An enthusiastic car owner checks his tire pressure religiously and makes note that his tire pressure is 220 kPa in 80 degrees Fahrenheit (26.7 degrees Celsius). A strong cold front comes in and later in the week the temperature has dropped to 36 degrees Fahrenheit (2.2 degrees celsius). How can the car owner use gas laws to calculate the new tire pressure (in kPA units)?

Answers

Answer 1

Answer:

202 KPa

Explanation:

Step 1:

Data obtained from the question.

Initial Pressure (P1) = 220 kPa

Initial temperature (T1) = 26.7°C

Final temperature (T2) = 2.2°C

Final pressure (P2) =?

Step 2:

Conversion of the Celsius temperature to Kelvin temperature.

Temperature (Kelvin) = temperature (celsius) + 273

T1 = 26.7°C + 273 = 299.7 K

T2 = 2.2°C = 2.2°C + 273 = 275.2 K

Step 3:

Determination of the new pressure.

The new pressure of the tire can be obtained as follow:

P1/T1 = P2/T2

220/299.7 = P2/275.2

Cross multiply to express in linear form

299.7 x P2 = 220 x 275.2

Divide both side by 299.7

P2 = (220 x 275.2)/299.7

P2 = 202 KPa

Therefore, the new pressure of the tire is 202 KPa

Answer 2

When the temperature drops to 2.2 degrees Celsius, the tire pressure will decrease to approximately 202.1 kPa.

We can use the combined gas law which is derived from the ideal gas law. The combined gas law relates pressure, volume, and temperature without needing to know the quantity of gas, and is expressed as (P₁/T₁) = (P₂/T₂), where P₁ and T₁ are the initial pressure and temperature, and P₂ and T₂ are the final pressure and temperature.

To do so, we first convert temperatures to Kelvin by adding 273.15. Then we rearrange the formula to solve for P₂:

P₂ = P₁ x (T₂/T₁)P₂ = 220 kPa x (275.35 K / 299.85 K)P₂ = 202.1 kPa

Therefore, the tire pressure will decrease to approximately 202.1 kPa.


Related Questions

16.4 mL of 0.135 M NaOH is used to neutralize 46.9 mL of HCl. The concentration of the HCl solution is ____ M (3 decimal places).

Answers

The concentration of the HCl solution is 0.047 M.

Explanation:

Data given about acid and base:

volume of acid Vacid = 46.9 ml

molarity of acid =?

volume of the base (NaOH) = 16.4 ml

molarity of the base = 0.135 M

To know the concentration of the acid in this reaction, the formula used in titration  is used. It is

Macid X Vacid = Mbase X Vbase

the formula is rewritten as:

Macid = [tex]\frac{Mbase X Vbase}{Vacid}[/tex]

putting the values in the equation:

Macid = [tex]\frac{0.135 X 16.4}{46.9}[/tex]

          = 0.047 M

the concentration of the acid i.e HCl in the solution is of 0.047 M.

Generators need a source of energy to produce electricity. Which form of energy is a nonrenewable source of energy?
A.
hydro (water) energy
B.
geothermal energy
C.
fossil fuel
D.
wind energy

Answers

Answer:

Explanation:

Fossil fuel is nonrenewable, whereas hydro, wind, solar, and wave power are generally ... depletes its fuel stock but at a relatively slow rate, and geothermal energy (Williamson, ... Future primary energy sources (e.g. nuclear, coal and solar) are primarily ... b. Distributed peak electrical generation, •. c. Distributed electricity ...

Answer: is C fossil fuel

If a sample of sodium chloride with a mass of
25.0 grams is placed into enough water to
make a 250-milliliter solution, what is the
molarity of the solution? What is the molarity
if enough water is added to the original
solution to make the total volume 1.2 liters?

