How does the octet rule apply to ionic and covalent bonds?
Select all that apply. A. Carbon with 4 valence electrons can satisfy the octet rule by gaining one electron from four different hydrogen atoms, each with 1 valence electron. B. Carbon with 4 valence electrons can satisfy the octet rule by sharing one electron with four different hydrogen atoms, each with 1 valence electron. C. Chlorine with 7 valence electrons can satisfy the octet rule by sharing one electron with a lithium atom with only 1 valence electron. D. Chlorine with 7 valence electrons can satisfy the octet rule by gaining one electron from a lithium atom with only 1 valence electron.

Answers

Answer 1

The octet rule is applicable to both ionic and covalent bonding. The appropriate responses to the above question are -

B. Carbon with 4 valence electrons can satisfy the octet rule by sharing one electron with four different hydrogen atoms, each with 1 valence electron.

D. Chlorine with 7 valence electrons can satisfy the octet rule by gaining one electron from a lithium atom with only 1 valence electron.

The octet rule states that atoms tend to gain, lose, or share electrons in order to achieve a full outer shell of 8 electrons (or 2 electrons for hydrogen).

Option A is incorrect because it suggests that the carbon atom gains one electron from each of the four hydrogen atoms, which would result in the carbon atom having 8 electrons in its outer shell, violating the octet rule.

Option C is incorrect because it suggests that the chlorine atom shares one electron with the lithium atom, which would result in the chlorine atom having only 7 electrons in its outer shell, also violating the octet rule.

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Related Questions

how can you represent the composition of an ionic compound?

Answers

The composition of an ionic compound can be represented by its chemical formula, which shows the types and numbers of atoms in a unit of the compound.

Representing the composition of ionic compounds

Ionic compounds are composed of positively charged ions, called cations, and negatively charged ions, called anions.

The composition of an ionic compound can be represented by its chemical formula, which shows the types and numbers of ions in a unit of the compound.

The sum of the charges on the cations and anions must be equal and opposite in order for the compound to be electrically neutral.

For example, the chemical formula for magnesium chloride, an ionic compound, is MgCl2, which shows that it is made up of one magnesium ion (Mg2+) and two chloride ions (Cl-).

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What is the formal charge of an oxygen atom that forms three bonds and has one lone pair?
A. -2
B. -1
C. 0
D. +1
E. +2

Answers

Answer:         +1

Explanation: i took the test

What is the chemical name for bleaching?

Answers

Answer:

sodium hypochlorite is the chemical name for bleaching

Calcium hypochlorite

researchers have found that fetal heart rate ___ when it hears a familiar story, suggesting

Answers

Researchers have found that fetal heart rate Decreases when it hears a familiar story, suggesting that fetuses are soothed by familiar things.

The circulatory system of the fetus is distinct from that of a newborn infant because it does not use its own lungs until delivery. The fetal heart does not need to pump blood to the lungs to take up oxygen before delivery. In other words, the pulmonary artery and aorta do not need to be distinct for the fetal heart. These two blood arteries are linked in the fetal heart by a blood vessel known as the ductus arteriosus. The ductus closes after birth, and a distinct left pulmonary artery and aorta develop.

The foramen ovale, which is an opening between the top chambers of the fetal heart (the right and left atria), is also present. During fetal development, it allows blood to flow straight from the right atrium to the left atrium, but it closes after delivery. Thus, the foramen ovale and the ductus arteriosus are a component of the fetal heart.

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how much citric acid in red bull

Answers

The amount of the citric acid in the red bull is the 0.43 %.

The Citric acid is the organic compound with the chemical formula of the HOC(CH₂CO₂H)₂. The citric acid is the colorless weak organic acid. It will occurs naturally in the citrus fruits. In the biochemistry, the citric acid is the intermediate in the citric acid cycle, that will occurs in the metabolism of all the aerobic organisms.

The Citric acid will gives the Red Bull and its slightly sour kick and it is also acts as the preservative, while the magnesium carbonate helps to neutralize some of  the acidity.

