what is the wavelength of a 4.89 Hz wave

Answers

Answer 1
Final answer:

The wavelength of a wave can be calculated by using the formula λ = v/f, where v is the wave's speed and f is its frequency. Without knowing the type of wave or its speed, we cannot find the specific wavelength for a wave with a frequency of 4.89 Hz. If it's a sound wave in air, the wavelength would be approximately 70.14 m.

Explanation:

To calculate the wavelength of a wave with a given frequency, we use the formula for wave speed: v = fλ, where v is the speed of the wave, f is the frequency, and λ(lambda) is the wavelength. Typically, the speed of a sound wave in air is about 343 m/s. However, the question does not specify the type of wave or its speed, so we cannot make this assumption without more information. In general, with the speed of the wave and its frequency, we could re-arrange the formula to find the wavelength: λ = v/f.

Therefore, if the type of wave and its speed were known, you could substitute the given frequency and the known speed into the formula to find the wavelength. For instance, if you know that you're working with a sound wave travelling through air at room temperature (v approximately equal to 343 m/s), you could calculate the wavelength as follows: λ = v/f = 343 m/s / 4.89 Hz = approximately 70.14 m.

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Related Questions

PLEASE HELP!

List the 5 basic steps of the scientific method in order

Answers

Step 1: Ask a question or identify a problem. ...Step 2: Background research. ...Step 3: Form a hypothesis. ...Step 4: Experiment and observe. ...Step 5: Draw a conclusion.
Final answer:

The scientific method includes making observations, asking questions, researching, formulating a hypothesis, and testing the hypothesis through experimentation.

Explanation:

Steps of the Scientific Method

The scientific method is a process typically followed during a scientific investigation to gain knowledge and test ideas. The basic steps are:

Make observations about the natural world.Ask a question based on these observations.Conduct research to find out what is already known about the topic.Formulate a hypothesis, which is a testable prediction.Test the hypothesis through experimentation.

Following these steps correctly helps ensure that the conclusions drawn are based on reliable evidence and logical reasoning. If the hypothesis is not supported by the experiment, alternative hypotheses should be proposed and tested. The method encourages iterative testing and refinement of hypotheses.

Would extra mass in the crucible cause the "mass of oxygen" to come out too high or too low? Explain.

Answers

 Assuming that the experiment started with the magnesium and did not combine with oxygen, this extra mass would actually decrease the amount of oxygen. This is because it only artificially increases the original mass. Therefore this actually increases the error.

 

Answer:

too low

Final answer:

Extra mass in the crucible would cause the calculated mass of oxygen to be too high as it would be included in the total mass measured after reaction, leading to an overestimation of the mass of oxygen.

Explanation:

If extra mass is accidentally included in the crucible during the determination of the mass of oxygen that reacted with another substance, the recorded mass of the oxygen would come out too high. This is because when finding the mass of oxygen, you are typically determining the difference between the mass of the substance before reaction (possibly just the crucible if it's empty) and after it has reacted with the oxygen. If the initial mass is greater due to extra material or residue, this additional mass will falsely inflate the mass of the substance after the reaction, as well as the mass of the oxygen calculated.

For example, in experiments where oxygen combines with another substance in a combustion reaction to form an oxide, any additional mass not accounted for will be mistaken as part of the oxygen mass or the mass of the product. Therefore, to ensure accuracy, the crucible should be clean and contain only the substance intended for reaction.

To correct for this, one must subtract the mass of the crucible and the substance alone from the total mass of the crucible, substance, and any added oxygen after the reaction. This step is critical in obtaining only the mass of the product and thereby the accurate mass of the oxygen.

Two moles of lithium has a mass of 13.88g. true or false

Answers

that would be false your welcome
From the periodic table:
the mass of lithium = 6.941 grams
Since lithium is monoatomic, therefore, the molar mass of lithium = 6.941 grams

Now, we need to calculate the mass of two moles of lithium:
mass of two moles of lithium = 2 * 6.941 = 13.882 grams

Based on the above calculations, the answer is:
True

When is energy released during a chemical reaction?


when chemical bonds break and form

when chemical bonds form

when chemical bonds break

Answers

The correct option ls B.
During chemical reactions, energy is needed to break the chemical bonds which hold the molecules of the reactants together so that new bonds that yield products can be made. When new products are made in a chemical reaction, energy is always released. Thus energy is needed to break existing bonds and energy is released when new bonds are formed.
The answer is B. energy is only realesed when chemical bonds form.

which property is a measure of the average kinetic energy of the particles in the sample of matter

Answers

Temperature is a measure of the average kinetic energy of the particles in a sample. That's a definition of temperature.

