A tank contains 15 kg of dry air and 0.17 kg of water vapor at 30°C and 100 kPa total pressure. Determine
(a) the specific humidity, (b) the relative humidity, and (c) the volume of the tank.

Answers

Answer 1

The volume of the tank is approximately 130.75 m³.

To solve this problem, we need to use the concept of air and water vapor mixture. The given data includes the mass of dry air and water vapor, temperature, and total pressure. We can calculate the specific humidity, relative humidity, and volume of the tank using the following steps:

(a) Specific humidity:

The specific humidity (ω) is defined as the ratio of the mass of water vapor (m_w) to the total mass of the air-water vapor mixture (m_t):

ω = m_w / m_t

Given that the mass of water vapor is 0.17 kg and the total mass of the mixture is 15 kg + 0.17 kg = 15.17 kg, we can calculate the specific humidity:

ω = 0.17 kg / 15.17 kg ≈ 0.0112

So, the specific humidity is approximately 0.0112.

(b) Relative humidity:

Relative humidity (RH) is the ratio of the partial pressure of water vapor (P_w) to the saturation vapor pressure of water (P_ws) at the given temperature, multiplied by 100:

RH = (P_w / P_ws) * 100

To find the relative humidity, we need to determine the saturation vapor pressure at 30°C. Using a vapor pressure table or equation, we can find that the saturation vapor pressure at 30°C is approximately 4.246 kPa.

Given that the total pressure is 100 kPa, the partial pressure of water vapor is 0.17 kg / 15.17 kg * 100 kPa = 1.119 kPa.

Now we can calculate the relative humidity:

RH = (1.119 kPa / 4.246 kPa) * 100 ≈ 26.34%

So, the relative humidity is approximately 26.34%.

(c) Volume of the tank:

To find the volume of the tank, we can use the ideal gas law equation:

PV = nRT

Where P is the total pressure, V is the volume, n is the number of moles, R is the gas constant, and T is the temperature in Kelvin.

First, we need to calculate the number of moles of dry air and water vapor in the tank. The number of moles (n) can be obtained using the equation:

n = m / M

Where m is the mass and M is the molar mass.

The molar mass of dry air is approximately 28.97 g/mol, and the molar mass of water vapor is approximately 18.015 g/mol.

For dry air:

n_air = 15 kg / 0.02897 kg/mol ≈ 517.82 mol

For water vapor:

n_water = 0.17 kg / 0.018015 kg/mol ≈ 9.43 mol

Now we can calculate the volume using the ideal gas law:

V = (n_air + n_water) * R * T / P

Given that R is the gas constant (8.314 J/(mol·K)), T is the temperature in Kelvin (30°C + 273.15 = 303.15 K), and P is the total pressure (100 kPa), we can calculate the volume:

V = (517.82 mol + 9.43 Mol) * 8.314 J/(mol·K) * 303.15 K / (100,000 Pa) ≈ 130.75 m³

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Related Questions

The table describes a gas stored in four different containers. Properties of Stored Gas Container Properties 1 · Low number of collisions with container walls · Medium average kinetic energy · Large number of particles 2 · Large number of collisions with container walls · Medium average kinetic energy · Small number of particles with little spaces between them 3 · Large number of collisions with container walls · High average kinetic energy · Large number of particles with large spaces between them 4 · Few collisions with container walls · Low average kinetic energy · Small number of particles Which container has gas stored at the highest temperature? 1 2 3 4

Answers

Container 3 has the gas stored at the highest temperature.

Temperature is a measure of the average kinetic energy of the particles in a substance. In the given table, it is stated that container 3 has a large number of collisions with container walls, high average kinetic energy, and large number of particles with large spaces between them.

These properties indicate that the gas in container 3 has higher kinetic energy and more vigorous movement compared to the other containers.

Container 1 has a low number of collisions with container walls and a medium average kinetic energy. This suggests that the gas in container 1 has lower energy and less movement than the gas in container 3.

Container 2 has a large number of collisions with container walls, but it also has a small number of particles with little spaces between them. While the collisions may be frequent, the limited number of particles and the lack of space between them may result in lower overall kinetic energy compared to container 3.

