Use the problem below to answer the question:
34 grams of carbon react with an unlimited amount of H2O. The reaction is:
C + H20 - CO + H2

Is this equation balanced?
Yes or No

Answers

Answer 1

Answer:

yes

Explanation:

yes


Related Questions

Sarah lives beside the ocean in Eureka, California. Her penpal, Ruby, lives in Redding, California, which is located inland. As a school project one year, Sarah and Ruby decide to collect local climate data and compare the average monthly high and low temperatures from their cities. The data they collect are shown below. Month Eureka Average High Eureka Average Low Redding Average High Redding Average Low January 54°F 41°F 55°F 35°F February 55°F 43°F 58°F 38°F March 55°F 43°F 70°F 41°F April 56°F 45°F 71°F 45°F May 58°F 48°F 80°F 52°F June 60°F 51°F 89°F 60°F July 61°F 52°F 98°F 64°F August 62°F 53°F 97°F 61°F September 63°F 51°F 89°F 56°F October 61°F 49°F 69°F 45°F November 58°F 45°F 60°F 40°F December 55°F 42°F 55°F 34°F Based on the climate data that Sarah and Ruby collect, they can conclude that

Answers

Answer:

Temperature variance at Redding > > Temperature variance beside at Eureka

Monthly temperatures at Redding are generally higher than the monthly temperatures beside the ocean at Eureka

Explanation:

Month             January

Eureka                Eureka          Redding      Redding

Average              Average          Average       Average

High                     Low                 High             Low

54°F                     41°F                   55°F              35°F

February

55°F                     43°F                  58°F              38°F

March

55°F                     43°F                   70°F          41°F

April

56°F                     45°F                   71°F          45°F

May

58°F                    48°F                    80°F         52°F

June

60°F                     51°F                     89°F         60°F

July

61°F                      52°F                      98°F         64°F

August

62°F                      53°F                      97°F         61°F

September

63°F                     51°F                         89°F          56°F

October

61°F                      49°F                        69°F         45°F

November

58°F                     45°F                        60°F         40°F

December

55°F                     42°F                        55°F           34°F

58                          46.92                  74.25            47.58        Mean

3.16                        4.25                     15.99            10.63         Standard Dev

9.97                       14.08                    255.84         112.992      Variance

63                           53                         98                64              Max  

54                           41                          55                34              Min

Based on the climate data that Sarah and Ruby collect, they can conclude that

From the data we have

From the data it is observed that the temperatures beside the ocean in Eureka are lesser than and more stable (vary less) than the temperatures in Redding, also the temperatures in Redding are much higher than the temperatures beside the ocean in Eureka.

"Acetylcholinesterase follows Michaelis-Menten kinetics. A 1.3 micromolar solution of acetylcholinesterase catalyzes the formation of 6.5 mmoles choline s-1 when saturated with acetylcholine. What is acetylcholinesterase's kcat?"

Answers

Answer:5000 s^-1

Explanation: Solution=

Using the formulae----> Kcat=Vmax/Et

where

Vmax is the maximum rate of the reaction when all the enzymes are saturated.

Vmax= 6.5 mmoles/s

Et=1.3 uM

1 mmole= 1000 umole

Changing to micromoles/sec, gives=

Vmax=   6.5 mmoles/s \times 1000= 6500 micromoles/s

Bringng back the equation,  

----->Kcat= Vmax/Et

= 6500/1.3

= 5000 /s

Therefore, our answer  is 5000 s^-1

A sample of hydrogen gas, H2(g), is placed in a 0.500 L container at 295 K. The gas pressure is
1.442 bar.

Answers

Final answer:

The question relates to the ideal gas law in chemistry, which connects the pressure, volume, temperature, and number of moles of hydrogen gas in a given scenario.

Explanation:

The student's question involves a sample of hydrogen gas (H2), which is placed in a 0.500 L container at a temperature of 295 K with a pressure of 1.442 bar. This scenario typically deals with concepts such as gas laws and molar calculations from chemistry, specifically the ideal gas law, which relates the pressure, volume, temperature, and number of moles of a gas.

To solve problems like this, one would normally use the ideal gas law equation: PV = nRT. However, without the number of moles or the specific R constant provided, one cannot calculate the moles directly. Additional information or a different question that involves changing conditions where the ideal gas law can be applied might be necessary.

How many moles are present in 4.7 liters of Argon gas at STP?

