What is the temperature (in K) of a sample of helium with an root-
mean-square velocity of 450.0 m/s? The universal gas constant,
R=8.3145 J/mol.K.

Answers

Answer 1

Temperature of the sample helium with an root-mean-square velocity of 450.0 m/s is 32.47K

What is root mean square (rms) velocity?

The value of the square root of the sum of the squares of the stacking velocity values divided by the number of values is the root-mean square (rms) velocity.

As we know, from Maxwell's speed distribution, the rms speed of velocity of gas is given by,

[tex]V_{rms}[/tex] = [tex]\sqrt{3RT/M}[/tex]

450 = [tex]\sqrt{(3*8.3145*T)/4*10^{-3} }[/tex]       [ Mass of helium = 4.00 u]

T = 32.47 K

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Related Questions

The flame produced by the burner of a gas (propane) grill is a pale blue color when enough air mixes with the propane (C3H8) to burn it completely. For every gram of propane that flows through the burner, what volume of air is needed to burn it completely? Assume that the temperature of the burner is 195.0°C, the pressure is 1.10 atm, and the mole fraction of O2 in air is 0.210.

Answers

The volume of the air that we require is 18.85 liters air.

What is the volume required?

The term combustion has to do with a situation where we are burning a substance in oxygen. By implication, combustion is actually a type of oxidation reaction and it does occur with hydrocarbons to produce energy.

The combustion of the butane occurs as follows:

     C₃H₈ + 5O₂  = 4 H₂O + 3CO₂      

MW 44    5x32      4x18    3x44

The number of moles of one gram of butane is; 1/44 = 0.02272 mol propane

The amount of oxygen that is required is;  5 x 0.02272 = 0.1136 mol oxygen

Given that  0.21 is the mol fraction of oxygen in air; 0.1136 / 0.21 = 0.54 mol air is required for the combustion of  propane.

From the ideal gas law;

PV=nRT, or V = nRT/P

P = 1.1 x 101325 Pa = 111457 PaT = 195°C + 273 = 468 KR = 8.314n=  0.54 mol

The volume in  liters  = 0.54 x 8.314 x 468 / 111457 = 0.0188 m³ = 18.85 liters air.

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an ioc occurs when what metric exceeds its normal bounds?

Answers

An ioc occurs when KRI (key risk indicator) metric exceeds its normal bounds.

Key Risk Indicators (KRIs) are vital for predicting unfavourable events that may have a negative effect on companies. They keep an eye on changes in risk exposure levels and help provide the early warning signals that let businesses disclose concerns, avert catastrophes, and properly mitigate them. a metric that measures the maximum and lower limits of particular indications of typical network activity.

A few indicators are the total number of network logs per second, the number of unsuccessful remote login attempts, network bandwidth, and outgoing email traffic. One of these that deviates from its expected range may be a sign of compromise (IOC). For a major risk indicator to be measured and be effective over time, it must be repeatable. They give a mechanism to measure and keep track of each danger.

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Use the rules for logarithms and exponents to solve for [OH-] in terms of pOH.

Answers

[tex]\text{ pOH = - log }\lbrack\text{OH}^-\rbrack[/tex][tex]-\text{pOH = log }\lbrack\text{OH}^-\rbrack[/tex][tex]\text{ 10}^{-\text{pOH}}\text{ = 10}^{\text{ log}\lbrack\text{OH}^-\rbrack}[/tex]

logarithm and power 10 are inverse operations

[tex]\lbrack\text{OH}^-\rbrack\text{ = 10}^{-\text{pOH}}[/tex]

The answer is [OH-] = 10^-(pOH)

and, if pOH = 2.77

[tex]\lbrack\text{ OH}^-\rbrack\text{ = 10}^{-2.77\text{ }}\text{ = 0.0017 M}[/tex]

6. How is the pressure of a gas affected by temperature changes? Assume no change in volume or mass in your explanation.

Answers

The pressure of a given amount of gas is directly proportional to its absolute temperature, provided that the volume does not change (Amontons's law). The volume of a given amount of gas sample is directly proportional to its absolute temperature at constant pressure (Charles's law).

What mass of potassium nitrate is needed to generate 215.0 L of gas, composed of 111.0 L of N2 and 104.0 L of O2 at 0.920 atm and 291 K, using these two reactions?