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which of the following statements about molecular compounds are true? select all that apply: molecular compounds are typically composed of a metal and a nonmetal. molecular compounds typically have low melting and boiling points. molecular compounds are composed of discrete molecules. under normal conditions molecular compounds often exist as gases, liquids, or low-melting solids.

Answers

None of the statements about molecular compounds are true.

What is molecular compound?

A molecular compound is a type of compound that is made up of two or more nonmetal atoms that are covalently bonded together. In a covalent bond, the atoms share electrons in order to achieve a stable electron configuration. Molecular compounds are also called covalent compounds, and they are typically formed between nonmetal elements that have similar electronegativities. Examples of molecular compounds include water (H2O), carbon dioxide (CO2), and methane (CH4). Molecular compounds have several characteristic properties, including low melting and boiling points, poor electrical conductivity, and typically exist as gases, liquids, or low-melting solids at room temperature and pressure. They are also generally soluble in polar solvents, such as water, but insoluble in nonpolar solvents, such as oil.

Here,

Molecular compounds are typically composed of nonmetals or metalloids, not metals and nonmetals. They typically have low melting and boiling points, but not because of their composition; rather, they have weak intermolecular forces that hold the molecules together, rather than strong ionic or metallic bonds. Molecular compounds are indeed composed of discrete molecules, rather than extended lattices like ionic compounds. However, under normal conditions, molecular compounds can exist as gases, liquids, or solids with a wide range of melting and boiling points, depending on the strength of the intermolecular forces.

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Several antibiotics were tested on the following sensitivity plate. Based on just the zone of inhibition, which of the labeled antibiotics was the most effective? The least? 2 3 4 5 1 A. B. 3 Most v Least C. 4 Least 0.3 E.

Answers

Various medicines were tried on the sensitivity plate below, with the results being Most A. 1 Least B. 2. a zone of inhibition alone,

Why is there an inhibition zone?

There is an inhibitory zone surrounding the antibiotic that prevents bacterial colonies from growing. Use the inhibitory zone to estimate the bacteria's susceptibility to the antibiotic.

Why is there a huge zone of inhibition?

Little or no zones of inhibition suggest resistance, whereas large inhibitory zones suggest susceptibility. For zones that fall between the established cutoffs in the other interpretations, an explanation of intermediate is provided.

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Wich of the following statements best describes eutectic oomposition?
A. The composition of a mixture of two components that can never dissolve in one another.
B. The composition of a mixture of two components in an exact 1 :1 ratio.
C. The composition of a mixture of two components that generates the lowest possible melting point
D. The oomposition or a mixture of two components that generates the highest possible melting point.

Answers

C. The composition of a mixture of two components that generates the lowest possible melting point.

What is an electron transport chain and what is its role during the light reactions?

Answers

Answer :

An electron transport chain (ETC) is a series of proteins and other molecules embedded in a membrane, which transfer electrons from one molecule to the next. The ETC plays a key role in cellular respiration, photosynthesis, and other metabolic processes that involve the transfer of energy in living cells.

During the light reactions of photosynthesis, the ETC is located in the thylakoid membrane of the chloroplast. Its role is to transport electrons and protons from water to NADP+ (nicotinamide adenine dinucleotide phosphate) to form NADPH, which is a key energy carrier in photosynthesis.

In summary, the electron transport chain is a crucial component of the light reactions of photosynthesis, where it helps to generate energy-rich molecules (NADPH and ATP) that are used in the next stage of photosynthesis, the Calvin cycle.

the instructor reveals that the weak acid is hypochlorous acid, hocl. the known ka for hocl is 4.0×10-8. what is the percent error in the experiment?

Answers

The percent error in the experiment is 12.5%

What is a Percentage Error?

When comparing the estimated value to the actual value, the percent error is the difference, and it is given as a percentage.