Answers

The answer for the following problems is mentioned below.

Therefore the number of moles present in Argon is 0.20 moles.

Explanation:

Mole:

The mass of a substance containing the same number of fundamental units as there are atoms in exactly 12.000 g of [tex]C^{12}[/tex].

Given:

volume (v) = 4.7 litres

Volume of argon at STP conditions = 22.4 litres

To find:

volume of argon at STP conditions

We know;

n = [tex]\frac{v}{V}[/tex]

where;

n represents the no of moles

v represents the volume of the argon

V represents the volume of argon at STP

volume of the argon at STP conditions is 22.4 litres

So;

n = [tex]\frac{4.7}{22.4}[/tex]

n = 0.20 moles

Therefore the number of moles present in Argon is 0.20 moles.

There are 0.107 moles of Argon gas present in 4.7 liters at STP.

To determine the number of moles of Argon gas present in 4.7 liters at STP (Standard Temperature and Pressure), we can use the Ideal Gas Law, which is given by:

[tex]\[ PV = nRT \][/tex]

where:

- [tex]\( P \)[/tex] is the pressure,

- [tex]\( V \)[/tex] is the volume,

- [tex]\( n \)[/tex] is the number of moles,

- [tex]\( R \)[/tex] is the ideal gas constant, and

- [tex]\( T \)[/tex] is the temperature.

At STP, the conditions are defined as:

- [tex]\( P = 1 \)[/tex] atmosphere (atm),

- [tex]\( T = 273.15 \)[/tex] Kelvin (K).

The value of the ideal gas constant [tex]\( R \)[/tex] is approximately [tex]\( 0.0821 \frac{\text{L} \cdot \text{atm}}{\text{mol} \cdot \text{K}} \)[/tex].

We can rearrange the Ideal Gas Law to solve for n  (the number of moles):

[tex]\[ n = \frac{PV}{RT} \][/tex]

Given that [tex]\( V = 4.7 \)[/tex] liters, we can plug in the values:

[tex]\[ n = \frac{(1 \text{ atm})(4.7 \text{ L})}{(0.0821 \frac{\text{L} \cdot \text{atm}}{\text{mol} \cdot \text{K}})(273.15 \text{ K})} \][/tex]

[tex]\[ n = \frac{4.7}{0.0821 \times 273.15} \][/tex]

[tex]\[ n = \frac{4.7}{22.41} \][/tex]

[tex]\[ n \approx 0.107 \text{ moles} \][/tex]

Therefore, there are approximately 0.107 moles of Argon gas in 4.7 liters at STP.

Which of the following are not at equilibrium? Check all that apply. Check all that apply. The concentrations of reactants and the products are not constant. The rate of the forward reaction does not change. The rates of the forward and reverse reactions are equal.

Answers

The concentrations of reactants and the products are not constant and the rates of the forward and reverse reactions are equal. and these reactions are not at equilibrium.

Explanation:

The conditions to attain equilibrium is that,

Conversion of reactant to product and vice versa occurs at the same rate.The system is a closed system.The temperature remains constant.Concentration of every substance remains constant.Rate of forward and reverse reactions will be different.

So the answer is The concentrations of reactants and the products are not constant and the rates of the forward and reverse reactions are equal.

Final answer:

A system is at equilibrium when the rates of forward and reverse reactions are equal and the concentrations of reactants and products are constant. Thus, any changes in concentrations or reaction rates indicate that the system is not at equilibrium.

Explanation:

Based on Chemical Equilibrium principles, a system is at equilibrium when the rates of the forward and reverse reactions are equal, and the concentrations of reactants and products are constant. Therefore, if the concentrations of the reactants and the products are not constant, the system is not at equilibrium. Similarly, if there is a condition where the rate of the forward or reverse reaction does not change, the system is also not at equilibrium.

This means that even if the forward and reverse reaction rates are equal, but the concentrations are still fluctuating, the system hasn't reached equilibrium yet. So changes in the concentrations of the reactants or products indicate that the system is not in equilibrium. These principles form the basis of the Le Châtelier's principle.

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HELP!!!
Zn+CuCl2→ZnCl2+Cu

How many grams of ZnCl2 will be produced from 7.00 grams of Zn and 8.00 grams of CuCl2?