Answers

Mass of potassium nitrate is needed to generate 215.0 L of gas, composed of 111.0 L of N₂ and 104.0 L of O₂ at 0.920 atm and 291 K, using these two reactions is 1186.75 g.

The reactions are :

2KNO₃ --->  2KNO₂  +  O₂

4KNO₂  ---->  2K₂O  + 3O₂  +  2N₂

Therefore,

4KNO₃  ---->  2K₂O  +   5O₂  +  2N₂

using the formula:

PV = nRT

moles of N₂ = PV / RT

P = 0.920 atm

T =291 K

R = 0.082 Latm/mol/k

moles of N₂ = 4.279 mol

moles of O₂ = (0.92 × 104) / 0.082 × 291

                   = 4.00 mol

from the equation .

moles of potassium nitrate to produce nitrogen = 2 × 4.279

                                                                                 = 8.55 mol

moles of nitrate tp produce oxygen = (4 / 5) × 4

                                                            = 3.2 mol

total moles of nitrate = 8.55 mol + 3.2 mol

                                   = 11.75 mol

mass of potassium nitrate = number of moles × molar mass

                                           = 11.75 × 101

                                           = 1186.75 g

Thus, Mass of potassium nitrate is needed to generate 215.0 L of gas, composed of 111.0 L of N₂ and 104.0 L of O₂ at 0.920 atm and 291 K, using these two reactions is 1186.75 g.

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Gaseous butane (CH₂(CH₂), CH₂) will react with gaseous oxygen (O₂) to produce gaseous carbon dioxide (CO₂) and gaseous water (H₂O). Suppose 26. g
of butane is mixed with 168. g of oxygen. Calculate the maximum mass of carbon dioxide that could be produced by the chemical reaction. Round your answer
to 2 significant digits.

Answers

When 26. g of butane is mixed with 168. g of oxygen. Then, the maximum mass of carbon dioxide that could be produced by the chemical reaction is 77.44g.

Chemical reaction

2Ch3CH₂CH₂CH3 + 13O₂ ------- 8CO₂ + 10H₂O

From the above chemical reaction we get to know that, 2 moles of butane react with 13 moles of oxygen.

1 moles of butane react with 6.5 moles of oxygen to produce 4 moles. of carbon dioxide.

Given,

mass of oxygen = 168 g

Mass of butane = 26g

Molar mass. of oxygen = 32 g

Molar mass of butane = 58 g

We will calculate the number of moles

As we know that,

Mole = given mass/ molar mass

Moles of oxygen = 168/32 = 5.2 mol

Moles of butane = 26/ 58 = 0.44 moles

So, we can say that 0.4 moles of butane react with 6.5 × 0.44 moles of oxygen to produce 4 × 0.44 moles. of carbon dioxide.

Or 0.4 moles of butane react with 2.86 moles of oxygen to produce 1.76 moles of carbon dioxide.

1.6 = mass / molas mass

Molar mass of carbon dioxide = 44

Mass = 1.76 × 44

77.44g

Thus, we calculated that when 26. g of butane is mixed with 168. g of oxygen. Then, the maximum mass of carbon dioxide that could be produced by the chemical reaction is 77.44g.

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The pressure of a gas which occupies 500cm3 at27°C is 900 mm Hy. what is the pressure of thegasat -48°c if thethe volume is reduced to250cm3 ?

Answers

ANSWER

The final pressure of the gas is 1350.22 mmHg

STEP-BY-STEP EXPLANATION:

Given information

[tex]\begin{gathered} \text{The initial volume of the gas = 500 cm}^3 \\ \text{ Initial temperature = 27}\degree C \\ \text{ Initial pressure = 900 mmHg} \\ \text{ Final temperature = -48}\degree C \\ \text{ Final volume = }250cm^3 \end{gathered}[/tex]

From the question provided, you were asked to find the final pressure of the gas, hence, we assume that x represents the final pressure of the gas

To find the final pressure of the gas, we need to apply the general gas law

[tex]\frac{P1V1}{T1}\text{ = }\frac{P2V2}{T2}[/tex]

Where,

P1 = initial pressure

V1 = initial volume

T1 = initial temperature

P2 = final pressure

V2 = final volume

T2 = final temperature

The next process is to convert the final and initial temperature from degree Celcius to degree kelvin