Answers

Original molarity was 1.7 moles of NaCl

Final molarity was 0.36 moles of NaCl

Given Information:

Original (concentrated) solution: 25 g NaCl in a 250 mL solution, solve for molarity

Final (diluted) solution: More water is added to make the new total volume 1.2 liters, solve for the new molarity

1. Solve for the molarity of the original (concentrated) solution.

Molarity (M) = moles of solute (mol) / liters of solution (L)

Convert the given information to the appropriate units before plugging in and solving for molarity.

Molarity (M) = 0.43 mol NaCl solute / 0.250 L solution = 1.7 M NaCl (original solution)

2. Solve for the molarity of the final (diluted) solution.

Remember that the amount of solute remains constant in a dilution problem; it is just the total volume of the solution that changes due to the addition of solvent.

Molarity (M) = 0.43 mol NaCl solute / 1.2 L solution

Molarity (M) of the final solution = 0.36 M NaCl

I hope this helped:))

What elements are in water

Answers

Water is made up of two hydrogen (H) atoms and one oxygen (O) atom. The formula for water is H2O.

What is this plzzzzzzzzzzzzzzzzzzz help!!!!

Answers

The lens below is an example of a convex lens. Once light enters the lens, the light converges or comes together.

Convex Lens: A convex lens is thicker in the middle and thinner at the edges. It bulges outward. When light passes through a convex lens, it refracts (bends) inward toward the center of the lens.

Converges: When light converges, it means that the rays of light come together at a single point after passing through the lens. This point is called the focal point.

So, when light enters a convex lens, it bends inward and focuses at a point, which is known as convergence. This convergence is a characteristic feature of convex lenses and is utilized in various optical instruments like cameras, microscopes, and telescopes to form clear and magnified images.

How many grams of water can be produced from 15 grams of hydrogen
2H2 + O2 —> 2H2O

Answers

Answer:

135g

Explanation:

The equation for the reaction is given below:

2H2 + O2 —> 2H2O

Next, let us calculate the mass of H2 that reacted and the mass of H2O produced from the balanced equation. This is illustrated below:

Molar Mass of H2 = 2x1 = 2g/mol

Mass of H2 from the balanced equation = 2 x 2 = 4g

Molar Mass of H2O = (2x1) + 16 = 2 + 16 = 18g/mol

Mass of H2O from the balanced equation = 2 x 18 = 36g

From the balanced equation,

4g of H2 produced 36g of H2O.

Therefore, 15g of H2 will produce = (15x36)/4 = 135g of H2O

From the calculations made above, 15g of H2 produced 135g of water (H2O)

Final answer:

15 grams of hydrogen can produce 133.80 grams of water when reacted with sufficient oxygen, following the stoichiometry of the balanced chemical equation 2H₂ + O₂ → 2H₂O.

Explanation:

The question asks how many grams of water can be produced from 15 grams of hydrogen according to the balanced chemical reaction: 2H₂(g) + O₂(g) → 2H₂O(l).

Using stoichiometry, we first determine the molar mass of hydrogen (H₂). Since there are 2 moles of hydrogen in the reaction and the molar mass of hydrogen (H) is approximately 1.01 g/mol, the molar mass of H₂ is 2.02 g/mol. This means 2 moles of H₂ weigh 4.04 g.

Therefore, 15 grams of hydrogen is equivalent to 15 g H₂ × (1 mol H₂ / 2.02 g H₂) = 7.426 moles of H₂.

According to the balanced equation, 2 moles of H₂ produce 2 moles of H₂O. So, 7.426 moles of H₂ would produce 7.426 moles of H₂O.

As the molar mass of H₂O is 18.02 g/mol, 7.426 moles of H₂O would weigh:

7.426 moles × 18.02 g/mol = 133.80 g of H₂O.

Thus, 15 grams of hydrogen can produce 133.80 grams of water, assuming there's sufficient oxygen available to react completely with the hydrogen.