Answers

Answer:

The answer to your question is 8.1 g of ZnCl₂

Explanation:

Data

mass of ZnCl₂ = ?

mass of Zn = 7.0 g

mass of CuCl₂ = 8 g

Balanced chemical reaction

                Zn  +  CuCl₂   ⇒   ZnCl₂  +  Cu

Process

1.- Calculate the molar mass of the reactants

Zn = 65.4 g

CuCl₂ = 63.6 + (35.5 x 2) = 134.6 g

2.- Calculate the limiting reactant

theoretical yield  CuCl₂ / Zn = 134.6/65.4 = 2.06

experimental yield CuCl₂ / Zn = 8/7 = 1.1

The limiting reactant is CuCl₂ because the experimental yield was lower than the theoretical yield.

3.- Use proportions to calculate the mass of ZnCl₂

molar mass of ZnCl₂ = 65.4 + (35.5 x 2) = 136.4 g

                  134.6 g of CuCl₂ ---------------- 136.4 g of ZnCl₂

                      8   g                 ----------------  x

                      x = (8 x 136.4) / 134.6

                      x = 8.1 g of ZnCl₂

Dalton's law states that

A) gas volume and temperature are directly proportional.
B) gas pressure is inversely proportional to gas volume.
C) in a mixture of gases such as air, the total pressure is the sum of the individual partial pressures of the gases in the mixture.
D) gas volume and pressure are inversely proportional.
E) the volume of gas that will dissolve in a solvent is proportional to the solubility of the gas and the gas pressure.

Answers

Answer:

C) in a mixture of gases suck as air, the total pressure is the sum of the individual partial pressure of the gasses in the mixture

Final answer:

Dalton's law, or the law of partial pressures, states that in a mixture of gases, the total pressure is the sum of the individual partial pressures of the gases in the mixture.

Explanation:

The correct answer to the question regarding Dalton's law is that, C) in a mixture of gases such as air, the total pressure is the sum of the individual partial pressures of the gases in the mixture. This is because Dalton's law, also referred to as Dalton's law of partial pressures, states that the total pressure exerted by a mixture of gases is the sum of the partial pressures of each individual gas in the mixture.

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The three main types of scientific investigations are descriptive, comparative, and experimental. Which components are
included in all three types of investigations?
a scientific question
an independent variable
a dependent variable
a procedure
a control group
a conclusion

Answers

The components included in all three are a scientific question, a procedure, and a conclusion. A scientific question is used to identify the purpose of an experiment, which an investigation can be designed from. A procedure must be present in every experiment so that there is structure to every investigation. Conclusions are always present, because they summarize the results and outcomes of the experiment.

85.0 grams of NaN3 decompose at 75 degrees Cesius and at 2.3atm. Of pressure. What volume of N2 will be made according to the equation: 2NaN3(g) -------> 2Na(g) + 3N2(g)

Answers

Ideal gas law is valid only for ideal gas not for vanderwaal gas. Therefore the volume of N[tex]_2[/tex] will be made according to the equation is 2.64l.

What is ideal gas equation?

Ideal gas equation is the mathematical expression that relates pressure volume and temperature. Ideal gas is a hypothetical gas. Vanderwaal gas can behave as ideal gas at low pressure and high temperature.

Mathematically,

PV=nRT

where,

P = pressure= 2.3atm

V= volume=?

n =number of moles=85.0/65.01

                               =1.30moles

T =temperature=348K

R = Gas constant = 0.0821 L.atm/K.mol

Substituting all the given values in the above equation, we get

2.3 × V=1.30× 0.0821 L.atm/K.mol × 348 K

V=1.76l

volume of nitrogen = 3/2× 1.76l=2.64l

Therefore the volume of N[tex]_2[/tex] will be made according to the equation is 2.64l.

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Final answer:

To calculate the volume of nitrogen gas produced from the decomposition of NaN3 at a given temperature and pressure, we must apply the stoichiometry from the balanced chemical equation and use the ideal gas law formula.

Explanation:

The student's question involves determining the volume of nitrogen gas (N2) produced from the decomposition of sodium azide (NaN3) under specified conditions of temperature (75 degrees Celsius) and pressure (2.3 atm). To solve this, one must use the ideal gas law, PV = nRT, where P is the pressure, V is the volume, n is the number of moles of gas, R is the ideal gas constant, and T is the temperature in Kelvin. The first step is to calculate the moles of N2 that can be produced from 85.0 grams of NaN3 using the stoichiometry of the given balanced equation.

