For each reaction below, use the drop-down menus to select which compound will form a precipitate. Note: It is possible that no precipitates form. Na2S + Cd(NO3)2 → CdS + 2NaNO3 FeCl3 + 3KOH → 3KCl + Fe(OH)3 Na2CO3 + Ba(NO3)2 → BaCO3 + 2NaNO3

Answers

Answer 1

Answer:

1. Cadmium sulfide

2. Iron (III) hrydroxide

3. Barium carbonate

Answer 2

Cadmium sulfide, iron hydroxide, and barium carbonate will form a precipitate.

What is Precipitation Reaction?

The precipitation reaction can be described as a chemical reaction taking place in an aqueous solution where two ionic bonds combine in order to form an insoluble salt.

These insoluble salts form are called precipitates in precipitation reactions. Precipitation reactions are commonly double displacement reactions in which the production of a solid forms a residue known as the precipitate.

The first reaction:  [tex]Na_2S + Cd(NO_3)_2 \longrightarrow CdS + 2NaNO_3[/tex]

The cadmium sulfide forms precipitates in this reaction.

The second reaction: [tex]FeCl_3 + 3KOH \longrightarrow 3KCl + Fe(OH)_3[/tex]

The iron hydroxide forms precipitate in this reaction.

The third reaction:[tex]Na_2CO_3 + Ba(NO_3)_2 \longrightarrow BaCO_3 + 2NaNO_3[/tex]

The barium carbonate forms precipitate in this reaction.

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Related Questions

Make sure your answer includes TWO decimal places. this is an impossible formula. If it were real, determine the molar mass of:

KBr•7H2O

Answers

Molar mass is the summation of the atomic mass of the individual atoms. The molar mass of KBr•7H₂O is 244.99.

What is atomic mass?

Atomic mass or weight is the number of protons and neutrons in the atom of the individual element. The atomic masses are used to calculate the molar mass of the compound.

The compound KBr•7H₂O: 1 K + 1 Br + 14 H + 7O

Inserting the atomic masses of the individual atoms as:

= 1 (39.09) + 1 (79.90) + 14 (1.00) + 7(16)

= 39.09 + 79.90 + 14.00 + 112

= 244.99

Therefore, 244.99 is the molar mass of KBr•7H₂O.

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Please Help Me with this

Answers

Answer:

compared to sodium, silicon has a higher ionization energy meaning it takes more energy to remove electrons.

Explanation:

hope this helps

can u please give me and Brainlist

Define ionization energy. Describe how ionization energy impacts ionic bonding.

Answers

Answer: I can’t explain how it impacts ionic bonding but I can tell you what ionization energy is.

Explanation:

ionization energy, also called ionization potential, in chemistry and physics, the amount of energy required to remove an electron from an isolated atom or molecule.

What happens to the pressure and the molecules inside a unicycle tire that is being pumped up?

A. The pressure decreases, and the molecules slow down.

B. The pressure increases, and the molecules collide with the tire's inner surface.

C. The pressure increases, and the molecules slow down.

D. The pressure decreases, and the molecules collide with the tire's inner surface.​

Answers

B. The pressure increases, and the molecules collide with the tire’s inner surface.

how to solve this? what is the calculation of 100ml of 0.1 N H2SO4 by diluting from original H2SO4.
Atomic mass of: O=16 , H=1 S=32
d H2SO4=1.08 purity%=98

I need the solution and I will give a 5 star and brainliest

Answers

The answer is 0.46 ml of the original H₂S0₄ and dilute to a final volume of 100 ml.

What is Normality ?

Normality is a measure of concentration equal to the gram equivalent weight per liter of solution.

Normality = Number of gram equivalents × [volume of solution in litres]⁻¹

Preparing 100. ml of 0.1 N H₂S0₄

Eq. wt. of H₂S0₄ = 98/2=49

density of H₂S0₄= 1.08

Purity =98%

1 N H₂S0₄ = 49 gH₂S0₄ / liter

1  gm equiv wt /L x 1 gm equiv. wt / 2 = 98 / 2 = 49 g)

0.1 N H2SO4 = 4.9 g / L

To make 100 ml (0.100 L) we would need 4.9 [tex]\rm \frac{g}{L}[/tex] x 0.1 L

= 0.49 g H₂S0₄/100ml

Original density = 1.08 g / ml

with a purity of 98%,

this converts to 1.08 g x 0.98 = 1.058 g /ml

0.49 g H₂S0₄ x 1 ml / 1.058 g = 0.46 ml of original H₂S0₄needed

Therefore to make the desired solution

Take 0.46 ml of the original H₂S0₄ and dilute to a final volume of 100 ml.