If a reaction occurs, what will be the products of the unbalanced reaction
below?
Mg(s) + H2O(1) ►
The Activity Series of Elements
O A. MgO(s) + H2(9)
O B. Mg(OH)2(aq) + H2(g)
O c. MgHz(s) + O2(9)
O D. No reaction will occur.

Answers

it think it should be C

The products of the unbalanced reaction is Mg(s) + H₂O → Mg(OH)₂(aq) + H₂(g)

What is balanced equation?

An equation for a chemical reaction is said to be balanced if both the reactants and the products have the same number of atoms and total charge for each component of the reaction. In other words, both sides of the reaction have an equal balance of mass and charge.

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Urgent!!! Pls help me fill in this chart, topic is Acid Base Pairs. Will mark brainliest!!

Answers

i found this online and it seems just about right i hope this helps !

If one lightbulb burns out, but the other bulbs remain lit, the circuit must be a
a. Parallel Circuit
c. Triangle Circuit
b. Series Circuit
d. Circle Circuit

Answers

Answer:

Parallel Circuit

Explanation:

In a parallel circuit, there are multiple paths through which the current can flow, so the resistance of the overall circuit is lower than it would be if only one path was available.

1. Determine the final volume of a 1.5 M HCl solution prepared from 20.0 mL
of a 6.0 M HCl solution.

Answers

Explanation:

Because molarity is classified as moles of solute per liter of water, dilution of the water may result in a reduction of its concentration.

Therefore, because the amount of moles of solute has to be constant for dilution, you will use the molarity and volume of that same target solution to calculate how many moles of solute will be present in the sample of the stock solution that you dilute.

c  =   [tex]\frac{n}{v}[/tex]

⇒  n = c ⋅  V

[tex]n_{HCL}[/tex] =  0.250 M  ⋅  6.00 L  = 1.5 moles HCl

Now all you have to do is figure out what volume of   6.0 M  stock solution will contain  1.5  moles of hydrochloric acid

c = [tex]\frac{n}{v}[/tex]

V = [tex]\frac{n}{c}[/tex]

[tex]V_{Stock}[/tex] = [tex]\frac{1.5 moles}{6.0 \frac{moles}{L} }[/tex]   = 0.25 L

Expressed in milliliters, the answer will be

[tex]V_{Stock} = 250ML[/tex] →  rounded to two sig figs

A sample of dry gas weighing 2.1025 g is found to occupy 2.850 L at 22.0oC and 740.0 mm Hg. How many moles of gas are present?

Answers

0.11 moles of the gas are present in the sample of dry gas.

Explanation:

Data given:

mass of the gas  = 2.1025 grams

volume of the gas = 2.850 litres

temperature =  22 degrees (273.15+22) = 295.15 K

Pressure = 740 mm Hg or 0.973 atm

moles of the gas =?

R = 0.08206 atmL/Mole K

From the ideal gas law the number of moles can be calculated in the sample of dry gas. Number of moles will be determined by the pressure exerted, volume and temperature of the gas.

The formula:

PV = nRT

n = [tex]\frac{PV}{RT}[/tex]

putting the values in the above equation:

n = [tex]\frac{2.850 x 0.973}{0.08206 X 295.15}[/tex]

  = 0.11 moles

0.11 moles of the dry gas is present in the sample given.

When, a sample of dry gas weighing 2.1025 g is found to occupy 2.850 L at 22.0oC and 740.0 mm Hg. Then, total 0.0994 moles of gas are present.

First, we convert the temperature to Kelvin (T(K) = T(C) + 273.15) which is 22.0 + 273.15 = 295.15 K. Next, we convert pressure from mm Hg to atm by dividing by 760, as 1 atm = 760 mm Hg:

Pressure in atm = 740.0 mm Hg / 760 mm Hg/atm = 0.9737 atm.