How to measure mass of unknown metal using only graduated cylinder, dropper, dish, ruler funnel, and scoopula?

Answers

You can measure the mass of an unknown metal by using scale to find out its mass.
You can identify the unknown metal by finding out its density and then compare it with the density of known substances.
To find the density of the unknown metal, use weighing balance to measure the mass of the metal. And to find out its volume, use graduated cylinder to measure the differences that occur when the unknown metal is dropped inside the water in a graduated cylinder.
To calculate the density, divide the mass of the metal with its volume. The answer you obtain is the density of the metal. You can then compare your answer to densities of known substances in order to identify the unknown metal,

Final answer:

To measure the mass of an unknown metal using only a graduated cylinder, dropper, dish, ruler, funnel, and scoopula, you can use the displacement method.

Explanation:

To measure the mass of an unknown metal using only a graduated cylinder, dropper, dish, ruler, funnel, and scoopula, you can use the displacement method. Here are the steps:

Weigh the empty dish using a balance.

Fill the graduated cylinder with water up to a certain level and record the initial volume.

Carefully lower the metal into the graduated cylinder using the dropper, making sure it is fully immersed in water.

Measure the new volume of the water and metal in the graduated cylinder.

Calculate the volume of the metal by subtracting the initial volume from the final volume.

Determine the density of the metal by dividing its mass (obtained from the weighed dish) by its volume.

The mass of the unknown metal can then be obtained by multiplying its density by its volume.

Predict the mass of iron (III) sulfide produced when 3.0 g of iron filings react completely with 2.5 g of yellow sulfur solid, S8(s).

Answers

According to the principle of conservation of mass, the total mass in a system remains constant. Therefore, the total mass of reactants present will be equivalent to the total mass of products.

Mass of reactants = 3 + 2.5
Mass of reactants = 5.5

Therefore, the mass of product is 5.5 grams.

What form of oxygen is not toxic to microorganism is it oh-?

Answers

The correct answer would be O
                                                  2

Which feature do gas giants have that terrestrial planets do not?


a. volcanoes
b. rings
c. rift valleys
d. mountains

Answers

volcanoes or rings 
im  not  sure of valleys or mountains tho

 It will be B rings because gas giants (Jupiter, Neptune, Saturn, and Uranus) are mainly made up of gases and there cant be no volcanos because the gas giants have no oxygen and even if they did there far away from the sun so the heat does not reach so there is no life on the gas giants because the gases they are made up of there toxic so there's no life also the other four planets (Mercury, Venus, Mars, and Earth) are made of rock so they do have volcanos, and valleys, and mountains.                                                                                                                                       Your answer is B.

A material is ductile, conducts electricity, and is magnetic. The material is a _____.

Answers

Your answer would be metal.
I hope this helps .
The answer is metal. Metals are substances generally considered to be good conductors of electricity. They are also considered to be ductile and malleable which means they can be bent or stretched into think wires without breaking. Lastly, some metals like iron, cobalt, and nickel are strongly magnetic.

What compound is composed of 3 fatty acids and glycerol?

Answers

Final answer:

A Triglyceride is the compound composed of three fatty acids and glycerol, and serves as the main form of fat storage in the bodies of humans and other animals.

Explanation:

The compound composed of three fatty acids  and glycerol is known as a Triglyceride. Triglyceride is the main form of fat stored in the bodies of humans and other animals. During digestion, the body breaks down fats into fatty acids and glycerol, which can then be absorbed into the bloodstream. The body can use these components to produce energy or to reassemble them into triglycerides for storage and later use.

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during which step of the scientific method does a scientist determine whether the hypothesis was supported?
1- design an experiment
2- collect date
3- perform the experiment
4- draw conclusion

Answers

4-draw the conclusion
4 drawing conclusions

A molecule has a carbon atom that is best described by sp2 hybridization. how many other atoms are connected to this carbon? three one four two

Answers

Three atoms can be connected to the carbon atom with sp2 hybridization of a molecule.As sp2 hybridization for three sp2 hybrid orbitals which can only be connected to three other atoms.As an example is the ethene molecule(C2H4) which have 2 Carbon atoms with sp2 hybridization and one Carbon atom is connected with two hydrogen atoms and one carbon atom.
Final answer:

A carbon atom that exhibits sp2 hybridization is connected to three other atoms. This is due to the three regions of electron density surrounding the carbon atom in a trigonal planar arrangement.

