Which of the following is true in regard to ions?

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

Answers

Answer 1

Answer: The correct answer is Option A.

Explanation:

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

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

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

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

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

Hence, the correct answer is Option A.

Answer 2

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

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

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

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

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Related Questions

A concentrated solution in water will always contain a strong or weak electrolyte true or false

Answers

This is a false statement. While a solution in water might have a strong or weak electrolyte, there are also occasions where it might contain a non-electrolyte. Two examples of these types of solutions that will not be electrolytic would be a sugar solution or ethanol.

One radioactive isotope of calcium has an atomic mass number of 47. How many neutrons are in the calcium-47 nucleus?

Answers

isotope means having the same number of protons but different number of neutrons.
Thus, by looking at the periodic table the prton number is 20.
no. of neutrons in the isotope of Ca=47-20
Therefore the number of neutrons in calcium-47 is 27 neutrons.

Answer: The number of neutrons in the given isotope are 27.

Explanation:

Atomic number is defined as the number of electrons or number of protons that are present in a neutral atom. It is represented as Z.

Z = Atomic number = Number of electrons = Number of protons

Mass number is defined as the sum of number of protons and number of neutrons present in an atom. It is represented as A.

A = Mass number = Number of protons + Number of neutrons

Number of neutrons = Mass number - Atomic number

We are given an isotope having representation:  [tex]_{20}^{47}\textrm{Ca}[/tex]

Atomic number or number of protons = 20

Mass number = 47

So, number of neutrons = 47 - 20 = 27

Hence, the number of neutrons in the given isotope are 27.

How many grams of CO2 are used when 7.0 g of O2 are produced?

Answers

Final answer:

The question cannot be answered as posed because a specific chemical reaction and balanced equation are needed to relate the masses of O2 and CO2.

Explanation:

To answer how many grams of CO2 are used when 7.0 g of O2 are produced, we assume the process is a typical combustion or respiration reaction, where CO2 is generated from O2, or vice versa. The balanced chemical equation for the combustion of carbon would typically be C + O2 → CO2. However, since we are given the mass of O2 produced, and not the mass of a carbon-containing fuel that reacts, we cannot proceed to calculate the mass of CO2 without additional information on the specific reaction involved, including the stoichiometry that defines the mass relationship between O2 and CO2. Therefore, we must have a balanced equation or a known reaction to relate the masses of O2 and CO2 produced in order to provide a specific answer.

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9.62 grams of [tex]\( \text{CO}_2 \)[/tex] are used when 7.0 grams of [tex]\( \text{O}_2 \)[/tex] are produced.

One common reaction where [tex]\( \text{O}_2 \)[/tex] is produced and [tex]\( \text{CO}_2 \)[/tex] is consumed is photosynthesis:

[tex]\[ 6 \text{CO}_2 + 6 \text{H}_2\text{O} \rightarrow \text{C}_6\text{H}_{12}\text{O}_6 + 6 \text{O}_2 \][/tex]

From this balanced equation, we see that 6 moles of [tex]\( \text{CO}_2 \)[/tex] produce 6 moles of [tex]\( \text{O}_2 \)[/tex]. This means that 1 mole of [tex]\( \text{CO}_2 \)[/tex] produces 1 mole of[tex]\( \text{O}_2 \).[/tex]

Step-by-Step Solution:

1. Determine the molar mass of [tex]\( \text{O}_2 \)[/tex]:

[tex]\[ \text{Molar mass of O}_2 = 2 \times 16.00 \text{ g/mol} = 32.00 \text{ g/mol} \][/tex]

2. Calculate the moles of \( \text{O}_2 \) produced:

[tex]\[ \text{Moles of O}_2 = \frac{7.0 \text{ g}}{32.00 \text{ g/mol}} = 0.21875 \text{ moles} \][/tex]

3. Use the stoichiometry from the balanced equation:

  From the balanced equation, the mole ratio between[tex]\( \text{CO}_2 \) and \( \text{O}_2 \) is 1:1.[/tex]

 Therefore, the moles of [tex]\( \text{CO}_2 \)[/tex] used is the same as the moles of [tex]\( \text{O}_2 \)[/tex]produced:

[tex]\[ \text{Moles of CO}_2 = 0.21875 \text{ moles} \][/tex]

4. Determine the molar mass of [tex]\( \text{CO}_2 \)[/tex] :

[tex]\[ \text{Molar mass of CO}_2 = 12.01 \text{ g/mol} + 2 \times 16.00 \text{ g/mol} = 44.01 \text{ g/mol} \][/tex]

5. Calculate the grams of \( \text{CO}_2 \) used:

[tex]\[ \text{Grams of CO}_2 = \text{Moles of CO}_2 \times \text{Molar mass of CO}_2 \][/tex]

[tex]\[ \text{Grams of CO}_2 = 0.21875 \text{ moles} \times 44.01 \text{ g/mol} = 9.62 \text{ g} \][/tex]

what location on earth experiences the least change in the number of daylight hours throughout the year?