Now we must solve for n, the number of moles of gas:

PV = nRT(0.9737 atm) x (2.850 L) = n x (0.0821 L atm / mol K) x (295.15 K) n = (0.9737 atm x 2.850 L) / (0.0821 L atm / mol K x 295.15 K) n = 0.0994 moles

The number of moles of gas present is therefore 0.0994 moles.

Which of these is most similar to the Aztec political system?
O
A. A country makes laws to ensure that religion has a small role in
politics.
O
B. A group of priests create all policies related to religion in a
country
O
C. A king decides to declare war on a neighboring country without
the input of any advisers.
O
D. Men, but not women, in a country are allowed to vote for their
preferred leaders.

Answers

B the app and then it was just a was the last time you got it to a friend or we

The Aztec political system most closely resembles a theocracy where religious leaders influence political decisions, making Option B the correct answer as it aligns with the role of priests in Aztec governance.

The Aztec political system was most similar to a theocratic form of government where religious leaders held significant power in the state's political structure. Comparing the options provided to the Aztec system:

Option A suggests an attempt to keep religion out of politics, which is not characteristic of the Aztec system.

Option B reflects a scenario where religious leaders create policies, aligning closely with the Aztec theocracy where priests and the emperor, who was also seen as a divine figure, had substantial influence.

Option C implies an autocratic rule by a king without advice, which is not similar to the Aztec system that had a ruling elite and a structure of nobility.

Option D discusses a gender-based voting system, which is unrelated to the theocratic nature of the Aztec political system.

Therefore, the correct answer is B, a group of priests create all policies related to religion in a country. This reflects the Aztec civilization where political decisions were often intertwined with religious beliefs and practices, and religious leaders played a central role in governance.

A student wants to classify some household chemicals by testing them using litmus paper. If she is going to classify these chemicals correctly, which statement will best help her determine if the chemicals are acids or bases? *

if blue litmus paper turns red, the substance has a pH below 7 and is an acid
if blue litmus paper turns red, the substance has a pH above 7 and is a base
if blue litmus paper turns red, the substance has a pH below 7 and is a base
if blue litmus paper turns red, the substance has a pH above 7 and is an acid

Answers

The statement which is correct about acids or base is if blue litmus paper turns red, the substance has a pH below 7 and is an acid.

What are acids and bases?

Acids are those substances which has a pH value below 7 and bases are those substances which has a pH value greater than 7.

Acids turn blue litmus paper to red color and Bases turn red litmus paper to blue color.

If blue litmus paper turns red, the substance has a pH below 7 and is an acid is true.If blue litmus paper turns red, the substance has a pH above 7 and is a base is incorrect.If blue litmus paper turns red, the substance has a pH below 7 and is a base is also incorrect.If blue litmus paper turns red, the substance has a pH above 7 and is an acid is also incorrect.

So correct statement is if blue litmus paper turns red, the substance has a pH below 7 and is an acid.

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What is the pressure in mm of Hg , of a gas mixture that contains 1g of H2, and 8.0 g of Ar in a 3.0 L container at 27°C.

Answers

Answer:

4362.4 mmHg

Explanation:

Step 1:

Determination of the number of mole of H2 and the number of mole of Ar.

Molar Mass of H2 = 2x1 = 2g/mol

Mass of H2 = 1g

Number of mole of H2 =?

Number of mole = Mass/Molar Mass

Number of mole of H2 = 1/2 = 0.5 mole

Molar Mass of Ar = 40g/mol

Mass of Ar = 8g

Number of mole of Ar =?

Number of mole = Mass/Molar Mass

Number of mole of Ar = 8/40 = 0.2 mole

Step 2:

Data obtained from the question.

Volume (V) of the mixture = 3L

Temperature (T) = 27°C = 27°C + 273 = 300K

Number of mole (n) of the mixture = 0.5 + 0.2 = 0.7 mole

Gas constant (R) = 0.082atm.L/Kmol

Pressure (P) of the mixture =?

Step 3:

Determination of the pressure of the mixture.

