Using the data below, calculate the enthalpy for the combustion of C to CO

C(s) + O2(g)--> CO2 (g) ΔH1 = -393.5 kJ

CO(g) + 1/2O2(g) -->CO2(g) ΔH2= -283.0kJ

Target: C(s) + 1/2O2(g) --> CO(g) ΔH3=??

Group of answer choices

Answers

Answer 1

Answer:

ΔH3 = -110.5 kJ.

Explanation:

Hello!

In this case, by using the Hess Law, we can manipulate the given equation to obtain the combustion of C to CO as shown below:

C(s) + 1/2O2(g) --> CO(g)

Thus, by letting the first reaction to be unchanged:

C(s) + O2(g)--> CO2 (g) ; ΔH1 = -393.5 kJ

And the second one inverted:

CO2(g) --> CO(g) + 1/2O2(g) ; ΔH2= 283.0kJ

If we add them, we obtain:

C(s) + O2(g) + CO2(g) --> CO(g) + CO2 (g) + 1/2O2(g)

Whereas CO2 can be cancelled out and O2 subtracted:

C(s) + 1/2O2(g)  --> CO(g)

Therefore, the required enthalpy of reaction is:

ΔH3 = -393.5 kJ + 283.0kJ

ΔH3 = -110.5 kJ

Best regards!


Related Questions

Think about how you could design a robot to propel itself across an ice rink by applying the same principles that cause rockets to move. Describe what materials you would use and how the robot would work. What are some material limitations that you would need to consider for a robot moving on ice?

please help

Answers

Answer:

To design a robot that propels itself across an ice rink using the same principles as rockets, I would start by considering the materials that would be suitable for use on ice. Some materials that might work well for this purpose include plastic, rubber, and certain types of metal, such as aluminum or stainless steel.

Explanation:

The robot would work by using a propulsion system to generate a force that propels it forward. This could be achieved using a variety of methods, such as by using a jet engine or a rocket engine to produce a stream of hot gases that exits through a nozzle, creating a thrust force in the opposite direction.

One material limitation to consider when designing a robot that moves on ice is the coefficient of friction between the robot's surface and the ice. A material with a low coefficient of friction, such as rubber or plastic, would be better suited for movement on ice, as it would provide less resistance and allow the robot to move more easily. In contrast, a material with a high coefficient of friction, such as steel, would be more difficult to move on ice, as it would generate more resistance and require more force to overcome.

Other material limitations to consider when designing a robot for movement on ice might include the robot's weight and shape, as well as the overall stability and balance of the robot. It would also be important to consider the durability and wear resistance of the materials used, as the robot may need to withstand repeated movement on the ice over time.

Answer:

Explanation:

Students learn about humankind’s search for life in outer space and how it connects to robotics and engineering. NASA is interested in sending exploratory missions to one of Jupiter’s moons, Europa, which requires a lot of preparatory research and development on Earth before it can happen. One robot currently being engineered as a proof of concept for a possible trip to explore Europa is the Icefin, which is an innovative robot that can explore under ice and in water, which are the believed conditions on Europa. This lesson provides students with intriguing information about far off (distance and time!) space missions and field robotics, and also sets up two associated robotics and arts integration activities to follow. The lesson can be used individually to provide new information to students, or as a precursor to the associated activities. A PowerPoint® presentation and worksheet are provided

Which of the following choices describe the steps required to determine the empirical formula of a compound from the mass %? Select all that apply. Check all that apply. The mass percentage of each element is converted to moles using the mass mass formula molar mass If a compound contains 52% of mass of C, it can be assumed that there are 52 g of C in 100 g of the compound. Therato of atoms of each element must bo a rato of ntege nmbers If the sample contains 52 g of carbon, it is assumed that this compound has 52 mass percent of carbon. The mass percentages are divided among the smallest number to calculate the ratio of atoms of each element present.

Answers

The steps required to determine the empirical formula of a compound from the mass % are:

1. Convert the mass percentages of each element to moles using the molar mass formula.

2. Divide the mass percentages among the smallest number to calculate the ratio of atoms of each element present.

3. Ensure that the ratio of atoms of each element is a ratio of integer numbers.

What is empirical formula ?

