If a solution containing 117.63 g of silver chlorate is allowed to react completely with a solution containing 10.23 g of lithium bromide, how many grams of solid precipitate will be formed

Answers

Answer 1

Answer:

18.8 g

Explanation:

The equation of the reaction is;

AgClO3(aq) + LiBr(aq)------>LiClO3(aq) + AgBr(s)

Number of moles of AgClO3 = 117.63 g/191.32 g/mol = 0.6 moles

Number of moles of LiBr = 10.23 g/86.845 g/mol  = 0.1 moles

Since the molar ratio is 1:1, LiBr is the limiting reactant

Molar mass of solid AgBr = 187.77 g/mol

Mass of precipitate formed = 0.1 moles * 187.77 g/mol

Mass of precipitate formed = 18.8 g

Answer 2

If in a solution reaction between 117.63 g of silver chlorate and 10.23 g of lithium bromide takes place then, 18.8 grams of solid precipitate will be formed.

What is limiting reagent?

In any chemical reaction limiting reagent is that reagent whose moles are present in less quantity as compared to the other reagent, is responsible for the formation of product.

Given chemical reaction is:
AgClO₃(aq) + LiBr(aq) → LiClO₃(aq) + AgBr(s)

Moles (n) will ce calculated as:

n = W/M, where

W = given mass

M = molar mass

Moles of AgClO₃ = 117.63g / 191.32g/mol = 0.6 moles

Moles of LiBr = 10.23g / 86.845g/mol  = 0.1 moles

In this reaction LiBr is the limiting reagent and formation of product depends on this.

From the stoichiometry of the reaction it is clear that:
0.1 mole of LiBr = produce 0.1 mole of AgBr

Mass of AgBr = (0.1mol)(187.77g/mol) = 18.8 g

Hence mass of AgBr is 18.8 g.

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Related Questions

Breathing air that contains 4.0% by volume CO2 over time causes rapid breathing, throbbing headache, and nausea, among other symptoms. what is the concentration of co2 in such air in terms of mol percentage

Answers

Answer:

1 mole of any ideal gas occupies the same volume as one mole of any other ideal gas under the same conditions of temperature and pressure.So 1 L CO2 has same number of moles as 1 L O2 and 1 L N2 etc.This means that, assuming all the gases in air are ideal gases, if CO2 is 4.0 % by volume then it is also 4.0 % by moles, because a volume of each gas has the same number of moles.

Explanation:

. H ow many milliliters of water must be added to 250 mL of a 25% w/v stock solu- tion of sodium chloride to prepare a 0.9% w/v sodium chloride solution

Answers

The right answer would be

We have that for the Question  it can be said that the volume of water must be added to 250 mL of a 25% w/v stock solution of sodium chloride to prepare a 0.9% w/v sodium chloride solution is

x=444ml

From the question we are told

. H ow many milliliters of water must be added to 250 mL of a 25% w/v stock solution of sodium chloride to prepare a 0.9% w/v sodium chloride solution

Generally the equation for the volume of NaCl   is mathematically given as

[tex]V=\frac{25}{100}*250\\\\V=62.5ml[/tex]

Therefore

[tex]\frac{62.5}{250+x}*100=0.9\\\\x=6250-2250\\\\x=4000ml\\\\x=444ml[/tex]

Therefore

the volume of water must be added to 250 mL of a 25% w/v stock solu- tion of sodium chloride to prepare a 0.9% w/v sodium chloride solution is

x=444ml

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PLZ HELP WILL GIVE 40 POINTS PLEASE

Answers

Answer:

A?

Explanation:

Helpp me plsssss!!!!!!!!!!!!!

Answers

Answer: the bottom one is wave the one above is electromagnetic and the one above is transverse  

Explanation:

Cigarette lighters use butane, or C4H10, as their fuel. If 120.0 grams of butane burn with only 55.0 liters of oxygen gas at STP, how many liters of carbon dioxide are produced? Which reactant is your limiting reactant?