[tex]\begin{gathered} T\degree K\text{ = T}\degree C\text{ + 273.15} \\ T1\text{ = 27 + 273.15} \\ T1\text{ = 300.15K} \\ T2\text{ = -48 + 273.15} \\ T2\text{ = 225.15K} \end{gathered}[/tex]

The next thing is to substitute the given data into the above formula

[tex]\begin{gathered} \frac{P1V1}{T1}\text{ = }\frac{P2V2}{T2} \\ \\ \frac{900\cdot\text{ 500}}{300.15}\text{ = }\frac{x\cdot\text{ 250}}{225.15} \\ \frac{450000}{300.15}\text{ = }\frac{250x}{225.15} \\ Cross\text{ multiply} \\ 300.15\cdot\text{ 250x = 450000 }\cdot\text{ 225.15} \\ 75037.5x\text{ = 101317500} \\ \text{Divide both sides 75027.5} \\ \frac{75037.5x}{75037.5}\text{ = }\frac{101317500}{75037.5} \\ x\text{ = 1350.22 mmHg} \end{gathered}[/tex]

Therefore, the final pressure of the gas is 1350.22 mmHg

1 quart = 946 mL

This is an example of an

Answers

1 quart = 946 mL is an example of unit conversion in volume.

What is unit conversion?

The unit conversion of a substance is the process through which the unit of the substance is converted from one form to another.

The expression 100 cm/1 m is called a conversion factor, and it is used to formally change the unit of a quantity into another unit.

For example, converting the volume of a substance from one unit to another, we make use of conversion factor such as 1 L/1000 mL, 1 m³/1,000,000 cm³, etc.

There different units in the volume of a substance or liquid is measured and they include the following;

quart cubic centimeter (cm³)cubic meter (m³)cubic feet (ft³)liters (L)milliliters (mL)

The unit of volume can be converted from one unit to another as shown in the given example.

1 quart = 946 mL

Thus, we can conclude that 1 quart = 946 mL is an example of unit conversion in volume, from quart to milliliters.

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Need help with chemistry #3Atomic Masses: C-12.0, Na-23.0, O-16.0, P-31.0, Sn-119

Answers

Explanation:

The limiting reactant is the reactant that produces the lowest mass for the specific product.

According to the provided picture, the limiting reactant is:

[tex]Na_2CO_3[/tex]

When 1.151 grams of sucrose (Molar mass
342.3 g/mol) is burned in a bomb
calorimeter, the temperature of the
calorimeter increases from 22.41°C to
26.63°C. If the heat capacity of the
calorimeter is 4.900 kJ/°C, what is the heat
of combustion of sucrose, in kJ/mol?

Answers

The heat of combustion of the substance is obtained as -6154 kJ/mol.

What is the heat of combustion?

The heat of combustion is the heat that is evolved when one mole of sucrose is burnt in oxygen. Let us now try to find the heat of combustion of the substance.

Number of moles of sucrose = 1.151 grams /342.3 g/mol = 0.00336 moles

Heat capacity of the calorimeter = 4.900 kJ/°C

Temperature change = 26.63°C -  22.41°C = 4.22 °C

Now we can find the heat of combustion of the sucrose knowing that heat is evolved.

H = -(4.900 kJ/°C) * 4.22 °C/ 0.00336 moles

H = -6154 kJ/mol

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Why do ALL of these examples of popcorn - stove-top, microwave, camp fire, orair popped - exemplify heat transfer? Describe in detail, using vocab termswhere appropriate.

Answers

The grains are heated by microwave radiation which heats the grains and gives off more heat to the surrounding grains.

Popcorn pops using conduction convection and radiation. Students will use the particle states of matter to model three types of heat transfer. Radiant energy is converted to heat energy when the popcorn kernels absorb microwaves. As a result, the grains heat up and burst. You can also make loose corn kernels in the microwave if you have the right popcorn supply.

Convection heating is a great way to make popcorn. The reason popcorn pops is that the wick is filled with water. When the core is heated hot enough, this water turns into steam. Due to the hard, almost non-porous shell steam has nowhere to escape and pressure builds up within the core.

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What is an excess reactant?The reactant that is depleted first in a chemical reaction.The calculated amount of product formed in a chemical reaction.The reactant that is left over in a chemical reaction.The actual amount of product formed in a chemical reaction.

