A chocolate chip cookie is an example of a
mixture.

Answers

Answer 1

Answer: A heterogeneous mixture.


Related Questions

Like any other equilibrium constant, kw is also affected by temperature. the kw at 75 degrees celsius is 1.995 x 10⁻¹³. What is the poh of water at this temperature?

Answers

Like any other equilibrium constant, kw is also affected by temperature. the kw at 75 degrees Celsius is 1.995 x 10⁻¹³. Therefore, 13 is the pOH of water at this temperature.

What is pOH?

The concentration of hydroxide ions (OH-) is measured by pOH. It is utilized to express a solution's alkalinity.

Aqueous solutions having pOH less than 7 at 25 degrees Celsius are alkaline, pOH larger than 7 are acidic, while pOH equal with 7 are neutral. pH and hydrogen ion concentration is used to compute pOH.

Kw = [OH⁻] [H⁺]

1.995 x 10⁻¹³ = Kw

[OH⁻] =[H⁺]

Kw = [OH⁻]²

[OH⁻] =10⁻¹³

pOH = -log  [OH⁻]

       = - log  10⁻¹³

      = 13

Therefore,  13 is the pOH of water at this temperature.

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Do you think the substances after the reaction was still copper (II) chloride and aluminum?

Answers

When aluminum is reacts copper (II) chloride then it will form aluminum chloride and Copper.

Aluminum as well as copper(II) chloride combine very vigorously, causing the reaction mixture to become extremely hot as heat was produced, the aluminum foil to breakdown, a reddish brown solid to appear, as well as gas bubbles to be released.

The chemical reaction can be written as:

2Al + 3CuCl2 → 3Cu + 2AlCl3

Therefore, Copper and aluminum chloride will be formed after the reaction as a product.

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Sort the following elements in order from least reactive to most reactive.

A - Sb

B - S

C - F

D - As

Answers

Sorting the chemical elements in order from least reactive to most reactive, we have:

1. Fluorine (F).

2. Arsenic (As).

3. Antimony (Sb).

4. Silicon (S).

Given the following chemical elements:

Antimony (Sb).Silicon (S).Fluorine (F).Arsenic (As).

Reactivity can be defined as a chemical property which determines how readily a chemical element bonds with other chemical elements, in order to form a new chemical compound.

Generally, the ability of a chemical element to bond with other chemical elements is largely (highly) dependent on the number of valence electrons it has in the outermost shell of its atomic nucleus.

As a general rule, chemical elements that are having fewer number of valence electrons are the most reactive while those having higher valence electrons are least reactive.

Also, chemical reactivity decreases down a group on the periodic table.

Based on the periodic table, the valency for the given chemical elements are:

Antimony (Sb): 5 valence electrons.Silicon (S): 4 valence electrons.Fluorine (F): 7 valence electrons.Arsenic (As): 5 valence electrons.

In conclusion, sorting the chemical elements in order from least reactive to most reactive, we have:

1. Fluorine (F).

2. Arsenic (As).

3. Antimony (Sb).

4. Silicon (S).

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1. You are pushing a heavy shopping cart full of water bottles with a constant force. The shopping cart has
mass of 250 kg and it is accelerating down the aisle at 0.20 m/s? How much force are you exerting?

Answers

Answer:

F = 50 N

Explanation:

Given data:

Mass of car = 250 Kg

Acceleration of car = 0.20 m/s²

Force required = ?

Solution:

Formula:

F = m×a

F = applied  force

m = mass

a = acceleration

Now we will put the values in formula.

F =  250 Kg × 0.20 m/s²

F = 50 Kg.m/s²

Kg.m/s² = N

F = 50 N

write the empirical formula for at least four ionic compounds that could be formed from the following ions: , , ,

Answers

The empirical formula for an ionic compound comprising at least four ions, including \(Fe^{3+}\), \(NO^{3-}\), \(NH^{4+}\), and \(CN^{-}\), are:

\(Fe(CN)_6^{3-}\) , \(Fe(NO3)_3\) , \(NH_4NO_3\) , \((NH_4)_2Fe(CN)_6\)

\(Fe^{3+}\):  \(Fe(CN)_6^{3-}\) is the empirical formula for this ionic compound. It is made up of cyanide ions \(CN^{-}\)and iron(III) ions \(Fe^{3+}\).