Firstly, one needs to find the molar mass of NaN3 to convert grams to moles. Then, apply the stoichiometry from the balanced equation (2 mol NaN3 produces 3 mol N2). Finally, using the calculated number of moles of N2, apply the ideal gas law to find the volume of nitrogen gas at the given temperature and pressure.


How many calories are needed to raise the temperature of 25 grams of water form 50°C to 70°C? The specific heat of water is 1cal/g°C

Answers

Answer:

500 calories

Explanation:

Heat gained or lost is mass times specific heat times change in temperature. Using this formula, the answer is 500 calories.

which two conditions must exist in population for natural selection to take place ?​

Answers

Four conditions are needed for natural selection to occur: reproduction, heredity, variation in fitness or organisms, variation in individual characters among members of the population. If they are met, natural selection automatically results.

Final answer:

Natural selection requires genetic variation within a population and environmental pressures that select for certain traits, leading to changes in the population's genetic makeup over generations.

Explanation:

For natural selection to take place in a population, two essential conditions must exist: genetic variation among individuals and environmental pressures that favor certain traits over others. Genetic variation ensures that there are differences in traits among individuals, which may be advantageous or not depending on the environmental context. These traits must have a genetic basis so that they can be inherited by the next generation.

Environmental pressures, such as climate change, predation, availability of resources, and competition, then determine which of these traits are beneficial, leading to the greater reproductive success of individuals with those traits, thus altering the genetic makeup of the population over time.

Zinc granules on treating with an acid X, form the zinc sulphate (ZnSO4) salt along with the evolution of a gas Y which burns with a pop sound when brought near to a burning candle.

Answers

Answer:

Question is incomplete, the complete question is;

Zinc granules on treating with an acid X, form the zinc sulphate (ZnSO4) salt along with the evolution of a gas Y which burns with a pop sound when brought near to a burning candle. Identify the acid X and gas evolved Y.

Answer is;

Acid X is sulfuric acid (H₂SO₄) and the gas evolved Y is hydrogen (H₂).

Explanation:

Acids react with metals to produce a salt and hydrogen. The metal ions replace the hydrogen ions in the acids.  

When Zinc (Zn) granules are treated with sulfuric acid (H₂SO₄), the products are zinc sulfate (ZnSO₄) and hydrogen (H₂).

H₂SO₄ + Zn → ZnSO₄ + H₂

This reaction is a redox reaction, where reduction and oxidation happen at the same time. Zinc atoms are oxidized since they lose electrons (Zn → Zn²⁺ + 2e⁻), and hydrogen ions are reduced since they gain electrons (2H⁺ + 2e⁻ → H₂).  

Hydrogen is a highly flammable gas, which reacts with oxygen molecules to produce water, combined with an explosive release of energy. But a source of energy like a small spark is needed for this reaction to take place since hydrogen does not react with oxygen at room temperature.

The activation energy (energy required for a reaction to proceed) of hydrogen is low, so only a small amount of energy is needed to trigger a reaction with oxygen. When hydrogen is brought near to a burning candle, it reacts with oxygen in the air in a small explosion by producing a squeaky pop sound.

In the question, Zinc granules are treated with an acid X to form zinc sulfate (ZnSO₄) salt along with the evolution of a gas Y which burns with a pop sound when brought near to a burning candle. So, now it is clear that the acid X is sulfuric acid (H₂SO₄) and the gas evolved Y is hydrogen (H₂).

threats faced by the Everglades and the Louisiana wetlands.

Answers

Answer:

Invasive species, runoff pollution, and climate change.

Explanation:

Invasive species, such as Burmese pythons, threaten the Florida Everglades because they are not native to the natural habitat. Pythons eat the native animals, but they don't have any predators.

Pollution from nearby farms and roads enters the water and damages the ecosystem of the Everglades and Louisiana wetlands. Toxic chemicals lead to detrimental effects for both humans and wildlife.

Humans have drained swampy areas to allow for development. However, this has led to the Everglades drying up and even burning in recent years.

What is the definition of Amplitude?

Answers

Answer:

the maximum extent of a vibration or oscillation, measured from the position of equilibrium.

Explanation:physics

Final answer:

Amplitude, within a Physics context, describes the maximum displacement from an equilibrium or rest position. It is especially important in the study of waves and sound, affecting the height of waves and the perceived volume of sound respectively.

