HELP! ITS DUE SOON! WILL MARK BRAINLIEST
Calculate the follow and show your work
1) How many moles of water are produced from 3.5 moles of H2?
2) How many moles of H2 are needed to react with 0.55 moles of O2?
3) How many moles are produced from 0.34 moles of N2?
4) How many moles are produced from 1.75 moles of H2?
Half a mole of O2 will remain after combining one mole of H2 and one mole of O2. Set up the hydrogen to water conversion factor at this time. 2.5 moles of 2 H2O/ 2 H2 Theoretically, H2 is created from 3.5 moles of H2O.
I have a mole. When should I be concerned?Worrisome moles, on the contrary hand, are asymmetrical, which means that when split in half, both of them sides do not appear the same. Normally, the border of benign moles is uniformly circular.
Why do moles appear out of nowhere?Why moles suddenly emerge in adulthood is unknown to researchers. The majority of these benign conditions are brought on by aging, prescription drug usage, sun exposure, sunburn, and genetic abnormalities.
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A 0.750 M Ca(OH)2 solution was prepared by dissolving 48.0 grams of Ca(OH)2 in enough water. What is the total volume of the solution formed?
The total volume of the solution prepared by dissolving 48.0 grams of Ca(OH)₂ in enough water is 0.865 L
How do i determine the volume of the solution?First, we shall obtain the mole of 48.0 grams of Ca(OH)₂. This is shown below:
Mass of Ca(OH)₂ = 48.0 grams Molar mass of Ca(OH)₂ = 74 g/mol Mole of Ca(OH)₂ =?Mole = mass / molar mass
Mole of Ca(OH)₂ = 48 / 74
Mole of Ca(OH)₂ = 0.649 mole
Finally, we shall obtain the total volume of the Ca(OH)₂ solution. Details below:
Molarity of solution = 0.750 MMole of Ca(OH)₂ = 0.649 moleVolume of solution =?Volume = mole / molarity
Volume of solution = 0.649 / 0.750
Volume of solution = 0.865 L
Thus, we can conclude that the total volume of the solution is 0.865 L
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Which of the following conclusions can be drawn from the curves in the
energy diagram?
OA. The reaction represented by curve B will go faster than the curve A
reaction.
OB. The molecules represented in curve A have higher kinetic energy
than curve B.
C. The reaction represented by curve B has a larger equilibrium
constant than curve A.
OD. The reaction represented by curve A requires less added energy
than curve B.
SUBMIT
61. Given the following information:
Ag2 CrO4(s)=2Agt (aq) + CrO4²- (aq)
Ag+ (aq) + e- Ag(s)
find the standard reduction potential at 25°C for the half-reaction
Ksp = 1 × 10-12
E = +0.799 V
Ag2 CrO4(s) + 2e¯ 2Ag(s) + CrO4²- (aq)
Q = Ksp = 1 × 10^(-12).
Substituting the values into the Nernst equation, we have:
0.799 V = E° - (RT/2F) * ln(1 × 10^(-12))
Now, solving for E°:
E° = 0.799 V + (RT/2F) * ln(1 × 10^(-12))
The value of R is the ideal gas constant, T is the temperature in Kelvin, and F is the Faraday constant.
To find the standard reduction potential at 25°C for the half-reaction Ag2CrO4(s) + 2e¯ → 2Ag(s) + CrO4²-(aq), we can use the Nernst equation, which relates the standard reduction potential (E°) to the equilibrium constant (K) and the reaction quotient (Q).
The Nernst equation is given as follows:
E = E° - (RT/nF) * ln(Q)
Given information:
Ksp = 1 × 10^(-12)
E = +0.799 V (standard reduction potential of Ag+ to Ag)
Since the reaction involves the dissolution of Ag2CrO4(s), the reaction quotient Q can be expressed as [Ag+]²/[CrO4²-].
