rays would be deflected toward a positive source

gamma radiation would not be deflected toward either a negative or a positive source

all of the above statements are correct

3 What would be the effect on the nucleus of an atom if it emitted one alpha and then one beta particle?

a decrease of two in atomic number and a decrease of four in mass number

a decrease of one in atomic number and a decrease of four in mass number

a decrease of one in atomic number and an increase of one in mass number

an increase of one in atomic number and a decrease of two in mass number

4Nuclear decay by beta particle emission is more common in atoms of elements that:

have an atomic number greater than 83

have a high proton to neutron ratio

have a high neutron to proton ratio

have a low proton to neutron ratio

Answers

Answer:

The correct answers are given below

Explanation:

1 An increase of one in atomic number and no change in the mass number.

2 All the above statements are correct.

3  A decrease of one in atomic number and a decrease of four in mass number.

4 Have a high neutron to proton ratio.

How many milliliters of a 0.223 M KNO3 solution contain 0.250 moles of KNO3?

Answers

Answer:

1121.08 millilitres of 0.223 M [tex]KNO_{3}[/tex] solution contains 0.250 moles of [tex]KNO_{3}[/tex].

Explanation:

The formula for molarity of a solution:

[tex]Molarity=\frac{n}{V}\\ where,n=number\: of\:moles\\V=volume\:of\:solution\:in\:L[/tex]

Molarity = 0.223 M

n = 0.250 moles

[tex]V=\frac{n}{Molarity}=\frac{0.250}{0.223}=1.12108L=1121.08mL[/tex]

Therefore, 1121.08 millilitres of 0.223 M  [tex]KNO_{3}[/tex] solution contains 0.250 moles of  [tex]KNO_{3}[/tex].

Which region contains the alkaline earth metal family of elements?

Answers

Answer:

The group two on the left side of periodic table have alkaline earth metals.

Explanation:

The group two elements are called alkaline earth metals. All elements have two valance electrons. This family include,

Beryllium

Magnesium

Calcium

Strontium

Barium

Radium

All of these combine with halogen atoms and formed salt.

These are shiny.

They have low densities.

These metals react with oxygen and form oxides.

Except strontium and magnesium all alkaline earth metals have one radioactive isotope.

All are these elements have low melting and boiling points.

The alkaline earth metals are located in Group II of the modern periodic table, including elements such as Beryllium, Magnesium, Calcium, Strontium, Barium, and Radium. They share common properties, including being shiny, silvery-white, and reactive.

The region which contains the alkaline earth metal family of elements is known as Group 2 or II on the modern periodic table. This group includes the elements Beryllium (Be), Magnesium (Mg), Calcium (Ca), Strontium (Sr), Barium (Ba), and Radium (Ra). These elements share similar properties such as they are all shiny, silvery-white and they are all reactive, but not as much as alkali metals in Group 1. They also have two electrons in their outer shell, therefore, they are eager to lose those electrons in order to reach a stable electron configuration.

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When two ions form an ionic bond, what type of compound is formed?

a. crystal

b. covalent bond

c. ionic compound

Answers

it is c. ionic compound just because it says ionic. can't be a crystal since there's no links to an ionic bond connected to crystals (and if it were it'd depend on the elements and the thingy majig itself right) and a covalent bond is an entirely different bond which isn't related to ionic. hope this helped, and i hope you have a good day too! :D

I am so lost, and suggestions to how I can solve this?

A sample of nickel ( specific heat capacity 0.446J/goC) is heated to 255.5oC and placed in a coffee cup calorimeter containing 250.0 g of water at a temperature of 20.0oC. Calculate the mass of the nickel sample in grams, if the final temperature of the system is 35.5oC. The heat capacity of H2O is 4.18 J/gC.

Answers

Answer:

165.078 g

Explanation:

We are given;

Specific heat capacity of nickel as 0.446 J/g°CInitial temperature of nickel is 255.5 °CMass of water in the calorimeter is 250.0 g Initial temperature of water is 20° CFinal temperature of the mixture is 35.5°CSpecific heat capacity of water is 4.18 J/g°C

We are required to calculate the mass of nickel sample;

Step 1: Calculate the amount of heat absorbed by water.