Explanation:

The term Amplitude in physics refers to the maximum displacement from the equilibrium or rest position. Precisely, it can be defined as the distance from the equilibrium position of the medium to a compression or a rarefaction. For example, in the context of waves, the amplitude is the measurement of the wave's height from the equilibrium position (mid-point or rest point of the wave) to its crest (highest point).

When applied to sound, amplitude refers to the magnitude of compression and expansion in sound waves. Sound with higher amplitudes are perceived as louder, measured in decibels (dB), due to their greater displacement from the point of equilibrium.

The units for measuring amplitude can vary according to the context and can be centimeters, meters, or any other convenient unit of distance. As the Amplitude increases, the intensity or loudness of the wave also increases correspondingly. Therefore, amplitude plays an essential role in determining the characteristics and impact of the wave.

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A chemistry student was asked to calculate the number of moles of iron required to react with 1.20 mol of oxygen to produce iron(III) oxide. His calculation is shown below: 1.20

Answers

Answer:

1.6 moles of iron

Explanation:

-Metals reacts with oxygen to form oxides.

-The chemical reaction between oxygen and iron is written as below:

[tex]4Fe_{(s)}+3O_2_{(g)}->2Fe_2O_3_{(s)}[/tex]

-pu notice from the balanced chemiocal equation above that the mole ration of iron to oxygen is 4:3

-We equate and cross multiply to find moles of iron in the reaction;

[tex]Fe:O_2=4:3\\\\\\\frac{Fe}{O_2}=\frac{4}{3}\\\\\frac{Fe}{1.2}=\frac{4}{3}\\\\Fe=\frac{4\times 1.2}{3}\\\\=1.6\ moles[/tex]

Hence, 1.6 moles of iron reacts with 1.2 moles of oxygen in the above reaction.

Final answer:

To calculate the number of moles of iron required to react with 1.20 mol of oxygen to produce iron(III) oxide, you need to determine the stoichiometric mole ratio from the balanced chemical equation. The ratio is 1 mole of iron to 1.5 moles of oxygen, which can be multiplied by 2 to get the balanced equation.

Explanation:

To calculate the number of moles of iron required to react with 1.20 mol of oxygen to produce iron(III) oxide, you need to determine the stoichiometric mole ratio from the balanced chemical equation. Based on the equation, the ratio is 1 mole of iron to 1.5 moles of oxygen. Since the ratio is not a whole number, you need to multiply it by 2 to get the smallest possible whole number subscripts while maintaining the correct iron-to-oxygen ratio. Therefore, the balanced equation is: 2 Fe + 1.5 O₂ → Fe₂O₃.

5.943x10^24 molecules of H3PO4 will need how many grams of Mg(OH)2 in the reaction below? 3 Mg(OH)2 + 2 H3PO4 -------> 1 Mg3(PO4)2 + 6 H2O

Answers

Answer:

Mass of Mg(OH)₂ required for the reaction = 863.13 g

Explanation:

3Mg(OH)₂ + 2H₃PO₄ -------> Mg₃(PO₄)₂ + 6H₂O

(5.943 x 10²⁴) molecules of H₃PO₄ is available fore reaction. Mass of Mg(OH)₂ required for reaction.

According to Avogadro's theory, 1 mole of all substances contain (6.022 × 10²³) molecules.

This can allow us find the number of moles that (5.943 x 10²⁴) molecules of H₃PO₄ represents.

1 mole = (6.022 × 10²³) molecules.

x mole = (5.943 x 10²⁴) molecules

x = (5.943 x 10²⁴) ÷ (6.022 × 10²³)

x = 9.87 moles

From the stoichiometric balance of the reaction,

2 moles of H₃PO₄ reacts with 3 moles of Mg(OH)₂

9.87 moles of H₃PO₄ will react with y moles of Mg(OH)₂

y = (3×9.87)/2 = 14.80 moles

So, 14.8 moles of Mg(OH)₂ is required for this reaction. We them convert this to mass

Mass = (number of moles) × Molar mass

Molar mass of Mg(OH)₂ = 58.3197 g/mol

Mass of Mg(OH)₂ required for the reaction

= 14.8 × 58.3197 = 863.13 g

Hope this Helps!!!