Answers

Volume CO₂ produced  := 33.85 L

Further explanation

Given

120.0 grams of butane

55.0 liters of oxygen

Required

Carbon dioxide produced

Solution

Reaction(combustion of Butane) :

2 C₄H₁₀ + 13 O₂ → 8 CO₂ + 10 H₂O.

mol of Butane (MW=58 g/mol) :

mol = mass : MW

mol = 120 : 58

mol = 2.069

At STP(1 atm, 273 K) , 1 mol gas=22.4 L, so for 55 L Oxygen :

mol O₂= 55 : 22.4 =2.455

Mol ratio of Butane and Oxygen = mol : reaction coefficient :

C₄H₁₀ : O₂ = 2.069/2 : 2.455/13 = 1.0345 : 0.189

Limiting reactant ⇒ O₂ (smaller ratio)

So mol CO₂ based on limiting reactant(O₂)

From equation, mol CO₂ : O₂ = 8 : 13, so mol CO₂ :

= 8/13 x mol O₂

= 8/13 x 2.455

= 1.511

Volume CO₂ at STP :

= 1.511 x 22.4 L

= 33.85 L

If an instant pot has an internal pressure of 191.0 kPa, temperature of 750.0 K and a volume of 6.5 L, how many moles of gas would be contained inside the instant pot?

Answers

Answer:

0.200 mol.

Explanation:

Hello!

In this case, since this case is considered an ideal one (no intermolecular interactions), we can use the following equation:

[tex]PV=nRT[/tex]

Thus, since we know the pressure, temperature and volume, we are able to compute the moles shown below:

[tex]n=\frac{PV}{RT} =\frac{191kPa*\frac{1000Pa}{1kPa} *6.5L*\frac{1m^3}{1000L} }{8.314\frac{Pa*m^3}{mol*K}*750.0K}\\\\n=0.200mol[/tex]

Best regards!

How would you separate salt & sand, taking into account the fact that salt is soluble in
water and sand is not?

Answers

The two can be mixed in water, since the salt is soluble it will dissolve and the sand will remain. To separate it from the water use filter paper and a beaker.

the temperature of a rigid (i.e constant volume) sealed container of gas increases from 100 C to 200 C the gas pressure increases by a factor of

Answers

Answer:

The pressure increases by a factor of 1.27

Explanation:

From the question given above, the following data were obtained:

Initial temperature (T₁) = 100 °C

Final temperature (T₂) = 200 °C

Initial pressure (P₁) = P

Final pressure (P₂) =?

NOTE: The volume is constant.

Next, we shall convert celsius temperature to Kelvin temperature. This can be obtained as follow:

T(K) = T(°C) + 273

Initial temperature (T₁) = 100 °C

Initial temperature (T₁) = 100 °C + 273

Initial temperature (T₁) = 373 K

Final temperature (T₂) = 200 °C

Final temperature (T₂) = 200 °C + 273

Final temperature (T₂) = 473 K

Next, we shall determine the final pressure of the gas. This can be obtained as follow:

Initial temperature (T₁) = 373 K

Final temperature (T₂) = 473 K

Initial pressure (P₁) = P

Final pressure (P₂) =?

P₁ / T₁ = P₂ / T₂

P / 373 = P₂ / 473

Cross multiply

373 × P₂ = P × 473

Divide both side by 373

P₂ = P × 473 / 373

P₂ = 1.27 × P

Finally, we shall determine the factor by which the pressure of the gas increase as follow:

Initial pressure (P₁) = P

Final pressure (P₂) = 1.27 × P

From the above, we can see that the pressure increased by a factor of 1.27

The gas pressure would increase by a factor of 2.

At constant volume, the pressure of a gas increases with an increase in its temperature.

Mathematically; P1/T1 = P2/T2

Where P1 = initial pressure, T1 = initial temperature, P2 = final pressure, and T2 = final temperature.