Answers

The areas around the equator. The equator is an invisible line going around the middle of the earth. Because of our tilted axis we get more light in some parts of the year, and less in others. But because the equator is right in the middle, the sun goes from east to west in the middle of the sky every day, meaning they get the same amount of daylight all year.

If acetic acid is the only acid that vinegar contains (ka=1.8×10−5), calculate the concentration of acetic acid in the vinegar. express your answer using two significant figures.

Answers

Ethanoic (Acetic) acid is a weak acid and do not dissociate fully. Therefore its equilibrium state has to be considered here.

[tex]CH_{3}COOH \ \textless \ ---\ \textgreater \ H^{+} + CH_{3}COO^{-} [/tex]

In this case pH value of the solution is necessary to calculate the concentration but it's not given here so pH = 2.88 (looked it up)

pH = 2.88 ==> [tex][H^{+}][/tex]  = [tex]10^{-2.88}[/tex] =  0.001 [tex]moldm^{-3}[/tex]

The change in Concentration Δ [tex][CH_{3}COOH][/tex]= 0.001 [tex]moldm^{-3}[/tex]


                                  CH3COOH          H+           CH3COOH    
Initial  [tex]moldm^{-3}[/tex]                      [tex]x[/tex]           0                     0
                                                                                                                       
Change [tex]moldm^{-3}[/tex]        -0.001            +0.001           +0.001
                                                                                                       
Equilibrium [tex]moldm^{-3}[/tex]      [tex]x[/tex]- 0.001      0.001             0.001
                                                                              

Since the [tex] k_{a} [/tex] value is so small, the assumption 
[tex][CH_{3}COOH]_{initial} = [CH_{3}COOH]_{equilibrium}[/tex] can be made.

[tex] k_{a} = [tex]= 1.8*10^{-5} = \frac{[H^{+}][CH_{3}COO^{-}]}{[CH_{3}COOH]} = \frac{0.001^{2}}{x} [/tex]

Solve for x to get the required concentration.

note: 1.)Since you need the answer in 2SF don&t round up values in the middle of the calculation like I've done here.

         2.) The ICE (Initial, Change, Equilibrium) table may come in handy if you are new to problems of this kind

Hope this helps! 



If 150 g of phenacetin were dissolved in 100 ml of water, how much ether would be required to extract 90% of phenacetin in a single extraction?

Answers

Distribution coefficient in ether to water Kew = (1/90) ether /(1/1310) water = 14.56 (b) If 50 mg of phenacetin were dissolved in 100 mL of water.

There are three common functional groups in organic chemistry that are readily ionized by adjusting the ph of the aqueous solution during an extraction. name and write the chemical structure of these three functional groups and show each

Answers

The three functional groups are carboxylic acids, amines and phenols. These functional groups can be turn to ions by adjusting their pH during extraction.
Their chemical strictures are as follows:
Carboxylic acid: RCOOH
Amines: RNH2
Phenols: C6H6O.

Why does ferrocene undergo the acylation reaction more readily than benzene?

Answers

A combination of Pd-catalyzed arene–alkynyl couplings and Cu(OAc)2-promoted internal alkyne dimerization furnishes novel ferrocene-based dehydroannulenes in high yield.

If 50% of radioactive element remains after 4000 years what what is the half life

Answers

4,000 years is the half life of that element. Nope 8,000 years, there will be 25% remaining

Which of the following represents a compound?
A) H
B) H-3
C)H2O
D) O-16

Answers

C, H2O represents the compound responsible for constituting water.
The answer is C. H2

To be considered as a compound, it need to contain two on more elements.
From the option above, only H2O contains 2 elements, H is for Hydrogen and O is for oxygen. This compound formed a substance that we most commonly know as water.

Suggest a reason for why the phosphorus-containing side product from the horner-emmons wittig reaction is more water-soluble than the triphenylphosphine oxide side product obtained from the standard wittig reaction.