\(NO^{3-}\): The empirical formula for this ionic molecule \(Fe(NO3)_3\) is  \(NO^{3-}\) and \(Fe^{3+}\). It is created when nitrate ions and iron(III) ions \(Fe^{3+}\) combine.

\(NH^{4+}\) : The empirical formula for this ionic molecule is \(NH_4NO_3\). It is made up of nitrate and ammonium ions.

\(CN^{-}\) : This ionic compound, which has the empirical formula \((NH_4)_2Fe(CN)_6\), contains the ions ammonium, iron(III) , and cyanide.

The relative ratios of the ions involved in the creation of each compound are shown by these empirical formulas, which give a clear picture of the compounds.

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Write the empirical formula for at least four ionic compounds that could be formed from the following ions:

\(Fe^{3+}\) , \(CN^{-}\) , \(NO^{3-}\) , \(NH^{4+}\).

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What is the relationship between the specific rotations of (2S,3S)-2,3-dichloropentane and (2R,3S)-2,3-dichloropentane

Answers

The specific rotation of a compound is a measure of its ability to rotate plane-polarized light. It is denoted by the symbol [α] and is expressed in degrees.

The relationship between the specific rotations of (2S,3S)-2,3-dichloropentane and (2R,3S)-2,3-dichloropentane can be determined based on their stereochemistry.

If two compounds have the same molecular formula but differ in their stereochemistry, their specific rotations can be different. In this case, (2S,3S)-2,3-dichloropentane and (2R,3S)-2,3-dichloropentane have different configurations at the stereocenters.

Therefore, it is not possible to determine the relationship between their specific rotations without experimental data. The specific rotation of each compound needs to be measured separately to determine their individual values.

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1000000/how+many+millimoles+of+hcl+are+contained+in+130+ml+of+a+10%+solution?+molecular+weight+=+36.5.

Answers

To determine the number of millimoles of HCl in 130 mL of a 10% solution, we need to calculate the amount of HCl in grams and then convert it to millimoles using the molecular weight.

First, let's find the amount of HCl in grams. The 10% solution means that 10 g of HCl is present in 100 mL of the solution. Therefore, in 130 mL, we can calculate the amount of HCl as (10 g/100 mL) * 130 mL = 13 g. Next, we convert the mass of HCl to millimoles using the molecular weight. The molecular weight of HCl is 36.5 g/mol. To convert grams to millimoles, we divide the mass by the molecular weight. So, (13 g) / (36.5 g/mol) = 0.356 millimoles. Therefore, there are approximately 0.356 millimoles of HCl in 130 mL of a 10% solution.

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Polyelectrolytes are typically used to separate oil and water in industrial applications. The separation process is dependent on controlling the pH. Fifteen (15) pH readings of wastewater following these processes were recorded. Is it reasonable to model these data using a normal distribution? 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 1.0 10.0 10.5 7.6 11.4 11.4 10.0 Yes, it passes the "fat pencil" test. Therefore, a normal distribution is a reasonable model. No, it does not pass the "fat pencil" test. Therefore, a normal distribution is not a reasonable model. O Yes, it passes the "fat pencil" test. Therefore, a normal distribution is not a reasonable model. O No, it does not pass the "fat pencil" test. Therefore, a normal distribution is a reasonable model.

Answers

No, it does not pass the "fat pencil" test. Therefore, a normal distribution is not a reasonable model. Option B is the correct answer.

The "fat pencil" test is a quick visual check to determine if a dataset can be reasonably approximated by a normal distribution. In this case, the pH readings of wastewater show a significant deviation from a normal distribution. The presence of several low pH values (1.0) and a few high pH values (10.0, 10.5, 11.4) indicate a non-normal distribution with skewness and potential outliers. Therefore, it is not reasonable to model these data using a normal distribution.

Option B is the correct answer.

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When 0. 485 g of compound x is burned completely in a bomb calorimeter containing 3000 g of water, a temperature rise of 0. 285°c is observed. What is δu of the reaction for the combustion of compound x? the hardware component of the calorimeter has a heat capacity of 3. 81 kj/°c. The specific heat of water is 4. 184 j/g·°c, and the mw of x is 56. 0 g/mol.