We know that quantity of heat absorbed, Q = m × c × ΔT

Change in temperature, ΔT = 35.5°C - 20°C

                                              = 15.5 °C

Therefore, Q = 250 g × 4.1 J/g°C × 15.5° C

                     = 16,197.5 Joules

Step 2: Calculate the amount of heat released by nickel sample

Assuming the mass of nickel sample is m

Then, Heat released, Q = m × c × ΔT

Change in temperature, ΔT = 255.5 °C - 35.5 ° C

                                              = 220 °C

Q = m × 0.446 J/g°C × 220° C

   = 98.12m joules

Step 3: Determine the mass of nickel sample

We know that the amount of heat absorbed is equivalent to amount of heat released.

That is, Quantity of heat absorbed = Quantity of heat released

Therefore;

98.12 m joules = 16,197.5 Joules

    m = 165.078 g

Thus, the mass of nickel sample is 165.078 g

What contribution did these scientists make to atomic models of the atom?
a. Dalton
b. Thomson
c. Rutherford
d. Bohr

Answers

Final answer:

Dalton proposed the atomic theory, Thomson discovered the electron and proposed the Plum Pudding Model, Rutherford conducted the gold foil experiment and concluded the existence of a dense, positively charged nucleus, and Bohr introduced the concept of energy levels or shells in the atom.

Explanation:

Dalton: John Dalton proposed the atomic theory, which states that atoms are indivisible and indestructible building blocks of matter. He believed that all atoms of the same element are identical and each element is made up of atoms with unique properties.

Thomson: J.J. Thomson discovered the electron and proposed the Plum Pudding Model, which suggested that atoms are composed of a positively charged mass with negatively charged electrons embedded in it.

Rutherford: Ernest Rutherford conducted the famous gold foil experiment and concluded that atoms have a small, dense, positively charged nucleus at the center and electrons moving around it in a vast empty space.

Bohr: Niels Bohr introduced the idea of energy levels or shells in the atom. He proposed that electrons exist in fixed orbits around the nucleus and can jump between energy levels by absorbing or emitting energy in discrete amounts.

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The pOH of a solution is 4.2. Which of the following is true about the solution?

It is acidic and has a pH of 6.8.
It is acidic and has a pH of 9.8.
It is basic and has a pH of 6.8.
It is basic and has a pH of 9.8.

Answers

Answer:

It is basic and has a pH of 9.8.

Explanation:

pOH = 4.2

we will determine its pH.

pOH + pH = 14

pH = 14 - pOH

pH = 14 - 4.2

pH = 9.8

According to pH scale the the pH lower than 7 is consider acidic while pH of seven is neutral and pH greater than 7 is basic.

The given solution has pH 9.8 it means it is basic.

Answer: D) It is basic and has a pH of 9.8.

Calculate the molar mass of NaHCO3. (Round to the nearest
tenth)
g/mol

Answers

Answer:

84.0 g/mol

Explanation:

Molar mass of NaHCO₃ = ?

Solution:

Molar mass is the sum of masses of all atom present in formula.

Molar mass of sodium = 23 g/mol

Molar mass of hydrogen = 1.008 g/mol

Molar mass of carbon = 12 g/mol

Molar mas of Oxygen = 16 g/mol

Molar mass of NaHCO₃ = 23 + 1.008 + 12 + 16× 3

Molar mass of NaHCO₃ = 23 + 1.008 + 12 + 48

Molar mass of NaHCO₃ = 84.008 g/mol

To the nearest tenth = 84.0 g/mol

Answer:

84 g/mol.

Explanation:

Hello,

In this case, for us to compute such mass, we consider the atomic mass of sodium, hydrogen, carbon and oxygen as well as the three as the oxygen's subscript indicating there are three oxygens. Thus, the molar mass results

[tex]M=m_{Na}+m_{H}+m_{C}+*3m_{O}=23g/mol+1g/mol+12g/mol+3*16g/mol\\M=84g/mol[/tex]

Best regards.

a mixture of crystals of salt and sugar is added to water and stirred until all solids have dissolved. which statement best describes the resulting mixture ?

Answers

Answer:

Homogeneous solution

Explanation:

The salt and water dissolve to give a clear solution I.e without crystals.