Container 4 has few collisions with container walls, low average kinetic energy, and a small number of particles. These properties indicate that the gas in container 4 has the lowest energy and least movement among all the containers.

Container 3

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According to the lab guide, which changes below will you look for in order to test the hypothesis? Check all that apply. changes in shape or size color changes whether changes are easily reversible temperature changes formation of precipitates or gases changes of state (gas, liquid, or solid)

Answers

The correct options are: changes in shape or size, color changes, formation of precipitates or gases, and whether changes are easily reversible.

According to the lab guide, the following changes below will be looked for in order to test the hypothesis: changes in shape or sizecolor changesformation of precipitates or gaseswhether changes are easily reversibleThese changes are the characteristics that will be observed in order to test the hypothesis in the lab. Furthermore, temperature changes and changes of state (gas, liquid, or solid) may also occur and can be observed while testing the hypothesis.

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Answer:

A,B,E,F

Explanation:

What does the red line in the diagram below represent?

OA. The activation energy
OB. The equilibrium position
C. The potential energy of the reactants
D. The difference in energy between the reactants and products

Answers

The red line in the diagram below represent

A. The activation energy

What is the activation energy?

In the given diagram, the red line represents the activation energy. Activation energy is the minimum amount of energy required for a chemical reaction to occur. It represents the energy barrier that must be overcome for the reactants to form products.

The reactants start with a certain amount of potential energy, and the activation energy represents the additional energy needed to reach the transition state where the reaction can proceed.

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Two samples of carbon come into contact. A heat transfer will occur between sample A and sample B. What must be
true for heat to transfer from sample A to sample B?
O The average kinetic energy of A is greater than that of B.
O The average kinetic energy of B is greater than that of A.
O The average kinetic energy of both samples is equal.
O The average kinetic energy does not determine the direction of heat transfer.

Answers

The direction of heat transfer between two samples of carbon depends on their temperature difference, and not solely on their average kinetic energy. While the average kinetic energy of a substance is related to its temperature, it is not the determining factor for the direction of heat transfer.

When two samples of carbon come into contact, a heat transfer will occur between sample A and sample B. The direction of heat transfer is dependent on the temperature difference between the samples. Heat transfer always flows from a hotter object to a cooler object, so if sample A is hotter than sample B, heat will flow from A to B. If sample B is hotter than sample A, heat will flow from B to A.
The average kinetic energy of the molecules in a substance is related to its temperature. The higher the average kinetic energy, the higher the temperature of the substance. However, the average kinetic energy does not determine the direction of heat transfer.
It is possible for a substance with a lower average kinetic energy (and therefore a lower temperature) to transfer heat to a substance with a higher average kinetic energy (and therefore a higher temperature). This can occur if the substance with the lower temperature has a greater heat capacity, which means it can absorb more heat without a significant increase in temperature.

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which of the following choice fits in the blank to complete the equation

Answers

To complete the equation, the blank should be filled with "ΔH°- ".

Option B is correct.

How do we explain?

The equation represents the standard Gibbs free energy change (ΔG°) in a chemical reaction in terms of the enthalpy change (ΔH°) and the entropy change (ΔS°). The equation is:

ΔG° = ΔH° - TΔS°

ΔG° represents the change in Gibbs free energy,

ΔH° represents the change in enthalpy,

T represents the temperature in Kelvin, and ΔS° represents the change in entropy.

The minus sign indicates that the change in Gibbs free energy is determined by the difference between the enthalpy and the product of temperature and entropy.

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A solution is made by dissolving 38.81 grams of nickel (II) sulfate, NiSO4, in enough water to make 0.467
liters of solution. Calculate the molarity of this solution.

Answers

The molarity of the NiSO₄ solution made by dissolving 38.81 grams of nickel (ii) sulfate, NiSO₄, in enough water to make 0.467 liters of solution is 0.535 M

How do i determine the molarity of the solution?

First, we shall obtain the mole of 38.81 grams of nickel (ii) sulfate, NiSO₄. Details below:

Mass of NiSO₄ = 38.81 grams Molar mass of NiSO₄ = 154.75 g/molMole of NiSO₄ = ?