Answers

Co-product (rather than side product) of Horner-Emmons Wittig reaction is alpha-hydroxy phosphonate which by definition is hydrophilic as opposed to triphenylphosphine oxide. In addition, the side groups in Horner-Wittig reagents are typically Me or Et which are less bulky than phenyls are more compatible with hydrophilicity.

The oceanic crust is made primarily from this type of rock.

Answers

Im pretty sure its basalt

Answer:

Igneous rock basalt.

Explanation:

The ocean crust is made mostly of igneous rock basalt, which comes from lava and the movement of tectonic plates.

Is the tetrapeptide ala-glu-gly-lys a good buffer at ph 7.0? will it move in an electric field at ph 7.0?

Answers

 pH is a measure of the effective concentration of H+ ions a solution. So, an electric field applied to a solution will create a pH gradient.

If pH is 7, means it is neutral. so it will not move in an electric field

what is the definition of tributary

Answers

umm a tributary a stream of water that flows into another stream or a large body of water such as a river or lake 
Final answer:

A tributary is a smaller stream or river that flows into a larger one, contributing to its volume and influencing its navigability, ecosystem, and flooding potential.

Explanation:

The definition of a tributary is a stream or river that flows into a larger stream, river, or lake. These smaller watercourses contribute to the flow of the larger one, which is often referred to as the mainstem or parent river. Tributaries do not flow directly into the sea. They provide additional water volume to their parent river, which can then affect the river's ability to navigate, its ecosystem, and potential for flooding. For example, the Missouri River is a tributary of the Mississippi River because it flows into it.

If a feather and an iron bar is released from a same height in a room without any air resistance, which one(s) will impact the ground first.
A) neither one, because without air resistance gravity is absent
B) iron bar
C) both
D) feather

Answers

Final answer:

Both a feather and an iron bar will impact the ground at the same time if released from the same height in a room without air resistance, demonstrating that gravity causes all objects to fall with the same acceleration, disregarding their mass.

Explanation:

If a feather and an iron bar are released from the same height in a room without any air resistance, both the feather and the iron bar will impact the ground at the same time. The correct answer is C) both. This outcome occurs because in the absence of air resistance, all objects fall at the same rate due to gravity. This phenomenon was famously demonstrated on the Moon by astronaut David R. Scott in 1971, where, despite the Moon's lower gravitational acceleration of 1.67 m/s² compared to Earth's 9.81 m/s², both a hammer and a feather were shown to fall at the same rate when dropped from the same height. This validates that acceleration due to gravity is constant and does not depend on the mass of the objects involved.

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What is the final pressure (expressed in atm) of a 3.05 l system initially at 724 mm hg and 298 k, that is compressed to a final volume of 2.60 l at 273 k?

Answers

To answer this question, we will use the following equation:
(P1V1) / T1 = (P2V2) / T2 where:
P1 = 724 mm hg
V1 = 3.05 L
T1 = 298 K
P2 is the unknown we want to find
V2 = 2.6 L
T2 = 173 K

Substitute with the givens to calculate P2 as follows:
(724*3.05) / 298 = (P2*2.6) / 273
P2 = 778.057047 mm Hg = 1.023759 atm

[tex]\boxed{1.0237596\;{\text{atm}}}[/tex] is the final pressure of a 3.05 L system initially at 724 mm Hg ad 298 K that is compressed to a final volume of 2.60 L at 273 K.

Further Explanation:

An ideal gas is a hypothetical gas that is composed of a large number of randomly moving particles that are supposed to have perfectly elastic collisions among themselves. It is just a theoretical concept and practically no such gas exists. But gases tend to behave almost ideally at a higher temperature and lower pressure.

Ideal gas law is the equation of state for any hypothetical gas. The expression for the ideal gas equation is as follows:

[tex]\boxed{{\mathbf{PV = nRT}}}[/tex]                                                   ...... (1)

Here,

P is the pressure of the gas.

V is the volume of the gas.

T is the absolute temperature of the gas.

n is the number of moles of gas.

R is the universal gas constant.

Rearranging equation (1), we get:

[tex]\frac{{PV}}{T} = nR[/tex]                                                           ...... (2)

For a particular gas, the number of moles (n) and the universal as constant (R) both are constants.