Answers

ΔU of the reaction the combustion of compound x is -538 kJ/mol

Combustion is a reaction in which a substance reacts with oxygen gas and releasing energy in the form of light and heat

Here given data is

Mass of compound x = 0.485gram

Mass of water = 3000gram

Temprature rise =  0. 285°C

Heat capacity of the calorimeter = 3. 81 kJ/°C

Specific heat of water =  4. 184 J/g·°C

MW of x = 56. 0 g/mol

Then calculate q

ΔU = ΔH -PΔV

The bomb calorimeter has a constant volume ΔV = 0

ΔU = ΔH

q reaction = q(water + q(bomb)

q(bomb) = 3810J/°C×0.285 = 1085.85J

q(water) = 3000g × 4. 184 J/g·°C×0.285°C = 3577.32 J

q reaction = q(water) + q(bomb)

q reaction = 4663.17 J = 4.66kJ means this is an exothermic

Then calculate moles of compound

Moles = mass/molar mass

Moles = 0.485 g/56.0g/mol

Moles = 0.00866 moles

Then calculate ΔU

ΔU = 4663.17 J/0.00866 moles = 538472 j/mol = 538.5kJ/mol means the reaction is exothermic

ΔU = -538kJ/mol

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The density of a 1 milliter sample of water is 1 gram. express this density in milligrams per liter
using dimensional analysis. underline the conversion factors in your calculation. use the appro-
priate abbreviations for the unit labels.

Answers

The correct answer is 1000 Kg/M³

Density of water =1-g/cm3.

We know 1- g= 10^-³ Kg

cm³ =(10^-2)³= 10^-6

Substituting we get

Density of water

= 1 x (1x10^-³)/10^-6 Kg/M³

= 1x10^3 = 1000 Kg/M³

what is density?

Density is the mass of a material substance per unit volume. Density is defined as d = M/V, where d represents density, M is mass, and V is volume. Density is generally measured in grammes per cubic centimetre. Water, for example, has a density of 1 gramme per cubic centimetre, but Earth has a density of 5.51 grammes per cubic centimetre. Density is sometimes measured in kilos per cubic metre (in metre-kilogram-second or SI units). The density of air, for example, is 1.2 kilogrammes per cubic metre. Textbooks and handbooks list the densities of common solids, liquids, and gases.

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You dissolve 0.66 g of potassium chloride (KCl) in 700 ml of water.What is the molarity of the solution?(From the periodic table: 1 mol K = 39.10 g; 1 mol Cl = 35.453 g)=Enter the value rounded to three decimal places with no units

Answers

Answer

0.009 mol/L

Explanation

Given:

Mass of KCl = 0.66 g

Volume of water = 700 mL = 0.7 L

From the periodic table: 1 mol K = 39.10 g; 1 mol Cl = 35.453 g

What to find:

The molarity of the solution

Step-by-step solution:

The formula to calculate molarity is:

\(\text{Molarity }=\frac{Mole}{Volume\text{ in L}}\)

The first step is to calculate the molar mass of KCl

KCl = Mass of 1 mol K + Mass of 1 mol Cl

KCl = 39.10 g + 35.453 g

KCl = 74.553 g

So the molar mass of KCl = 74.553 g/mol

The next step is to determine the number of moles of KCl in 0.66g of KCl:

\(\text{Mole }=\frac{Mass}{Molar\text{ mass}}=\frac{0.66\text{ g}}{74.553\text{ g/mol}}=8.852762464\times10^{-3}mol\)

Put the values of mole and volume into the molarity formula above to determine the molarity of the solution:

\(\begin{gathered} \text{Molarity }=\frac{8.852762464\times10^{-3}\text{ mol}}{0.7\text{ L}}=0.00885276molL^{-1} \\ To\text{ thr}ee\text{ decimal places,} \\ \text{Molarity }=0.009\text{ }molL^{-1} \end{gathered}\)

The molarity is 0.009 mol/L

Write all each equation with absolute without absolute value given for the conditions y=|x + 5| if x<-5

Answers

Without absolute value , for y=|x + 5| for  x <-5, y = -2x

If x < -5, then x + 5 < 0. Therefore, y = |x + 5| = -(x + 5).

y = -(x + 5)

Note that this equation is only valid when x < -5. For values of x greater than or equal to -5, the absolute value of (x + 5) becomes positive, and y = |x + 5| = x + 5. Therefore, the equation for the full domain of y = |x + 5| is:

y = -(x + 5) for x < -5

Therefore | x -5 | should be changed to 5 - x to get a positive value.