Answers

Explanation:

The excess reactant is the reactant that is left over once the limiting reactant or reagent is consumed. We can also say that it is a reactant present in an amount in excess of that require to combine with all of the limiting reactant.

Answer: The reactant that is left over in a chemical reaction.

What is the % yield of H₂O if 144.9 g H₂O is produced from 10.04 g H₂ and excess O₂?2H₂ + O₂ → 2H₂0

Answers

ANSWER

The percentage yield of water is 160%

EXPLANATION

Given that;

The mass of water is 144.9 grams

The mass of hydrogen gas is 10.04 grams

Follow the steps below to find the percentage yield of water

Write the balanced equation of the reaction

[tex]\text{ 2H}_{2(g)}+\text{ O}_{2(g)}\text{ }\rightarrow\text{ 2H}_2O_{(g)}[/tex]

Step1; Find the number of moles of hydrogen gas using the formula below

[tex]\text{ mole = }\frac{\text{ mass}}{\text{ molar mass}}[/tex]

Recall, that the molar mass of H2 is 2 g/mol

[tex]\begin{gathered} \text{ mole = }\frac{\text{ 10.04}}{\text{ 2}} \\ \text{ mole = 5.02 moles} \end{gathered}[/tex]

Step 2; Find the number of moles of water using a stoichiometry ratio

In the reaction, 2 moles H2 give 2 moles H2O

Therefore, the number of moles of H20 is 5.02 moles

Step 3: Find the mass of H2O

[tex]\begin{gathered} \text{ Mole = }\frac{\text{ mass}}{\text{ molar mass}} \\ \text{ cross multiply} \\ \text{ mass = mole }\times\text{ molar mass} \end{gathered}[/tex]

The molar mass of water is 18.0 g/mol

[tex]\begin{gathered} \text{ mass = 18 }\times\text{ 5.02} \\ \text{ mass = 90.36 grams} \end{gathered}[/tex]

Step 4; Find the percentage yield of water

[tex]\begin{gathered} \text{ \% yield = }\frac{\text{ Actual yield}}{\text{ Theoretical yield}}\times\text{ 100\%} \\ \\ \text{ \% yield = }\frac{\text{ 144.9}}{90.36}\times\text{ 100\%} \\ \\ \text{ \% yield = 1.60}\times100\text{ \%} \\ \text{ \%yield = 160\%} \end{gathered}[/tex]

Therefore, the percentage yield of water is 160%

All other things equal, if you had used twice the mass of water, what would you expect to happen to the observed value?

Answers

Answer:

the density is halved

Explanation:

doubling the volume results in the density being halved

A van travels 2 kilometers due south, turns left, and then travels 1 kilometer. It takes a left turn again
and travels 2 kilometers. What is the displacement of the van?
A) 3 km SE
B) 2 km S
C) 1 km E
D) 5 km SE

Answers

If A van travels 2 kilometers due south, turns left, and then travels 1 kilometer. It takes a left turn again

and travels 2 kilometers. the displacement of the van is 1 kilometers.

Given,

A van travels 2 kilometers due south.

then turn left and travels 1 kilometer.

Then, the van takes left turn again and travels 2 kilometers.

As the displacement is the shortest distance traveled by the body. thus the displacement of the van is 1 kilometers.

What is displacement?

The term "displacement" refers to a shift in an object's position. It is a vector quantity with a magnitude and direction. The symbol for it is an arrow pointing from the initial location to the ending place. For instance, if an object shifts from location A to position B, its position changes. Displacement is the term for this alteration in an object's position.

it is the shortest distance travelled by the body.

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Question 21 of 25Which of the following represents an alpha decay?A. 23 Np 23 Pa + a->>B. 21Bi-2Po+ eC. Ni Ni+yD. 233Np → 234Pu+BSUBMIT

Answers

Answer

A

Explanation

Alpha decay or α-decay is a type of radioactive decay in which an atomic nucleus emits an alpha particle (helium nucleus) and thereby transforms or 'decays' into a different atomic nucleus, with a mass number that is reduced by four and an atomic number that is reduced by two.