Since the stoichiometry of the reaction is 2:1 for Ag2CrO4 to Ag+, we can say that [Ag+]² = Ksp.
Therefore, Q = Ksp = 1 × 10^(-12).
Substituting the values into the Nernst equation, we have:
0.799 V = E° - (RT/2F) * ln(1 × 10^(-12))
Now, solving for E°:
E° = 0.799 V + (RT/2F) * ln(1 × 10^(-12))
The value of R is the ideal gas constant, T is the temperature in Kelvin, and F is the Faraday constant.
Please note that without specific values for temperature (T) and the ideal gas constant (R), the exact standard reduction potential at 25°C cannot be determined.
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A template of a Venn diagram representing common and differentiating characteristics of covalent and ionic bonds is shown. Which of the following characteristics can be written only in space C?
Covalent and ionic bonds refer to atoms joined by their electrons. In covalent bonds, electrons are shared by the involved non-metal atoms. Option 2 is correct. Occurs due to the sharing of electrons between two non-metal atoms.
What are covalent and ionic bonds?
Both of them, covalent and ionic bonds, are chemical bonds that can form between atoms.
Ionic bonds occur between atoms with different electronegativity. When they bind, they transfer electrons from one atom to the other creating ions with opposite charges that attract each other.
Ionic compounds are formed by anions and cations.
• Cations are positive ions derivated from metals.
• Anions are negative ions derivated from non-metals.
The metal atoms share its electrons with the non-metal ones, creating stable configurations. Ionic bonds do not create molecules.
Covalent bonds are formed between atoms share electrons to be more stable. Atoms involved share electrons equally, creating a strong bond between them.
Covalent bonds are usually formed between non-metal atoms.
Option 2 is correct. Occurs due to the sharing of electrons between two non-metal atoms
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Complete question
A template of a Venn diagram representing common and differentiating characteristics of covalent and ionic bonds is shown.
Which of the following characteristics can be written only in space C?
On the diagram,
The non-overlapping space on the left is marked A, and belongs to the IONIC BOND side of the diagram.The overlapping space is marked B The non-overlapping space on the right is marked C, and belongs to the COVALENT BOND side of the diagram.Options,
Formed between positively and negatively charged ionsOccurs due to the sharing of electrons between two non-metal atomsOccurs in substances that are mostly solids at normal temperature and pressureFormed between an atom with very high electronegativity and an atom with very low electronegativitywhat is the reaction?
Answer:
A chemical reaction is a process in which one or more substances, also called reactants, are converted to one or more different substances, known as products. ... A chemical reaction rearranges the constituent atoms of the reactants to create different substances as products.
Explanation:
Hopefully this is what you needed
A balloon is filled to a volume of 2.20L at a temperature of 25.0*C. The balloon is then heated to a temperature of 51*C. Find the new volume of the balloon
The new volume of the balloon after heating it to a temperature of 51 °C is approximately 2.39 L.
What is the final volume of the balloon?Charles's law states that "the volume occupied by a definite quantity of gas is directly proportional to its absolute temperature.
It is expressed as;
\(\frac{V_1}{T_1} =\frac{V_2}{T_2}\)
Given that:
Initial temperature of gas T₁ = 25°C = (25.0 + 273.15) = KInitial volume of gas V₁ = 2.2 LFinal temperature T₂ = 51 °C = ( 51 + 273.15 ) = 324.15 KFinal volume V₂ = ?Substituting the given values and solve for V₂:
\(V_1T_2 = V_2T_1\\\\V_2 = \frac{V_1T_2}{T_1} \\\\V_2 = \frac{2.2\ *\ 324.15}{298.15 }\\ \\V_2 = 2.39 \ L\)
Therefore, the final volume is 2.39 litres.
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Which statement best describes a heart attack?