If a specific gas with [tex]{P_1}[/tex], [tex]{V_1}[/tex] and [tex]{T_1}[/tex] is subjected to any change and the final parameters being [tex]{P_2}[/tex], [tex]{V_2}[/tex] and [tex]{T_2}[/tex]. So equation (2) becomes,

[tex]\frac{{{P_1}{V_1}}}{{{T_1}}} = \frac{{{P_2}{V_2}}}{{{T_2}}}[/tex]               ...... (3)

Here,

[tex]{P_1}[/tex] is the initial pressure of the gas.

[tex]{V_1}[/tex] is the initial volume of the gas.

[tex]{T_1}[/tex] is the initial temperature of the gas.

[tex]{P_2}[/tex] is the final pressure of the gas.

[tex]{V_2}[/tex] is the final volume of the gas.

[tex]{T_2}[/tex] is the final temperature of the gas.

Calculation of the final pressure [tex]\left( {{{\mathbf{P}}_{\mathbf{2}}}} \right)[/tex] of the gas

Rearranging equation (3), we get:

[tex]{P_2} = \frac{{{P_1}{V_1}{T_2}}}{{{T_1}{V_2}}}[/tex]                             ...... (4)

We have [tex]{P_1} = 724\;{\text{mm Hg}}[/tex]

[tex]{V_1} = 3.05\;{\text{L}}[/tex]

[tex]{T_1} = 298\;{\text{K}}[/tex]

[tex]{V_2} = {\text{2}}{\text{.60 L}}[/tex]

[tex]{T_2} = {\text{273 K}}[/tex]

Substitute these values in equation (4).

[tex]\begin{gathered}{P_2}=\frac{{\left( {724\;{\text{mm Hg}}} \right)\left( {3.05\;{\text{L}}} \right)\left( {273\;{\text{K}}} \right)}}{{\left( {298\,{\text{K}}} \right)\left( {2.60\;{\text{L}}} \right)}} \\= 778.05705\;{\text{mm Hg}} \\ \end{gathered}[/tex]

Conversion Factor:

[tex]1\;{\text{mm Hg}} = {\text{0}}{\text{.00131579 atm}}[/tex]

So the value of [tex]{P_2}[/tex] (in atm) is calculated as follows:

[tex]\begin{gathered}{P_2}=\left( {778.05707\;{\text{mm Hg}}}\right)\left( {\frac{{{\text{0}}{\text{.00131579 atm}}}}{{1\;{\text{mm Hg}}}}} \right) \\= 1.023759\;{\text{atm}}\\\end{gathered}[/tex]

So the final pressure of the gas is 1.023759 atm.

Learn more:  

1. Rate of chemical reaction: https://brainly.com/question/1569924

2. Chemical bonds in NaCl: https://brainly.com/question/5008811

Answer details:

Grade: Senior School

Subject: Chemistry

Chapter: Ideal gas equation

Keywords: ideal gas, pressure, volume, absolute temperature, equation of state, hypothetical, universal gas constant, moles of gas, initial, final, P, V, T, P1, P2, V1, V2, T1, T2.

moles of hydrogen in 9.15×10−2 mol C4H10

Answers

From the given formula, one mole of C4H10 contains 10 moles of hydrogen.

To know the number of moles of hydrogen in 9.15x10^-2, we will just do a cross multiplication as follows:
number of moles of hydrogen = (9.15 x 10^-2 x 10) / 1 = 0.915 moles

What needs to happen for a solute to dissolve in a particular solvent?

Answers

attractions between the solute and solvent molecules must be greater than the attractions keeping the solute together and the attractions keeping the solvent together.

hope this helps and please rate below and if this helped then please thank me on my profile page and i will do the same for you

Answer:

There needs to be a strong interaction between solvent and solute molecules. However, this interaction must be strong enough to disrupt the molecular interactions between the solute molecules.

Explanation:

It is called solute, the chemical compounds that dissolve in another substance. The solvent is the substance into which the solute will be dissolved to form a new product.

Chemical dissolution is the process of dispersing the solute in a solvent, giving rise to a homogeneous solution or mixture. For such a dissolution to occur, an extremely strong chemical bond between the solute and the solvent must occur. However, this bond must be strong enough to separate the bond between the solute molecules.

Which equation best expresses the relationship between pressure and volume for gas?

Answers

It won't be possible for me to answer this question if there is no context. I tried to find a similar question and I came up with one. The problem is shown in the attached picture. From the given choices, all their units are atm*mL. So, that means that P*V. The answer could only be (2) or (4). Let's try the data in the table to find out.