Answer:

5.943 × 10²⁴ molecules of H₃PO₄ will react with 789.29 grams of  Mg(OH)₂

Explanation:

Here we have

5.943 × 10²⁴ molecules of H₃PO₄ in a reaction with Mg(OH)₂

as follows

3Mg(OH)₂ + 2H₃PO₄ → Mg₃(PO₄)₂ + 6H₂O

Therefore 3 moles of Mg(OH)₂ react with 2 moles of H₃PO₄ to form 1 mole of Mg₃(PO₄)₂ and 6 moles of H₂O

5.943 × 10²⁴ molecules of H₃PO₄ which is equivalent to [tex]\frac{5.943 \times 10^{24}}{6.02 \times 10^{23}} moles = 9.869 \, moles \, of \, H_3PO_4[/tex]

Will react with 3/2×9.869 moles or 14.8 moles of Mg(OH)₂

One mole of Mg(OH)₂ weighs 58.3197 g/mol

Therefore, 5.943 × 10²⁴ molecules of H₃PO₄ will react with 14.8×58.3197 g or 789.29 grams of  Mg(OH)₂.

A 4.0 g sample of iron was heated from 0°C to 20.°C. It absorbed 35.2 J of energy as heat. What is the specific heat of this piece of iron?


Answers

Answer:

Explanation:i joule is equal to 0.238902957619 calories so 1251 joules is equal to 298.87 calories divided by 25.0 degrees centigrade is equal to 11.95 calories divided by the 35.2 gram sample weight to get the calories per gram per degree centigrade would come to 0.3396 calories/gram degree centigrade. Presumably this, if correct, could be used to obtain the metal in question by consulting a chart or table with specific heats of various metals because they should always be the same specific heat for each metal.

why can a magnet separate iron and sulphur in a mixture but not a compound?

Answers

Answer:

A compound is different from elements in that it is made from the chemical union of two or more elements. ... Mixtures are different from compounds in that they are easily separated. A magnet could be used to separate the iron from the sulfur, because iron is attracted to magnets, while sulfur is not.

Explanation:

!!!!!!!!!! When atoms in covalent bond share electrons equally, the bond is said to be blank

Answers

Answer:

The bond is considered to be nonpolar.

Explanation:

A nonpolar covalent bond is created when atoms share their electrons equally.

Polar covalent bond is created when atoms share their electrons unequally.

Suppose the reaction Ca3(PO4)2 + 3H2SO4 --> 3CaSO4 + 2H3PO4 is carried out starting with
153 g of Ca3(PO4)2
and 76.8 g of H2SO4
How many grams of phosphoric acid will be produced.​

Answers

Answer:

The answer to your question is 51.2 g of H₃PO₄

Explanation:

Data

mass of Ca₃(PO₄)₂ = 153 g

mass of H₂SO₄ = 76.8 g

mass of H₃PO₄ = ?

Balanced chemical reaction

               Ca₃(PO₄)₂  +  3H₂SO₄  ⇒   3CaSO₄  +  2H₃PO₄

Process

1.- Calculate the molar mass of the reactants

Ca₃(PO₄)₂ = (3 x 40) + (2 x 31) + (8 x 16) = 120 + 62 + 128 = 310 g

H₂SO₄ = (1 x 2) + (32 x 1) + (16 x 4) = 2 + 32 + 64 = 98 g

2.- Calculate the limiting reactant

Theoretical yield Ca₃(PO₄)₂ / H₂SO₄ = 310 / 3(98) = 1.05

Experimental yield Ca₃(PO₄)₂ / H₂SO₄ = 153 / 76.8 = 1.99

The limiting reactant is H₂SO₄ because the experimental proportion was higher than the theoretical proportion.

3.- Calculate the molar mass of H₃PO₄

H₃PO₄ = (1 x 3) + (31 x 1) + (16 x 4) = 3 + 31 + 64 = 98 g

4.- Calculate the mass of H₃PO₄

                3(98) g of H₂SO₄ ------------------ 2(98) g of H₃PO₄

                 76.8 g of H₂SO₄ ------------------  x

                        x = (76.8 x 2 x 98) / (3 x 98)

                        x = 15052.8 / 294

                       x = 51.2 g of H₃PO₄

How many tiny frogs sitting next to each other would measure the same length as a Blue Whale?

Answers

Answer:

About 2,500

Explanation:

The blue whale is the largest animal on Earth. The length of a blue whale is about 25 m, although is is said the largest confirmed measure is 29.9m.

The tiny frogs measure about 10mm.

You can estimate the number of tiny frogs that have the same length as a blue whale dividing the approximate average length of a blue whale by the approximate average length of the tiny frogs.