How to find the percent error,

Let us find the % error in the experiment:

Given [tex]K_a = 4.0 * 10^-^8[/tex]

Original; Ka= 3.5 x 10^-8

Percent error = accepted value - experimental value/accepted value x 100

= 4.0 x 10^-8 - 3.5 x 10^-8/4.0 x10^10^-8 x 100

= 12.5%

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Which is NOT an example of a pure substance? A) Water. B) Air. C) A block of dry ice. D) Aluminum foil. E) Sugar

Answers

Option (b) is correct. Air is not an example of pure substances. Because it s made up of many substances and it does not have fixed formula.

A substance is said to be a pure substance which is a material that is free of impurities or contaminants. It has a constant chemical composition. No matter where you sample a pure substance, it is the same. Elements are the examples of pure substances. They consist of individual atoms, ions, or molecules. A pure chemical substance is a form of matter having constant chemical composition and characteristic properties. These chemical substance cannot be separated into its constituent elements by physical separation methods that is without breaking chemical bonds. AIr is not an example of pure substances.

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how many grams of sulfur make up 1.55 mol of sulfur?

Answers

49.70075 grams of sulfur make up 1.55 mol of sulfur. Sulfur atoms have masses of 32.07 amu and 32.07 g per mole, respectively.

G/mol units are the starting point for calculating molar mass. We can find out how many grams make up one mole of a chemical molecule by computing its molecular weight. The weight of a particular formula is just the sum of the atomic masses of all the constituent parts.

The National Institute of Standards and Technology, or NIST, provided the atomic weights used on this website. We employ the most typical atoms. This is how isotropically weighted averages are used to determine the molar mass (average molecular weight). This differs from molecular mass, which is the weight of a singular molecule made up of distinct isotopes. For computations involving bulk stoichiometry, Typically, we are calculating molar mass, also known as normal atomic weight or average atomic masses.

1 gram of sulfur equals how many moles? 0.031186652112896 is the correct response.

It is assumed that you are changing between grams and moles of sulfur.

sulfur's chemical weight in grams

Sulfur's chemical formula is S.

The mole is the SI base measure for substance amount.

Sulfur has a molecular weight of 1 mole, or 32.065 grams.

Rounding errors could happen, so make sure to always double-check your findings.

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a single electron in an orbital has quantum numbers n = 3, ℓ = 0, mℓ = 0, ms =-½. what are the quantum numbers for the next electron added to this orbital?

Answers

The quantum numbers for the next electron added to this orbital are n = 3, ℓ = 0, mℓ = 0, and ms = +½.

The quantum numbers for an electron in an orbital describe its energy level, angular momentum, magnetic moment, and spin. Based on the given quantum numbers for the first electron, we can determine the possible quantum numbers for the next electron added to this orbital.

The Pauli exclusion principle states that no two electrons in an atom can have the same set of four quantum numbers, so the quantum numbers for the second electron must be different from the first electron.

We know that the first electron has the following quantum numbers:

   Principal quantum number (n) = 3

   Azimuthal quantum number (ℓ) = 0

   Magnetic quantum number (mℓ) = 0

   Spin quantum number (ms) = -½

Since the azimuthal quantum number (ℓ) is 0, the first electron is in an s orbital. An s orbital can hold a maximum of 2 electrons, and when two electrons are in the same orbital, they must have opposite spins.

Therefore, the quantum numbers for the second electron added to this orbital must be:

   Principal quantum number (n) = 3

   Azimuthal quantum number (ℓ) = 0

   Magnetic quantum number (mℓ) = 0 (since the s orbital has only one orientation)

   Spin quantum number (ms) = +½ (since it must have the opposite spin to the first electron, which has ms = -½).

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A compound has the molecular formula C5H10O, and strong absorptions at 1100 and 3350 cm−1. Which is the most likely structure for the compound?A). Cyclopentanol. B). C-H. C). Hydrogen bonding. D. 2500-3300 cm-1.