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A gas has a volume of 1400 mL at a temperature of 20.00 K and a pressure
of 101.3 kPa. What will be the new volume when the temperature is
changed to 40.00 K and the pressure is changed to 50.65 kPa?

Answers

The question is Given:Gas×Temperature×Pressure

Gas=1400ml

Temperature=20.00K

Pressure=101.3kpa

140ml×20.00K×101.3 K Pa

total =6,00.00

and when the volume of temperature changed to 40.00 K and the pressure is changed to 50.65 kPa.

Solution will 40.00 K× 50.65 kPa

total of the changes is 200.

pleaseeeeeeeeeeee help this is due today

Answers

The final temperature of the sample of gas is 689.65 Kelvin.

What is the relation between temperature and pressure?

Relation between the temperature and pressure will be represented by the ideal gas equation PV = nRT, and for this question required equation is:

P₁/T₁ = P₂/T₂, where
P₁ & T₁ are the pressure and temperature of the initial sample.

P₂ & T₂ are the pressure and temperature of the final sample.

Pressure is in mmHg and on putting values from the question on the above equation, we get

T₂ = (810)(390.8) / (760) = 416.5 degree C = 689.65K

Hence required temperature of the sample is 689.65K.

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1- If 154.0 grams of potassium metal reacts with excess water, then how many grams of
potassium hydroxide and hydrogen gas are formed? What volume of hydrogen gas, in liters, is formed at STP? Be sure to balance the reaction first.
___K(s) + ____H2O(l) → ____KOH(aq) + ____H2(g)

2- The burning of solid sulfur in air produces sulfur dioxide gas.
S + O2 → SO2
Balance the reaction. How many moles of sulfur dioxide does the burning of 3 moles of sulfur form? Calculate the volume of sulfur dioxide produced at STP.

Answers

So

4K+4H_2O—⟩4KOH+2H_2

Moles of Potassium

154/393.9mol

See molar ratio is same for K,KOH,H_2O i.e 4 .

So same moles of all

Mass of Water

3.9(18)70.2g

Mass of KOH

56(3.9)218.4g

#2

S+O_2—»SO_2

Balanced already

3 mols of S form 3 mol SO_2

At STP 1mol=22.4L

Volume=22.4(3)=67.2L

If you had five moles of sodium chloride how many moles of sodium hydroxide could you produce?

Answers

You could at least produce 1

This is an impossible formula. If it were real, determine the molar mass of:

Fe1S1O5

Answers

Ammonium lauryl sulfate has a molar mass of 283.43 g/mol.

What is ammonium lauryl sulfate, and how does it work?

Ammonium dodecyl sulfate is another name for it. It's in the shampoos we use on our hair. Both polar and non-polar solvents can dissolve it. It can irritate the skin at times.

Thus, the ammonium lauryl sulfate molar mass is 283.43 g/mol.

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A small bar magnet is placed in the magnet field of a larger bar magnet that position marked why in the diagram below assuming the small bar mad and it is free to rotate how would it be positioned

Answers

Answer:

See below

Explanation:

The large bar magnet is positioned with S on the Left

  the small magnet will position itself similar this with N on the right   S on the left   (opposites attract)

On the basis of its name, what is the correct structural formula for pentene? CH2=CH−CH2−CH3 CH3−CH2−CH2−CH3 CH3−CH2−CH2−CH=CH2 CH3−CH2−CH2−CH2−CH3

Answers

The answer is CH₃-CH₂-CH₂-CH=CH₂ , Option C correctly represents the structural formula for pentene .

What is Alkene ?

Any hydrocarbon containing one or more double bonds.

Alkenes are generally colorless non-polar compounds, somewhat similar to alkanes but more reactive.

The first few members of the series are gases or liquids at room temperature.

Pentenes are alkenes with the chemical formula C₅H₁₀.

Each contains one double bond within its molecular structure.

CH₃-CH₂-CH₂-CH=CH₂ , Option C correctly represents the structural formula for pentene .