A. Certain blood vessels expand
B. Certain blood vessels shrinks
C. Blood vessels are normal
D. Certain blood vessels are blocked by fatty acids
Answer:
I think number D is correct
Answer:
D. Certain blood vessels are blocked by fatty acids
Explanation:
A heart attack occurs when the flow of blood to the heart is blocked. The blockage is most often a buildup of fat, cholesterol and other substances, which form a plaque in the arteries that feed the heart (coronary arteries). Sometimes, a plaque can rupture and form a clot that blocks blood flow.
250 ml of seawater and we inked each molecule with pink color, then we mixed this 250 ml in the ocean. After mixing you took 250 ml of seawater.
How many pink molecules in the 250 ml after mixing the ocean?
Answer:
9.77 × 10⁹ molecules
Explanation:
Since the density of water is 1 g/cm³ = 1000 g/L
So, we find the mass of sea water in 250 mL = 0.250 L
We know density = mass/volume
mass = density × volume = 1000 g/L × 0.250 L = 250 g
Now we calculate the number of moles of sea water in 250 g, 250 mL of sea water.
number of moles n = mass of sea water,m/molar mass of water, M
molar mass of water, M = 18 g/moL
n = m/M = 250 g/18 g/mol = 13.89 mol
We now calculate the number of molecules present in the 250 mL of sea water.
n = N/N' where N = number of molecules, N' = avogadro's number = 6.022 × 10²³/mol
So,N =nN' = 13.89 mol × 6.022 × 10²³/mol = 8.36 × 10²⁴ molecules
Now, the volume of the ocean is 1.337 × 10¹⁸ m³ = 1.337 × 10¹⁵ L
Since the 250 mL sea water is mixed with the ocean, the number of molecules per liter is 8.36 × 10²⁴ molecules/1.337 × 10¹⁵ L = 6.25 × 10⁹ molecules/L
If we now take 250 mL out of the ocean, the number of molecules in this 250 mL will be 6.25 × 10⁹ molecules/L × 250 mL = 6.25 × 10⁹ molecules/L × 0.250 L = 9.77 × 10⁹ molecules.
So, we have 9.77 × 10⁹ molecules of pink molecules in the 250 mL after mixing in the ocean.
Plastic is a polymer
-True
-False
TRUE
Explanation:
*not sure about this answer
Suppose that CaO is added as an impurity to Li2O. If the Ca2+ substitutes for Li+, what kind of vacancies would you expect to form? How many of these vacancies are created for every Ca2+ added? (b) Suppose that CaO is added as an impurity to CaCl2. If the O2– substitutes for Cl–, what kind of vacancies would you expect to form? How many of these vacancies are created for every O2– added?
Answer:
oxygen vacancy is formed
calcium vacancy
Explanation:
(a) When Li+ is substituted for Ca2+ in CaO, there would be oxygen vacancies created because for each Li+ that is substituted for Ca2+, a positive charge is removed (vacant). Therefore, to maintain neutrality, a negative charge must be removed. This occurs by creating oxygen vacancies. That is, for every two Li+ ions added, one oxygen vacancy is created.
(b) When Cl- is substituted by O2- in CaO, there are now calcium vacancies, .because each Cl- substituted by O2-, implies that one negative charge has been removed(vacant). Therefore, to maintain neutrality, when two Cl- ions are substituted by O2- ion, one calcium vacancy calcium vacancy is created.
Compressing a spring increases its
a.kinetic energy
b.potential energy
c.electrical energy
d.chemical energy
Answer:
B. potential energy
Explanation:
Potential energy ( Mechanical in this case ) is energy stored by force. so If you are compressing a spring you are increasing more potential to it by force.
Which of the following has two significant figures?A.) 10 gB.) 0.01 gC.) 120 gD.) 0.120 g
Step 1 - Understanding what two significant figures means
A significant figure is a digit that is "reliable or absolutely necessary to define the number or measurement". The following are not counted as significant figures:
1) Leading Zeros: numbers such as 0.057 or 0.068 have only two significant figures. The zeros at the beggining do not count.