The pressure of the mixture can be obtained as follow:

PV = nRT

P x 3 = 0.7 x 0.082 x 300

Divide both side by 3

P = (0.7 x 0.082 x 300) /3

P = 5.74 atm

Step 4:

Conversion of the pressure obtained from atm to mmHg.

1 atm = 760mmHg

Therefore, 5.74 atm = 5.74 x 760 = 4362.4 mmHg

how many hydrogen atoms are in 35.0 g of hydrogen gas

Answers

There are approximately [tex]\(1.045 \times 10^{25}\)[/tex] hydrogen atoms in 35.0 g of hydrogen gas, calculated using its molar mass and Avogadro's number.

To find the number of hydrogen atoms in 35.0 g of hydrogen gas, we need to use the concept of molar mass and Avogadro's number.

1. Calculate the molar mass of hydrogen gas (H2):

  The molar mass of one mole of hydrogen gas (H2) is approximately 2.016 g/mol. This value is obtained by adding the atomic masses of two hydrogen atoms (each hydrogen atom has an atomic mass of approximately 1.008 g/mol).

2. Determine the number of moles of hydrogen gas in 35.0 g:

 [tex]\[ \text{Number of moles} = \frac{\text{Mass}}{\text{Molar mass}} = \frac{35.0 \, \text{g}}{2.016 \, \text{g/mol}} \][/tex]

3. Calculate the number of hydrogen atoms using Avogadro's number:

[tex]\[ \text{Number of atoms} = \text{Number of moles} \times \text{Avogadro's number} \][/tex]

Now, let's perform the calculations:

[tex]\[ \text{Number of moles} = \frac{35.0 \, \text{g}}{2.016 \, \text{g/mol}} \approx 17.36 \, \text{mol} \][/tex]

Using Avogadro's number [tex](\(6.022 \times 10^{23} \, \text{atoms/mol}\))[/tex], we have:

[tex]\[ \text{Number of atoms} = 17.36 \, \text{mol} \times (6.022 \times 10^{23} \, \text{atoms/mol}) \][/tex]

[tex]\[ \text{Number of atoms} \approx 1.045 \times 10^{25} \, \text{atoms} \][/tex]

Therefore, there are approximately [tex]\(1.045 \times 10^{25}\)[/tex] hydrogen atoms in 35.0 g of hydrogen gas.

Excluding plasma, which state of matter has the most kinetic energy?
es )

Answers

Answer:

Gas

Explanation:

Identifying Physical Properties of Matter
Sand is made of tiny pieces of rock that have been worn down by wind and water. Explain why the formation of sand is a physical change.

Answers

Answer:

When a rock gets hot it expands a little, and when it gets cold the rock contracts a little. If a rock is heated and cooled many times, cracks form and pieces of rock fall away. This type of physical weathering happens a lot in deserts, because it is very hot during the day but very cold at night.

Explanation:

Answer:

The particles of rock are rearranged.

The sizes and shapes of the rocks are changed.

The identities and total mass of the rocks remain the same.

A physical change is a change in some of the physical properties of matter, but not its identity.

Explanation:2020

WFH 8th Gr PhySci_20-21

How much heat (in Joules) is needed to raise the temperature of 257g of ethanol (cethanol=2.4 J/g°C) by 49.1°C?

Answers

Answer:

30284.88J

Explanation:

Given parameters:

Mass of ethanol  = 257g

Specific heat capacity of ethanol  = 2.4J/g°C

Temperature change  = 49.1°C

Unknown:

Amount of heat  = ?

Solution:

The quantity of heat need to cause a temperature change on a body is given as;

               H  =  m c Δt

where  m is the mass

             c is the specific heat capacity

            Δt  is the change in temperature

All units in proper dimensions. Input the parameters and solve for H;

       H  = 257 x 2.4 x 49.1

        H  = 30284.88J

How would the images change for a weak acid solution of the same concentration?

