In a calorimeter, the equilibrium temperature of copper in water is determined. if the water is replaced with a liquid that has a lower specific heat, what will happen to the equilibrium temperature

Answers

Answer 1
the equilibrium temperature will increase
Answer 2

Final answer:

Replacing water with a liquid with a lower specific heat in a calorimeter experiment will result in a higher final equilibrium temperature for the copper and liquid compared to if water were used.

Explanation:

When conducting an experiment in a calorimeter where a hot piece of copper is placed in a liquid to reach thermal equilibrium, the specific heat capacity of the liquid will affect the final equilibrium temperature of both substances. If the copper is submerged in a liquid with a lower specific heat than water, the liquid will reach a higher temperature than it would if water were used. This is because a liquid with a lower specific heat capacity requires less heat transfer to increase its temperature by 1°C. Accordingly, the copper would not cool down as much as it would in water because less heat is needed to warm up the liquid. Hence, the final equilibrium temperature when using a liquid with a lower specific heat will be higher than if water were used.


Related Questions

How to easily determine if a molecule is a strong nucleophile?

Answers

Nucleophile is a species that donates a pair of electrons to form a new covalent bond. Nucleophilicity is measured by comparing reaction rates; the faster the reaction, the better (or, “stronger”) the nucleophile.

To quickly determine: Nucleophiles will have a free lone pair electron to attack the electrophile. Check for the lone pairs.

What type of bonding occurs in a sample of pure chromium, cr? in other words, how is one chromium atom held to another chromium atom?

Answers

Chromium is a metal in nature. So when one chromium is bonded to another chromium, there is a weak intermolecular forces which helds them together which we call as “metallic bonding”.

Metallic bonding is the intermolecular force of attraction which exist between valence electrons and the metal atoms. It is considered as the sharing of various detached electrons between many positive ions, whereby the electrons serve as a "glue" which gives the substance a definite structure.

At which of the following temperatures is the chance of molecules aligning just right for a chemical change the highest?
50 °F
40 °F
30 °F
20 °F

Answers

50 degrees F, because this is the highest temperature, and thus the molecules will be the most active. With more activity they will have more collisions, with more collisions they have higher chances of combining for a chemical change.

50 °F would give a possible chance of the molecules aligning just right for a chemical change because the higher the temperature, the more excited, or active the molecules will become. When there is more activity, there is more collision, which results in heat from the friction, and they will have a higher chance for chemical change because of the frequent run-ins of these molecules.

Hope this helps! If it's right or wrong, please let me know :)


which liquid materials have strong odor and weak odor?

Answers

Odor refers to the fragrance caused by one or more volatilized chemical compounds. It can be strong or weak. 
Strong odor have: Sodium Hypochlorite, Muriatic Acid, Sulphuric Acid, Ammunlom Sulfide.  Butyl ,Butyric Acid, Pyridine 

Weak Odors have Spray Glue, Dry Erase Markers, Paint cleaners. Water.

In what way would readings from a digital thermometer be preferable to those from a liquid-based thermometer?

Answers

Reading a digital thermometer is more preferable because you can just easily read the measurement from a screen, a number will just show in a screen as compared to a liquid based thermometer where you still have to read the measurement by counting the markers in the thermometer.

Digital thermometer readings are easier to use when performing calculations.



How many grams of li3n can be formed from 1.75 moles of li? assume an excess of nitrogen. 6 li(s) + n2(g) â 2 li3n(s) how many grams of li3n can be formed from 1.75 moles of li? assume an excess of nitrogen. 6 li(s) + n2(g) â 2 li3n(s) 18.3 g li3n 61.0 g li3n 58.3 g li3n 20.3 g li3n 15.1 g li3n?

Answers

20.3 g First, determine how many moles of Li3N you can produce from 1.75 moles of Li. Since each molecule of Li3N requires 3 atoms of Li, that means that from 1.75 moles of Li, you can only produce 1.75 / 3 = 0.5833 moles of Li3N. Now compute the molar mass of Li3N Atomic weight of Lithium = 6.941 Atomic weight of Nitrogen = 14.0067 Molar mass of Li3N = 3 * 6.941 + 14.0067 = 34.8297 g/mol Now multiply the molar mass by the number of moles 34.8297 * 0.5833 = 20.316 g Of the available 5 choices, only 20.3 g is correct.