The empirical formula of a compound is the simplest whole number ratio of the elements present in the compound. It is often represented using the symbols of the elements involved and can be calculated from the relative masses of the elements. It is helpful in identifying the composition of a compound. For example, the empirical formula for glucose is CH2O, indicating that there is one carbon atom, two hydrogen atoms, and one oxygen atom present in the compound.

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Which of the following is not an intensive physical property?

Answers

Answer:

You did not list any answer choices.....

Explanation:

Answer:

the answer choices are :

Electrical conductivity

Mass

Density

Freezing point

The amount of energy required to change 20g of water to steam is +150 KJ/mol. Calculate the standard heat of vaporization of water.​

Answers

The amount of energy required to change 20g of water to steam is +150 KJ/mol. The standard heat of vaporization of water is 7.5 KJ/mol.

What is heat of vaporization ?

The amount of energy required to convert a liquid to a vapour at constant temperature and pressure is known as latent heat. The heat of fusion is the energy required to convert a solid to a liquid, and the heat of sublimation is the energy required to convert a solid to a gas.

Given:

q = 150 KJ/mol.

m = 20gram

The standard heat of vaporization of water is calculated by given formula

Hv = q / m

Where,

Hv is heat of vaporization of water

q is heat energy

m is mass

By substituting given value in equation we get,

Hv = 150 / 20

= 7.5 KJ/mol

Thus, the standard heat of vaporization of water is 7.5 KJ/mol.

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PRODUCT IDEA - create a digital poster, concept map, or other graphic organizer to show the cause and effect of at least TWO different factors that influence climate and weather.

Answers

Title: Factors Influencing Climate and Weather

Factor 1: Solar Radiation

Cause: The Sun emits solar radiation, which reaches the Earth's surface and atmosphere.
Effect: Solar radiation is the primary energy source driving weather and climate processes. It heats the Earth's surface, causing temperature variations and affecting air pressure, wind patterns, and precipitation.
Factor 2: Ocean Currents

Cause: Ocean currents are driven by the uneven heating of the Earth's surface, the Coriolis effect, and variations in water density due to temperature and salinity differences.
Effect: Ocean currents redistribute heat around the globe, influencing regional climates. They can bring warm or cold water to different areas, affecting air temperature, humidity, and precipitation patterns.

Which of these represents an individual form of life such as an animal, plant, or single-celled life form?

A. Organ

B. Organism

C. Organ system

D. Tissue

Answers

Answer:

The answer is organism! I did some research.

Explanation:

Answer: The anwer is B i did the test

Explanation:

Use the balanced reaction provided to answer the following question:H2SO4 + 2NaOH → Na2SO4 + 2H2OIf you have 2 moles of H2SO4, how many moles of water (H2O) can you make?

Answers

So, we're given the following equation:

We're asked to find how many moles of H2O can we produce from 2 moles of H2SO4. For this, we need to look at the coefficients of each compound in the reaction.

As you can see, we have 1 mol of H2SO4 and 2 moles of water according to the reaction. This tells us that for each 1 mol of H2SO4, we can produce 2 moles of water, so there's a 1:2 ratio.

So, if we have 2 moles of H2SO4:

Therefore, the answer is 4 moles of H2O.

Use the balanced reaction provided to answer the following question:H2SO4 + 2NaOH Na2SO4 + 2H2OIf you
Use the balanced reaction provided to answer the following question:H2SO4 + 2NaOH Na2SO4 + 2H2OIf you

chuyển hoá Nh3 - chu trình ure​

Answers

Answer:

umm translate

Explanation:


7) How many molecules of CO2 are in 2.5 L at STP?

Answers

By using the ideal gas law and Avogadro's number, we find that there are approximately 6.72 × 10^22 molecules of CO2 in 2.5 L at STP.

To determine the number of molecules of CO2 in 2.5 L at STP (Standard Temperature and Pressure), we can use the ideal gas law and Avogadro's number.

Avogadro's number (N_A) is a fundamental constant representing the number of particles (atoms, molecules, ions) in one mole of substance. Its value is approximately 6.022 × 10^23 particles/mol.

STP conditions are defined as a temperature of 273.15 K (0 °C) and a pressure of 1 atmosphere (1 atm).