PV = (0.5 atm)(1000 mL) = 500 atm*mL
PV = (1 atm)(500 mL) = 500 atm*mL
PV = (2 atm)(250 mL) = 500 atm*mL

Thus, the answer is choice (2).

Find the current through the 30.0 ω resistor.

Answers

Final answer:

Without the total voltage or detailed circuit configuration, it's not possible to determine the current through the 30.0 ω resistor. An example using Ohm's law has been provided for a hypothetical scenario.

Explanation:

To find the current through the 30.0 ω resistor, we would need to apply Ohm's law, which states that I = V/R, where I is the current, V is the voltage, and R is the resistance. However, the provided information is insufficient to determine the current, as we are not given the total voltage across the resistor or the configuration of the circuit (whether it is series, parallel, or a combination).

If the 30.0 ω resistor were the only resistance in the circuit and the voltage across it was provided, we could directly use Ohm's law to calculate the current. For example, if the voltage was 10 V, the current would simply be I = 10V / 30.0ω = 0.333 A.

Without additional information, such as the configuration of the circuit and the total voltage, we cannot accurately calculate the current. The problem might be missing details or might require knowledge about the rest of the circuit to solve.

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How many grams of hydrogen in 4.50 mol H2SO4

Answers

The awnser is 25 grams

What role does the oxidation agent play in a redox reaction

Answers

The oxidizing agent receives electrons from the reducing agent.  Keep in mind that the reducing agent is the element in an oxidation-reduction reaction that gives an electron to another species. And since the reducing agent always loses its electrons, it is considered to call its condition 'oxidized'.

If the length of one side of a square is 12.0 m, what is the perimeter of the square? Express the perimeter with the appropriate units

Answers

The perimeter of a square whose length is 12.0 m is 48 cm.

Further Explanation Area Area is a measure of how much space is occupied by a given shape.Area of a substance is determined by the type of shape in question.

For example;

Area of a rectangle is given by; Length multiplied by widthArea of a triangle = 1/2 x base x heightArea of a circle = πr². where r is the radius of a circle,Area of a square = S², Where s is the side of the square.etc.Perimeter Perimeter is defined as the distance along a two dimension shape.  Perimeter of different shapes is given by different formulas

For example;

The perimeter of a rectangle = 2(length+width)The perimeter of a triangle = a+b+c; where a, b and c are the sides of the triangle. etc.

In this case;

We are given one side of a square as 12.0 cm

But Perimeter of a square is given by; 4 × s

Thus; Perimeter = 4 × 12 units

                           = 48 units

Keywords; Perimeter, Area

Learn more about;Perimeter of a square example: brainly.com/question/3619302Area of a square: https://brainly.com/question/1322653

Level: Middle school

Subject; Mathematics

Topic: Area and Perimeter

Final answer:

The perimeter of the square with a side length of 12.0 m is 48.0 m.

Explanation:

The perimeter of a square is the sum of all its sides.

Since all the sides of a square are equal, we can find the perimeter by multiplying the length of one side by 4.

For the given square with a side length of 12.0 m, the perimeter would be:

Perimeter = 12.0 m x 4

= 48.0 m

For each reaction, identify the precipitate or lack thereof bacl2 naoh

Answers

The precipitate formed from the reaction of BaCl2 and NaOH is Barium Hydroxide. Barium Hydroxide is a white precipitate. The reaction that proceeds is a double replacement reaction. This means that the anions and the cations of the two different molecules switch places, forming entirely new compounds.

4.05 kg + 567.95 g + 100.1 g add the correct value using the correct sig figs and or least precise degree of precision. When i did least degree of precision i got 4718.1g, do we need to convert the kg unit to grams before getting the least degree of precision? since i used 100.1 as dop and if i had converted first the dop of 4.05 or now 4050g the dop is now only to the tens place compared to being in the tenths place

Answers

To find the least degree of precision we swould model it after the kg amount or 4.05 kg or two decimal places. So that would add 0.56795 kg (0.57 kg) and then 0.1001 kg (0.1 kg) so that our answer would be 4.72 kg.

In the other hand, the greatest degree of precision would be to conver 4.05 kg to 4050 g so that 4050g + 567.95 + 100.1 g= 4718.05 grams or 4718 g.

How many liters of water are required to dissolve 1.00 g of barium sulfate?

