According to the given table, the last three spaces in "Calculate constant PV" are:
[tex]\begin{gathered} 15.0\cdot69.9=1048.5 \\ 17.5\cdot58.8=1029 \\ 20.0\cdot50.7=1014 \end{gathered}[/tex]We will plot a graph using the values of volume in the x axis, and the values of pressure in the y axis. Once we plot each of the points, we will obtain this graph:
Write the formula for the ionic compound formed from radium and sulfura) RaSb) Ra2S2c) Ra3S2d) RaS2e) Ra2S
STEP-BY-STEP EXPLANATION:
Radium sulfide can be prepared by direct combination of the elements (radium and sulfur)
The reaction between radium and sulfur can be represented below as
[tex]Ra\text{ + S +heat }\rightarrow\text{ RaS}[/tex]Therefore, the chemical formula for Radium sulfide is RaS
A 4 M acetic acid (CH₂COOH) solution lowers thefreezing point by -8°C; a 4 M KF solution yields a-15°C freezing-point depression. What can account forthis difference?
As the freezing point depression equation states,
ΔTf = kf.m.i ,
where kf depends on the solvent, m depends on the concentration and i depends on the particles, the only parameter that changes between the two scenarios presented is i, since it relates to the amount of particles resulted in the dissolution of the solute. While a covalent compound, such as the acetic acid, remains as one particle when it dissolves (i = 1), ionic compounds such as KF dissolves into more particles. Therefore, the i for KF is greater than 1, resulting in a bigger change in freezing temperature.
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
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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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
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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A mixture of gas molecules contains SF4, SF6, CH₂F₂, XeF4 and BrF5
Between which molecules in the sample would you expect there to be NO
dipole-dipole forces?
Choose the correct answer:
A. SF4 + SF6
B. SF4 + CH2F2
C. SF4 + XeF4
D. SF4 + BrF5
E. SF4 + SF4
F. All of these molecules will all exhibit have
dipole-dipole forces with each other
Answer:
F
Explanation:
The answer depends on if dipole induced - dipole forces count as a dipole-dipole force.
Since one of the molecules has a permanent dipole (SF4), all of the atoms will have a dipole-dipole force or at least a dipole-induced dipole force.
The answer should then be F if only one answer choice is allowed.
A and C are examples of molecule which will have dipole-induced dipole force.
How many grams of white petrolatum should be mixed with 250g of 5% and 750g of 15% zinc oxide ointment to prepare a 10% ointment
The grams of white petrolatum should be mixed with 250g of 5% and 750g of 15% zinc oxide ointment to prepare a 10% ointment is
x = 250 g
This is further explained below.
What are the grams?Generally, the ratio of mixtures
250g of 0.05 : 5*250 = 1250
Also
750g of 0.15 : 15*750
= 11250
Total= 250g + 750 g
Total= 1250 + 11250
Total= 12500
Remembering that and
x=250g + 750 g
x= 12.5%
A combination of ointments containing 5% and 15% contains 12.5% sulfur per 1000 g.
12.5% : 10 parts of a mixture containing 12.5%
0.10
Hence
0.00 : 2.5 parts of white petrolatum
[tex]\frac{10}{2.5}=\frac{4}{1} \\\\=\frac{1000}{x} \Rightarrow x \\\\\ =\frac{1000}{4}=250[/tex]
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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?
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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Directions: Write the balanced equation for each of the following situations. In addition, list the reaction type. YOU MUST TELL THE AMOUNTS OF EVERY SUBSTANCE THAT REMAINS IN THE CONTAINER AT THE END OF THE REACTION. ASSUME THAT ALL REACTIONS GO TO COMPLETION. If only STOICHIOMETRY, tell how much of the excess reactant is used!!!! Reaction Type a. Combination Reaction b. Decomposition Reaction c. Single Displacement / THIS IS ONE TYPE OF Oxidation Reduction Reaction d. Precipitation Reaction e. Gaseous Reaction f. Neutralization Reaction g. Combustion Reaction 7. A 4.32 ng sample of methane burns in excess oxygen 7. Balanced Chemical Equation Reaction Type:At the completion of reactions: Grams of methane: Grams of oxygen: Grams of carbon dioxide: Grams of water vapor:
The question requires us to write down the chemical equation for the combustion of methane, where 4.32 ng of this compound burns in excess oxygen. The question also requires us to calculate the amount of reactants and products at the end of the reaction and to classify the reaction.