Give the charge and full ground-state electron configuration of the monatomic ion most likely to be formed by the element. rb
a. rb+: 1s22s22p63s23p64s23d104p65s2
b. rb+: 1s22s22p63s23p64s23d104p65s1
c. rb+: 1s22s22p63s23p64s23d104p5
d. rb+: 1s22s22p63s23p64s23d104p6
e. none of these

Answers

Actually Rb or Rubidium in zero state has the following electron configuration:

1s22s22p63s23p63d104s24p65s1

 

However we can see that the ion has a 1 positive charge, which means that it lacks 1 electron, therefore the answer from the choices is:

d. rb+: 1s22s22p63s23p64s23d104p6
Final answer:

Rb forms a +1 ion by losing one electron, leaving it with an electron configuration of 1s22s22p63s23p64s23d104p6. The correct answer is option B.

Explanation:

The given options describe potential +1 ion states of the element rubidium (Rb). When Rb forms a +1 ion, it does so by losing one electron. In its ground state, Rb has the electron configuration 1s22s22p63s23p64s23d104p65s1. When it forms a +1 ion, it becomes Rb+, losing the one electron in the 5s shell. Therefore, the correct electron configuration for Rb+ is 1s22s22p63s23p64s23d104p6, which matches option B from your list.

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The general reaction of carboxylic acid derivatives is __________.

Answers

Final answer:

The general reaction of carboxylic acid derivatives is nucleophilic acyl substitution, in which a nucleophile reacts with the electrophilic carbonyl carbon leading to a substitution of the group attached to it.

Explanation:

The general reaction of carboxylic acid derivatives is nucleophilic acyl substitution. In this reaction, the carbonyl carbon of carboxylic acid derivatives is typically electrophilic. Nucleophiles can react with it, leading to the substitution of the group attached to the carbonyl carbon. Let's consider an ester as a simple example of carboxylic acid derivatives. A reaction involving an alcohol, for instance, methanol, will result in the substitution of the original alcohol group with a methanol group.

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The general reaction of carboxylic acid derivatives is nucleophilic acyl substitution .

This reaction involves the replacement of the leaving group on the carboxylic acid derivative with a nucleophile. The leaving group is typically a halogen, an alkoxy group, or an amino group. The nucleophile can be any species with a lone pair of electrons, such as an alcohol, an amine, or a water molecule.

The mechanism of nucleophilic acyl substitution is as follows:

1. The nucleophile attacks the carbonyl carbon of the carboxylic acid derivative.

2. The leaving group departs, forming a tetrahedral intermediate.

3. The intermediate collapses, forming the new acyl product and the leaving group.

The rate of nucleophilic acyl substitution depends on a number of factors, including the nature of the nucleophile, the nature of the leaving group, and the presence of any catalysts.

In general, more reactive nucleophiles and leaving groups will lead to faster reactions.

Here are some examples of nucleophilic acyl substitution reactions:

Esterification: The reaction of a carboxylic acid and an alcohol to form an ester.

Amide formation:  The reaction of a carboxylic acid and an amine to form an amide.

Hydrolysis:  The reaction of a carboxylic acid derivative with water to form a carboxylic acid and the corresponding leaving group.

Nucleophilic acyl substitution reactions are very important in organic chemistry. They are used to synthesize a wide variety of products, including pharmaceuticals, pesticides, and food additives.

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An airplane cabin is pressurized to 640mmHg what is the pressure inside the cabin in atmosphere

Answers

1 atm= 760 mmHg
640mmHg/760mmHg= .84 atm

Answer: 0.84 atmosphere

Explanation:

Pressure of the gas is defined as the force exerted by the particles on the walls of the container. It is expressed in various terms like 'mmHg', 'atm', 'kiloPascals' etc..

All these units of pressure are inter convertible.

We are given:

Pressure of the gas = 640 mmHg

Converting this unit of pressure into 'atm' by using conversion factor:

[tex]760mmHg=1atm[/tex]

[tex]640mmHg=\frac{1}{760}\times 640=0.84atm[/tex]

Thus there will be 0.84 atm.