Mole of NiSO₄ = mass / molar mass

= 38.81 / 154.75

= 0.25 mole

Now, we shall determine the molarity of the solution. Details below:

Mole of NiSO₄ = 0.25 moleVolume of solution = 10.467 LMolarity of solution = ?

Molarity of solution = mole / volume

= 0.25 / 0.467

= 0.535 M

Thus, the molarity of the solution is 0.535 M

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How do I solve the radius of the metal Cylinder, volume & Density?

Answers

e. The radius of the metal cylinder is 1.27 cm / 2 = 0.635 cm.

f. The volume of the metal cylinder is 4.745 cm³

g. The density of the metal cylinder is 7.53 g/cm³

What are the radius, volume & Density of the metal Cylinder?

Data given:

b. Mass of metal cylinder: 35.732 g

c. Length of metal cylinder: 3.15 cm

d. Diameter of metal cylinder: 1.27 cm

e. Radius of metal cylinder: The radius (r) of a cylinder is half of its diameter. Therefore, the radius of the metal cylinder is 1.27 cm / 2 = 0.635 cm.

To calculate the volume (V) of the metal cylinder;

V = πr²h, where π is approximately 3.14159, r is the radius, and h is the height (length) of the cylinder.

Volume of metal cylinder:

V = 3.14159 * (0.635 cm)² * 3.15 cm = 4.745 cm³

Density of metal cylinder:

Density (ρ) is defined as mass (m) divided by volume (V). Therefore, the density of the metal cylinder is ρ = 35.732 g / 4.745 cm³ = 7.53 g/cm³ (rounded to two decimal places).

So, the radius of the metal cylinder is 0.635 cm, the volume is 4.745 cm³, and the density is 7.53 g/cm³.

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How many atoms are in 12 g of Carbon-12 (12C)?

Answers

There are approximately 6.022 × 10^23 atoms in 12 grams of Carbon-12 (12C).

The number of atoms in a given amount of a substance can be calculated using Avogadro's number, which represents the number of atoms or molecules in one mole of a substance. Avogadro's number is approximately 6.022 × 10^23.

Carbon-12 is a specific isotope of carbon, with an atomic mass of 12 atomic mass units (amu). One mole of Carbon-12 has a mass of 12 grams. Since one mole of any substance contains Avogadro's number of particles, in the case of Carbon-12, it contains 6.022 × 10^23 atoms.

Therefore, if we have 12 grams of Carbon-12, which is equal to one mole, we can conclude that there are approximately 6.022 × 10^23 atoms in this amount of Carbon-12.

In summary, 12 grams of Carbon-12 contains approximately 6.022 × 10^23 atoms. Avogadro's number allows us to relate the mass of a substance to the number of atoms or molecules it contains, providing a fundamental concept in chemistry and enabling us to quantify and understand the microscopic world of atoms and molecules.

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which of the following choices fits in the blank to complete the equation

Answers

The equation that can be able to complete the reaction as it has been shown is option C

What is the free energy?

Free energy takes into account both the enthalpy (heat content) and entropy (degree of disorder) of a system. It provides a measure of the system's ability to do useful work or drive chemical reactions.

The formula for calculating free energy is:

G = H - TS

where:

G is the Gibbs free energy

H is the enthalpy (heat content) of the system

T is the temperature in Kelvin

S is the entropy (degree of disorder) of the system

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the human population grew form 1 billion in the year 1800to blank billion in the year 200

Answers

The human population grew from 1 billion in the year 1800 to approximately 7.8 billion in the year 2021.

In the year 1800, the estimated global human population was around 1 billion. Over the next two centuries, significant advancements in technology, medicine, agriculture, and improved living conditions contributed to a rapid increase in population.

The growth rate of the human population began to accelerate in the 20th century. By the year 1927, the global population reached 2 billion. It took just 33 years for the population to double, reaching 4 billion in 1960. The population continued to grow at an unprecedented rate, with 6 billion people on Earth by the year 1999. As of 2021, the estimated global population stands at approximately 7.8 billion.

This remarkable growth in population can be attributed to several factors, including advancements in healthcare leading to reduced infant mortality rates, improved access to education and contraception, increased agricultural productivity, and overall socio-economic development.