Explanation:

In sp2 hybridization, the carbon atom is surrounded by three regions of electron density, positioned in a trigonal planar arrangement. This hybridized carbon atom is bonded to three other atoms. This situation can be seen in molecules like ethene (H2C=CH2) in which the carbon atom forms two single bonds with two hydrogen atoms and a double bond with another carbon atom. Therefore, an sp2 hybridized carbon atom is connected to three other atoms.

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What part of an atom freely moves from one atom to another in a good conductor?

Answers

In short, the electrons move very slowly through the conductor opposite to the direction of current flow (edit: originally I incorrectly stated electrons follow the same direction as the current). The electrons collide with the surrounding delocalised sea and (in a metal) the lattice structure of the said material.

Chemical reactions between metals and non- metals result in the formation of

Answers

When metals and non-metals react the metal element loses it's electron to the non-metal which result in it becoming positively charged (cation) while the non-metal who has gained more electrons than the proton in it's nucleus thus off-setting the neutral balance become negatively charged.  Once this happens, the ions become attracted to each other (opposites attract) and result in them forming very strong IONIC BONDS.

If an isotope of oxygen (O) has 1 less neutron, how many electrons does it have?

and
If an isotope of sodium (Na) has 2 extra neutrons, what is it’s atomic weight?

Answers

The oxygen isotope has the same amount of elextrons (8 electrons)

The atomic mass of the oxygen isotope would be 25

The number of electrons in the isotope of oxygen is eight. The atomic mass of sodium with 2 extra electrons is 25.

What is an isotope?

Isotopes are atoms of an element that have the same atomic number but a different atomic mass. Isotopes of an element carry the same number of electrons and protons. The numbers of neutrons in their respective nucleus is different.

For example, the isotope of oxygen is given as oxygen- 16, oxygen - 17, and oxygen-18 they all have eight electrons or protons.

If the number of neutrons in oxygen increase by one, it becomes the isotope of oxygen. As for isotope, the number of electrons is the same. So the electrons in the isotope of oxygen are equal to eight.

The mass number of sodium is 23 and If two extra neutrons are added to it. As we know, the mass number is equal to the sum of protons and neutrons. So atomic weight of the isotope will be equal to 25 i.e.(23 + 2).

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Bond energy what makes a reaction endothermic or exothermic worksheet answers

Answers

The gain or loss of heat energy is what makes a reaction either endothermic or exothermic. A reaction is said to be endothermic if it absorb heat from the environment while a reaction is described as exothermic if it gives out heat to the environment. During chemical reaction, the bond energy of the reactants needs to be broken and new bond has to be formed in the products. The formation and breaking of bonds requires energy,

A reaction is endothermic if the energy required to break the bonds in the reactants is greater than the energy released when forming the bonds in the products. Conversely, a reaction is exothermic if the energy released when forming the bonds in the products is greater than the energy required to break the bonds in the reactants.

Bond energy is the amount of energy required to break a chemical bond between atoms in a molecule. The concept of bond energy is crucial in understanding the thermodynamics of a chemical reaction, specifically whether a reaction is endothermic or exothermic.

In an exothermic reaction, the total energy of the products is lower than the total energy of the reactants. This means that the energy released when the bonds in the products are formed is greater than the energy absorbed to break the bonds in the reactants. As a result, the reaction releases energy to the surroundings in the form of heat. The overall energy change (H) for an exothermic reaction is negative because the system loses energy to the surroundings.

Mathematically, for an exothermic reaction:

[tex]\[ \text{Energy of reactant bonds} < \text{Energy of product bonds} \][/tex]

[tex]\[ \Delta H = \text{Energy of product bonds} - \text{Energy of reactant bonds} < 0 \][/tex]

In contrast, an endothermic reaction requires an input of energy to proceed because the energy needed to break the bonds in the reactants is greater than the energy released when forming the bonds in the products. The reaction absorbs energy from the surroundings, resulting in a positive H.