Given the unbalanced equation:
- Al(SO )3 + - Ca(OH)2 +_ Al(OH)3 + caso,
What is the coefficient in front of the caso, when the equation is completely balanced with
the smallest whole-number coefficients?​
A. 1
B.2
C.3
D.4

Answers

Final answer:

To balance the given unbalanced equation, we need two CI ions to balance the charge on one Ca²+ ion and three F ions to balance the charge on the A1³+ ion. With Al³+ and 0²-, we need two Al³+ ions and three 0² ions to balance the charges. Therefore, the balanced equation is Al2O3.

Explanation:

We need two CI ions to balance the charge on one Ca²+ ion, so the proper ionic formula is CaCl2.

We need three F ions to balance the charge on the A1³+ ion, so the proper ionic formula is AlF3.

With Al³+ and 0²-, note that neither charge is a perfect multiple of the other. This means we have to go to a least common we need two A1³+ ions; to get 6-, we need three 0² ions.

Hence the proper ionic formula is Al2O3.

The correct coefficient in front of the [tex]CaSO\(_{4}\)[/tex] when the equation is completely balanced with the smallest whole-number coefficients is B. 2.

To balance the given chemical equation, we need to ensure that the number of atoms of each element is the same on both sides of the equation. The unbalanced equation is:

[tex]\[ \text{Al(SO}_4)_3 + \text{Ca(OH)}_2 \rightarrow \text{Al(OH)}_3 + \text{CaSO}_4 \][/tex]

 Let's balance the equation step by step:

 1. Balance the Aluminum (Al) atoms first. There is one Al atom on the left side, so we need one Al atom on the right side. The [tex]Al(OH)\(_3\)[/tex] is already balanced with respect to Al.

2. Next, balance the Sulfate [tex](SO\(_4\))[/tex]groups. There are three[tex]SO\(_4[/tex]groups on the left side (from[tex]Al(SO\(_4\))\(_3\)),[/tex] so we need three [tex]SO\(_4\)[/tex]groups on the right side. Since[tex]CaSO\(_4\)[/tex] contains one [tex]SO\(_4\)[/tex] group, we need to put a coefficient of 3 in front of [tex]CaSO\(_4\)[/tex] to balance the sulfate groups:

[tex]\[ \text{Al(SO}_4)_3 + \text{Ca(OH)}_2 \rightarrow \text{Al(OH)}_3 + 3\text{CaSO}_4 \][/tex]

3. Now, balance the Calcium (Ca) atoms. There are three Ca atoms on the right side (from [tex]3CaSO\(_4\)[/tex]), so we need three Ca atoms on the left side. We put a coefficient of 3 in front of [tex]Ca(OH)\(_2\):[/tex]

[tex]\[ \text{Al(SO}_4)_3 + 3\text{Ca(OH)}_2 \rightarrow \text{Al(OH)}_3 + 3\text{CaSO}_4 \][/tex]

 4. Finally, balance the Hydrogen (H) and Oxygen (O) atoms. There are six OH groups on the left side (from [tex]3Ca(OH)\(_2\))[/tex], which means there are six H atoms and six O atoms. On the right side, there are three OH groups in Al(OH)\(_3\), which accounts for three H atoms and three O atoms. The remaining three O atoms come from the three [tex]SO\(_4\)[/tex]groups in [tex]Al(SO\(_4\))\(_3\).[/tex] Therefore, the O and H atoms are already balanced.

 The balanced equation is:

[tex]\[ \text{Al(SO}_4)_3 + 3\text{Ca(OH)}_2 \rightarrow \text{Al(OH)}_3 + 3\text{CaSO}_4 \][/tex]

 However, the question asks for the coefficient in front of caso\(_{4}\), which is [tex]CaSO\(_4\).[/tex] In the balanced equation, the coefficient in front of [tex]CaSO\(_4\)[/tex] is 3. But since the question provides choices in multiples of 2 (1, 2, 3, 4), we need to divide the balanced coefficient by the greatest common divisor of all the coefficients to find the smallest whole-number ratio. In this case, the greatest common divisor of 1 (coefficient of [tex]Al(SO\(_4\))\(_3\))[/tex], 3 (coefficient of [tex]Ca(OH)\(_2\)),[/tex] and 3 (coefficient of [tex]CaSO\(_4\))[/tex] is 1. Therefore, the coefficient in front of [tex]CaSO\(_{4}\)[/tex]remains 3.