It's important to note that population growth has not been uniform across all regions. Different countries and regions have experienced varying rates of population growth due to factors such as fertility rates, mortality rates, migration patterns, and government policies.

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0.45g of sodium chloride in 2g of water. What is the concentration in g per dm cube​

Answers

Answer:divide

Explanation:this is not science this is math dont be lazy just divide

Which of the following is a possible
way to describe the SO3 component in
the reaction below?
Sa(s) + 120₂(g) → 8SO3(g)

A. 8 atoms SO3
B. 8 molecules SO3
C. 80.07g SO3
D. 32 LSO3

Answers

The correct answer is B. 8 molecules [tex]SO_3[/tex]. Option B

In the given reaction:

S(s) + [tex]O_2[/tex](g) → [tex]SO_3[/tex](g)

The stoichiometric coefficient in front of the [tex]SO_3[/tex]molecule is 8, which indicates that 8 molecules of [tex]SO_3[/tex]are formed as a product. This coefficient represents the ratio of the number of molecules involved in the reaction.

Option A (8 atoms [tex]SO_3[/tex]) is incorrect because it only mentions the number of atoms, not molecules. The stoichiometric coefficient does not represent the number of atoms, but rather the number of molecules.

Option C (80.07g [tex]SO_3[/tex]) is incorrect because it mentions a specific mass. The stoichiometric coefficient does not directly represent the mass of the substance, but rather the relative amount of molecules involved in the reaction.

Option D (32 [tex]SO_3[/tex]) is incorrect because it mentions a specific volume. The stoichiometric coefficient does not directly represent the volume of the substance, but rather the relative amount of molecules involved in the reaction.

Therefore, the correct way to describe the [tex]SO_3[/tex]component in the reaction is option B: 8 molecules [tex]SO_3[/tex]. This represents the ratio of the number of molecules of [tex]SO_3[/tex]that are produced in the reaction.

Option B

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Use your data, the equation to the right, and the specific heat of water (4.184 J/g C) to compute the specific heat values of each metal. Use a calculator and round to the nearest hundredth place.

Answers

The heat capacity for the metals are;

Aluminum -  0.89

Copper - 0.11

Iron - 0.44

Lead - 0.12

What is the specific heat?

The specific heat of a substance is denoted by the symbol "C" and is typically measured in units of J/g·°C (joules per gram per degree Celsius) or cal/g·°C (calories per gram per degree Celsius).

The specific h

We have that;

For Aluminum;

c = 4.184 * 39.85 * 4.7/11.98 * 72.9

= 783.6/873.3

= 0.89

For Copper;

c =  4.184 * 12.14 * 1.9/12.14 * 75.4

= 96.5/915.3

= 0.11

For Iron

c =  4.184 * 40.24 * 2.4/12.31 * 75.1

= 404.1/924.5

= 0.44

For Lead

c = 4.184 * 39.65 * 0.7/12.46 * 76.7

c = 116.1/955.68

= 0.12

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How do you balance this equation
2h2s+3o2+so2

Answers

The balanced equation is: 4 [tex]H_2S[/tex]+ 3 [tex]O_2[/tex]→ 4 [tex]SO_2[/tex]+ 8 [tex]H_2O[/tex]

The given chemical equation is unbalanced. To balance it, we need to adjust the coefficients in front of each chemical species until the number of atoms on both sides of the equation is equal.

The unbalanced equation is:

2 [tex]H_2S[/tex]+ 3 [tex]O_2[/tex]→ [tex]SO_2[/tex]

Let's start by balancing the sulfur (S) atoms. We have two sulfur atoms on the left side and one sulfur atom on the right side. To balance the sulfur, we can place a coefficient of 2 in front of the [tex]SO_2[/tex]:

2 [tex]H_2S[/tex]+ 3 [tex]O_2[/tex]→ 2 [tex]SO_2[/tex]

Now, let's balance the hydrogen (H) atoms. We have four hydrogen atoms on the left side (2 from each [tex]H_2S[/tex]) and none on the right side. To balance the hydrogen, we can place a coefficient of 4 in front of the water (H2O) on the right side:

2 [tex]H_2S[/tex]+ 3 [tex]O_2[/tex]→ 2 [tex]SO_2[/tex]+ 4 [tex]H_2O[/tex]