For an endothermic reaction:

[tex]\[ \text{Energy of reactant bonds} > \text{Energy of product bonds} \][/tex]

[tex]\[ \Delta H = \text{Energy of product bonds} - \text{Energy of reactant bonds} > 0 \][/tex]

To determine whether a reaction is endothermic or exothermic from bond energies, one would calculate the sum of the bond energies of the reactants and compare it to the sum of the bond energies of the products. If the reactants bond energy is greater, the reaction is endothermic; if the products bond energy is greater, the reaction is exothermic.

In summary, the comparison of the energy required to break bonds in the reactants to the energy released when forming bonds in the products determines whether a reaction is endothermic or exothermic. This concept is fundamental to understanding the energy changes that occur during chemical reactions.

Which solution contains the largest number of moles of chloride ions?

a.30.00 ml of 0.100m cacl2

b.10.0 ml of 0.500m bacl2

c.25.00 ml of 0.400m kcl

d.4.00 ml of 1.000m nacl

e.7.50 ml of 0.500m fecl3?

Answers

molarity = number of moles of solute/liters of solution
number of moles of solute = molarity x liters of solution

Part (a): 30.00 ml of 0.100m Cacl2
number of moles of CaCl2 =  0.1 x 0.03 = 3x10^-3 moles
1 mole of CaCl2 contains 2 moles of chlorine, therefore 3x10^-3 moles of CaCl2 contains 6x10^-3 moles of chlorine

Part (b): 10.0 ml of 0.500m bacl2
number of moles of BaCl2 = 0.5 x 0.01 = 5x10^-3 moles
1 mole of BaCl2 contains 2 moles of chlorine, therefore 5x10^-3 moles of BaCl2 contains 10x10^-3 moles of chlorine

Part (c): 4.00 ml of 1.000m nacl
number of moles of NaCl = 1 x 0.004 = 0.004 moles
1 mole of NaCl contains 1 mole of chlorine, therefore 4x10^-3 moles of NaCl contains 4x10^-3 moles of chlorine

Part (d): 7.50 ml of 0.500m fecl3
number of moles of FeCl3 = 0.5 x 0.0075 = 3.75x10^-3 moles
1 mole of FeCl3 contains 3 moles of chlorine, therefore 3.75x10^-3 moles of FeCl3 contains 0.01125 moles of chlorine

Based on the above calculations, the correct answer is (d)

The solution which contains the largest number of moles of Chlorine ions is Choice D: 7.50 ml of 0.500m fecl3.

Definition:

The molarity of a solution is simply the ratio of the number of moles of the solute to the liters of solution.

Molarity, M = number of moles of solute, (n) /liters of solution.

Number of moles of solute, n = molarity x liters of solution.

For Choice (a):

30.00 ml of 0.100m Cacl2

No. of moles of CaCl2 = 0.1 x 0.03 = 3x10-³ moles

Since, 1 mole of CaCl2 contains 2 moles of chlorine, therefore 3x10^-3 moles of CaCl2 contains 6x10^-3 moles of chlorine

For Choice (b):

10.0 ml of 0.500m BaCl2

No. of moles of BaCl2 = 0.5 x 0.01 = 5x10-³ moles

Since, 1 mole of BaCl2 contains 2 moles of chlorine, therefore 5x10-³ moles of BaCl2 contains 10x10-³ moles of chlorine

For Choice (c):

25.00ml of 0.400m KCl

No. of moles of KCl = 1 x 0.004 = 0.004 moles

Since, 1 mole of KCl contains 1 mole of chlorine, therefore 4x10-³ moles of KCl contains 4x10-³ moles of chlorine.

For Choice (d):

4.00 ml of 1.000m NaCl

No. of moles of NaCl = 1 x 0.004 = 0.004 moles

1 mole of NaCl contains 1 mole of chlorine, therefore 4x10-³ moles of NaCl contains 4x10-³ moles of chlorine.

For Choice (e):

7.50 ml of 0.500m fecl3

No. of moles of FeCl3 = 0.5 x 0.0075 = 3.75x10-³ moles

Since, 1 mole of FeCl3 contains 3 moles of chlorine, therefore 3.75x10-³ moles of FeCl3 contains 0.01125 moles of chlorine

Ultimately, The solution which contains the largest number of moles of Chlorine ions is Choice D: 7.50 ml of 0.500m FeCl3.