Answers

Answer: Strong acids disassociate more compared to weak acids. Since there are more ions, due to more disassociation, there are more ions for electrons to flow through.

Explanation:

Final answer:

Images would show an increase in both the dissociated ions (H+ ions and anions) and the undissociated weak acid molecules in a concentrated solution of weak acid. However, the proportion between them remains unchanged, indicating the properties of a weak acid.

Explanation:

In a solution of a weak acid, the acid does not fully dissociate, meaning not all of its molecules separate into hydrogen ions (H+) and anions. Instead, there is an equilibrium between the undissociated acid molecules and the ions. If the concentration of the weak acid solution was increased, the number of acid molecules, both dissociated and undissociated, would increase proportionally.

The images or visual representation of this would show an increase in both the dissociated ions (H+ ions and anions) and the undissociated weak acid molecules. However, the proportion between them would remain the same if no other factors are changed, showing the characteristics of a weak acid.

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3. Is the number of total molecules on the left side of a balanced equation always equal to the
number of total molecules on the right side of the equation? Explain your answer.

Answers

Final answer:

The number of total molecules on both sides of a balanced equation may differ. It is the number of each type of atom that must be equal, not the molecule count, to comply with the law of conservation of matter.

Explanation:

The number of total molecules on the left side of a balanced equation does not necessarily have to equal the number of total molecules on the right side. What must be equal are the numbers of each type of atom because chemical reactions follow the law of conservation of matter, meaning that matter is not created or destroyed in a chemical reaction. The balancing of equations ensures that there is the same number of each kind of atom on both sides of the equation, thereby obeying this fundamental law.

However, the actual molecule numbers can vary, as it's the ratio of molecules that must reflect the coefficients in the balanced equation. For instance, if we have 2 H2O (2 molecules of water) as reactants, this could lead to 2 H2 and 1 O2 (3 molecules in total) as products, with 4 hydrogen atoms and 2 oxygen atoms balanced on both sides.

Determine the mass of silver (Ag) produced in the reaction if 6.50X1023 atoms
of magnesium (Mg) react.
2 AgNO3 (s) + 1 Mg(s) 3 Mg(NO3)2 (s) + 2 Ag (s)


How many Grams??

Answers

Final answer:

To determine the mass of silver produced in the reaction, we need to calculate the moles of magnesium that react and use the mole ratio from the balanced equation. Given that 6.50x10^23 atoms of Mg react, the mass of silver produced is 232.87 grams.

Explanation:

To determine the mass of silver (Ag) produced, we need to calculate the number of moles of magnesium (Mg) that react and use the mole ratio from the balanced equation. First, convert the given number of atoms of Mg to moles by dividing by Avogadro's number. Then, use the balanced equation to relate the moles of Mg to the moles of Ag. Finally, convert the moles of Ag to grams by multiplying by the molar mass of Ag.

In this case, the mole ratio between Mg and Ag is 1:2. So, for every mole of Mg that reacts, 2 moles of Ag are produced. Given that 6.50x10^23 atoms of Mg react, we can calculate:

Moles of Mg = (6.50x1023 atoms / 6.022x10^23 atoms/mol) = 1.08 moles of Mg

Moles of Ag = 2 moles of Ag / 1 mole of Mg * 1.08 moles of Mg = 2.16 moles of Ag

Grams of Ag = Moles of Ag * Molar mass of Ag = (2.16 moles) * (107.87 g/mol) = 232.87 grams of Ag

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What type of reaction is Ca+HCl, CaCl+H2

Answers

Reaction of

Ca + HCl => CaCl + H2

Is a single displacement reaction.

Final answer:

The reaction between calcium (Ca) and hydrochloric acid (HCl) to form calcium chloride (CaCl2) and hydrogen gas (H2) is a single displacement reaction. It exemplifies a metal element reacting with an acidic compound to displace hydrogen and form a salt and hydrogen gas.