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A truck tire at 82.0L at 32.5°C and 1.9 atm has a temperature change to-15.4°C and a pressure change to 770.0 mmHg. Calculate how much the volume of the
air in the tire will change.

Answers

Answer:

+ 47.68 Liter change in volume to final volume 129.68 L

Explanation:

P1V1/T1 = P2V2/T2     RE-ARRANGE TO:

P1V1/T1  * T2/P2  = V2         (T must be in Kelvin)

1.9 * 82 / (273.15 + 32.5)   *  (273.15-15.4)/ (770/760) = 129.68 L

129.68 - 82=47.68 L  change  

Use the equation to answer the following question.
2H₂ + O₂ → 2H₂O
How many grams of H₂O are produced from 64.0 g of O₂?
O A. 72.1 g

Answers

Answer:

rsghkm vumm

Explanation:

el correo de confirmación con la que se ha enviado desde correo ok recibido gracias saludos María del Ca

What do you predict will happen to the volume inside a container when pressure & temperature remains constant but the number of particles inside is increased? WHY?

Answers

Answer:

increase

Explanation:

The Ideal Gas Equation

PV = nRTV = nRT/PV ∝ n

The volume of a gas is directly proportional to the number of moles it contains. Hence, if the number of particles is increased, then the volume inside the container will increase


What is the molarity of a solution that has 450 grams of sodium chloride in 800.0 mL of
water?

Answers

Answer:

= 9.6125M

Explanation:

data:

volume = 800ml

              800/ 1000 = 0.8dm^3

molar mass of NaCl = 23 + 35.5

                                  = 58.5g

mass of NaCl = 450 g

moles= ?

molarity = ?

solution:

no. of moles = [tex]\frac{given mass}{molar mass}[/tex]

                      = 450 / 58.5

                     = 7.69 moles

now, molarity = [tex]\frac{moles}{volume in dm^3}[/tex]

                       = 7.69 / 0.8

         molarity= 9.6125 M

The temperature of 2,000.0 g water is raised 3.00°C. How much
energy is transferred to the water. Use the formula below and use your
notes. The specific heat (Cp) for water is 4.18 J/g • °C. Round to three
significant digits. See your notes and slides.

Answers

Answer:

25 080 j    ( Rounded to 25100 j)

Explanation:

 FROM THE EQUATION

??  = 4.18  * 2000 * (3)  = 25 080 j

50 POINTS PLEASE ANSWER QUICK (bad answers will be reported)

Donna is studying phase changes. She claims that since the three phases have different amounts of energy, molecules in substances gain or lose energy only during phase transitions. What is incorrect about this claim?


Molecules gain or lose energy during any temperature change, not just phase changes.


Molecules do not have any energy changes, because they have a set amount of energy all the time.


Molecules are constantly losing energy, no matter what phase change is happening.

Energy levels are not related to phase changes.

Answers

Answer: Molecules gain or lose energy during any temperature change, not just phase changes.

Explanation:

If you think of a  heating or cooling curve, even when there isn't a phase change, the kinetic energy of the particles is still changing.

How many pounds of manganese are in 1.261 tons of Mn2O3?

Answers

Answer:

2000pound

Explanation:

Manganese metal is produced from the manganese(III) oxide, Mn2O3, which is found in manganite, a manganese ore. The manganese is reduced from its +3 oxidation state in Mn2O3 to the zero oxidation state of the uncharged metal by reacting the Mn2O3 with a reducing agent such as aluminum or carbon. How many pounds of manganese are in 1.261 tons of Mn2O3? (1 ton = 2000 pounds)

About 40 different substances called organophosphorus compounds are registered in the United States as insecticides. They are considered less damaging to the environment than some other insecticides because they breakdown relatively rapidly in the environment. The first of these organophosphorus insecticides to be produced was tetraethyl pyrophosphate, TEPP, which is 33.11% carbon, 6.95% hydrogen, 38.59% oxygen, and 21.35% phosphorus. It has a molecular mass of 290.190.

A quantity can be converted from one unit of measurement to another while maintaining its value. There are 2522 pounds of manganese in 1.261 tons of [tex]\rm Mn_2O_3[/tex].

It is a fundamental idea that is applied in many different disciplines such as science, engineering, math and daily life. To complete a conversion, it is necessary to know the conversion factor – the numerical relationship between the two units of measurement. With the help of this factor, you are able to convert units while keeping the value constant.