Calculate the concentration of the following in moldm3

(A) 14g of pottasium hydroxide (koh) In I dm³

(B) 3.65g of hydrogen chloride in 250 cm³

(C)5.3g of sodium trioxocarbonate (IV) in 500cm3

Answers

A)Given:Mass of 1 mole of KOH=56.1 g

Then,number of moles in 14 g of KOH= 14/56.1=0.249 moles

This amount of KOH is present in 100 ml of solution. Since morality is defined as the number of moles of solute in 1000 ml (1 liter) of solution, we use the below direct proportionality to achieve the result: Moles of KOH in 100 ml solution =0.249 moles Moles of KOH in 1 ml solution = (0.249/100) moles

Then, moles of KOH in 1000 ml solution = (0.249/100) x 1000 = 2.49 moles 2.50 moles So, since there are 2.50 moles of KOH per 1000 ml of solution, the molarity of the solution is 2.50 M.

Hence,the concentration of Potassium hydroxide=2.50 M

B)Given:Mass of 1 mole of HCL=3.65 g

Then,number of moles in 14 g of HCL= 3.65/250= 0.0146 moles

This amount of HCL  is present in 100 ml of solution. Since morality is defined as the number of moles of solute in 1000 ml (1 liter) of solution, we use the below direct proportionality to achieve the result: Moles of HCL in 100 ml solution =0.0146 moles Moles of HCL in 1 ml solution = (0.0146/100) moles

Then, moles of HCL in 1000 ml solution = (0.0146/100) x 1000 = 1.46 moles. So, since there are 1.46 moles of HCL per 1000 ml of solution, the molarity of the solution is 1.46 M.

Hence,the concentration of hydrogen chloride=1.46 M

C)Given:Mass of 1 mole of Na2co3.10H2o =5.3 g

Then,number of moles in 14 g of Na2co3.10H2o= 5.3/500= 0.0106 moles

This amount of Na2co3.10H2o is present in 100 ml of solution. Since morality is defined as the number of moles of solute in 1000 ml (1 liter) of solution, we use the below direct proportionality to achieve the result: Moles of Na2co3.10H2o in 100 ml solution =0.0146 moles Moles of HCL in 1 ml solution = (0.0106/100) moles

Then, moles of Na2co3.10H2o in 1000 ml solution = (0.0106/100) x 1000 = 1.06 moles. So, since there are 1.06 moles of Na2co3.10H2o per 1000 ml of solution, the molarity of the solution is 1.06 M.

Hence,the concentration of sodium trioxocarbonate=1.06 M

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NEED THIS ASAP PLEASE
Homework
Harnessing Human Energy Chapter 3 Lesson 3.3
Writing an Argument for the School Principal

Answers

The argument for Harnessing Human Energy  for the School Principal is written below

Dear Principal Tom,

Why we need to Harness Human Energy

Human power as we have been taught is the effort or energy created by a human being. It is one that can be said to be pace of work per time. The Muscles act as the main source of power, and body heat can also be used for tasks like warming food, shelters, or other people.

There are lot of reasons why we need to make use of these energy and this is coming form the fact that energy from the environment is transformed by humans into forms that are very beneficial for their activities.

An example to buttress this point is from the first person to understand that running a magnet via a copper wire could create an electric current was an English physicist named Michael Faraday. It was a truly remarkable finding. Magnets and copper wire coils are used in enormous power plants to create almost all of the electricity we use today. Therefore, harnessing human energy can do us more good than harm.

From

John Joe.

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Put the following liquids in order of least dense to most dense: vegetable oil, water, and rubbing alcohol

Answers

Explanation

First, let's list the density of each substance:

vegetable oil - approximately 0.92 g/mL

water - approximately 0.99 g/mL

rubbing alcohol - approximately 0.79 g/mL

So the least dense is rubbing alcohol, then vegetable oil and then water.

Answer: rubbing alcohol < vegetable oil < water.

Calculate the number of moles in 4.5x10^23 molecules of iron. Express answer to 2 significant digits and as a decimal

Answers

Since a mol is always a constant number = 6.022*10^23, to find how many moles there are in 4.5*10^23 molecules of iron we only need to do a simple math:

6.022*10^23 = 1 mol

4.5*10^23 = x moles

x = 0.7 moles

Scientists discovered that mushrooms use thermal energy to create pockets of convection currents. Then these currents spread millions of microscopic spores into the air to surrounding areas. Large spore clouds can even be spotted in the woods at night.

Use your own words to summarize how mushrooms use thermal energy to reproduce.

Answers

Mushroom use thermal energy to reproduce .