Explanation:

When calcium (Ca) reacts with hydrochloric acid (HCl), a single displacement reaction occurs where calcium replaces hydrogen in hydrochloric acid to form calcium chloride (CaCl2) and hydrogen gas (H2). This type of chemical reaction where an element reacts with a compound and displaces another element from it is known as a single displacement reaction or substitution reaction. In this case, the balanced reaction would be Ca + 2HCl → CaCl2 + H2.

Related Information:

The reaction of calcium carbonate (CaCO3) with hydrochloric acid to produce calcium chloride, carbon dioxide (CO2), and water (H2O) is an example of a double displacement reaction, also known as a metathesis reaction. Here, two compounds exchange ions to form two new compounds. This reaction is represented by 2 HCl(aq) + CaCO3(aq) → CaCl2(aq) + CO2(g) + H2O(l).

what would be the temperature of 0.734 moles of chlorine gas be at 1.83 atmospheres in a 10.2 liter container? (r=0.0821 L·atm/mol·k)

Answers

Answer: 310K

Explanation:

Since,

Pressure P = 1.83 atmospheres

Volume of chlorine gas V = 10.2L

Molar gas constant R = 0.0821 L.atm/mol.k)

Number of moles = 0.734 moles

Temperature T(in Kelvin) = ?

Apply ideal gas equation (pV = nRT)

1.83atm x 10.2L= 0.734 moles x 0.0821 L.atm/mol.k x T

18.67 = (0.06026 x T)

T = (18.67 / 0.06026)

T = 310K

Therefore, the new temperature of the chlorine gas is 310K

Which parameter is measured directly in a coffee-cup calorimeter?


pressure


heat of fusion


temperature


kinetic energy

Answers

(c) Temperature 

Temperature is measured directly in a coffee-cup calorimeter.

See Attached Image. Figure shows Coffee-cup calorimeter. This simple apparatus is used to measure temperature changes of reactions at constant pressure.

(c) Temperature is measured directly in a coffee-cup calorimeter.

A coffee cup calorimeter:

It is  essentially a polystyrene (Styrofoam) cup with a lid. The cup is partially filled with a known volume of water and a thermometer is inserted through the lid of the cup so that its bulb is below the water surface.

Out of the given options,

Temperature is measured directly in a coffee-cup calorimeter.

Thus, option C is correct.

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If you have three moles of S2, how many moles of Al2S3 can be produced?

Answers

Answer:

2

Explanation:

S2x3=S6

Al2S3

S6/S3=2

ok, I need help with this one!!!!!!!!!!!!!!!!!!!! plz and thank you
Which statement is a correctly written thermochemical equation?


2C8H18 + 25O2 →16CO2  + 18H2O  , ΔH = −5,471 kJ/mol


4Fe (s) + 3O2 (g)→2Fe2O3 (s) , ΔH = −3,926 kJ


NH4Cl → NH4+ + Cl–


C3H8 (g) + O2(g)→CO2 (g) + H2O (l), ΔH = −2,220 kJ/mol

Answers

The statement that should be rightly mentioned with respect to the   equation of thermochemical is 4 Fe (s) + 3O2(g) -------> 2Fe2O3(s)        ΔH = -3926 KJ

What is the thermochemical equation?

It is a balanced of stoichiometric chemical equation that involved the change with respect to enthalpy, ΔH. Here the reactants and the product state should be considered as the liquid, solid, or in gaseous state.

Also, the value of the heat should be absorbed since  ΔH < 0 so the reaction should be considered as the exothermic and ΔH > 0 then the reaction is endothermic.

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Final answer:

The correct thermochemical equation is '4Fe (s) + 3O2 (g) → 2Fe2O3 (s), ΔH = −3,926 kJ', which includes the balanced chemical equation and the enthalpy change for the whole reaction.