To convert tons to pounds we need to know that 1 ton is equal to 2000 pounds.

Given that you have 1.261 tons of [tex]\rm Mn_2O_3[/tex], we can calculate the number of pounds as follows:

Number of pounds = 1.261 tons * 2000 pounds/ton

Number of pounds = 2522 pounds

Therefore, there are 2522 pounds of manganese in 1.261 tons of [tex]\rm Mn_2O_3[/tex].

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Choose all the right answers.
factors produce changes in Earth's surface? You can choose multiple, giving 60 points
A. Erosion
B. Folding
C. Faulting
D. Weathering

Answers

Answer:

The answer is Erosion, Weathering,

Explanation:

These all seem to be correct but i know for a fact those two are correct.

How many grams of LiOH are needed to make 25 mL of a 0.125 M solution?

Please explain because I have no idea how to solve this

Answers

Answer:

0.0734 grams LiOH

Explanation:

The molarity formula looks like this:

Molarity (M) = moles / volume (L)

You are given the molarity and volume (in mL). Therefore, you can plug these values into the equation and solve for moles (after you convert from mL to L).

25 mL / 1,000 = 0.025 L

0.125 M = moles / 0.025 L

(0.125 M) x (0.025 L) = moles

0.003125 = moles

After using the molarity formula, we know that 0.003125 moles LiOH are needed to satisfy these conditions. Now, we can convert this to grams using the molar mass of LiOH. This can be determined using the values from the periodic table. Remember to write your conversion in a way that allows for the units to cancel out.

Molar Mass (LiOH) = 6.941 g/mol + 16.00 g/mol + 1.008 g/mol

Molar Mass (LiOH) = 23.499 g/mol

0.003125 moles           23.499 g
------------------------   x   -------------------  =  0.0734 grams LiOH
                                        1 mole

0.074 grams of lithium hydroxide are needed to make 25 ml of 0.125 M solution, according to the concept of molar concentration.

What is molar concentration?

Molar concentration is defined as a measure by which concentration of chemical substances present in a solution are determined. It is defined in particular reference to solute concentration in a solution . Most commonly used unit for molar concentration is moles/liter.

The molar concentration depends on change in volume of the solution which is mainly due to thermal expansion. Molar concentration is calculated by the formula, molar concentration=mass/ molar mass ×1/volume of solution in liters.

In terms of moles, it's formula is given as molar concentration= number of moles /volume of solution in liters.

Here , in the problem mass is to be determined, hence the formula used is the first one mentioned.

Substituting values in the formula,mass=molar concentration×molar mass×volume in liters

∴0.125×23.95×0.025=0.074 g.

Hence, 0.074 g of lithium hydroxide are required to prepare 25 ml of 0.125 M solution.

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Charle's Law

At 225 °C a gas has a
volume of 400 mL. What is
the volume of this gas at 127
°C?

Given:

Unknown:

Formula:

Solution:

Final answer:​

Answers

Convert temperature to Kelvin

225°C=498K127°C=400K

Convert vol to L

400mL=0.4L

Apply Charles law

V1T_2=V2T_10.4(400)=498V_2160=498V_2V_2=0.32L=320mL

Answer:

Given:

[tex]V_{1} = \text{400.0 mL}[/tex]

[tex]T_{1} = 225.0^{\circ}\text{C + 273.15 = 498.15 K}[/tex]

[tex]T_{2} = 127.0^{\circ}\text{C + 273.15 = 400.15 K}[/tex]

Unknown:

[tex]V_{2}[/tex]

Solution:

[tex]\dfrac{V_{1}}{T_{1}} = \dfrac{V_{2}}{T_{2}}[/tex]

[tex]V_{2} = V_{1} \times \dfrac{T_{2}}{T_{1}}[/tex]

[tex]V_{2} = \text{400.0 mL} \times \dfrac{\text{400.15 K}}{\text{498.15 K}}[/tex]

[tex]\boxed{V_{2} = \text{321.3 mL}}[/tex]

Therefore, the volume of the gas at 127.0°C is 321.3 mL

[tex]\begin{gathered}\\\end{gathered}[/tex]

Atmospheric pressure on the peak of Kilimanjaro can be as low as 0.20 atm. If the volume of an oxygen tank is 10.0L, at what pressure must the tank be filled so the gas inside would occupy a volume of 1.2 x 1043 L at this pressure?​