Finally, let's balance the oxygen (O) atoms. We have six oxygen atoms on the right side (3 from [tex]O_2[/tex]and 3 from 2 [tex]SO_2[/tex]) and three on the left side (2 from [tex]H_2S[/tex]). To balance the oxygen, we can place a coefficient of 3/2 in front of the O2:

2 [tex]H_2S[/tex]+ (3/2) [tex]O_2[/tex]→ 2 [tex]SO_2[/tex]+ 4 [tex]H_2O[/tex]

To remove the fractional coefficient, we can multiply all coefficients by 2:

4 [tex]H_2S[/tex]+ 3 [tex]O_2[/tex]→ 4 [tex]SO_2[/tex]+ 8 [tex]H_2O[/tex]

Now the equation is balanced, with an equal number of atoms on both sides. The balanced equation is:

4 [tex]H_2S[/tex]+ 3 [tex]O_2[/tex]→ 4 [tex]SO_2[/tex] + 8 [tex]H_2O[/tex]

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How does a straight-chain alkane that has five carbon atoms differ from a cycloalkane that has five carbon atoms?

Answers

Answer:

A straight-chain alkane that has five carbon atoms, also known as pentane, differs from a cycloalkane that has five carbon atoms, also known as cyclopentane, in terms of their molecular structure and properties. Pentane has a linear, straight-chain structure, while cyclopentane has a ring-shaped structure. This difference in structure affects their physical and chemical properties. For example, pentane has a higher boiling point and lower melting point than cyclopentane due to the differences in the strength of the intermolecular forces between their molecules

Explanation:

Which of the following items are made from renewable resources? Select the two correct answers. (1 point)
Responses

plastic fork
plastic fork

metal can
metal can

leather jacket
leather jacket

electronics
electronics

printer paper

Answers

A leather jacket and printer paper are examples of items that can be made from renewable resources, while plastic forks, metal cans, and electronics are not considered renewable due to their reliance on non-renewable materials and processes. Option  C, E

The two correct answers that are made from renewable resources are:

C) Leather jacket: Leather is derived from animal hides, which are a byproduct of the meat industry. As long as there is a sustainable and responsible approach to animal farming, the production of leather can be considered renewable. The hides are obtained from animals that are raised for meat consumption, and their use in leather production helps reduce waste.

E) Printer paper: Printer paper can be made from various sources, including trees, bamboo, and recycled paper fibers. If the paper is sourced from sustainably managed forests or from fast-growing plants like bamboo, it can be considered renewable. Additionally, the use of recycled paper fibers reduces the demand for materials and promotes a more circular economy.

The other options, A) plastic fork, B) metal can, and D) electronics, are not made from renewable resources:

A) Plastic fork: Plastics are typically derived from fossil fuels, which are non-renewable resources. The production of plastic involves the extraction and processing of petroleum or natural gas, both of which are finite resources.

B) Metal can: Metal cans are predominantly made from aluminum or steel. While these metals can be recycled, their initial production requires the extraction of raw materials from the Earth, which is not a renewable process.

D) Electronics: Electronics are made from a wide range of materials, including metals, plastics, and various chemical compounds. The production of electronics involves the extraction of raw materials, many of which are non-renewable resources.

Option C and E.

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What is the coefficient for sodium chloride when this equation is balanced?

Answers

Answer:

To resolve this, we need to place the coefficient “2” in front of the sodium in the reactant, to give the equation shown below. 2 Na (s) + Cl 2 (g) → 2 NaCl (s) In this equation, there are two sodiums in the reactants, two sodiums in the products, two chlorines in the reactants and two chlorines in the products; the equation is now balanced.

Explanation:

3. A hydrogen atom with velocity 1.8 X
10³ ms collides with a chlorine atom
with velocity 2,1 x 10 ms. Both are
moving in the same direction. They
then form a hydrogen chloride mole-
cule. The masses of the hydrogen and
chlorine atoms are in the ratio 1 to
35.5. What is the velocity of the newly
formed molecule?

Answers

The velocity of the the newly formed molecule, given that the atoms of the newly formed molecules moved in the same direction is 2.149×10³ m/s

How do I determine the velocity of the the newly formed molecule?