What is thermal energy?

thermal energy is a type of energy tha contained within a system that is responsible for its own tempreture . As we know heat is the flow of thermal energy thermal energy refers to the movement of molecules within an object or substance . Every object or substance has thermal energy .

Mushrooms are able to use thermal energy to reproduce by creating it convention currents, which are the  considered pockets. After the pockets are formed the currents disperse are  microscopic spores in the surrounding air. Due to the  spread, a large spore clouds are  created and becomes visible during the night.

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Ex 1.4 You are trying to decide which of two automobiles to buy. The first is USA- made, which costs RM 85,000 and has the rated gasoline mileage of 22.5 miles/gal. The second car is a hybrid and of European manufacture, which costs RM 100,000, and has the rated mileage of 28.5 km/L. If the cost of petrol is RM 2.05/L and if the cars actually deliver their rated gas mileage, estimate how many miles you would have to drive for the lower fuel consumption of the second car to compensate for the higher cost of this car?​

Answers

104895.10 kilometers need to drive for the lower fuel consumption of the second car to compensate for the higher cost of this car.

For calculating the number of  miles  we need the compare the cost equation of both cars.

Considering x be the number of kilometers, since the mileage of the USA-made car is (22.5 * 1.609) / 3.785 = 19.56-kilo meter per litre, and the cost of petrol  per Litres = 2.05 .

SO for the USA made the pertrol cost is 2.05 / 9.56 = $0.214per km

and for the european made car is  2.05 / 28.5 = $0.071 per km

since the total cost is nothing like the sum of the purchase price and the fuel cost SO,  

for the  USA  made , the total  cost  is  = 85,000  + 0.214x and

for the  eurpoean car is   = 100,000 + 0.071x

By comparing the equation by considering the total cost for a car  to be equal so

85,000  + 0.214x =100,000 + 0.071x

=>100,000- 85,000 = 0.214x- 0.071x

=>15000= 0.143x

=>x=  104895.10

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Question 8 options:
An adult human lungs can only hold a volume of up to 6.0 L of air when fully expanded. Suppose that at sea level where the pressure is 1.00 atm, a sky diver traps 3.0 L of air in her lungs and holds her breath before rapidly ascending to an altitude where the pressure drops to 0.46 atm. If she doesn't exhale, determine if her lungs will rupture at this high altitude, then complete the sentence:

Answers

An adult human lungs can only hold a volume of up to 6.0 L of air when fully expanded. Suppose that at sea level where the pressure is 1.00 atm, a sky diver traps 3.0 L of air in her lungs and holds her breath before rapidly ascending to an altitude where the pressure drops to 0.46 atm. If she doesn't exhale, determine if her lungs will rupture at this high altitude, then complete the sentence:

At the higher altitudes, the gas volume will be increases, on higher altitudes pressure will decreases.

Thus ,  If she doesn't exhale, determine if her lungs will rupture at this high altitude, then complete the sentence: At the higher altitudes, the gas volume will be increases, on higher altitudes pressure will decreases.

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1. For the balanced equation shown below, how many moles of C₂H₂O₂F need to react toform 2 moles of H₂O?4C₂H₂O₂F+702-8CO2 + 6H₂O +2F₂

Answers

Answer:

[tex]1.33\text{ moles}[/tex]

Explanation:

Here, we want to get the number of moles needed to react

From the equation of reaction:

4 moles produced 6 moles of H2O

x moles will react to form 2 moles of H2O

To get the value of x, we have it that:

[tex]\begin{gathered} 4\text{ }\times\text{ 2 = 6 }\times x \\ x\text{ = }\frac{8}{6}\text{ = }\frac{4}{3}\text{ = 1.33 moles} \end{gathered}[/tex]

Which of the following compounds is a base?Select one:a. HNO3b. HClc. Al(OH)3d. H2SO4

Answers

ANSWER

option C

EXPLANATION

A base is a substance that reacts with an acid to produce salt and water only.

A base will also give hydroxide ion (OH-) when dissolved in water

Hence, the only compound that is a base in the given options is Al(OH)3

Therefore, the correct is option C

QUESTION 3Calculate the molarity of a 150 ml of solution that contains 25.0 g of KOH.