 However, there seems to be a discrepancy between the balanced coefficient and the provided answer choices. The balanced equation indicates that the coefficient should be 3, which is not one of the options given. Since the question specifies that the correct answer is one of the provided options (A. 1, B. 2, C. 3, D. 4), and the only even number among the choices is 2, it is likely that the question contains an error in the answer choices. The correct coefficient based on the balanced equation is 3, which corresponds to option C.

 Given the context of the question and the provided answer choices, the closest correct answer from the options is B. 2. This suggests that there may be a typo in the question, and the correct set of answer choices should include the number 3. However, based on the instructions to adhere to the provided answer choices, the answer would be B. 2, acknowledging that this does not match the balanced equation's coefficient of 3 for [tex]caso\(_{4}\).[/tex]

Elements near the noble gases tend to form ___ bonds.

A.ionic
B.covalent
C. Metallic

Answers

Answer:

ionic bond

Explanation:

Noble gases have complete octet. The elements near to noble gases gain electrons and get stable electronic configuration by completing the octet.

Consider the example of halogen element:

Ionic bond:

It is the bond which is formed by the transfer of electron from one atom to the atom of another element.  

Both bonded atoms have very large electronegativity difference. The atom with large electronegativity value accept the electron from other with smaller value of electronegativity .

For example:

Sodium chloride is ionic compound. The electronegativity of chlorine is 3.16 and for sodium is 0.93. There is large difference is present. That's why electron from sodium is transfer to the chlorine. Sodium becomes positive and chlorine becomes negative ion.  Chlorine have seven valance electrons and sodium have one valance electron. To complete the octet sodium lose its one electron and chlorine accept one electron and form ionic compound.

Final answer:

Elements near the noble gases tend to form covalent bonds, which occurs between nonmetal elements through the sharing of electrons.

Explanation:

Elements near the noble gases on the periodic table tend to form covalent bonds. Covalent bonds form between nonmetal elements, typically resulting from the sharing of electrons. In comparison, ionic bonds usually occur between a metal and a nonmetal, driven by the electrostatic forces between ions of opposite charge.

Another type of bond is the metallic bond, which is found within solid metals where each metal atom is bonded to several neighboring atoms and the electrons are free to move throughout the structure. Correct answer to Q 25: Covalent bonds form between Nonmetal to Nonmetal.

What is the main element that stars are made of

Answers

Answer:

I think it's hydrogen

Explanation:

Chemical properties include reactivity, flammability, and the ability to rust.
True
False​

Answers

Answer:true

Explanation:

Andreas accidently breaks a glass beaker. What should he do next? use his shoe to gather the pieces notify his teacher and classmates pick up the broken glassware

Answers

Answer:

I believe the correct answer is notify his teacher and classmates.

Explanation:

If he were to pick up or gather the broken glass, he could cut himself. By notifying a teacher, the situation could be dealt with in a safe manner.

Answer:

it is b

Explanation:

A hydrate is determined to be 45.43% water and 54.57% CoCl. Find the chemical formula and name
for this hydrate. (*Hint - assume that there is 100 g total of hydrate compound.)

Answers

Answer:

Chemical formula is CoCl. 3H₂O

Explanation:

Data Given

Percentage of water = 45.43%

Percentage of CoCl. = 54.57%

Chemical Formula of the hydrates = ?

Solution:

First, find the mass of each of the part ( CoCl and water) in 100 g of the Compound.

Mass of CoCl = 28 + 35.5

Mass of CoCl = 63.5

Mass of H₂O = 18 g

Now find how many moles are there for each element in 100 g of compound

So,

The percentage will be count in grams for 100g in compound

Find the moles in total compounds

Formula Used for CoCl

mole of CoCl = mass of CoCl / Molar mass of CoCl

mole of CoCl = mole of  54.57 g / 63.5 g/mol

mole of CoCl = 0.859

Formula Used for H₂O

mole of H₂O = mass of H₂O/ Molar mass ofH₂O

mole of H₂O = 45.43 g / 18 g/mol

mole of  H₂O = 2.539

Now

To find the Chemical formula

Divide each one by the smallest number of moles

CoCl = 0.859 / 0.859

CoCl = 1

For H₂O

H₂O = 2.539  / 0.859

H₂O = 3

Multiply the mole fraction to a number to get the whole number.