First, we need to convert the volume from liters to moles of CO2. To do this, we use the ideal gas law equation:

PV = nRT,

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

Since we have STP conditions, we can substitute the values:

(1 atm) × (2.5 L) = n × (0.0821 L·atm/(mol·K)) × (273.15 K).

Simplifying the equation:

2.5 = n × 22.4149.

Solving for n (the number of moles):

n = 2.5 / 22.4149 ≈ 0.1116 moles.

Next, we can calculate the number of molecules using Avogadro's number:

Number of molecules = n × N_A.

Number of molecules = 0.1116 moles × (6.022 × 10^23 particles/mol).

Number of molecules ≈ 6.72 × 10^22 molecules.

Therefore, there are approximately 6.72 × 10^22 molecules of CO2 in 2.5 L at STP.

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Write a net ionic equation for the reaction that occurs when aqueous solutions of hydrofluoric acid and barium hydroxide are combined. Include solubility states

Answers

Answer: The net ionic equation is \(2H^+(aq)+2F^-(aq)+Ba^{2+}(aq)+2OH^-(aq)\rightarrow BaF_2(s)+2H_2O(l)\)

Explanation:

The net ionic equation of any reaction does not include any spectator ions.

Spectator ions are defined as ions that do not get involved in a chemical equation. They are found on both the sides of the chemical reaction when it is present in ionic form.

The chemical equation for the reaction of hydrofluoric acid and barium hydroxide follows:

\(2HF(aq)+Ba(OH)_2(aq)\rightarrow BaF_2(s)+2H_2O(l)\)

The ionic form of the above equation follows:

\(2H^+(aq)+2F^-(aq)+Ba^{2+}(aq)+2OH^-(aq)\rightarrow BaF_2(s)+2H_2O(l)\)

There are no spectator ions in the ionic form.

The net ionic equation for the above reaction follows:

\(2H^+(aq)+2F^-(aq)+Ba^{2+}(aq)+2OH^-(aq)\rightarrow BaF_2(s)+2H_2O(l)\)

which is the graph of the function g(x) = f(-x)​

Answers

To graph the function g(x) = f(-x), you can start with the graph of f(x) and then reflect it about the y-axis.

What is a graph of the function g(x) = f(-x)?

To find the graph of the function g(x) = f(-x), we can start with the graph of the function f(x) and then reflect it about the y-axis.

If the graph of f(x) is symmetric with respect to the y-axis, meaning it is unchanged when reflected, then g(x) = f(-x) will have the same graph as f(x).

However, if the graph of f(x) is not symmetric with respect to the y-axis, then g(x) = f(-x) will be a reflection of f(x) about the y-axis.

In either case, the resulting graph of g(x) = f(-x) will be symmetric with respect to the y-axis.

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which is the graph of the function g(x) = f(-x)

An irregularly-shaped piece of zinc (Zn) has a mass of 69.8 grams.
What is the volume in cm of this piece of zinc if its density is 7.14
g/cm??

Answers

We have that the volume in cm^3 is mathematically given as

v=9.7759cm^3

Volume as a function of density and mass

Question Parameters

Irregularly-shaped piece of zinc (Zn) An irregularly-shaped piece of zinc (Zn) has a mass of 69.8 grams. its density is 7.14g/cm

Volume, in this context  is a function of density and mass of the object.

Generally the equation for the  Density is mathematically given as

\(\phi=m/v\)

Therefore

\(\\\ v=m/\phi\\\\v=69.8/7.14\\\\\)

v=9.7759cm^3

Hence, the calculated volume is

v=9.7759cm^3

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Which element belongs to the p6-block of the periodic table?
Oalkaline earth metals
Ohalogens
alkali metals
Onoble gases

Answers

Noble gasses I think I could be wrong tho

If 10.4 grams of iron metal react with 28.4 grams of silver nitrate, how many grams of iron nitrate can be formed and how many grams of the excess reactant will be left over when the reaction is complete? Show all of your work. unbalanced equation: Fe + AgNO3 Fe(NO3)3 + Ag

Answers

Answer:

71.1

Explanation:

1 mol Fe = 10.4 g/55.85 g/mol = 0.186

1 mol AgNo3 = 28.4 g/169.87 g/mol = 0.178 mol AgNo3

then since Ag:Fe is 1:3, AgNo3 is the limiting reactant

So now

0.178 moles * 1/3 * 241.83 g/mol Fe(NO3)3 = 14.35 g Fe(NO3)3

Excess reactant: 0.178 moes AgNO3 * 1/3 = 0.059

0.186 - 0.059 = 0.127 moles Fe * 55.85 g/mol Fe = 7.1 g Fe excess

advantages of rusting

Answers

Answer:

there are many advantages

Explanation:

Rust has a strong memory management system. It assigns each piece of memory to a single owner and determines who can access it. It also ensures parallelized code, enabling software to run safely on multiple processors. Rust is easier to maintain and debug.

hope it helps you

A Terrestrial biome:
must include mountains.
is found on land.
has at least one major body of water.
None of these choices are correct.

Answers

A terrestrial biomes is found on land.

What is terrestrial biome ?

A terrestrial biome is a type of ecological community of plants, animals, and other organisms that are adapted to a specific group of terrestrial ecosystems characterized by specific climatic conditions, vegetation types, and soil types. Terrestrial biomes include forests, grasslands, tundras, deserts, and other types of land-based ecosystems. Each terrestrial biome has unique features, such as characteristic types of vegetation, specific adaptations of animals and plants, and particular climate conditions. Understanding terrestrial biomes is essential to studying ecology and understanding how ecosystems function and respond to environmental changes.

A terrestrial biome refers to a biome that exists on land, including forests, grasslands, deserts, and tundras, among others. Mountains may be part of some terrestrial biomes, but they are not a requirement for a biome to be considered terrestrial. Major bodies of water are typically associated with aquatic biomes.

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How many moles of CO are required to produce 45.0 L of carbon dioxide at STP?

2 CO(g) + O2(g) —> 2 CO2(g)

Answer should written as X.XX moles CO

Answers

Answer:

ang hirap na nag tanung

2) Make Flash cards elaborating following terms with example: i. Mole ii. Compounds iii. Molecular Mass iv. Types of Mixture v. Free Radical vi. Gram formula mass

Answers

(i) A mole is the amount of a substance containing 6.022 × 10²³ particles.

(ii) Compounds are formed by the chemical bonding of different elements.

(iii) Molecular mass is the sum of atomic masses in a molecule.

(iv) There are two types of mix homogeneous and heterogeneous mixtures.

(v) Free radicals are highly reactive species with unpaired electrons.

(vi) Gram formula mass is the sum of atomic masses expressed in grams per mole.

(i) Mole: A mole is defined as the quantity of a substance that has an equal number of particles that are in 12 grams of carbon-12.

It is denoted by mol and is used in chemistry to measure quantities of atoms or molecules.

Example:1 mol of oxygen gas contains 6.022 × 10²³ oxygen molecules.

(ii) Compounds: Compounds are substances made up of two or more different elements that are chemically bonded together.

They can be broken down into simpler substances through chemical reactions.

Example:Water (H2O) is a compound made up of two hydrogen atoms and one oxygen atom that are chemically bonded together.

(iii) Molecular Mass: The molecular mass of a compound is the sum of the atomic masses of all the atoms in the molecule.

It is expressed in atomic mass units (amu) or grams per mole.

Example:The molecular mass of water (H2O) is 18.015 amu.

(iv) Types of Mixture: A mixture is a combination of two or more substances that are not chemically combined.

There are two types of mixtures - homogeneous and heterogeneous.

Example:A homogeneous mixture is a solution, such as saltwater, where the solute (salt) is evenly distributed in the solvent (water).

A heterogeneous mixture is a mixture that is not evenly distributed, such as oil and water.

(v) Free Radical: A free radical is an atom or molecule that has an unpaired electron in its outer shell and is highly reactive. They can be both harmful and helpful to the human body.

Example:A common free radical is the hydroxyl radical (OH·) that is formed by the body during metabolism.

(vi) Gram formula mass: The gram formula mass is the sum of the atomic masses of all the atoms in a compound.

It is expressed in grams per mole and is used to determine the mass of a certain number of molecules or atoms.

Example:The gram formula mass of water (H2O) is 18.015 g/mol.