Explanation:

The question asks which statement is a correctly written thermochemical equation. A proper thermochemical equation includes the balanced chemical equation alongside the enthalpy change (ΔH) for the reaction. The enthalpy change represents the heat absorbed or released during the reaction when it occurs at constant pressure. There is only one correct thermochemical equation provided:

4Fe (s) + 3O2 (g) → 2Fe2O3 (s), ΔH = −3,926 kJ

This equation is balanced and represents the reaction of iron (Fe) with oxygen (O2) to form iron(III) oxide (Fe2O3). The enthalpy change is given for the entire reaction, not per mole, which is the correct way to represent it in a thermochemical equation. The other equations either do not include the enthalpy change in the correct units or are missing it entirely.

Which type of bond is salt

Answers

Answer:

An Ionic Bond

Explanation:

Salt compounds are formed by the "donating" of electrons.

Answer:

NaCl, or Salt, is an ionic bond.

Explanation:

Ionic bonds are formed from one metal and one nonmetal, Sodium being the metal and Chlorine being the nonmetal.

The atomic radius of a silver atom is 1.44 x 10-10. Give the
atomic radius of silver in nanometres.

Answers

Answer:

0.144 nm

Explanation:

Silver's electronic configuration is (Kr)(4d)10(5s)1, and it has an atomic radius of 0.144 nm.

The pressure in an automobile tire filled with air is 245.0 kPa. If Po2 = 51.3 kPa, Pco2 = 0.10 kPa, and P-others = 2.3 kPa, what is Pn2?

Answers

Answer:

PN₂ = 191.3 Kpa

Explanation:

Given data:

Total pressure of tire = 245.0 Kpa

Partial pressure of PO₂ = 51.3 Kpa

Partial pressure of PCO₂  = 0.10 Kpa

Partial pressure of others =  2.3 Kpa

Partial pressure of PN₂ = ?

Solution:

According to Dalton law of partial pressure,

The total pressure inside container is equal to the sum of partial pressures of individual gases present in container.

Mathematical expression:

P(total) = P₁ + P₂ + P₃+ ............+Pₙ

Now we will solve this  problem by using this law.

P(total) = PO₂ + PCO₂ + P(others)+ PN₂

245 Kpa = 51.3 Kpa + 0.10 Kpa + 2.3 Kpa + PN₂

245 Kpa = 53.7 Kpa+ PN₂

PN₂ = 245 Kpa -  53.7 Kpa

PN₂ = 191.3 Kpa

The partial pressure of nitrogen is determined to be 191.3 kPa.

The total pressure in the automobile tire is given as 245.0 kPa. To find the partial pressure of nitrogen (PN₂), we can use Dalton's Law of Partial Pressures, which states that the total pressure is the sum of the partial pressures of all gases present.

Here's the step-by-step calculation:

Total pressure (Ptotal) = 245.0 kPa Partial pressure of oxygen (PO₂) = 51.3 kPa Partial pressure of carbon dioxide (PCO₂) = 0.10 kPa Partial pressure of other gases (P-others) = 2.3 kPa

Using Dalton's Law:

Ptotal = PO₂ + PCO₂ + P-others + PN₂

Substituting the given values: 245.0 kPa = 51.3 kPa + 0.10 kPa + 2.3 kPa + PN₂

Rearranging to solve for PN₂:

PN₂ = 245.0 kPa - (51.3 kPa + 0.10 kPa + 2.3 kPa)

PN₂ = 245.0 kPa - 53.7 kPa

PN₂ = 191.3 kPa

Therefore, the partial pressure of nitrogen in the car tire is 191.3 kPa.

4. Calculate the final concentration if water is added to 1.5 L of a 12 M
NaOH solution to make 3.0 L of a diluted NaOH solution.
Your answer

Answers

Answer:

6M

Explanation:

(Molarity x Volume)concentrated soln = (Molarity x Volume)diluted doln

Molarity dilute soln = [(M x V)conc/V (dilute)] = 1.5L x 12M / 3.0L = 6M final dilute soln

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