Answers

Answer:

Explanation:

The strong absorption at 3350 cm−1 indicates the presence of an O-H group, while the absorption at 1100 cm−1 indicates the presence of a C-O bond. Based on this information and the molecular formula C5H10O, the most likely structure for the compound is cyclopentanol, which has the molecular formula C5H10O and contains both a C-O bond and an O-H group.

Therefore, the correct answer is (A) Cyclopentanol.

The answer choices (B) C-H and (C) Hydrogen bonding are not directly related to the given information about the absorption spectra and the molecular formula of the compound. The answer choice (D) 2500-3300 cm-1 is a range of absorption frequencies for N-H and O-H stretching vibrations, but the given information only refers to the absorption at 3350 cm−1, which is within this range and indicates the presence of an O-H group in the compound.

Final answer:

The compound with molecular formula C5H10O and strong absorption at 1100 and 3350 cm−1 is most likely Cyclopentanol, indicated by the presence of a hydroxyl group and C-O stretching.

Explanation:

The molecular formula C5H10O represents a compound with 5 Carbon atoms, 10 Hydrogen atoms, and 1 Oxygen atom. Given the absorption bands at 1100 and 3350 cm−1 within the infrared spectrum, the compound is most likely to be Cyclopentanol. The strong absorption at around 3350 cm-1 suggests the presence of an hydroxyl (—OH) group, characteristic for alcohols. The 1100 cm−1 peak can be attributed to C-O stretching. The structure of Cyclopentanol includes a five-member ring of carbons with the OH group attached to one of the carbons.

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how to find the number of neutrons

Answers

The number of neutrons in an atom can be found by subtracting the atomic number (number of protons) from the mass number (number of protons plus neutrons).

The mass number is typically found in the atomic symbol, which is written as follows: A X

Where A is the mass number (number of protons plus neutrons) and X is the chemical symbol of the element. The atomic number is usually written as a subscript to the left of the chemical symbol, as follows: A X Z

Where Z is the atomic number.

To find number of neutrons, simply subtract atomic number from the mass number:

Number of neutrons=Mass number-Atomic number

For example, the element carbon has an atomic number 6 and its mass number will be 12. To find the number of neutrons in a carbon atom, we subtract the atomic number from the mass number:

Number of neutrons= 12-6 = 6

Therefore, a carbon atom has 6 neutrons.

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Looking at the picture, how is it possible to determine the direction of blood flow from blood spatter?

Answers

It is possible to determine the direction of blood flow from blood spatter B. By looking at the shape of the drip and tail to see the possible direction.

How to determine the direction of blood flow?

The shape of blood spatter can provide information about the direction and speed of blood flow, as well as the angle of impact, the type of weapon or force that caused the bloodshed, and other details about the crime scene.

One way to determine the direction of blood flow from a blood spatter pattern is to examine the shape of the spatter. Blood drops that are elongated or have a tail shape may indicate the direction of travel of the blood, since they tend to be stretched in the direction of motion.

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How many formula units are in 12.5 g NH4Cl? (NH4CI, 53.5 g/mol) [?] [?]×10 fun NH4CI Coefficient (green) Exponent (yellow) Enter​

Answers

The term mole concept is used here to determine the number of formula units in 12.5 g NH₄Cl. The number of formula units is 1.403 × 10²³.

What is mole?

One mole of a substance is that amount of it which contains as many particles or entities as there are atoms in exactly 12 g of carbon-12. The number of moles (n) is calculated as:

n = Given mass /  Molar mass

n = 12.5 / 53.5 = 0.233 mole

In using the term mole for ionic substances, we mean the number of formula units of the substance. In order to obtain the formula units, multiply the number of moles with Avogadro number.

Number of formula units = 0.233 × 6.022 × 10²³ = 1.403 × 10²³

Thus the number of formula units is 1.403 × 10²³.

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Answer:

yellow is 23, the green is 1.403

Explanation:

no explanation for it but youre welcome

Which direction will heat energy transfer in this system, assuming the barrier is left in place
From the 300 K side
Back and forth
from the 75 k side

Answers

Heat energy will transfer from the 300 K side to the 75 K side due to the difference in temperature. The barrier will prevent the heat energy from transferring back to the 300 K side, so the heat energy will remain on the 75 K side.