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Formic acid, hcooh, is a weak electrolyte. what solutes are present in an aqueous solution of this compound? write the chemical equation for the ionization of hcooh.

Answers

All acids form their conjugate base and a proton or H+ in an aqueous solution, in water. Since formic acid is an acid, although a weak electrolyte, it will react with water to form the conjugate base HCOO with a negative 1 charge. The other solute will be the proton H+, also written as hydronium H3O+.
Final answer:

Formic acid, HCOOH, is a weak electrolyte. In an aqueous solution, the solutes present are HCOOH molecules, H+ ions, and HCOO- ions. The chemical equation for the ionization of formic acid is HCOOH(aq) → H+ (aq) + HCOO- (aq). Only a small fraction of formic acid molecules dissociate into ions in solution.

Explanation:

HCOOH is formic acid, a weak acid. In an aqueous solution of formic acid, the solutes present are HCOOH molecules and the dissociated ions, H+ and HCOO-. The chemical equation for the ionization of formic acid is:

HCOOH(aq) → H+ (aq) + HCOO- (aq)

This equation shows that only a small fraction of formic acid molecules dissociate into ions in solution.

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Which of these best describes the bonding between oxygen and hydrogen in the water molecule?

Answers

It is a Polar Covalent.

lettie is having a problem in her experiment that she does not know how to solve. in order to move forward, letti needs to be a.creative b.opinionated c.curious d.skeptical

Answers

a. creative

hope this helps!

Lettie is having a problem in her experiment that she does not know how to solve. in order to move forward, letti needs to be a.creative

PLZ HELP!!

A _____ might be thought of as an inclined plane that moves.

wheel and axle

pulley

wedge

lever

Answers

The answer you're looking for is wedge
the answer to this is,wedge

6. The term fungus refers to which of the following? diseases commonly found in nature a type of mold a plant-based parasite a type of vermin found on people and animals

Answers

the answer would be A type of mold.

WILL MARK AS BRAINLIEST
Name the following ionic compounds.

Answers

Magnesium chloride
sodium bromide
Magnesium oxide
Nitrogen trifluoride
Aluminium chloride
Rubidium Sulfide
Gallium nitride
Calcium sulfide
Lead dioxide
Cobalt(II) oxide
beryllium nitride
REMEMBER BRAINLIEST ANSWER


What is the purpose of the uninoculated control tubes used in the oxidation fermentation test?

Answers

The purpose of the uninoculated control tubes used in this test is that two uninoculated control tubes are needed to show the results of the medium in both aerobic and anaerobic environments. It is used to show it is sterile and also as a color comparison, used also to show that the medium remains green under both conditions. 

how does a ribosomes structure relate to its function

Answers

Ribosomes are cellular structures that facilitate protein synthesis by linking amino acids to form a protein. They are composed mainly of rRNA and proteins, with the rRNA playing a crucial role in the alignment during synthesis and catalysis of peptide bond formation. The abundance of ribosomes in certain cells like pancreatic cells indicates their significant role in high-rate protein production.

Ribosomes are essential cellular structures that are responsible for protein synthesis. The term synthesis indicates the process of combining various amino acids to produce a complete protein. These ribosomes link amino acids in a specific sequence, forming a polypeptide chain that will fold into a functional 3-dimensional protein structure. The size and shape of a protein determine its function, highlighting the direct relationship between structure and function in ribosomal activity.

Composed mainly of ribosomal RNA (rRNA) and protein, ribosomes have subunits that work together during protein synthesis. The rRNA plays a critical role in ensuring the proper alignment of the messenger RNA (mRNA), transfer RNA (tRNA), and the ribosome itself during this process. Additionally, the rRNA possesses enzymatic activity and catalyzes the formation of peptide bonds, which are essential in linking amino acids.

Ribosomes are abundantly found in cells that produce substantial amounts of proteins, such as pancreatic cells. Since these cells are responsible for creating digestive enzymes, numerous ribosomes are required to meet the high demand for protein synthesis. This abundance exemplifies the concept that the form, or structure, of a cell or cellular component reflects its function.

The structure of ribosomes, which consists of ribosomal RNA (rRNA) and proteins, allows them to efficiently synthesize proteins by facilitating the translation of messenger RNA (mRNA) into polypeptides.