What are the five elements named after countries?

Answers

Americium - America
Gallium - Gallia (Latin name for France)
Germanium - Germany
Polonium - Poland
Scandium - Scandanovia 
The answer is:
Americium- America
Francium- France
Germanium- Germany 
Polonium- Poland
Ruthenium- Russia 

Which of the following is true in regard to ions?

A. An ionized atom has a number of protons that is unequal to the number of electrons.
B. Losing one or more electrons will turn an atom into an anion.
C. Ions can only carry positive charges.
D. A cation will hold a positive charge if it gains one or more electrons.

Answers

Answer: The correct answer is Option A.

Explanation:

There are 3 subatomic particles present in an atom. They are: protons, electrons and neutrons.

Protons carry positive charge, electrons carry negative charge and neutrons does not carry any charge.

Any neutral atom has an equal number of protons and electrons.  An ion is formed when atom looses or gain electron.

If an atom gains electrons, it will have more number of electrons than protons. Thus, it will carry negative charge and form an anion.If an atom looses electrons, it will have less number of electrons than protons. Thus, it will carry positive charge and forms a cation.

Thus, an ionized atom will always have unequal number of protons and electrons.

Hence, the correct answer is Option A.

Among the given statements, the true statement regarding ion is option A. An ionized atom has a number of protons that is unequal to the number of electrons.

An ion is an atom or molecule that has gained or lost one or more electrons, which changes the overall charge of the atom or molecule.

Losing one or more electrons will turn an atom into a cation, which is a positively charged ion. An anion, on the other hand, is a negatively charged ion that is formed when an atom gains one or more electrons.Ions can carry both positive and negative charges, depending on whether they are cations or anions.Cations hold a positive charge when they lose one or more electrons, while anions hold a negative charge when they gain one or more electrons.

Therefore, an ionized atom has a number of protons that is unequal to the number of electrons. Option A is the correct answer.

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What information does DNA provide to each of the cells organelles?
A. Instructions for each specific function
B. How to use light in energy to make glucose
C. How to make proteins from RNA
D. How to process glucose to ATP

Answers

Answer:

The most correct would be option A.

Explanation:

More correct would be to say that DNA contains, among other things, the information needed to make proteins, which have various functions within cells and organelles.

Calculate the enthalpy change for the reaction:
2 H2O2(l) → 2 H2O(l) + O2(g)
using enthalpies of formation:
ΔH∘f(H2O2)=−187.8 kJ/mol
ΔH∘f(H2O)=−295.8 kJ/mol

Answers

Answer:

-196.0 kJ

Explanation:

The specific heat of aluminum is 0.215 ???????????? ????????????−℉ . what is the specific heat of aluminum in ???????????? ????????????−°???? , ???? ????????−℃ , and ???? ????????−????

Answers

Q = mass x sph x temp change 
temp change = Q/(mass x sph) 
Temp change =57/(22 x .903) 
Temp Change = 2.97 ∘C 
Temp change 3.0 ∘C

A gas made up of atoms escapes through a pinhole 0.155 times as fast as h2 gas. write the chemical formula of the gas.

Answers

Final answer:

Using Graham's law and the given effusion rate, we can calculate the unknown gas's molar mass, which suggests the gas could be CH4 (methane).

Explanation:

The question pertains to the concept of gas effusion and Graham's law, which relates the rates of effusion of gases to their molar masses. Given that a gas escapes through a pinhole 0.155 times as fast as hydrogen gas (H2), and using the fact that hydrogen gas effuses four times as rapidly as oxygen gas (O2), one can use Graham's law to determine the molar mass of the unknown gas. Graham's law states that the rate of effusion of a gas (rate A) is inversely proportional to the square root of its molar mass (molar mass A).

Graham's law formula: rate of effusion of gas A / rate of effusion of gas B = sqrt(molar mass of gas B / molar mass of gas A).

By knowing the rate of effusion of hydrogen and the fact that the unknown gas effuses at 0.155 times the rate of hydrogen, we can use the formula to calculate the molar mass of the unknown gas. Let's assume the molar mass of hydrogen (H2) is 2 g/mol. By substituting the values into the formula, we can solve for the molar mass of the unknown gas.