When methane burns in the presence of oxygen, the combustion reaction of methane occurs and its equation can be written as:
[tex]CH_{4(g)}+2O_{2(g)}\to CO_{2(g)}+2H_2O_{(vapor)}[/tex]This reaction is classified as a combustion reaction (letter g).
Since the amount of methane was provided by the question (4.32 ng) and the question mentions excess of oxygen, we can assume methane as the limiting reactant and use it to calculate the amount of products obtained.
First, we need to convert the mass given into the number of moles of methane using its molar mass. We'll also need the molar mass of CO2 and H2O further to answer the question completely.
The atomic masses that we'll use are:
C = 12.01 u
H = 1.01 u
O = 15.99 u
We calculate the molar masses considering the atomic mass and the number of atoms of each element in the molecules:
molar mass (CH4) = (1 * 12.01) + (4 * 1.01) = 16.05 g/mol
molar mass (CO2) = (1 * 12.01) + (2 * 15.99) = 43.99 g/mol
molar mass (H2O) = (2 * 1.01) + (1 * 15.99) = 18.01 g/mol
Now that we have the molar masses, we can use the molar mass of CH4 to calculate how many moles are there in 4.32 ng of this compound. Note that the mass is given in ng, which corresponds to 10^-9 g:
16.05 g CH4 -------------------- 1 mol
4.32 x 10^-9 g CH4 ---------- x
Solving for x, we have that 4.32 ng of CH4 corresponds to 2.69 x 10^-10 moles of CH4.
Next, we'll use the amount of moles of CH4 we calculated and the stoichiometric relation given by the chemical equation to calculate how many moles of CO2 and H2O would be produced:
1 mol CH4 -------------------------- 1 mol CO2
2.69 x 10^-10 mol CH4 -------- y
Solving for y, we have that 2.69 x 10^-10 moles of CO2 would be obtained from 4.32 ng of CH4.
1 mol CH4 -------------------------- 2 mol H2O
2.69 x 10^-10 mol CH4 -------- z
Solving for z, we have that 5.38 x 10^-10 moles of H2O would be obtained from 4.32 ng of CH4.
At last, we use the molar masses of CO2 and H2O, calculated previously, to convert the number of moles of these substances into their masses:
1 mol CO2 ------------------------------ 43.99 g CO2
2.69 x 10^-10 mol CO2 ------------ a
Solving for a, we have that the mass produced of CO2 is 1.18 x 10^-8 g or 11.8 ng.
1 mol H2O ------------------------------ 18.01 g H2O
5.38 x 10^-10 mol CO2 ------------ b
Solving for b, we have that the mass produced of H2O is 9.69 x 10^-9 g or 9.69 ng.
To summarize the answer, we can write:
- The balanced chemical reaction: CH4 + 2O2 -> CO2 + 2H2O
- The type of reaction: combustion reaction
- At the completion of reaction, we would have:
- Grams of methane: 0 g, since methane is the limiting reactant, it would be completely consumed.
- Grams of oxygen: it is not possible to affirm the amount of oxygen because the initial amount wasn't provided.
- Grams of carbon dioxide: 1.18 x 10^-8 g or 11.8 ng of carbon dioxide are produced.
- Grams of water vapor: 9.69 x 10^-9 g or 9.69 ng of water vapor are produced
What has mass? O A. Light • B. Heat • C. Energy • D. Matter
Answer:
D. Matter
Explanation:
The definition of matter is any substance that has mass and takes up space by having volume
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.
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 volume of the water in liters contains 250 mgmg of benzene? (Assume that the density of the solution is 1.0 g/mLg/mL.)
Answer:
[tex]555,555.6\text{ mL}[/tex]Explanation:
Here,we want to get the volume of water that contains 250 mg of benzene
From the question,we have it that the percentage by mass of benzene in water is 4.5 * 10^-5%
This corresponds to the 250 mg (this is same as 250/1000 = 0.25 g)
Let us say the mass of the water that contains the benzene is x g
4.5 * 10^-5% = 0.25 g
100% = x g
To get x, we have it that:
[tex]\begin{gathered} x\text{ = }\frac{1\text{ }\times0.25}{4.5\times10^{-7}} \\ \\ =555,555.56\text{ g} \end{gathered}[/tex]We have to get the volume from this
Mathematically, volume will be mass divided by density (given as 1 g/mol)
Thus,we have the volume as:
[tex]555,555.6\text{ mL}[/tex]3.15f
oxalic and dihydrate is dissolved
in water and solution is made up to looms
What is the Normality (Coo HCOOH. 2H2O
)
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 ?
an ioc occurs when what metric exceeds its normal bounds?