What is Heat energy?

Heat energy is a form of energy that is produced when molecules move faster and have more kinetic energy. It is the transfer of energy from a hotter object to a cooler object and is a form of thermal energy. Heat energy is used in many everyday activities such as cooking, heating buildings, and running industrial processes. Heat energy can also be used to generate electricity by using steam turbines and other methods. Heat energy can also be used to produce mechanical energy to drive machinery. Heat energy is essential for life on earth as it helps to keep organisms warm and sustain certain chemical reactions that are vital for survival.

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how to find h3o from ka of a weak acid

Answers

The H₃O from ka of the weak acid is as follows :

[H₃O⁺] = √ Ka × [Ha]

The Ka for the weak acid is as follows :

Ka = [H₃O⁺]² / [HA]

[H₃O⁺] = √ Ka × [Ha]

The Weak acids are the acids that does not completely dissociate or it will be partially dissociates in to the solution. The weak acids can also be defined as the acid that will not the strong acid. The strength of the weak acid will be depends on that the how much it will dissociates as the more it will dissociates, the stronger will be the acid.

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You have 1 Liter of water and 1 Liter of orange juice. Explain how you would make a 50% solution of orange juice. EXPLAIN YOUR ANSWER.

Answers

Unpulped orange juice is a homogeneous combination. It's frequently referred to as a fix. No matter what portion of the combination we are looking at, the components are evenly dispersed.

How might one weaken a solution?

Dilution is indeed the process of lowering a solute's concentration in a solution. It usually just involves mixing the solution with more solvent, such more water. A solution is diluted when more solvent is added without increasing solute.

What occurs when juice is diluted with water?

As long as your serving size stays the same, diluting a sweet beverage with water reduces its calorie count. So if you decrease your sweet beverage yet still If you finish the entire drink, you won't actually consume fewer calories.

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The image shows how sodium is displayed in the periodic table with three characteristics labeled X, Y, and Z.
Which of the following examples is an exception to water as a universal solvent?

Answers

Because of its polar structure, which allows it to dissolve a wide variety of compounds, water is frequently referred to as a universal solvent.

What forms does sodium take in the natural world?

Sodium makes up 2.6% of the Earth's crust and is the sixth most prevalent element on the planet. Over the course of the planet's existence, this highly soluble salt has been leached into the oceans, although many salt beds or 'lakes' are located where ancient seas have evaporated.

What makes sodium a metal?

Because it is malleable, ductile, and an excellent conductor of electricity, sodium is a metal. Unlike carbon, which is neither glossy nor bendable and is a poor conductor of electricity, it may easily shed electrons from the valence shell.

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what is sodium atomic number?

Answers

The atomic number of sodium is 11.

This means that an atom of sodium having 11 protons in its nucleus. The number of protons in an atom's nucleus will determines its atomic number and its place on the periodic table of elements. Sodium is a soft, silvery-white metal that is highly reactive and it is commonly found in nature as a compound, often with chloride (NaCl) to form a table salt.

It has a relatively low melting point and it is a good conductor of electricity. Sodium is an essential element for human health, as it plays a critical role in many biological processes.

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how can splashes from the magnetic stirring of the titration be avoided?

Answers

It is possible to reduce splashing during magnetic stirring and minimize the risk of errors or contamination during titration if adequate steps are taken.

What causes splashes during titration?

Splashes during titration can be caused by the magnetic stirring bar, which can cause drops of the titrant or sample to fly out of the container.

Here are some tips to avoid splashes during magnetic stirring:

Use an appropriate stirring speed: When the stirring speed is too high, it can create more turbulence and cause splashing. Using a moderate speed that is enough to keep the solution mixed but not too fast can help reduce splashing.