Answers

Final answer:

To dissolve 1.00 g of barium sulfate, we would need 1 L of water.

Explanation:

In order to calculate the amount of water needed to dissolve 1.00 g of barium sulfate, we need to use the molar mass of barium sulfate and the concept of molarity.

The molar mass of barium sulfate (BaSO4) is 233.43 g/mol. We can use this to convert the mass of barium sulfate to moles.

Once we know the number of moles of barium sulfate, we can use the molar ratio between barium sulfate and water to calculate the volume of water needed. The balanced equation for the dissolution of barium sulfate in water is:

BaSO4 (s) + H2O (l) → Ba2+ (aq) + SO42- (aq)

Based on this equation, 1 mole of barium sulfate dissolves to give 1 mole of water. Therefore, to dissolve 1.00 g of barium sulfate, we would need 1 L of water.

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Which of the following is the correct formula for barium (II) sulfate?

Answers

BaSO4 is the correct formula for barium (ll) sulfate
BaSO4 is the correct formula for barium (ll) sulfate

The essential oil found in cloves, eugenol, can be isolated by steam distillation because it is insoluble in water and has a measurable vapor pressure at 100 °c even though it has a much higher boiling point than water. use data from the table to calculate the volume of eugenol in 30 ml of distillate.

Answers

Molar Mass of Water: 18 g/mol
Molar Mass of Eugenol: 164 g/mol
Boiling point of water: 100 degrees C
Boiling point of eugenol: 254 degrees C
Vapor pressure of Water at 100 degrees C: 760 mmHG
Vapor pressure of Eugenol at 100 degrees C: 4.0 mmHG


HINT: Steam distillation is particularly useful for purifying materials that decompose before reaching their normal boiling point. Steam causes high-boiling components that are immiscible in water to boil at significantly lower temperatures than their normal boiling point. Because the mole fraction of the components only depends on the vapor pressure of the components:

I have attempted this problem numerous times here is what i am doing what am i doing wrong?

Xorg = 4.0/4.0+760 = 0.0053
1-0.0053=0.9947 = XH20

mH2O = 0.9947 * 18 = 17.9046
morg = 0.0053 * 164 = 0.8692

m%org = [0.8692/ (0.8692 + 17.9046)] * 100 = 4.62%
Rounded to 5%

In the shapes and fluid forces lab, you dropped different shapes in the fluid. what was the dependent variable that you observed and recorded

Answers

The answer would be settling time

Answer is: Settling time.

Settling is the process by which substances (in this example with different shape) settle to the bottom of the fluid.

The two main variables in an experiment are the independent and dependent variable.

Dependent variable is the variable being tested and measured in a scientific experiment.

Dependent variables depend on the values of independent variables. The dependent variables represent the output or outcome whose variation is being studied.

What is the mass of 3.00 moles of magnesium chloride, MgCl2? Express your answer with the appropriate units.

Answers

To answer this question you need to know how to calculate the molecular weight of a molecule. The compound is having 1 Mg atom and 2 Cl atom, thus the molecular weight should be: 
24.305+ 2*35.453= 95.211 gram/mol.

Then, the mass of 3 mol of MgCl would be:
3 mol * 95.211 gram/mol= 285.633 gram

The mass of 3.00 moles of magnesium chloride (MgCl₂) is 95.211 gram/mol.

This is determined by multiplying the number of moles by the molar mass of MgCl₂, which is 95.21 g/mol.

To find the mass of 3.00 moles of magnesium chloride (MgCl₂), we need to use the molar mass of MgCl₂ as a conversion factor. The molar mass of MgCl₂ is the sum of the atomic masses of magnesium (Mg) and chlorine (Cl).

Steps for Problem Solving:

Determine the atomic masses from the periodic table: Mg = 24.31 g/mol, Cl = 35.45 g/mol.Calculate the molar mass of MgCl₂: Molar mass of MgCl₂ = 24.31 g/mol + 2(35.45 g/mol) = 95.21 g/mol.Use the molar mass to convert moles to grams: Mass (g) = Number of moles × Molar mass (g/mol).Substitute the known values: Mass (MgCl₂) = 3.00 moles × 95.21 g/mol = 285.63 g.

Therefore, the mass of 3.00 moles of magnesium chloride (MgCl₂) is 24.305+ 2*35.453= 95.211 gram/mol.

Correct question is: What is the mass of 3.00 moles of magnesium chloride, MgCl₂? Express your answer with the appropriate units.

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