Calculation: 1^(2) / 0.155^(2) = 2 g/mol / x g/mol, where x is the molar mass of the unknown gas.

Solving for x gives us the estimated molar mass.

The final step is to look for a gas with a molar mass that closely matches our calculation. The gas could well be CH4 (methane), which has a molar mass of approximately 16 g/mol.

What is the pH of a 0.025 M [OH] solution?

Answers

The answer is 12.4.I think its correct answer.

Why do beryllium and calcium have similar chemical properties

Answers

The elements in a group all have the same number of electrons in their highest occupied energy level (also referred to as the outer shell). This is why they have similar chemical properties.

Beryllium and calcium have similar chemical properties because they both have two valence electrons as alkaline earth metals. Beryllium forms more covalent bonds due to its small ionic size and high charge density.

Beryllium and calcium have similar chemical properties because they are both alkaline earth metals and share the same number of valence electrons, which is two. This similarity is due to their position in the same group (Group 2) of the periodic table. Elements within the same group have the same number of valence electrons, which significantly influences their chemical behavior. It's the loss, gain, or sharing of these electrons that determines how elements react with one another.

However, due to the small size of the beryllium ion, which results in a high charge density, beryllium tends to form more covalent compounds, behaving somewhat differently than calcium. Beryllium is somewhat unique among its group in that it forms covalent bonds more readily than its group members, a property it shares with aluminum, which lies diagonally to it on the periodic table. Both beryllium and aluminum can form polar highly covalent compounds, for example, polymeric hydrides, chlorides, and alkyls.

The ostwald process is used commercially to produce nitric acid, which is, in turn, used in many modern chemical processes. in the first step of the ostwald process, ammonia is reacted with oxygen gas to produce nitric oxide and water. what is the maximum mass of h2o that can be produced by combining 51.3 g of each reactant?

Answers

4 NH3 + 5 O2 ----> 4 NO + 6 H2O 4 moles of ammonia (4 * 17.03 g/mol) will react with 5 moles of oxygen (5 * 32.00 g/mol) to give 6 moles of water (6 * 18.02 g/mol). This means that 68.12 grams of ammonia will react with 160.0 grams of oxygen to yield 108.12 grams of water. If only 75.6 grams of oxygen are available then: 75.6 g / 160.0 g/mol = 0.47 mol of oxygen is used.

which of these is an element, oxygen,sodium chloride,water,or air

Answers

oxygen and sodium are the only ones that are elements here example like the others air is a mixture of a compound and an element

Calculate how many Calories would be found in a breakfast consisting of the following: two eggs two pieces of toast buttered with one tablespoon of butter one 9 oz glass of orange juice

Answers

The breakfast consists of two eggs, two pieces of toast with one tablespoon of butter, and a 9 oz glass of orange juice, totaling 510 Calories.

Each item contributes a different amount of Calories, summed together for the final total.

To determine the total Calories in the breakfast, we need to sum the Calories from each component.

Two eggs: One large egg has approximately 70 Calories, so two eggs contribute 140 Calories.Two pieces of toast: One slice of white bread has about 80 Calories, so two slices provide 160 Calories.Butter: One tablespoon of butter adds around 100 Calories.Glass of orange juice: A 9 oz glass (about 270 ml) has approximately 110 Calories.

Adding these up: 140 + 160 + 100 + 110 = 510 Calories.

Summary

The breakfast consisting of two eggs, two pieces of toast with one tablespoon of butter, and a 9 oz glass of orange juice contains a total of 510 Calories.

Correct question is: Calculate how many Calories would be found in a breakfast consisting of the following:

two eggs two pieces of toast buttered with one tablespoon of butter one 9 oz glass of orange juice

What is the white solid that forms when methyl salicylate is added to sodium hydroxide?

Answers

The white solid that forms when methyl salicylate is added to sodium hydroxide is known as sodium salicylate. It is formed through a hydrolysis reaction when methyl salicylate reacts with an excess of sodium hydroxide when under high temperatures and pressure.
Final answer:

When methyl salicylate is added to sodium hydroxide, sodium salicylate is produced. This white solid result is due to an acid-base reaction involving the neutralization of methyl salicylate (an ester) by the base, sodium hydroxide.