Use a larger container: A larger container can help reduce splashing by providing more space for the solution to move around. This reduces the chances of drops hitting the sides of the container and splashing out.

Use a splash guard: A splash guard can be placed over the container to prevent the drops from flying out. A simple splash guard can be made using a piece of paper or plastic film with a hole in the center for the stirring rod.

Adjust the position of the stirring bar: The position of the stirring bar can also affect the amount of splashing. It should be placed in the center of the container, and the depth should be adjusted so that it is not too close to the surface of the solution.

Use a lower flow rate: If the titrant is being added to the sample through a burette, a lower flow rate can help reduce splashing. This allows the drops to be smaller and less likely to fly out of the container.

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what is perchloric acid formula?

Answers

The formula for perchloric acid is HClO₄.

Perchloric acid is a strong mineral acid that contains a central chlorine atom bonded to four oxygen atoms and a hydrogen atom. It is a colorless and odorless liquid that is highly corrosive and reactive, making it a potent oxidizer.

Perchloric acid is commonly used in laboratory and industrial settings for its strong oxidizing properties and ability to dissolve a variety of metals and organic compounds. It must be handled with care due to its potential to form explosive salts with organic materials and other reducing agents.

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The alpha helix and beta sheet are found at which level of protein organisation?
a. primary structure
b. secondary structure
c. tertiary structure
d. quatenary structure

Answers

The alpha helix and beta sheet are found at the secondary level of protein organisation. The alpha helix and beta sheet are the two most common secondary structures found in proteins.

What is the primary structure of proteins?

The primary structure of a protein is the linear arrangement of amino acids. In contrast, the secondary structure refers to the regular and recurring structural patterns that form due to hydrogen bonding interactions between the backbone atoms of the protein.

Define the terms alpha helix and beta sheet.

The alpha helix is a right-handed helix formed by a hydrogen bond between the carbonyl group of one amino acid and the amino group of another amino acid four residues away. On the other hand, the beta-sheet consists of two or more beta strands linked together by hydrogen bonds to form a flat, pleated sheet-like structure.

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as the temperature of an air mass increases, its volume ______ and density decreases.

Answers

As the temperature of an air mass increases, its volume increases, and its density decreases.

This is because warm air expands and takes up more space since its molecules move more quickly and widely. Although the volume has increased, the density has decreased since the same amount of air is now dispersed across a greater area. On the other hand, when air is chilled, its molecules slow down and close in on one another, which causes the air to constrict and increase in density.

Variations in air temperature and density can have a significant impact on weather and climate because they can alter how air masses behave, how clouds develop, and how air currents flow. So, understanding the relationship between temperature and density is crucial for forecasting and comprehending weather patterns as well as for making decisions regarding topics like air pollution and climate change.

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what is percent recovery formula

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Percent recovery is a formula used to determine the amount of a substance that has been successfully isolated. The percent recovery formula is: Percent Recovery = (Amount Recovered/Initial Amount) x 100.

This calculation is commonly used in chemistry and other scientific fields to determine the efficiency of a particular process, such as purification, separation, or extraction.

The percent recovery formula is:

Percent Recovery = (Amount Recovered / Initial Amount) x 100

In this formula, "Amount Recovered" refers to the total amount of the target substance that was obtained through the process, while "Initial Amount" refers to the original amount of the substance that was present in the starting material. The resulting value is then multiplied by 100 to express the percent recovery as a percentage.

For example, suppose you are attempting to extract a particular compound from a sample of 100 grams of a mixture. After the extraction process, you obtain 75 grams of the compound. Using the percent recovery formula, you can calculate the efficiency of the extraction process as follows:

Percent Recovery = (75 g / 100 g) x 100

Percent Recovery = 75%

This means that 75% of the target compound was successfully extracted from the original sample, while the remaining 25% was lost or remained in the mixture.