Composition and Structure:

Ribosomes are composed of two subunits: a larger subunit and a smaller subunit. These subunits are made up of ribosomal RNA (rRNA) and proteins. The large subunit typically contains enzymatic activity essential for forming peptide bonds, while the small subunit is responsible for reading the sequence of mRNA.

Binding Sites:

Ribosomes have three critical binding sites: the A (aminoacyl) site, the P (peptidyl) site, and the E (exit) site. This specific arrangement allows for the sequential addition of amino acids to the growing polypeptide chain. The A site holds the incoming aminoacyl-tRNA, the P site holds the tRNA attached to the growing polypeptide chain, and the E site is where the empty tRNA exits.

Translation Process:

During translation, ribosomes move along the mRNA strand, facilitating the pairing of tRNA anticodons with the corresponding mRNA codons. This ensures that the correct amino acids are incorporated in the proper sequence to form proteins.

Efficiency and Functionality:

The ribosomal structure allows for high efficiency in protein synthesis. The close proximity of the A and P sites enables rapid transfer of the growing polypeptide chain from one tRNA to another, speeding up the translation process.

When liquid water is heated to 100° c, it boils and becomes water vapor. when the vapor is cooled below 100° c, it turns back into a liquid. what is the correct name for the process in which the vapor turns back into a liquid?

Answers

Hello!
I believe it is called Condensation

Condensation is when the water vapor (gas) in the air turns into a liquid. (Like the fog on a mirror after you take a hot shower)

in some places there are deep cracks in earths crust called

Answers

I think they are called Faults.
isnt it a fault or a fissure

What is the mass of 3.09 x 10+24 atoms of sulfur in grams?

Answers

The mass of [tex]{\text{3}}{\text{.09}} \times {\text{1}}{{\text{0}}^{{\text{24}}}}[/tex] atoms of sulfur is [tex]\boxed{{\text{164}}{\text{.528 g}}}[/tex].

Further explanation:

Avogadro law:

According to Avogadro law, one mole of any substance contains [tex]{\text{6}}{\text{.022}} \times {\text{1}}{{\text{0}}^{{\text{23}}}}[/tex] particles. These particles can be atoms or molecules.

Firstly the number of moles of sulfur is to be calculated. This is done by using equation (1).

The formula to calculate the moles of sulfur is as follows:

[tex]{\text{Number of moles of S}} = \frac{{{\text{Number of atoms of S}}}}{{{\text{Avogadro's Number}}}}[/tex]             …… (1)

The number of atoms of S is [tex]{\text{3}}{\text{.09}} \times {\text{1}}{{\text{0}}^{{\text{24}}}}[/tex].

The value of Avogadro’s number is [tex]{\text{6}}{\text{.022}} \times {\text{1}}{{\text{0}}^{{\text{23}}}}{\text{ atoms}}[/tex].

Substitute these values in equation (1).

[tex]\begin{aligned}{\text{Number of moles of S}}&{\mathbf{=}}\left( {{\text{3}}{\text{.09}} \times {\text{1}}{{\text{0}}^{{\text{24}}}}{\text{ atoms}}}\right)\left({\frac{{{\text{1 mol}}}}{{{\text{6}}{\text{.022}} \times {\text{1}}{{\text{0}}^{{\text{23}}}}{\text{ atoms}}}}}\right) \\&={\text{5}}{\text{.1311}}\;{\text{mol}}\\\end{aligned}[/tex]

Now the moles calculated from equation (1) are used to evaluate the mass of sulfur. This is done by using equation (2).

The formula to calculate the mass of sulfur is as follows:

[tex]{\text{Mass of S}} = \left( {{\text{Moles of S}}} \right)\left( {{\text{Molar mass of S}}} \right)[/tex]           …… (2)

The moles of sodium are 5.1311 mol.

The molar mass of S is 32.065 g/mol.

Substitute 5.1311 mol for the moles of S and 32.065 g/mol for the molar mass of S in equation (2).

[tex]\begin{aligned}{\text{Mass of S}}&=\left({{\text{5}}{\text{.1311 mol}}}\right)\left({\frac{{{\text{32}}{\text{.065 g}}}}{{{\text{1 mol}}}}}\right)\\&=164.52{\text{8 g}}\\\end{aligned}[/tex]

Therefore the mass of sulfur is 164.528 g.