First convert 25m to mm:

25m × 1,000mm/m = 25,000 mm

Now, divide:

25,000mm / 10mm = 2,500

Hence, about 2,500 tiny frogs sitting next to each other would measure the same length as a blue whale.

Answer:

LOOK BELOW

Explanation:

Well a female is 82ft and a male is 79ft so we will just go with both answers. A tiny frog is about a estimate length of 0.27 inches so you would have to divide and or multiply 82 by 0.27 getting your first length then do the same with teh next one and thats you answer! hope i helped bby :3

A 2.50 g sample of zinc is heated, and then placed in a calorimeter containing 65.0 g of water. Temperature of water increases from 20.00 oC to 22.50 oC. The specific heat of zinc is 0.390 J/g oC. Assuming no heat loss, what was the initial temperature of the zinc metal sample?

Answers

The initial temperature of the zinc metal is  720 ° C

Explanation:

Given data,

Zn

m=2.50 g            

C=0.390 J/g° C

ΔT= (22.50° C- Ti)

H2O

m= 65.0 g

C= 4.184 J/ g° C

ΔT = 2.50° C

We have the formula,

qH20= - qZn

(65.0 g) (4.184 J/ g° C) (ΔT 2.50° C)=(2.50 g) ( 0.390 J/g° C) (ΔT 22.50° C- Ti)

solving the equation we get,

697.3 ° C=- 22.50 ° C+Ti

Ti= 720 ° C

The initial temperature of the zinc metal is  720 ° C

It is easier for a large corporation to offer benefits to its employees than for a smaller company.

True
False

Answers

Answer:

true

Explanation:

Answer: True

Explanation: Because the large company has more people and is making more money than the smaller company

What is the purpose of a salt bridge in a voltaic cell consisting of separate breakers? Why is a salt bridge unnecessary in a single-breaker voltaic cell in which the compartments are separated by a porous divider?

Answers

Answer:

1. The salt bridge completes the circuit of the voltaic cell to allow the flow of current

2. The porous divider performs the function of a salt bridge, hence a salt bridge is unnecessary in a single-beaker voltaic cell

Explanation:

1. The oxidation and reduction half cells of a voltaic cell are connected by the salt bridge in other to ensure that the internal circuit is electrically neutral, to avoid the rapid reaction to reach equilibrium conditions which affects results in preventing voltage drop in the voltaic cell.

The salt bridge also aids in charge accumulation

2. In a single-beaker voltaic cell with the compartments separated by a porous divider, the function of the porous divider is the same as that of the salt bridge, hence the salt bridge is unnecessary.

Answer:

Explanation:

A salt bridge is a strong electrolytes and it's ion like KNO3,Consider a voltaic cell with two paths the anode half cell and the cathode half cell,it will be observed that when the cell is connected,electrons leaves through the wire from the anode which is subject to oxidation hence producing both electrons and positive ions in the anode,if more of the electrons leaves the anode,need arises to to ensure electrochemical neutrality in the cell,this is we're the salt bridge is much important because it provides the needed negative ions to counter balance the effect of this,also a reversed process occurs in the second half Cathodoc cell.

Also for a simply voltaic cell separated by a porous membrane the salt bridge is not needed because unlike the half cell connected by a salt bridge the porous membrane servea as a media of exchange of ions for the cells.

How do power plants use nuclear fission to generate electricity?

A. Fission creates new elements from which electricity can be generated.
B. Fission releases energy in the form of electricity.
C. Fission breaks down radioactive materials into electrically charged materials.
D. Fission produces heat, which is used to produce steam to power generators.

Answers

D is the correct answer

Individuals who work full time and those who work part-time enjoy basically the same number of paid leave benefits.

True
False

Answers

False maybe I think it is
The answer has to be (false),because full time workers enjoy more payed leave benefits then those who work part time

Solubility
Which of the following are nonelectrolytes? *
Pentacarbon decahydride (C5H10)
O
Magnesium chloride (MgCl2)
O
Copper phosphate (Cu3(PO4)2]
Sulfur trioxide (SO3)
O
0
Aluminum oxide (A1203)
Phosphorus pentachloride (PC15)
Glucose (C6H1206)

Answers

Non electrolytes are Pentacarbon decahydride, Phosphorus pentachloride, Glucose.