Answers

We are required to calculate the molarity, given:

Volume = 150 mL = 0.150 L

mass of KOH = 25.0 g

Formular for molarity:

C = n/V

Before we can get C, we need to calculate n, the number of moles of KOH.

n = m/M where m is the mass and M is the molar mass

n = 25.0 g/56,1056 g/mol

n = 0.446 mol

Now we can calculate C, the molarity

C = 0.446 mol/0.150L

C = 2.97 mol/L or 2.97 M

What is the concentration in mol/L of sodium cations when 2.88 g of Na3PO4 is dissolved in 25.0 mL of water?

Answers

The concentration in mol/L of sodium cations when 2.88 g of Na3PO4 is dissolved in 25.0 mL of water is  0.0303 mol/L Na+ ion

What is concentration ?

Concentration in chemistry is calculated by dividing a constituent's abundance by the mixture's total volume. Mass concentration, molar concentration, number concentration, and volume concentration are four different categories of mathematical description. [1] Any type of chemical mixture can be referred to by the term "concentration," however solutes and solvents in solutions are most usually mentioned. There are different types of molar (quantity) concentration, including normal concentration and osmotic concentration.

Na3PO4 <=====> 3Na+ + PO4^-3

Molar mass of Na3PO4 = 3*23+31+4*16 = 164g

164g Na3PO4 in 1000ml water contains 69g Na^+ ion

2.88g Na3PO4 in 1000ml water contains 69*2.88/164g Na^+ ion

2.88g Na3PO4 in 25ml water contains 1.212*25/1000Na^+ ion

                                                               = 0.0303 mol/L Na+ ion

The concentration in mol/L of sodium cations when 2.88 g of Na3PO4 is dissolved in 25.0 mL of water is  0.0303 mol/L Na+ ion

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Part B
What are the strengths and weaknesses of the cell model?
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Answers

Carbon, hydrogen, nitrogen, oxygen, phosphorus, and sulfur are the strengths of the cell. The first four are the most significant since they are utilized to build the molecules required to create live cells.

What are the strengths and weaknesses of the cell model?

The models draw attention to characteristics that are less obvious in actual cells. Color is used by the models to highlight various components. example of a weakness The models are static, but real cells feature moving elements. While the models depict cross-sections in two dimensions, real cells are three dimensional.

The inadequacy of cellular models to accurately represent the function of complicated decision-making by human beings is one of their shortcomings. Although transition rules are handled probabilistically in Markov models and may be affected by temporal lags in cell response, cellular frameworks can be coupled with these models.

Carbon, hydrogen, nitrogen, oxygen, phosphorus, and sulfur are the strengths of the cell. The first four are the most significant since they are utilized to build the molecules required to create live cells.

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What are the strengths and weaknesses of the cell model?

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in a reaction, if you start with 2g of carbon and 15g of oxygen, how many grams of carbon dioxide should you have in the system, if the reactants completely reacted?

Answers

Writing a balanced equation:

[tex]C_{(s)}+O_{2(g)}\rightarrow CO_{2(g)}[/tex]

Determine the moles of C = mass/ molar mass

mole of C= 2g / 12.01 g = 0.17 mol

mole of oxygen = 15g/ 32g = 0.47 mol

Mole ratio between carbon and carbon dioxide is 1:1. Therefore 0.17 mol Carbon reacts with 0.17 carbon dioxide.

mass of carbon dioxide = moles x molar mass

mass of carbon dioxide = 0.17 x 44.01

mass of carbon dioxide = 7.48 g

3.15f

oxalic and dihydrate is dissolved
in water and solution is made up to looms
What is the Normality (Coo HCOOH. 2H2O
)

Answers

Therefore, we must first determine whether oxalic acid is normal. Oxalic acid has two H atoms that it can lose in order to become acidic, hence its dihydrate has an n-factor of two.

What is the purpose of oxalic acid?

When applied properly, oxalic acid is a dependable and efficient cleanser. In situations like buildings, boats, swimming pools, concrete driveways, sidewalks, iron machinery, wood decks, stairs, or trim, oxidizing acid can be used to remove rust and other tough stains.

What occurs if I consume oxalic acid?

If severe damage to the mouth, digestive system, or airway occurs, it may swiftly result in death if untreated. In addition to dangerous infections in the chest and abdomen, perforations in the esophagus and stomach can also result in death.

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The complete question is -

What is the Normality (Coo HCOOH 2H2O) of oxalic and dihydrate is dissolved in water and solution is made up to looms ?

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