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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NEED THIS ASAP PLEASE
Homework
Harnessing Human Energy Chapter 3 Lesson 3.3
Writing an Argument for the School Principal
The argument for Harnessing Human Energy for the School Principal is written below
Dear Principal Tom,
Why we need to Harness Human EnergyHuman 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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QUESTION 3Calculate the molarity of a 150 ml of solution that contains 25.0 g of KOH.
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
1 quart = 946 mL
This is an example of an
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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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.
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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Copper commonly forms a cation with a charge of 1+; however, the element to the right of it in the periodic table (Zn) typically only forms a cation with a 2+ charge. Use your knowledge of electron configurations to explain this
observation.
According to the electronic configuration of copper which is [Ar]3d¹⁰ 4s¹ it commonly forms a cation with+1 charge and it can exist in two charges that is, +1 and +2, however +1 charge of copper is stable .
What is electronic configuration?Electronic configuration is defined as the distribution of electrons which are present in an atom or molecule in atomic or molecular orbitals.It describes how each electron moves independently in an orbital.
Knowledge of electronic configuration is necessary for understanding the structure of periodic table.It helps in understanding the chemical properties of elements.
Elements undergo chemical reactions in order to achieve stability. Main group elements obey the octet rule in their electronic configuration while the transition elements follow the 18 electron rule. Noble elements have valence shell complete in ground state and hence are said to be stable.
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Which pair of elements will form an ionic bond?
Electronegativity Values:
Carbon: 2.5
Nitrogen: 3.0
Oxygen: 3.5
Fluorine: 4.0
Lithium: 1.0
lithium and all above
all of the elements are nonmetals except for lithium, therefore lithium can have an ionic bond with any of the other elements.
What is the phase of water at 0.25 atm and 0°C?Pressure (atm)1-0.5-0.25-0Ice(solid)-10A. GasB. Solid and liquidC. Solid and gasWater(liquid)Water vapor(gas)100Temperature (°C)0.01
Answer
B
Explanation
At 0.25atm and 0 degrees celsius, water could exist as a liquid, as a solid, or as both. At this pressure and temperature, water can either melt or freeze.
Need help with chemistry #3Atomic Masses: C-12.0, Na-23.0, O-16.0, P-31.0, Sn-119
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]
Please help me with this
The energy needed to boil 40 gram of ethanol is 8.01 x 10^3 calories, when heat of vapourisation of ethanol is 200.3 cal/g.
What is energy and heat of vaporization , and how much energy is needed ?Energy is the product of amount of ethanol and and enthalpy of vaporization.To calculate the energy needed to boil 40 grams of ethanol , we will use the equation, energy needed = amount of ethanol x enthalpy of vaporization.Amount of ethanol , is given 40 grams , and putting the values in the equation : 40 x 200.3 = 8012 calories.Calories is the unit of heat and is suppossed to be the largest unit of heat .So the energy needed is 8.01 x 10^3 calories.To know more about heat of vaporization visit:
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Which of the following is not among the three types of mineral types of mineral
According to the information Abrasive mineral of the following is not among the types of mineral.
Briefing:Minerals can be energetic, metallic, or non-metallic. Ferrous, non-ferrous, and precious minerals are subcategories of metallic minerals. Example of ferrous minerals: manganese and iron ore. iron is present in them.
What defines a mineral?A mineral is an inorganic element or compound that occurs in nature and has a recognizable chemical composition, crystal structure, and physical characteristics. Quartz, feldspar, mica, amphibole, olivine, and calcite are examples of common minerals.
Where are minerals found?The earth's crust contains minerals all over the world, although they are often present in such minute quantities that their extraction is usually not worthwhile. Minerals are only concentrated into deposits that are economically viable with the aid of specific geological processes. Only the locations where mineral deposits are present can be mined.
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The complete question is -
Which of the following is not among the types of mineral?
2. If I have an unknown quantity of gas at a pressure of 1.22 atm, a volume of31.5L, and a temperature of 89.5°C, how many moles of gas do I have?
Answer
n = 1.29 moles
Explanation
Given:
Pressure (P) = 1.22 atm
Volume (V) = 31.5 L
Temperature =89.5 C = 362.5 K
We know R = 0.082 L.atm/K.mol
Required: moles of the unknown gas
Solution:
Use the ideal gas law:
PV = nRT
n = PV/RT
n = (1.22 atm x 31.5 L)/(0.082 L.atm/K.mol x 362.5 K)
n = 1.29 moles
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?
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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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
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]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:
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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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
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.
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.
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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Use the rules for logarithms and exponents to solve for [OH-] in terms of pOH.
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]