The percent recovery formula is a useful tool for assessing the effectiveness of various chemical processes, and can help scientists optimize their procedures to achieve higher yields and greater efficiency. However, it is important to note that the percent recovery calculation may be affected by various factors, such as impurities, losses during processing, or incomplete reactions. As such, it is important to carefully control and monitor all aspects of the process to ensure accurate and reliable results.

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what is mass of hydrogen

Answers

Every element's atomic mass is equal to the sum of its protons and neutrons. AMUs, or atomic mass units, are used to measure and represent atomic mass. Hence, atomic mass of hydrogen is  1.66×10−24g

What is hydrogen?

With only one electron and being the first and lightest element in the periodic table, hydrogen has an atomic number of 1. A hydrogen atom in isolation only has one proton, one electron, and no neutrons.Protons and neutrons together make up an element's atomic mass. The mass of a hydrogen atom is 1.67 1024 g, or 1.007 u, which is the mass of one proton.

Yet this mass is similar to the 1.66 1024 g atomic mass unit.Hydrogen has a mass of 1.007 amu because this factor can be expressed as 1.007 amu.

As a result, hydrogen has an atomic mass of 1.007 amu, or 1.66 1024 g.

The three isotopes of hydrogen are protium, deuterium, and tritium. Protium has an atomic mass of 1.007 amu since it only contains one proton and one electron. Deuterium has an atomic value of 2.014 amu because it has one proton and one neutron, whereas tritium has an atomic mass of 3.021 amu because it has one proton, one electron, and two neutrons. Average atomic mass is taken into account for isotopes.

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The reaction Fe (s) + Cl2 (g)→ FeCl2 (s) has a ΔH=−342kJ .
How much heat will be required to produce 1 mole of Fe by the reverse reaction?
A. -342 kj
B. -172 kj
C. 342 kj
D. 684 kj

Answers

Answer:

-342kj

Explanation:

Just did the test.

1 mole of Fe by the reverse reaction The correct answer is D. 684 k.

What is mole?

Mole is a unit of measurement used in chemistry to measure the amount of a substance. The mole is equal to the atomic mass of a substance expressed in grams. It is used to measure the amount of a substance, usually in moles per liter. The mole is also used to calculate the number of atoms, molecules, and other particles in a given volume or mass. The mole is an important concept in chemistry, and is used in many calculations related to chemical reactions, such as the calculation of molecular weights, reaction rates, and stoichiometry.

The reverse reaction of Fe (s) + Cl2 (g) → FeCl2 (s) is FeCl2 (s) → Fe (s) + Cl2 (g). The change in enthalpy (ΔH) is the amount of energy released or absorbed in a chemical reaction. In this case, the reaction has a ΔH of -342 kJ, meaning that 342 kJ of energy is released. To produce 1 mole of Fe by the reverse reaction, 684 kJ of energy must be absorbed, which is equal to twice the ΔH of -342 kJ. Therefore, the correct answer is D. 684 kJ.

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_____ fatty acids consist entirely of carbon-carbon single bonds.

Answers

Saturated fatty acids consist entirely of carbon-carbon single bonds. They have no carbon-carbon double bonds, and all of the carbon atoms in the fatty acid chain are saturated with hydrogen atoms.

This results in a straight, rigid structure that allows saturated fatty acids to pack tightly together, making them solid at room temperature. Examples of foods that are high in saturated fatty acids include butter, cheese, and fatty cuts of meat. Diets high in saturated fats have been associated with an increased risk of cardiovascular disease, so it is generally recommended to limit intake of saturated fats and replace them with healthier unsaturated fats.

However, diets high in saturated fats have been associated with an increased risk of cardiovascular disease, as they can raise levels of LDL ("bad") cholesterol in the blood. This is because saturated fats can increase the amount of cholesterol that the liver produces, which can build up in the walls of arteries and lead to blockages.

It is important to note that not all saturated fatty acids have the same effect on health. Some studies suggest that certain types of saturated fatty acids, such as those found in dairy products, may have neutral or even beneficial effects on cardiovascular health. However, more research is needed to fully understand the health effects of different types of saturated fats.

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