Also | x - (-5) | should be changed to -5 -x to get a positive value.Therefore y = 5 - x + -5 - x = -2x

without absolute value , for x <-5, y = -2x

The term "absolute value" is not commonly used. However, there is a related concept called "absolute configuration." Absolute configuration refers to the spatial arrangement of atoms or groups of atoms around a chiral center in a molecule. A chiral center is a carbon atom that has four different groups attached to it.

The absolute configuration of a chiral center can be determined using the Cahn-Ingold-Prelog (CIP) rules, which assign priority to the four different groups based on their atomic numbers. By following these rules, we can determine whether the chiral center has an R or S configuration. Knowing the absolute configuration of a chiral center is important because it determines the molecule's biological activity and the way it interacts with other molecules in a chemical reaction.

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A 0. 150-mole quantity of CoCl2 is added to a liter of 1. 20 M NH3 solution. What is the concentration of Co2 ions at equilibrium? Assume the formation constant* of Co(NH3)62 is 5. 0 × 1031 M–6

Answers

The concentration of Co²⁺ ions at equilibrium is 0.150 M.

To determine the concentration of Co²⁺ ions at equilibrium, we need to consider the reaction between CoCl₂ and NH₃ to form Co(NH₃)₆²⁺.

The balanced equation for the reaction is:

CoCl₂ + 6NH₃ ⇌ Co(NH₃)₆²⁺ + 2Cl⁻

We can set up an ICE (Initial, Change, Equilibrium) table to solve for the concentration of Co²⁺ ions at equilibrium.

Initially, we have 0.150 moles of CoCl₂ and 1 liter of 1.20 M NH₃ solution.

Using the stoichiometry of the reaction, we can see that for every mole of CoCl₂, we form 1 mole of Co(NH₃)₆²⁺ ions. Therefore, the concentration of Co(NH₃)₆²⁺ ions at equilibrium is equal to the initial concentration of CoCl₂.

Therefore, the concentration of Co²⁺ ions at equilibrium is 0.150 M.

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B-
Why many nuclei like U234, U236 and
U238 undergo fission only by fast neutrons?

Answers

The nucleus more easily, increasing the probability of causing fission many nuclei like U234, U236, and U238 undergo fission only by fast neutrons.

Fission can be caused by slow as well as fast neutrons. It is the energy of the neutron which determines its effectiveness in causing fission. Fast neutrons are more effective in causing fission. Hence, many nuclei like U234, U236, and U238 undergo fission only by fast neutrons.

Fission is a nuclear reaction process in which the nucleus of an atom is split into two smaller nuclei with the release of a large amount of energy and two or three neutrons. Uranium-235 (U-235) and Plutonium-239 (Pu-239) are the most commonly used fissile materials, but other materials like U-234, U-236, and U-238 can also undergo fission. When a neutron is absorbed by the nucleus of a fissile material like U-235 or Pu-239, it becomes unstable and splits into two smaller nuclei with the release of a large amount of energy.

The fission process also releases two or three neutrons, which can cause further fission of other nuclei, leading to a chain reaction. The chain reaction can be controlled by using a neutron moderator, which slows down the fast neutrons, making them more effective in causing fission. The efficiency of the fission reaction depends on the energy of the neutron.

Fast neutrons are more effective in causing fission than slow neutrons, which have less energy. This is because fast neutrons can penetrate the nucleus more easily, increasing the probability of causing fission. Hence, many nuclei like U234, U236, and U238 undergo fission only by fast neutrons.

Fast neutrons are more effective in causing fission than slow neutrons, which have less energy.

This is because fast neutrons can penetrate the nucleus more easily, increasing the probability of causing fission. Hence, many nuclei like U234, U236, and U238 undergo fission only by fast neutrons.

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A compound with the formula C6H12 may or may not be a saturated hydrocarbon.

a. true
b. false

Answers

A compound with the formula C6H12 is not considered a Saturated hydrocarbon.