In this case, T1 = 100 and T2 = 200

P2/P1 = T2/T1

            = 200/100

                  = 2

This means that the gas pressure would increase by a factor of 2 if the temperature were to be increased from 100 to 200 at constant volume.

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The molar mass-of H2O is 18.02 gram /mol. How many moles are present in 3.33 x 1024 molecules of
H2O?
Select one:
a. 9.97 moles H20
b. 99.7 moles H2O
c. 2.00 x 1048 moles H20
d. 5.53 moles H20

Answers

Answer

5.53moles

Explanation:

Given parameters

Number of molecules = 3.33 x 10²⁴

Unknown

Number of moles = ?

Solution

A mole of a substance contains the Avogadro's number of particles.

1 mole of a substance = 6.02 x 10²³

So, 3.33 x 10²⁴ molecules will contain;

3.33 x 10²⁴ / 6.02 x 10²³

= 5.53moles

There are three isotopes of X element (X):
X-17 isotope: atomic mass17.2 amu, abundance:78.99%
X-18isotope: atomic mass 18.1 amu, abundance 10.00%
X-19isotope: atomic mass:19.1 amu, abundance: 11.01%
Calculate the average atomic mass of X.

Answers

Explanation:

hope it will help friends

Which evidence is an indication that a chemical reaction has occurred?
A) melting of a substance
B) formation of a gas
C) boiling of a substance
D) freezing of a substance

Answers

Formation of gas is an evidence that a chemical reaction has occurred.

What are the characteristics of chemical reaction?

The characteristics of chemical reaction are as follows:

1) Color change- The change in color of reactants when it is converted to products indicate that the reaction has taken place.

2)Evolution of gas-In some reactions , a gas is evolved indicating occurrence of chemical reaction.

3)Formation of precipitate- In some chemical reactions, an insoluble solid called as precipitate is obtained which is an indication that a chemical reaction has taken place.

4)Change in energy- In some cases of chemical reactions, there is a change in energy which is observed indicating occurrence of chemical reaction.

As the formation of gas is the characteristic of chemical reaction it serves as an indication  for occurrence of chemical reaction.

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What is the frequency of light whose wavelength is 6.33 x 10-7m?

Answers

Answer:

the frequency of light is

[tex]4.74 \times {10}^{14} [/tex]

Explanation:

from v = λf

speed of light in air, v = 3.0*10^8ms^-1

Analyze the normal curve of intelligence testing and explain the mean, standard deviation, and percentiles for the data.

Answers

Answer:

the rate decreases and the curve increases

Explanation:

Answer: The mean of the normal curve is always in the center which is 100, so a standard deviation is a computed measure of how much scores vary around the mean score, meaning about 68% of the scores fall within one standard deviation of the mean, now 95% of the scores are going to fall within two standard deviations around the mean and with what you have left covers about 99.7% scores are within 3 standard deviations

Explanation:

Which of these factors does not affect the climate?


1. Proximity to Water


2. Ocean Currents


3. Latitude


4. Puddles


5. Global Winds


6. Elevation

Answers

Answer:

id say 4

Explanation:

hope this is right!

-Jules

Puddles is the answer evaporated

Which of these can be found in a plant cell but not in an animal cell?
A.) chromosome
B.)nucleus
C.)chloroplast
D.)cell membrane


i would really like it if u could help me out with this. please and thank u :)

Answers

Answer:

C.)chloroplast

Explanation:

The plant cell has a cell wall, chloroplasts, plastids, and a central vacuole—structures not found in animal cells. Plant cells do not have lysosomes or centrosomes.