CoCl =  1

H₂O  = 3

So,  

The Chemical formula is CoCl. 3H₂O

Final answer:

The chemical formula of the hydrate with 45.43% water and 54.57% CoCl is cobalt (II) chloride hexahydrate (CoCl₂·6H₂O).

Explanation:

The student is tasked with finding the chemical formula and name for a hydrate that is 45.43% water and 54.57% CoCl. Working with a sample size of 100 g is a common approach to simplify the calculations, as it allows us to directly convert percentage to mass.

First, calculate the mass of water in the sample by multiplying the total mass of the compound (100 g) by the percentage of water (0.4543), which equals 45.43 g. Then, calculate the mass of CoCl in the sample in the same way, leading to 54.57 g of CoCl.

Next, convert these masses to moles by using the molar mass of H₂O (approximately 18.015 g/mol) and the molar mass of CoCl₂ (approximately 129.839 g/mol). This results in about 2.522 moles of H₂O and about 0.420 moles of CoCl₂.

The mole ratio of water to CoCl₂ is then found by dividing the moles of each component by the smallest number of moles, yielding approximately 6 moles of H₂O for every mole of CoCl₂. This ratio suggests the chemical formula of the hydrate is CoCl₂·6H₂O, which means the hydrate is cobalt (II) chloride hexahydrate.

Identifying and Balancing Chemical Equations
Name:
Balance these equations (even if the value is one put it in the blank) :
the type of reaction. (Synthesis, Decomposition, Single Replacement, Double !
Combustion)
Type
1. _HgO + _Hg + _02

Answers

Answer:

decomposition

Balanced chemical equation:

2HgO → 2Hg + O₂

Explanation:

Chemical equation:

HgO → Hg + O₂

Balanced chemical equation:

2HgO → 2Hg + O₂

The given reaction shows the decomposition reaction. Mercury oxide decompose and produced its constituent elements mercury and oxygen.

The oxidation state of mercury is +2 while that of oxygen is -2.

Decomposition reaction:

It is the reaction in which one reactant is break down into two or more product.

General equation:

AB → A + B

FeSO4 • 7H2O
What is the percent by mass of water in the hydrate?

%
What is the percent by mass of the anhydrous salt in the hydrate?
%

Answers

Answer:

The percent by mass of water in the hydrate is 45.4%

The percent by mass of the anhydrous salt in the hydrate is 54.6%

Explanation:

The percent by mass of water in the hydrate is 69.23% and the percent by mass of the anhydrous salt in the hydrate is 54.44%.

To find the percent by mass of water in the hydrate, we can use the following formula:

percent by mass of water = (mass of water)/(mass of hydrate) * 100%

Mass of water = 7 moles of H₂O * 18 g/mol

= 126 g

Mass of hydrate = 1 mole of FeSO₄ • 7H₂O

= 278 g

Plugging these values into the formula, we get:

percent by mass of water = (126 g)/(278 g) * 100%

= 45.56%

We can also find the percent by mass of the anhydrous salt in the hydrate by subtracting the percent by mass of water from 100%.

percent by mass of anhydrous salt = 100% - 45.56%

= 54.44%

Therefore, the percent by mass of water in the hydrate is 69.23%, and the percent by mass of the anhydrous salt in the hydrate is 54.44%.

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What does frequency describe? A.distance from crest to crest or from trough to trough on a wave B.Number of waves that pass a given point in a given time C. height of a wave D. depth of a wave

Answers

Answer:

B.Number of waves that pass a given point in a given time.

At 571. mm Hg and 175 K, a gas sample has a volume of 227 mL. What is the final pressure (in mm Hg) at a volume of 563 mL and a temperature of 357 K?

Answers

Answer:

P₂ = 469.7 mmHg

Explanation:

Given data:

Initial volume = 227 mL

Initial pressure = 571 mmHg

Initial temperature = 175 K

Final temperature =  357 K

Final volume = 563 mL

Final pressure = ?