The velocity of the the newly formed molecule can be obtained as illustrated below:

Initial velocity of hydrogen atom (u₁) = 1.8×10³ m/sMass of hydrogen atom (m₁) = 1 gInitial velocity of chlorine atom (u₂) = 2.1×10³ m/sMass of chlorine atom (m₂) = 35.5 gVelocity of newly formed molecule (v) = ?

m₁u₁ + m₂u₂ = v(m₁ + m₂)

(1 × 1.8×10³) + (35.5 × 2.1×10³) = v(1 + 35.5)

1.8×10³ + 76650 = 36.5v

78450 = 36.5v

Divide both sides by 36.5

v = 78450 / 36.5

= 2.149×10³ m/s

Thus, the velocity of the newly formed molecule is 2.149×10³ m/s

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how do you balance this equation
2h2s+3o2+so2

Answers

The balanced equation is: 4 [tex]H_2S[/tex]+ 3 [tex]O_2[/tex]→ 4 [tex]SO_2[/tex]+ 8 [tex]H_2O[/tex]

The given chemical equation is unbalanced. To balance it, we need to adjust the coefficients in front of each chemical species until the number of atoms on both sides of the equation is equal.

The unbalanced equation is:

2 [tex]H_2S[/tex]+ 3 [tex]O_2[/tex]→ [tex]SO_2[/tex]

Let's start by balancing the sulfur (S) atoms. We have two sulfur atoms on the left side and one sulfur atom on the right side. To balance the sulfur, we can place a coefficient of 2 in front of the [tex]SO_2[/tex]:

2 [tex]H_2S[/tex]+ 3 [tex]O_2[/tex]→ 2 [tex]SO_2[/tex]

Now, let's balance the hydrogen (H) atoms. We have four hydrogen atoms on the left side (2 from each [tex]H_2S[/tex]) and none on the right side. To balance the hydrogen, we can place a coefficient of 4 in front of the water (H2O) on the right side:

2 [tex]H_2S[/tex]+ 3 [tex]O_2[/tex]→ 2 [tex]SO_2[/tex]+ 4 [tex]H_2O[/tex]

Finally, let's balance the oxygen (O) atoms. We have six oxygen atoms on the right side (3 from [tex]O_2[/tex] and 3 from 2 [tex]SO_2[/tex]) and three on the left side (2 from [tex]H_2S[/tex]). To balance the oxygen, we can place a coefficient of 3/2 in front of the O2:

2 [tex]H_2S[/tex]+ (3/2) [tex]O_2[/tex]→ 2 [tex]SO_2[/tex]+ 4 [tex]H_2O[/tex]

To remove the fractional coefficient, we can multiply all coefficients by 2:

4 [tex]H_2S[/tex] + 3 [tex]O_2[/tex]→ 4 [tex]SO_2[/tex]+ 8 [tex]H_2O[/tex]

Now the equation is balanced, with an equal number of atoms on both sides. The balanced equation is:

4 [tex]H_2S[/tex]+ 3 [tex]O_2[/tex]→ 4 [tex]SO_2[/tex]+ 8 [tex]H_2O[/tex]

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Which of the following happens during a chemical change? Check all of the boxes that apply.
One atom or more changes into atoms of another element.
New substances with different properties are formed.
Solids, liquids, or gases may form.
Reaction mixtures always give off some heat.
Reaction mixtures always need to be heated.
00

Answers

The correct options that apply during a chemical change are:

A) One atom or more changes into atoms of another element.

B) New substances with different properties are formed.

C) Solids, liquids, or gases may form. Option A, B and C

During a chemical change, the arrangement of atoms in molecules is altered, resulting in the formation of new substances with different chemical properties. This is represented by option B. For example, when hydrogen gas (H₂) reacts with oxygen gas (O₂), a chemical change occurs, and water (H₂O) is formed. The properties of water, such as boiling point, density, and chemical reactivity, are distinct from those of its constituent elements.

Additionally, during a chemical change, atoms can rearrange to form molecules of different elements, as indicated in option A. For instance, during a nuclear reaction, such as radioactive decay, the nucleus of an atom can change, leading to the formation of atoms of different elements.