PLZ HELP 40 POINTS PLEASEEEEEE

Answers

Answer:

should be A

Explanation:

At what temperature can 10g of Cez(SO4)3 be dissolved in 100g of water?
A.10
B.20
C.60
D.40

Answers

I would say the answer is a
The answer to this question is A


Which example below is an example of deposition?
a. Water vapor in clouds changing to snow
b. Water vapor in clouds changing to rain
C. Liquid droplets forming on the outside of a cold can of soda
d. Ice cream dripping off your ice cream cone on a hot summer day

Answers

The opposite of sublimation is deposition where water vapor changes directly into ice
So I would put a

A chemist has synthesized a monoprotic weak acid and wants to determine its Ka value. To do so, the chemist dissolves 2.00 mmol of the solid acid in 100.0 mL water and titrates the resulting solution with 0.0500 M NaOH. After 20.0 mL NaOH has been added, the pH is 6.00. What is the Ka value for the acid

Answers

Answer:

1x10⁻⁶ is the Ka value for the acid

Explanation:

When a weak acid, HA, reacts with NaOH, some conjugate base, A⁻, is produced:

HA + NaOH → A⁻ + Na⁺ + H₂O

When HA is in excess, the NaOH added is equal to A⁻ produced and HA is Initial HA - NaOH added

After the reaction, the moles of HA are:

Initial moles HA: 2.00mmol

Moles NaOH: 0.020L * (0.050mol/L) = 1x10⁻³ moles = 1mmol

Moles HA: 2mmol - 1mmol = 1mmol

Moles A⁻ = Moles NaOH = 1mmol

Using H-H equation we can solve for pKa of the buffer:

pH = pKa + log [A⁻] / [HA]

Where [] could be taken as mmol of each species in the buffer:

6.00 = pKa + log 1mmol / 1mmol

6.00 = pKa

As pKa is -log Ka:

6.00 = -log Ka

10^-6 = Ka

1x10⁻⁶ is the Ka value for the acid

can you please help me with this question ​

Answers

Answer:

Heat the water i'm pretty sure

Explanation:

Pure water and pure salt are poor conductors of electricity. When salt is dissolved in water, the resulting solution conducts electricity well. Which statement explains why this occurs with these substances?

The process of dissolving makes the electrons in their atoms free to move

The process of dissolving makes the atoms in them free to move

The process of dissolving makes the electrons in their atoms more closely bound

The process of dissolving makes the atoms in them more closely bound to each other

Answers

Answer:the process of dissovlving makes the ecectrons in their atoms more closely bound

Explanation:

thats what my lesson said

The solution of water and salt are good conductor of electricity because the process of dissolving makes the electrons in their atoms free to move.

The correct option is (A).

What makes a solution of water and salt a good conductor?

Pure water and salt are bad conductor of electricity.

But the solution of water and salt is a good conductor because when a salt's dissociated it's ions are free to move about in solution when it dissolves, allowing a charge to flow freely.

Because it includes ions, the resulting solution will conduct electricity.

Thus, option (A) the process of dissolving makes the electrons in their atoms free to move, that's why the solution of water and salt are good conductor of electricity.

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Ibuprofen (aka ADVIL) is a weak acid with a pKa of 4.9. It is absorbed through the stomach and the small intestine as a function of polarity - charged and very polar molecules are absorbed slowly; neutral hydrophobic molecules absorb quickly. If the stomach pH is about 1.5 and the small intestine pH is about 6, where (and why) will more ibuprofen be absorbed into the bloodstream

Answers

Answer:

Explanation:

There will be absorption of more ibuprofen in the stomach due to the fact that  it will be uncharged because the pH is lower than the pKa.

The molecular formula for Ibuprofen is: C₁₃H₁₈O₂

The IUPAC name is:

(RS)-2-(4-(2-methylpropyl)phenyl)propanoic acid

From the attached image, we will see the structural formula of Ibuprofen.

Denmark is characterized as temperature as a region . the winters typicky experience frequent snowfall and low temperatures. in contrast, the summers are typically mild. is the sentence talking about climate, whether, topography or atmosphere​

Answers

Its climate

because the paragraph talks about how the weather changes during the seasons in Denmark

In the nitrite ion (NO2-), __________. A) both bonds are single bonds B) both bonds are double bonds C) one bond is a double bond and the other is a single bond D) both bonds are the same E) there are 20 valence electrons

Answers

Answer:

B) Both bonds are double bonds

Explanation:

For nitrite ion, oxygen reacts with nitrogen oxide which is joined by a double bond to form nitrite ion.