Why is C6H12 isn't considered a Saturated hydrocarbon?

The ring's presence demonstrates that it is unsaturated. Keep in mind that the general formula for aliphatic hydrocarbons, CnH2n+2, serves as the foundation for its saturation. A chemical is unsaturated if it does not meet this requirement.

Example:

Hexane (C6H14)

C = 6; H = 14 = 2(6) + 2

resulting in hexane becoming saturated.

Cyclohexane(C6H12)

C = 6 and H = 12 do not equal 14 (x)!

cyclohexane is an unsaturated molecule as a result.

Cycloalkanes have the general formula C2H2n as well.

Hence, the given statement is false.

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how many liters of a 60% acid solution must be mixed with a 15% acid solution to get 360 L of a 50% acid solution

Answers

x + (360 - x) = 360 * 0.50

where x is the amount of the 60% acid solution.

Solving for x, we get: x = 360 * 0.50 - 360 x = 180

Therefore, you will need to mix 180 L of the 60% acid solution with 180 L of the 15% acid solution to get 360 L of a 50% acid solution.

What is acid?

Acid is a substance that has a pH level of lower than 7.0 and is capable of corroding or dissolving other substances. It is usually found in aqueous solutions and is a highly reactive substance. Examples of acid include sulfuric acid, hydrochloric acid, nitric acid and acetic acid. These are used in a variety of industries such as food production, industrial cleaning and chemical engineering.

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Please answer the following question using the data below: H2O vapor content: 13 grams H2O vapor capacity: 52 grams at 25 degrees Celsius 13 grams at 10 ∘
C 52 grams at 30 ∘
C What is the dew point for the conditions listed above? LCL 3π5 25C Relative Humidity =100%

Answers

Given data:H2O vapor content: 13 gramsH2O vapor capacity: 52 grams at 25 degrees Celsius 13 grams at 10∘C52 grams at 30∘CFormula used to find the dew point:$$\dfrac{13}{52}=\dfrac{(A*3\pi)/(ln100)}{(17.27-A)}$$$$\frac{1}{4}=\dfrac{(A*3\pi)/(ln100)}{(17.27-A)}$$

Where A is the constantDew Point:It is the temperature at which air becomes saturated with water vapor when the temperature drops to a point where dew, frost or ice forms. To solve this question, substitute the given data into the formula.$$13/52=\dfrac{(A*3\pi)/(ln100)}{(17.27-A)}$$$$13(17.27-A)=3\pi A(ln100)$$By simplifying the above expression, we get$$A^2-17.27A+64.78=0$$Using the quadratic formula, we get$$A=9.9,7.4$$

The dew point is 7.4 since it is less than 10°C.More than 100:The term "More than 100" has not been used in the question provided.

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A block has the following dimensions: length of 2.50 cm. width of
1.00 cm and height of 2.00 cm. The mass of the block is 150.0
grams. Calculate the density of the density of the block

Answers

If a block has the following dimensions: length of 2.50 cm. width of

1.00 cm and height of 2.00 cm. The density of the density of the block is: 30.0 g/cm^3.

How to find the density of the block?

The volume of the block can be calculated by multiplying the length, width and height:

V = 2.50 cm x 1.00 cm x 2.00 cm = 5.00 cm^3

The density of the block can then be calculated by dividing the mass by the volume:

Density = mass/volume

Density = 150.0 g / 5.00 cm^3

Density = 30.0 g/cm^3

Therefore the density is  30.0 g/cm^3.

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what would happen if you used equal masses of all the compounds? for example, 2.00 g as opposed to equal moles of each compound?
a. equal masses would produce different amounts of CO2
b. equal masses would produce the same amount of CO2
c. equal masses would show extreme variation and be difficult to measure in the lab

Answers

option c - equal masses would show extreme variation and be difficult to measure in the lab if you used equal masses of all the compounds.

Equal masses would imply a different number of moles. And reactions are molecular in nature. A reaction between 1 mole of A and 1 mole of B, for example, produces 1 mole of C. However, because their molar masses are likely to differ, we cannot apply the same mass formula and expect the same result. Consider the reaction HCl + NaOH, which produces NaCl + H2O. This reaction demonstrates that 1 mole of hydrochloric acid and 1 mole of NaOH produces 1 mole of NaCl and 1 mole of water. However, the reaction is very different in terms of mass because each of the reactants has a different molar mass.