Learn more:

1. How many moles of Cl are present in 8 moles of [tex]{\text{CC}}{{\text{l}}_4}[/tex]? https://brainly.com/question/3064603

2. Calculate the moles of ions in HCl solution: https://brainly.com/question/5950133

Answer details:

Grade: Senior School

Subject: Chemistry

Chapter: Mole concept

Keywords: sulfur, mass, atoms, Avogadro’s law, 164.528 g, 32.065 g/mol, S, molar mass of S, moles of S, 5.1311 mol, moles.

Final answer:

The mass of 3.09 x 10²⁴ atoms of sulfur can be calculated by first determining the number of moles using Avogadro's number, then multiplying by sulfur's molar mass, resulting in 164.16 grams.

Explanation:

To find the mass of 3.09 x 10²⁴ atoms of sulfur in grams, we first need to use Avogadro's number, which tells us that one mole of any substance contains approximately 6.022 x 10²³ atoms. Knowing that the molar mass of sulfur (S) is 32 g/mol, we can calculate the mass of the given number of sulfur atoms.

Calculate the number of moles of sulfur atoms: Number of moles = (3.09 x 10²⁴ atoms) / (6.022 x 10²³ atoms/mol) = 5.13 moles.

Calculate the mass of sulfur: Mass = (5.13 moles) x (32 g/mol) = 164.16 g.

Therefore, the mass of 3.09 x 10²⁴ atoms of sulfur is 164.16 grams.

Determine the charge on each ion in the following compounds, and name the compound. Spelling counts!

Answers

I can't really answer his if there is no given. However, there are general rules to follow when naming ionic compounds. For example, if the given compound is written as: MgCl₂. 

There are two elements that we could find: Mg and Cl. The rule is to write the positive ion first, followed by the negative ion. The individual charges of each element is the subscript of the other. Since Cl has a subscript of 2, then Mg has a charge of +2. Since Mg has a subscript of 1, then Cl has a charge of -2.

Finally, the rule of naming the ionic compound is to name the ions individually in order, but you have to take the suffix -ide (if the charge is -1). Thus, the name of the compound is Magnesium Chloride,

1. Mg₃N₂: Magnesium nitride

charge Mg = +2

charge N = -3

2. Al₂S₃: Aluminum sulfide

charge Al = +3

charge S = -2

Further explanation

The naming of chemical compounds is giving a special name to a compound that aims to facilitate the classification of compounds and facilitate the identification of a compound. The rules for naming chemical compounds have been determined by the IUPAC (International Union of Pure and Applied Chemistry)

This nomenclature includes the naming of ion compounds, covalent compounds, and polyatomic

For ionic compounds consisting of cations (ions +) and anions (ions -)

The naming is preceded by the cation then the anion with the -ide suffix added

Generally for this ion compound consists of metal elements as cations and non-metals as anions

1. For metal and non-metal compounds

Metal: cation, positively charged.

Nonmetal: negative anion.

The anion cation's charge is crossed

Example:

Fe₂S₃

Fe charge = +3

S charge = -2

The name: metal + non-metal + -ide

Example: BaCl₂ -> Barium chloride

For transition metals, which have several oxidation charges / numbers, write the oxidation number in roman numbers

Example: SnO: lead (II) oxide

SnO₂: lead (IV) oxide

2. For metal and non-metal compounds

The naming: name non-metal + non-metal + suffix -ide

In the elements given the prefix mono, di, tri, tetra, penta if more than one element is formed

Example:

SO₂: Sulfur dioxide

SO₃: Sulfur trioxide

The question that needs to be completed is

Determine the charge on each ion in the following compounds, and name the compound. Spelling counts! (a) Mg₃N₂ Name: Charges: Mg N (b) Al₂S₃ Name: Charges: Al S

1. In the compound Mg₃N₂

load Mg = +2

charge N = -3

Name: Magnesium nitride

2. In the Al₂S₃ compound

Al load = +3

load S = -2

Name: Aluminum sulfide

Learn more

the chemical formula for each ionic compound.

https://brainly.com/question/11545331

two functional groups that contain ionic charges

https://brainly.com/question/1687047

Binary ionic compounds

https://brainly.com/question/2099598

Keywords: ionic compound, the naming of chemical compounds

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