Option C is also correct. Depending on the specific reaction conditions, chemical changes can result in the formation of solids, liquids, or gases. For example, when a metal reacts with an acid, such as zinc with hydrochloric acid, a gas (hydrogen) is produced.

Options D and E are not universally applicable to all chemical changes. While some reactions may release heat energy (exothermic reactions), others may absorb heat energy (endothermic reactions). The requirement for heating or the release of heat depends on the specific reaction and its energy considerations.

In summary, during a chemical change, atoms can change into atoms of another element (A), new substances with different properties are formed (B), and solids, liquids, or gases may form (C).

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What is the purpose of the cotton wool plug oh the conical flask

Answers

The purpose of the cotton wool plug on the conical flask is to permit the free passage of air over the edge of the flask and prevent the establishment of semi-anaerobic conditions in the culture. It can also be used to allow gases produced during a reaction to escape while preventing contaminants from entering the flask.

Other Questions
Each statement describes a transformation of the graph of f(x) = x. Which statement correctly describes the graph of g(x) if g(x) = f(9x)? O It is the graph of f(x) stretched vertically by a factor of . O It is the graph of f(x) shrunk vertically by a factor of 9. O It is the graph of f(x) shrunk horizontally by a factor of 9. It is the graph of f(x) stretched horizontally by a factor of 9. Grace manufactures and sells miniature digital cameras for $160 each. 1,500 units were sold in May, and management forecasts 4% growth in unit sales each month. (a) Determine the number of units of camera sales for the month of June. (b) Determine the dollar amount of camera sales for the month of June. he rock formed at a point bar environment could have a sedimentary texture called graded bedding Question 31 A requirement of the weathering process called "frost wedging" is the dissolution of calcite the oceanic pressures resulting from water at the equators turning to ice at the poles the volume expansion that happens when water turns to ice The edge of a cube was found to be 60 cm with a possible error of 0.1 cm. Use differentials to estimate the maximum possible error in the calculated volume of the cube. Error = ___________ cm Q.2: (a) A person receives 0.01 mGy dose from a radiation, and another person receives 0.04 mGy from thermal neutron radiation. Who is at greatest risk of cancer? Explain your answer.(b) A patient has received a committed equivalent dose of 0.3 Sv to her stomach during a year. What additional, uniform, whole-body external gamma-radiation dose could she receive without technically exceeding theNCRP annual limit on effective dose? Model the following 3 DOF system, first, that is write the governing differential equations. Convert to state-space. Then simulate them using MATLAB for the following cases. Masses are: m1 = 3m, m2 = 2m, m3 = m = 5 kg; b1 = b=4 N.s/m. b2=b1/2; b3=b1/3; k1=k=20N/m. k2-k3=2k; a. X1=3 m at time zero. Everything else, including f(t) is zero. b. Zeros ICs, and f(t)= step of magnitude 30 N. Write an assembly (8085) code to calculate power of a number. The number will be stored in memory location xx01 and the power will be stored in xx02. The number and the power can be anything, so your code has to be dynamic that works for any number. You need to store (number)power in location Xxx03 and xx04. There are two memory locations because you need to calculate the result using register pairs. So, your result will be 16 bits, store the lower 8 bits in xx03 and higher 8 bits in xx04. Here xx = last two digits of your ID. b. What is Instruction set? How many instructions there can be in an X bit microprocessor? Here X = Last digit of your ID + 3 Read the passage from The Race to Space:Countdown to Liftoff.Because nobody knew exactly what the damage was tothe CSM, it was too risky to fire up the engine. NASAdecided to do the correction by firing the LM engine-even though that was deigned only to land on themoon, not to propel the spacecraft through outer space!Plus, not only did they not know if this would work, butthe LM was at the back end of the craft, and all thenavigation equipment was in the CSM.Mark this and returnWhat is the main problem stated in this excerpt?O They were not sure how bad the damage to theCSM was.O They were not sure if the LM had an engine.O No one knew how to fire up the LM engineO No one remembered where the navigationequipment was.Save and ExitNextSubmit A business transport aircraft with a cruising speed of 300 knotat 26 000 ft employs two 1200-hp turboprop engines. A regularfour-blade composite prop is going to be used for each engine.Assume CLP The idea that congressional