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An unknown element (Uk) has three isotopes, as presented in
the table below. One of the percentage values is missing.
After calculating the missing percent abundance (%).
determine the average atomic mass of Uk.
Enter your answer to the hundredths place.
Percent
Abundance
(%)
Uk-66 65.994 58.00
Isotope Mass
Notation (amu)
Uk-69 68.958
Uk-71 70.975
10.00
?

Answers

The average atomic mass of the element, Uk is 67.44 amu.

What is the average atomic mass of the element, Uk?

The average atomic mass of the element Uk is determined from the sum of the isotopic masses of the isotopes of the element and their relative abundances.

average atomic mass = sum of (isotopic mass * relative abundance) of the isotopes

The isotopic masses and relative abundance of the isotopes are given below:

Isotope:Uk-66; Isotopic mass = 65.994; relative abundance = 58.00%

Isotope:Uk-69; Isotopic mass = 68.958; relative abundance = ?

Isotope:Uk-71; Isotopic mass = 70.975; relative abundance = 10.00%

Relative abundance of Uk-69 = 100% - (58 + 10)% = 32%

The average atomic mass of Uk =  (65.994 * 58.00%) + (68.958 * 32%) + (70.975 * 10.00%)

The average atomic mass of Uk = 67.44 amu

In conclusion,  the average atomic mass of an element is obtained from the of the isotopic masses of the isotopes of the element and their relative abundances.

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Complete, balance and write the net ionic equation for the following reaction: CH3COOH(aq) + NaOH(aq)

Answers

The net ionic equation for CH3COOH(aq) + NaOH(aq) reaction is; CH3COOH(aq)+OH⁻(aq)→CH3COO⁻(aq)+H2O(l)

The acetic acid will react with sodium hydroxide to give sodium acetate and water. The molecular equation is shown below.
CH3COOH(aq)+NaOH(aq)→CH3OONa(aq)+H2O(l)
The above molecular equation is already balanced as there are the same numbers of elements on both sides. This reaction is an acid base reaction as an acid and a base react to form salt and water.

Both acetic acid and sodium hydroxide will exist in the form of their constituent ions because they are soluble in aqueous solution.
By breaking all the strong electrolytes in to their constituent ions, we get the complete ionic equation as follows:
CH3COOH(aq)+Na^+(aq)+OH⁻(aq)→CH3COO⁻(aq)+Na^+(aq)+H2O(l)
By removing the spectator ions we can get the net ionic equation.
In the complete ionic equation, Na+ ion is the spectator ion as it is present on both the sides of the equation. So by removing it we can get the net ionic reaction.
The net ionic equation is shown as follows:
CH3COOH(aq)+OH⁻(aq)→CH3COO⁻(aq)+H2O(l)

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How many liters of O2(g) at STP are evolved when 3.25 g of KNO3 decompose to KNO2 (s) and O2(g)?

2 KNO 3 (s) <=> 2KNO2 (s) + 02 (g)​

Answers

Answer:

0.359 L or 359 mL of O2 gas will be produced from the given reaction at STP

Explanation:

The balanced chemical equation for the decomposition of KNO3 is:

2 KNO3 (s) → 2 KNO2 (s) + O2 (g)

From this equation, we can see that 2 moles of KNO3 produce 1 mole of O2. Therefore, we need to calculate the number of moles of KNO3 we have and use the mole ratio to find the number of moles of O2 produced.

First, we need to convert the mass of KNO3 given to moles:

moles of KNO3 = mass of KNO3 / molar mass of KNO3

The molar mass of KNO3 is 101.1 g/mol (39.1 g/mol for K, 14.0 g/mol for N, and 3 x 16.0 g/mol for 3 O atoms), so we have:

moles of KNO3 = 3.25 g / 101.1 g/mol = 0.0321 mol

Now we can use the mole ratio from the balanced equation to find the number of moles of O2 produced:

moles of O2 = 0.5 x moles of KNO3

moles of O2 = 0.5 x 0.0321 mol = 0.01605 mol

Finally, we can convert the number of moles of O2 to volume at STP using the ideal gas law:

V(O2) = n x RT/P = (0.01605 mol)(0.0821 L·atm/(mol·K) x 273.15 K)/(1 atm) = 0.359 L

Therefore, 0.359 L or 359 mL of O2 gas will be produced from the given reaction at STP.