Answers

Answer:

24 atm

Explanation:

From Boyle's Law :

P₁V₁ = P₂V₂

Given values :

P₂ = 0.2 atmV₁ = 10.0 LV₂ = 1.2 x 10³ L

Solving

P₁ × 10 = 0.2 × 1.2 × 10³P₁ = 0.24 x 10²P₁ = 24 atm

New volume

1.2×10⁴³

So apply Boyles law

P1V1=P2V20.2(10)=P2(1.2×10⁴³)20=P2(1.2×10⁴³)P2=1.2×10⁴³/20P2=0.6×10⁴²P2=6×10⁴¹atm

Complete the chemical equations and balance them
HCl + KOH → __________ + ____________
H₃PO₄ + NaOH→__________ + ____________
H₂CO₃+ Ca(OH)₂→__________ + ____________

Answers

Answer:

KCl+H2O

Na3PO+H2O

CaCO3+H2O

Example of solvent extraction

Answers

Answer:

Liquid–liquid extraction

Explanation:

Examples of solvent extraction are the extraction of uranium and plutonium salts from solution in nitric acid in nuclear fuel reprocessing using kerosene as solvent, and the extraction of benzene from reformed naphtha using sulfolane as solvent.

Which type of solid conducts electricity the best?

• Ionic

• Molecular

• Network

• Metallic

Answers

I believe the correct answer is metallic solids

formular for calculating weight​

Answers

The weight of an object is defined as the force of gravity on the object and may be calculated as the mass times the acceleration of gravity, w = mg. Since the weight is a force, its SI unit is the newton.

W = mg

Weight of object = mass of object × acceleration of gravity

Find the formula for the hydrate
0.737 g MgSO3 and 0.763 g H2O

Answers

The required formula of hydrate is MgSO₃.6H₂O.

How do we calculate the formula of hydrate?

The number of moles of water per mole of anhydrous solid (x) will be computed by dividing the number of moles of water by the number of moles of anhydrous solid (x) to find the hydrate's formula.

Moles will be calculated as:
n = W/M, where

W = given massM = molar mass

Moles of MgSO₃ = 0.737g / 104.3g/mol = 0.007mol

Moles of H₂O = 0.763g / 18g/mol = 0.04 mol

Number of H₂O molecule = 0.04/0.007 = 5.7 = 6

So formula of hydrate is MgSO₃.6H₂O.

Hence required formula of hydrate compound is MgSO₃.6H₂O.

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Will the following compounds create solutions? Explain your answers.
Solvent Solution? Y/N Explain
Solute
Nal
H₂O
KBr
CH₂
CO₂
CF₁
LICI
CCI
NH₂
H₂O
CO₂
H₂O

Answers

The following compounds create solutions that are listed below

What is a solution ?

A solution is a homogeneous mixture of one or more solutes dissolved in a solvent.

solvent: the substance in which a solute dissolves to produce a homogeneous mixture

solute: the substance that dissolves in a solvent to produce a homogeneous mixture

1. Nal and H₂O

It will form an ionic solution .

2. KBr and CH4

It will not form a solution

3. CO₂ and CF₄

It will not form a solution

4. LiCI and CCl₄

It will not form a solution

5. NH₃ and H₂O

It will also form a solution and liberate ions of ammonium

6.CO₂ and H₂O

It will form a solution named as carbonic acid

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Reactions
Predict the products for the single replacement reactions given. Check to see that the equations are
balanced.
Ca + MgCl2 →?
-
O CaCl2 + Mg
O Ca + Cl2
0 Mg + Cl2
CaCl + Mg

Answers

Answer:

answer in picture

Explanation:

The balanced chemical equation will be Ca + MgCl2 → CaCl2 + Mg.

What is balanced chemical equation?

An equation that has the same quantity of atoms on both sides of the arrow would be said to represent a balanced chemical reaction.

The given equation is Ca + MgCl2 →

It is known that when Ca is reacted with magnesium chloride ( MgCl2) then it will form calcium chloride (CaCl2 ) and magnesium.

Ca + MgCl2 → CaCl2 + Mg.

It can be seen that, calcium has one atom in the reactant side and one atom in product side. On the other hand, chlorine has one atom in reactant side as well as product side.

Hence, the reaction will be balanced.

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