Now, nitrite ion cannot have an expanded octet and thus both bonds will be the same with each bond being stronger and shorter than a single bond but they will be longer and weaker than a double bond.

What mass of NaOH is needed to make 500mL of 4M solution

Answers

Answer:

80.0 grams NaOH

Explanation:

500 mL = 0.500 L

M = moles / liters

4 M =    x moles / 0.500 L

Multiply both sides by 0.500 L

2 moles = x

Convert moles to grams

2 moles NaOH x (39.998 grams NaOH / 1 mole) = 80.0 grams NaOH

Enter the chemical formula of a binary molecular compound of hydrogen and a Group 6A element that can reasonably be expected to be more acidic in aqueous solution than , e.g. have a larger .

Answers

The question is incomplete, the complete question is;

Enter the chemical formula of a binary molecular compound of hydrogen and a Group 6A element that can reasonably be expected to be more acidic in aqueous solution than H2S , e.g. have a larger Ka.

Answer:

H2Se

Explanation:

The acidity and extent of acid dissociation (shown by Ka value) depends on the nature of the bond between hydrogen and the group 6A element.

If we compare the H-S bond and the H-Se bond, we will discover that the H-Se bond is longer, weaker and breaks more easily than the H-S bond. As a result of this, H2Se is more acidic than H2S.

Please answer this as soon as possible

Answers

Burning is a chemical property so (c) for #1

Sodium has one valence electron in its 3rd orbit

How much 2.0 M NH4NO3 is needed to make 0.585 L of 1.2 M NH4NO3 solution?

a
0.176 L
b
0.351 L
c
0.301 L
d
0.140 L
e
0.234 L

Answers

Answer:

b . 0.351 L.

Explanation:

Hello!

In this case, since diluted solutions are prepared by adding an extra amount of diluent to a stock-concentrated solution, we infer that the number of moles of solute remains the same, therefore we can write:

[tex]C_1V_1=C_2V_2[/tex]

Thus, solving for the volume of the stock solution, V1, we obtain:

[tex]V_1=\frac{C_2V_2}{C_1}[/tex]

Now, by plugging in the given data we obtain:

[tex]V_1=\frac{1.2M*0.585L}{2.0M}\\\\V_1=0.351L[/tex]

Therefore, the answer is b . 0.351 L.

Best regards!

A planetary explorer vehicle on Earth weighs
557 pounds, what would it weigh on the
surface of Venus, which has 9/10 the gravity
of Earth?
A. more than on the Earth
B. less than on the Earth
C. the same as on Earth

Answers

Answer:

B. less than on the Earth

Explanation:

Weight is determined by gravity. Less gravity means less weight. The vehicle would weigh 501.3 pounds on Venus.

Answer:

B

Explanation:

how much mass is lost through radioactive decay if 1.8 x 10^15 J are released?

Answers

Answer:

0.02 kg

Explanation:

A P E X

The energy released by the decay process is  1.8 x 10¹⁵ J. Therefore the mass of the radioactive substance is 0.02 Kg.

What is radioactive decay ?

Heavy unstable radioactive nuclei undergoes nuclear decay by the emission of charged particles to form more stable nuclei.

The relationship between energy and mass is given by Einstein's famous equation, E = mc², where E is the energy released in a process, m is the mass lost or gained in the process, and c is the speed of light.

To calculate the mass lost through radioactive decay, we need to rearrange this equation to solve for m:

m = E / c²

Plugging in the given energy released, E = 1.8 x 10^15 J, and the speed of light, c = 3 × 10⁸m/s, we get:

m = (1.8 x 10¹⁵ J) / ( 3 × 10⁸ m/s)²

m = 1.8 x 10¹⁵ J /9 x 10^16 m²/s²

m =0.02 kg

Therefore, the mass lost through radioactive decay is approximately 0.02 kg.

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