Calculate and record the following data in the table. Name Propane Butane Methane
Molar volume (L/mol) _____ _____ _____
Average molar volume (L/mol) _______________________
Propane molar volume: ______ L/mol butane molar volume: ______ L/mol

Answers

The molar volume and average molar volume of propane, butane, and methane at STP are 24.45 L/mol , 24.93 L/mol ; 28.02 L/mol , 24.93 L/mol and 22.41 L/mol , 24.93 L/mol respectively.

The molar volume of a gas is defined as the volume occupied by one mole of gas at standard temperature and pressure (STP), which is defined as 0°C and 1 atm.

The molar volume of a gas can be calculated using the ideal gas law,

PV = nRT,

where P is pressure, V is volume, n is number of moles, R is the gas constant, and T is temperature in kelvins.The molar volumes of propane, butane, and methane at STP can be calculated as follows:

Propane: C₃H₈

At STP (0°C and 1 atm), the molar volume of propane can be calculated as:

V = (nRT) / P

V = (n x 0.0821 x (273.15 + 0) / 1) / 1

V = 24.45 L/mol

Butane: C₄H₁₀

At STP (0°C and 1 atm), the molar volume of butane can be calculated as:

V = (nRT) / P

V = (n x 0.0821 x (273.15 + 0) / 1) / 1

V = 28.02 L/mol

Methane: CH₄

At STP (0°C and 1 atm), the molar volume of methane can be calculated as:

V = (nRT) / P

V = (n x 0.0821 x (273.15 + 0) / 1) / 1

V = 22.41 L/mol

The average molar volume is the sum of the molar volumes divided by the number of gases:

Average molar volume = (24.45 + 28.02 + 22.41) / 3

Average molar volume = 24.93 L/mol

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Calculate and record the following data in the table. Name Propane Butane MethaneMolar volume (L/mol)

1. What type of saccharide is table or granulated sugar? Dr. Sloan has started a chemistry blog and has written many posts. Season 2 is about chemistry in the real world, and one of the articles is titled "Added sugar is toxic." Read through this blog article, and tell me if you agree with its conclusions. What do you think of the FDA changing the food labeling?

2. Pick two or more of your favorite soda or snack foods and list the sugars it has in it. Almost all sodas and snack foods have sugar in them or artificial sweeteners. Calculate how much of these sugars you are eating in a month - does it seem excessive or not to you?

Here are the links :

http://elementlearning.com/chemistry-blog

http://elementlearning.com/chemistry-blog/s2-ep-8-added-sugar-is-toxic

Answers

   Table or granulated sugar is a disaccharide known as sucrose, which is made up of glucose and fructose molecules.

After reading the blog article "Added sugar is toxic," I can say that it presents a well-researched argument with supporting scientific evidence that consuming excessive added sugars can have detrimental health effects. The article explains how consuming too much added sugar can lead to obesity, type 2 diabetes, heart disease, and other health problems. It also discusses how added sugars are found in many processed foods and drinks, and the importance of reading food labels to avoid consuming too much sugar.

What is granulated sugar?

Regarding the FDA's food labeling change, the article suggests that it is a step in the right direction, as it requires food manufacturers to disclose the amount of added sugars in their products, which can help consumers make informed decisions about their food choices.

For example, Coca-Cola contains high-fructose corn syrup, which is a sweetener made from corn starch. A 12-ounce can of Coca-Cola contains about 39 grams of sugar, which is equivalent to 10 teaspoons of sugar. S

Therefore, Calculating the amount of sugar a person consume in a month depends on your consumption habits. For example, if you drink one can of Coca-Cola every day, you will consume about 1170 grams of sugar (or 292.5 teaspoons of sugar) in a month, which is excessive. It's essential to be mindful of the amount of sugar in the foods and drinks you consume and make informed choices to maintain a healthy diet.

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How many atoms are present in 0.529 moles of Li?

Answers

Answer:

3.18 × 10²³ atoms

Explanation:

The number of atoms can be found by using the formula

N = n × L

where n is the number of moles

N is the number of entities

L is the Avogadro's constant which is

6.02 × 10²³ entities

From the question we have

N = 0.529 × 6.02 × 10²³

We have the final answer as

3.18 × 10²³ atoms

Hope this helps you

1) A container holds 5,000 mL of CO2 at 742 atm. What will be the volume of the CO2 if the pressure is increased to 795 atm?​

Answers

Answer:

\(V_2=4667mL\)

Explanation:

Hello there!