Explanation:

The white solid that forms when methyl salicylate is added to sodium hydroxide is sodium salicylate. This reaction is an example of an acid-base reaction, specifically the neutralization of an ester with a base. Methyl salicylate is an ester of salicylic acid and methanol. In this reaction, the sodium hydroxide acts as a base to deprotonate the methyl salicylate, forming sodium salicylate and methanol. The sodium salicylate is observed as a white solid following the reaction.

When methyl salicylate is added to sodium hydroxide, a white solid called methyl salicylate sodium salt is formed.

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In class, sam learned that some theorists link happiness to productivity. from this, he developed the thought that happy employees in a factory will produce more products per hour. in this example, sam's theory led him to _____.

Answers

In the given example, it led Sam’s theory to produce a hypothesis. It is because the educated guess that he has made has been linked to the theory where in the theory is about happiness and production that led him to think that having happy employees will make more products to be produced.

Is apple pie an element a compound a solution or a heterogeneous mixture?

Answers

Apple pie is an heterogeneous mixture.

Hope this helps

There is a golden rule of solubility, polar solute dissolve in polar solvent and non polar solute dissolve in non polar solvent. Therefore,  apple pie is a heterogeneous mixture.

What is solution?

Solutions are a homogeneous mixture of two or more substances. A solution is a homogeneous mixture of solvent and solute molecules. Solvent is a substance that is in large amount in solution. solute is the substance which is in small amount in a solution. There are two types of mixture that is homogeneous and heterogeneous. Solution is a homogeneous solution.

Example: If we take sugar solution then the amount of sugar is small that is solute whereas water is in large quantity which is solvent. It is not necessary that water will be always solvent or liquid will be solvent, solid and gas can be the solvent too.  Apple pie is a heterogeneous mixture.

Therefore,  apple pie is a heterogeneous mixture.

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which compound has the highest melting point

Answers

The answer is Lithium Fluoride, with a meltingpoint of 1,553°F (or 845°C).

Within each group of four atoms or ions presented below, select the species that are isoelectronic with each other: Zn, Fe3+, Mn2+, Ar, Ge2+, Cl-, B-, C

Answers

Final answer:

Among the species listed, Zn and Ge2+ are isoelectronic with each other, each containing 30 electrons. Ar and Cl- are also isoelectronic, with 18 electrons each.

Explanation:

The species that are isoelectronic with each other among the given atoms and ions (Zn, Fe3+, Mn2+, Ar, Ge2+, Cl-, B-, C) are those that have the same number of electrons and thus the same electron configuration. To identify which are isoelectronic, we look at their electron configurations after the ions have lost or gained the necessary electrons.

Zn: [Ar]3d104s2 (30 electrons total)Fe3+: [Ar]3d5 (23 electrons total)Mn2+: [Ar]3d5 (23 electrons total)Ar: [Ne]3s23p6 (18 electrons total)Ge2+: [Ar]3d104s24p2 (30 electrons total)Cl-: [Ne]3s23p6 (18 electrons total)B-: [He]2s22p2 (5 electrons total)C: [He]2s22p2 (6 electrons total)

Considering the above configurations, Zn (30 electrons) and Ge2+ (30 electrons) are isoelectronic with each other, as well as Ar (18 electrons) and Cl- (18 electrons), since they have the same number of electrons. The other atoms and ions listed do not have a species with which they are isoelectronic in this group.

How many milliseconds are there in 3.5 seconds

Answers

There are 3,500 milliseconds in 3.5 seconds. Hope this helps!
There are 3500 milliseconds.

What is the approximate difference in energy between the two chair conformations of trans-2-methyl-1-isopropylcyclohexane?

Answers

In the conformer I, both the substituents are in axial positions. Methyl group has two 1, 3 diaxial (H----CH_3) interactions and isopropyl group has two 1, 3 diaxial (H----pr) interactions. Therefore, the energy of these interactions is given as (2x0.9) + (2x1.1) = 4.0kCal/mol.