behavior is centrally motivated by members' desire for reelection.electoral connectionredistrictingapportionment Under which circumstance should we configure a GPIO pin to be in the input mode with pull up or pull down? We should always use this configuration. When the external line floats at times. We should never use this configuration. O When the pin is connected to multiple devices. ply by two Q: SRAM is more expensive than DRAM because the memory cell has * 1 transistor O 6 transistors O4 transistors O 5 transistors O 8 transistors 3 points A Select the correct hierarchy. Org \( > \) Sub \( > \) Org \( > \) Group \( > \) Sub-Group \( > \) Managed Endpoints Org>Group>Managed Endpoint Managed Endpoint \( > \) Sub Group \( > \) Org Org>Sub Gr JavaHash FunctionsCreate a Java Project (and package) named Lab10Make the main class with the name Hash_430At the TOP of the main class, declare a global private static integer variable named numprime and assign it the initial prime value of 271Below the main() method, write a public static method named hash_calc with an integer parameter and a return type of integerUse the parameter and the global variable numprime to calculate the reminder when they are divided. Have hash_calc return the remainder.Below the main() method, write a public static method named calcstring with one string parameter and an integer return type, the parameter is a 3 letter string:Convert character zero (0) to a number by subtracting 96, then multiply it by 26 squared.Convert character one (1) to a number by subtracting 96, then multiply it by 26 (26 to the 1st power).Convert character two (2) to a number by subtracting 96, then multiply it by one (26 to the zero power).Sum the three values and return the sum.Below the main() method, write a public static method named fullhash with one string parameter and an integer return typeIt will call the method calcstring and pass it the string parameter, assign the return value to a local variable.Then call the method hash_calc and pass it the local variable created aboveReturn the value that hash_calc returns.Inside the main() method:Declare a local variable named avarhash as an integerDeclare a local variable named avar_hash2 as an integerDeclare a local variable named array_slot as an integerCall the method hash_calc, pass it the parameter 76339 and assign the result to avarhashCall the method named calcstring, pass it the parameter "sam" and assign the return value to avar_hash2Call the method named fullhash, pass it the parameter "lee" and assign the return value to array_slotPrint the message 'Variable avarhash contains ' plus the value in the variable avarhashPrint the message 'Variable avar_hash2 contains ' plus the value in the variable avar_hash2Print the message 'Variable array_slot contains ' plus the value in the variable array_slot 9. A weather balloon is loosely inflated with helium at a pressure of 1.00 atm and a temperature of 25C. TL gas volume is 3.0 m. At an elevation of 20,000 ft, the atmospheric pressure is down to 0.35 atm and the heli has expanded, being under no restraint from the confining bag. At this elevation the gas temperature is -50C. What is the gas volume now? one outstanding characteristic of jamestown in its initial years was: Read the following passage from The Pickwick Papers by Charles Dickens:"On either side, the banks of the Medway, covered with corn-fields and pastures, with here and there a windmill, or a distant church, stretched away as far as the eye could see, presenting a rich and varied landscape, rendered more beautiful by the changing shadows which passed swiftly across it as the thin and half-formed clouds skimmed away in the light of the morning sun. The river, reflecting the clear blue of the sky, glistened and sparkled as it flowed noiselessly on; and the oars of the fishermen dipped into the water with a clear and liquid sound."Which of the following phrases from the passage most contribute to the peaceful mood?A.Fishermen dipped into the waterB.Glistened and sparkledC.As the eyeD.Changing shadows The Joint Commission requirements for full disclosure are similar to legal and ethical requirements. In certain cases, however, The Joint Commission requires disclosure of additional information. Which of the following is one of these cases? If f(x) is a linear function, f(4)=4, and f(2)=0, find an equation for f(x) f(x)= Use the box below to show your work. Be sure to show all algebraic steps. Full credit will be given to complete, correct solutions. Choose how to fill in the blank lines. When an Australian oil company purchases oil from Singapore and the Singaporean firm uses the proceeds from its sale of oil to Australia to buy Australian government debt, Australian _____ and there is a capital _____ to/from Australia.Select one:a. imports increase; inflowb. imports increase; outflowc. imports decrease; inflowd. exports increase; outflow