In this case, based on the given information, it is possible for us to provide an answer to this question by using the Boyle's law as directly proportional relationship between volume and pressure:

\(P_2V_2=P_1V_1\)

Thus, by solving for the final volume, V2, as required, we obtain the following:

\(V_2=\frac{P_1V_1}{P_2} \\\\V_2=\frac{5,000mL*742atm}{795atm}\\\\V_2=4667mL\)

Regards!

A change resulting in one or more new substances being formed is a?

A. nuclear reaction
B.physical property
C. chemical change
D.physical change

Answers

Answer:

C. Chemical change

Explanation:

A physical change is where something is changed but it doesnt affect the build up of the chemical. For example, if you broke sticks and threw them on the ground, that would be a physical change because the change is happening to the physical being of the object and not its chemical buildup. However, if you lit those sticks on fire, that would be considered a chemical change because you end up with two substances, ash and the remnants of the stick. A nuclear reaction would result in something blowing up so its not that. And a physical property is like what it looks like or how it smells. Hope I helped you!

Explain this method (Froth floatation method)..........​

Explain this method (Froth floatation method)..........

Answers

Answer:

froth flotation is a technique commonly used in the mining industry. In this technique, particles of interest are physically separated from a liquid phase as a result of differences in the ability of air bubbles to selectively adhere to the surface of the particles, based upon their hydrophobicity.

Explanation:

Froth floatation method is commonly used to concentrate sulphide ore such as galena (PbS), zinc blende (ZnS) etc. (ii) In this method, the metaalic ore particles which are perferentially wetted by oil can be separated from gangue. (iii) In this method, the crushed ore is suspended in water and mixed with frothing agent such as pine oil, eucalyptus oil etc. (iv) A small quantity of sodium ethyl xanthate which act as a collector is also added. (v) A froth is generated by blowing air through this mixture. (vi) The collector molecules attach to the ore particles and make them water repellent. (vii) As a result, ore parrticles, wetted by the oil, rise to the surface along with the froth. (viii) The froth is skimmed off and dried to recover the concentration ore. (ix) The gangue particles that are preferentially wetted by water settle at the bottom.

Complete the input-output table for the linear function y = 3x.
x y
-2
-1
0
1
2
3
a=
a
ماس
-3
0
3
b
С
b=
C=

Answers

To complete the table for the linear function y = 3x, we need to substitute each value of x into the equation and calculate the corresponding value of y.

x y
-2 -6
-1 -3
0 0
1 3
2 6
3 9

To find the values of a, b, and C, we can look for a pattern in the input-output table.

The value of a is the y-intercept of the function, which is the value of y when x = 0. From the table, we can see that y = 0 when x = 0, so a = 0.

The value of b is the slope of the function, which is the change in y over the change in x. From the table, we can see that the change in y is 3 when the change in x is 1, so b = 3.

The value of C is the output when x = -3. From the table, we can see that y = -9 when x = -3, so C = -9.

Therefore, the completed table and values of a, b, and C are:

x y
-2 -6
-1 -3
0 0
1 3
2 6
3 9

a = 0
b = 3
C = -9

how many mL of 0.1M HCl are required to react completely with 1 g mixture of \( Na_{2}CO_{3}\) and \( NaHCO_{3} \) containing equimolar amounts of both ?

ty! :)​

Answers

Answer:

158 mL

158 mL of 0.1 M of HCl is required to react completely with 1 g mixture of Na2CO3 and NaHCO3, containing equimolar amounts of both

Explanation:

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btw masoom bachi copied me~

Part 1: Fill in the blanks below to state Newton’s three laws of motion:

Newton’s First Law: All objects will remain at _____, or will continue to move at a constant _____ in the same ____ unless acted upon by an unbalanced _____. This property is called _____.

Newton’s Second Law: Unbalanced forces cause an object to ______.

Newton’s Third Law: Every action produces an equal and opposite _____. When one object exerts a force on another object, the second object pushes back with the same amount of _____.

Answers

Answer:

all objects will remain at rest, or will continue to move at a constant speed in the same velocity unless acted upon by an unbalanced force. This property is called interia

Explanation:

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