In conformer II both the substituents are equatorial positions. So, axial interactions are absent and one gauche interaction between isopropyl and methyl groups exists therefore, the energy of this interaction is given as 1.1kCal/mol. The difference in the energy of two conformations is calculated as

E = (1.0 – 1.1) kCal/mol = 2.9 kCal/mol


The answer to the question is 2.9 kCal/mol

a. calculate the mass percent of NaHCO3 based on the manufacturer's list of ingredients: 325mg aspirin, 1000 mg citric acid, 1916 mg NaHc03 .


Answers

The mass percent of NaHCO3 can be calculated by dividing the mass of NaHCO3 by the total mass of the compound and then multiplying the quotient by 100 to get the percentage.

mass % of NaHCO3 = (mass of NaHCO3 / total mass) * 100

Now, we have:
mass of NaHCO3 = 1916 mg
total mass = 325 + 1000 + 1916 = 3241 mg

Substitute with these numbers in the equation to get the mass percentage as follows:
mass  % = (1916/3241) * 100 = 59.11755631%

The mass percent of NaHCO₃ in the mixture is approximately 59.11%.

To calculate the mass percent of NaHCO₃ in the mixture, we use the formula:

Mass percent of NaHCO₃ = [tex]\frac{Mass of NaHCO_3}{Total mass of the mixture} \times 100[/tex]

Given the masses of the ingredients:

- Aspirin: 325 mg

- Citric acid: 1000 mg

- NaHCO₃: 1916 mg

First, we convert these masses to grams to make the calculation easier, since the standard unit for mass in chemistry is grams:

325 mg = 0.325 g

1000 mg = 1.000 g

1916 mg = 1.916 g

Now, we calculate the total mass of the mixture:

Total mass = 0.325 g + 1.000 g + 1.916 g

Total mass = 3.241 g

Next, we calculate the mass percent of NaHCO₃:

Mass percent of NaHCO₃ = [tex]\left( \frac{1.916 \text{ g}}{3.241 \text{ g}} \right) \times 100[/tex]

Now, we perform the division and multiply by 100 to find the mass percent:

Mass percent of NaHCO₃ = [tex]\left( \frac{1.916}{3.241} \right) \times 100[/tex]

Mass percent of NaHCO₃ = 0.5911 x 100

Mass percent of NaHCO₃ = 59.11%

Propane (C3 H8 (g), Hf = –103.8 kJ/mol) reacts with oxygen to produce carbon dioxide (CO2 , Hf = –393.5 kJ/mol ) and water (H2 O, Hf = –241.82 kJ/mol) according to the equation below. What is the enthalpy of combustion (per mole) of C3 H8 (g)? Use . –2,044.0 kJ/mol –531.5 kJ/mol 531.5 kJ/mol 2,044.0 kJ/mol

Answers

Given:

Enthalpy of formation data

Hf(C3H8) = -103.8 KJ/Mol

Hf(CO2) = -393.5 kJ/mol

Hf (H2O) = -241.82 kJ/mol

To determine:

Enthalpy of combustion of C3H8

Explanation:

The combustion reaction is:

C3H8 + 5O2 → 3CO2 + 4H2O

ΔHcombustion = ∑nHf(products) - ∑nHf(reactants)

ΔHc = [3(Hf CO2) + 4(Hf H2O)] - [Hf(C3H8) + 5Hf(O2)]

       = [3(-393.5) + 4(-241.82)] -[-103.8 + 5(0)] = -2044 kJ/mol

Ans: (a) -2044 kJ/mol


Answer:

A) –2,044.0

Explanation

Its right on edge

How many c atoms are in 2 mol of sucrose?

Answers

Final answer:

There are 24 carbon atoms in 2 moles of sucrose, as the molecular formula C12H22O11 for sucrose indicates there are 12 carbon atoms per molecule.

Explanation:

The student has asked how many carbon atoms are in 2 mol of sucrose. Sucrose has the molecular formula C12H22O11, which means there are 12 carbon atoms in a single molecule of sucrose. To find the total number of carbon atoms in 2 moles of sucrose, we multiply the number of moles by the number of carbon atoms per molecule of sucrose:

2 mol sucrose × 12 C atoms/mol sucrose = 24 C atoms.

Thus, there are 24 carbon atoms in 2 moles of sucrose.

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