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water is a substance made up of elements hydrogen and oxegyn....How many types of atoms make up a particle of water?
ОА. 4
ОВ. 1
С. 2
D.3

Answers

Answer:

C

Explanation:

Just took the test

In addition to having a blue color what other characteristic do Neptune and Uranus share??


no rings

27 moons

no axis tilt

cold temperatures. HELP ASP

Answers

Answer:

d

Explanation:

it just makes sense

Answer:

Cold temperatures!

Explanation:

Both planets are very far from the sun, now to explain how the other answers would fit or just dont make sense, No rings, the answer isn't the best fitting answer for this question, 27 moons, this is wrong because neptune has 14 moons, only uranus has 27. No axis tilt, this answer is wrong because both planets have an axis.

To find the percentage yield for a reaction, you take the___ and divide by the___and ___
multiply by____

PLEASE HELP ME

Answers

To the percentage yield for a reaction, you take the actual yield and divide by the theoretical yield and multiply by 100.

What is percent yield?

Yield also referred to as reaction yield in chemistry, is a measure of the quantity of moles of a product formed in relation to the reactant consumed and expressed as a percentage.

Percent Yield is defined as the actual yield divided by the theoretical yield times 100 i.e.

Percent yield = actual yield/theoretical yield × 100

The percent yield is determined by calculating the ratio of actual yield/theoretical yield.

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Calculate the mass of a liquid with density of 3.20 g/mL and volume of 15.0 mL.

Answers

Answer:

mass = 48 g

Explanation:

The mass of a substance when given the density and volume can be found by using the formula

mass = Density × volume

From the question

Density = 3.20 g/mL

volume = 15.0 mL

Substitute the values into the above formula and solve for the mass

That's

mass = 3.20 × 15

We have the final answer as

mass = 48 g

Hope this helps you

HELP
Compare and contrast the inner and outer planets.

Answers

Answer:

The four inner planets have slower orbits, slower spin, no rings, and they are made of rock and metal. The four outer planets have faster orbits and spins, a composition of gases and liquids, numerous moons, and rings. The outer planets are made of hydrogen and helium, so they are called gas giants. Cool stuff right?

Explanation:

What is the molarity of a solution in which 250 grams of NaCl are dissolved in 2.9 L of water?

Answers

Answer:

About 1.48 M.

Explanation:

The formula for molarity is mol/L.

So firstly, you must find the amount of moles in 250 grams of NaCl.

I do this by using stoichiometry. First, I find how nany grams are in a single mole of NaCl. This is around 58.44 grams/mole. Now that I know this, I can now use a stoich table. (250 g NaCl * 1 mol NaCl / 58.44 g NaCl). I plug this into my calculator.

I get that 250 grams of NaCl is equal to about 4.28 moles.

Now I just plug into the formula!

4.28 moles/2.9 L = about 1.48

I've attached a picture of my personal notes below which shows work I have done in similar equations.

What is the molarity of a solution in which 250 grams of NaCl are dissolved in 2.9 L of water?

The Pi Song
Lyrics. And now
AsapSCIENCE presents-
100 digits of π
3.14159, this is π
Followed by 2-6-5-3-5-8-9
Circumference over diameter
7-9, then 3-2-3
OMG! Can't you see?
8-4-6-2-6-4-3
And now we're on a spree
38 and 32, now we're blue
Oh, who knew?
7, 950 and then a two
88 and 41, so much fun
Now a run
9-7-1-6-9-3-9-9
Then 3-7, 51
Half way done!
0-5-8, now don't be late
2-0-9, where's the wine?
7-4, it's on the floor
Then 9-4-4-5-9
2-3-0, we gotta go
7-8, we can't wait
1-6-4-0-6-2-8
We're almost near the end, keep going
62, we're getting through
0-8-9-9, on time
8-6-2-8-0-3-4
There's only a few more!
8-2, then 5-3
42, 11, 7-0 and 67
We're done! Was that fun?
Learning random digits
So that you can brag to your friends. (XP this is to weird as hell)

Answers

3.14159, this is π

Followed by 2-6-5-3-5-8-9

Circumference over diameter

7-9, then 3-2-3

OMG! Can't you see?