Explanation:

Non electrolytes do not exist as ions in aqueous solution. Since it does not get dissociated into ions, these non electrolytes do not conduct electricity when it is dissolved or it is heated or melted.

Pentacarbon decahydride is a non electrolyte.

Magnesium chloride is an electrolyte.

Copper phosphate is an electrolyte

Sulfur trioxide is an electrolyte.

Aluminum oxide is an electrolyte

Phosphorus pentachloride do not get dissociated into its ions so it is a non-electrolyte.

Glucose gets dissolved in water but do not dissociate into ions, so it is a non electrolyte.

How many mL of 1.01 M LiNO3 solution has 6.63 g of solute?

Answers

Answer:

The answer to your question is 97 ml

Explanation:

Data

volume = ? ml

concentration = 1.01 M LiNO₃

mass = 6.63 g

Process

1.- Calculate the molecular weight of LiNO₃

LiNO₃ = (1 x 6.94) + (1 x 14) + (16 x 3)

          = 6.94 + 14 + 48

          = 69 g

2.- Calculate the moles of LiNO₃

                  69 g ------------------ 1 mol

                  6.63 g ---------------  x

                    x = (6.63 x 1) / 69

                    x = 0.096 moles

3.- Calculate the volume

Molarity = moles / volume

-Solve for volume

Volume = Molarity x moles

-Substitution

Volume = 1.01 x 0.096

-Result

Volume = 0.097 l or 97 ml

The number of mL of of 1.01 M LiNO3 solution when solution has 6.63 g of solute should be  97 ml.

Calculation of the number of mL:

Since

concentration = 1.01 M LiNO₃

mass = 6.63 g

First we have to determine the molecular weight of LiNO₃ i.e.

LiNO₃ = (1 x 6.94) + (1 x 14) + (16 x 3)

         = 6.94 + 14 + 48

         = 69 g

Now  the moles of LiNO₃

  69 g ------------------ 1 mol

6.63 g ---------------  x

x = (6.63 x 1) / 69

x = 0.096 moles

Now the volume is

Molarity = moles / volume

It can be like

Volume = Molarity x moles

= 1.01 x 0.096

= 0.097 l or 97 ml

Learn more about volume here: https://brainly.com/question/22695394

Rank the following solutions from the highest [H3O+] (1) to the lowest [H3O+] (5).

[H3O+] = 3.16 × 10–4 M
[OH–] = 4.35 × 10–2 M
pH = 1.05
pOH = 7.0
pOH = 4.0

Answers

Answer:

1.) 2

2.) 5

3.)1

4.)3

5.)4

Explanation:

this in edge 2020

The solution ranked with the presence of hydronium ion concentration from higher to lower is  pH = 1.05 > [OH⁻] = 4.35 * 10 ⁻² >  [H₃O⁺] = 3.16 * 10⁻⁴ M > pOH = 7 > pOH = 4.

What is pH and pOH?

The pH and pOH can be given as the logarithmic value of the presence of hydrogen or hydronium and hydroxide ion concentration in a solution respectively.

The hydronium ion concentration can be given as:

[H₃O⁺] = antilog (-pH)

The hydronium ion concentration of pH = 1.05 is:

[H₃O⁺] = 10⁻¹.⁰⁵

[H₃O⁺] = 0.089 M

The pH from pOH can be calculated as:

pH = 14 - pOH

pH of solution with pOH 7 is:

pH = 14 - 7

pH = 7

The hydronium ion concentration can be given as:

[H₃O⁺] = 10⁻⁷

[H₃O⁺] = 1 * 10⁻⁷ M

The pH of solution with pOH 4 isL:

pH = 14 - 4

pH = 10

The hydronium ion concentration can be given as:

[H₃O⁺] = 10⁻¹⁰

[H₃O⁺] = 1 * 10⁻¹⁰ M

Thus, the solutions from highest to lowest hydronium ion concentration can be ranked as:

pH = 1.05 > [OH⁻] = 4.35 * 10 ⁻² >  [H₃O⁺] = 3.16 * 10⁻⁴ M > pOH = 7 > pOH = 4.

Learn more about pH, here:

https://brainly.com/question/2288405

#SPJ2

Which of the following organisms is a tertiary consumer

Answers

In the real world, a tertiary consumer can eat many different animals and even plants sometimes. This means that they can actually be carnivorous or omnivorous. Some examples of tertiary consumers include, birds of prey, big cats, and foxes.

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