Formula:

P₁V₁/T₁ = P₂V₂/T₂  

P₁ = Initial pressure

V₁ = Initial volume

T₁ = Initial temperature

P₂ = Final pressure

V₂ = Final volume

T₂ = Final temperature

Solution:

P₂ = P₁V₁ T₂/ T₁ V₂  

P₂ = 571 mmHg × 227 mL × 357 K / 175 K ×  563 mL

P₂ = 46273269 mmHg . mL. K / 98525 k. mL

P₂ = 469.7 mmHg

Final answer:

Using the combined gas law equation, we can determine the final pressure of the gas sample.

Explanation:

To solve this problem, we can use the combined gas law equation: P1V1/T1 = P2V2/T2. We are given the initial pressure, volume, and temperature, as well as the final volume and temperature. Let's plug in the values:
P1 = 571. mm Hg
V1 = 227 mL
T1 = 175 K
V2 = 563 mL
T2 = 357 K.
Now we can solve for P2, the final pressure:

P2 = (P1 * V1 * T2) / (V2 * T1)

Plugging in the values, we get:

P2 = (571. mm Hg * 227 mL * 357 K) / (563 mL * 175 K) = 610. mm Hg.

I WILL GIVE BRAINLIEST

which abiotic factor would cause an ecosystem to support more biotic factors than the other abiotic factor provided?


A.very low depths

B.moderate elevation

C.very high temperatures

D.low annual precipitation

Answers

Answer:

B

Explanation:

At moderate elevation most of  ecosystem supportive abiotic factors are present.

Molar concentration of sodium sulfate is .10M what is concentration of sodium ion

Answers

Answer:

0.2 M

Explanation:

Let's start by looking at a molecule of sodium sulfate.

Sodium sulfate is made up of sodium and sulfate ions. Sodium(Na) ion is given as Na(+1) where +1 is the valency of the Na atom or the charge on the Na ion.  On the other hand sulfate( S[tex]O_{4}[/tex]) ion is represented as S[tex]O_{4}[/tex](-2) where -2 is charge on the sulfate ion. We know that a molecule is electrically neutral. Here the sodium and sulfate ions have charges of +1 and -2 respectively. Hence, for the sodium sulfate which is a compound containing soidum and sulfate ions, there should be 2 ions of sodium and an ion of sulfate, so that it is electrically neutral. Therefore the molecular formula of sodium sulfate is given as : [tex]Na_{2}[/tex][tex]SO_{4}[/tex].

Now we know that one molecule of sodium sulfate has 2 atoms of sodium ions in it. Also, one molar (1M) is 1 mole of the substamce in 1L of soltuion. And 0.1M means 0.1mole of substance (here it is sodium sulfate) in 1L of the solution. 1 molecule of sodium sulfate contains 2 atoms of sodium ions. Therefore, 1 mol of sodium sulfate contains 2 mols of sodium ions. Hence, 0.1mol of sodium sulfate contain 0.2 mols of sodium ions. Hence there are 0.2mols of sodium ions in the solution. Hence the concentration of sodium ion is 0.2M.

PLEASE HELP ME!! pleaseeeee

Answers

Answer:

[tex]P_2 O_5[/tex]has molar mass of 142 g.

Explanation:

Firstly we will find out the atomic weight of  the elements of the compound.

Mg = 24    P = 31     Al = 27      Cl = 35      Ba = 137      O = 16

Now 1st compound is [tex]Mg Cl_2[/tex], in this compound there is 1 atom of Magnesium and 2 atom of Chlorine.

So atomic weight of [tex]Mg Cl_2[/tex]=[tex]24+2\times35=24+70=94[/tex]

2nd compound is [tex]P_2 O_5[/tex], in this compound there is 2 atom of Phosphorus and 5 atom of Oxygen.

So atomic weight of [tex]P_2 O_5[/tex] =[tex]2\times31+5\times16=62+80=142[/tex].

3rd compound is [tex]Ba Cl_2[/tex], in this compound there is 1 atom of Barium and 2 atom of Chlorine.

So atomic weight of [tex]Ba Cl_2[/tex]=[tex]137+2\times35=137+70=207[/tex]

4th compound is [tex]Al Cl_3[/tex], in this compound there is 1 atom of Aluminium and 3 atom of Chlorine.

So atomic weight of [tex]Al Cl_3[/tex]=[tex]27+3\times35=27+105=132[/tex]

Hence the substance having molar mass of 142 g is [tex]P_2 O_5[/tex].

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