8-4-6-2-6-4-3

And now we're on a spree

38 and 32, now we're blue

Oh, who knew?

7, 950 and then a two

88 and 41, so much fun

Now a run

9-7-1-6-9-3-9-9

Then 3-7, 51

Half way done!

0-5-8, now don't be late

2-0-9, where's the wine?

7-4, it's on the floor

Then 9-4-4-5-9

2-3-0, we gotta go

7-8, we can't wait

1-6-4-0-6-2-8

We're almost near the end, keep going

62, we're getting through

0-8-9-9, on time

8-6-2-8-0-3-4

There's only a few more!

8-2, then 5-3

42, 11, 7-0 and 67

We're done! Was that fun?

calculate the number of atoms in a sample containing 3.5 g of silicon atoms

Answers

Answer:

there are 7. 505 x 1022 atoms in 3.5 grams of silicon.

Explanation:

So, 1 mole of silicon will have a mass of 28.0855 g and the number of atoms will be 6.022 x 1023. Therefore, there are 7. 505 x 1022 atoms in 3.5 grams of silicon.

Answer:

1 mole of silicon will have a mass of 28.0855 g and the number of atoms will be 6.022*1023 . Therefore , there are 7.505*1022 atom in 3.5 g of silicon .

Part B Think about the design that worked the best. Could you improve the best design and raise its internal temperature? Think about what materials you could use to improve the design. Here are some things to consider: How does the size of the reflective surface affect the temperature of the oven? Would insulating the oven help it retain heat, or would more heat be lost? Would a tighter or a looser cover heat the oven faster? How about no covering at all? Describe how you plan to improve the efficiency of the best oven design.

Answers

Answer:

One reason for Jennelle's designs working better is because her aluminum foil sunlight reflector was larger. So. the size of the reflective surface does affect the temperature of the oven. For any given design, the larger the insolated area, the greater the power. Meaning a smaller cooker only collects a small amount of sunlight; no matter how good the design. 

That is one reason why the parabolic solar oven design works so well. Parabolic solar cookers use a parabolic-shaped reflector to direct sunlight to a small area in order to generate heat for cooking. They are able to reach temperatures as high as 400°F. 

Insulating the oven would help it retain heat. Insulation lets you collect more heat and light energy, which allows you to raise the temperature to even higher levels. So, insulation is anything that lets you "hold on to" that collected heat and lose less of it.

A tighter cover would heat the oven faster rather than a looser cover. The parabolic design doesn't have a cover, although the food itself is usually in a pot or container.  

Explanation:

In most designs, using a tighter cover and increasing the reflecting surface will both raise the temperature. Insulation will, however, typically lower the temperature.

What does it mean to design a product ?

It is frequently necessary to add, remove, or adjust elements while designing a product in order to increase its efficiency. The temperature and how to raise or lower it is among the aspects taken into account in items like ovens.

Some methods for raising the temperature include:

Increasing the reflecting surface will raise the temperature of the product since reflective surfaces reflect both light and heat.Tighter cover: Raising the temperature by removing any places where heat can escape, such by using a tighter cover.

Insulation: Since insulation is primarily employed to disrupt the cycle of heat transfer, applying insulation typically entails lowering the product's internal temperature or concentrating the heat in a single location.

Thus, In most designs, using a tighter cover and increasing the reflecting surface will both raise the temperature.

To learn more about temperature, follow the link;

https://brainly.com/question/11464844

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Trisha works for a roofing company and needs to move
shingles from the ground to the roof.
What simple machine would help her move the shingles?

Answers

Answer: Pulley or a crane.

Explanation:

Answer:

An inclined plane would have to be too long, and a lever would be impractical. Pulleys are best used to raise objects.

Explanation:

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Can a mixture of iron filings, water, and sand be separated and if so, from the choices, which is the best method?

1. Yes, a person can separate this mixture best using a small screen or strainer and magnet.

2. No, they form a solution and are unable to be separated.

3. No, it is impossible to separate any type of mixture that has a liquid in it.

4. Yes, a person can separate this mixture best by freezing it and letting the dense objects sink.

Answers

Answer:

1. Yes, a person can separate this mixture best using a small screen or strainer and magnet.

Explanation:

iron is magnetic

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