2) Trailling Zeros: are not counted as significant in measurements.
Spurious digits are also not counted as significant figures.
In this case, number with two significant figures are like 22, 0.0045, 130, 7500 and so on.
Step 2 - Analysing the problem to discover the significant figures
Let's analyse the given numbers:
\(\begin{gathered} 10\to\text{ trailling zero does not count; sig fig: 1} \\ \\ 0.01\to\text{ leading zeros does not count; sig fig: 1} \\ \\ 120\to\text{trailling zero does not count; sig fig: }2 \\ \\ 0.120\to\text{ leading zero does not count; sig fig: 3} \end{gathered}\)The measurement with two significant figures is therefore c) 120 g.
Answer: A. 10 g
Explanation:
Significant figures are those digits which carry any meaning when they are resolved. Digits exclusively are from 0 to 9. Rules that are followed to select significant figures are:
1. All the non-zero digits are considered to be significant
2. If there are zeroes between non-zero digits, they are considered to be significant.
3. A zero at the right end of the decimal is considered to be significant.
In the above question;
A has 2 significant figures, whereas B has 1 significant figure, C has 3 significant figures and D also has 3 significant figures.
the human population grew form 1 billion in the year 1800to blank billion in the year 200
The human population grew from 1 billion in the year 1800 to approximately 7.8 billion in the year 2021.
In the year 1800, the estimated global human population was around 1 billion. Over the next two centuries, significant advancements in technology, medicine, agriculture, and improved living conditions contributed to a rapid increase in population.
The growth rate of the human population began to accelerate in the 20th century. By the year 1927, the global population reached 2 billion. It took just 33 years for the population to double, reaching 4 billion in 1960. The population continued to grow at an unprecedented rate, with 6 billion people on Earth by the year 1999. As of 2021, the estimated global population stands at approximately 7.8 billion.
This remarkable growth in population can be attributed to several factors, including advancements in healthcare leading to reduced infant mortality rates, improved access to education and contraception, increased agricultural productivity, and overall socio-economic development.
It's important to note that population growth has not been uniform across all regions. Different countries and regions have experienced varying rates of population growth due to factors such as fertility rates, mortality rates, migration patterns, and government policies.
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what are the impact of soil Science to the development of Ghana's agriculture?
In an ecosystem, the impact of soil Science to the development of Ghana's agriculture is that it provides suitable conditions for root germination and growth.
What is an ecosystem?Ecosystem is defined as a system which consists of all living organisms and the physical components with which the living beings interact. The abiotic and biotic components are linked to each other through nutrient cycles and flow of energy.
Energy enters the system through the process of photosynthesis .Animals play an important role in transfer of energy as they feed on each other.As a result of this transfer of matter and energy takes place through the system .Living organisms also influence the quantity of biomass present.By decomposition of dead plants and animals by microbes nutrients are released back in to the soil.
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plsss help!!!!! I'll give u brainlest and 10 points
Answer:
I would say it is true
Explanation:
Is [HN.CHR-CO]n a homo polymer or a copolymer
Answer:(−NH−CHR−CO−)n is a homopolymer. The reason is that it has a single monomer (NH2−CHR−COOH), α−amino acid.
If a polymer consists of only one kind of monomer then it is called a homopolymer, while a polymer that consists of more than one kind of monomer is called a copolymer
How many kilojoules of heat are needed to raise the temperature of 10g of aluminum from 22 degrees C to 55 degrees C, if the specific heat of aluminum is .901 j/gc?
Answer:
name four agricultural inputs are subsidized by the government
0.297 kJ of heat is needed to raise the temperature of 10g of aluminum from 22 degrees Celsius to 55 degrees Celsius.
The specific heat is the amount of heat per unit mass required to raise the temperature by one degree Celsius.
It is a measure of how much energy it takes to raise the temperature of a substance. It is the amount of heat necessary to raise one mass unit of that substance by one temperature unit.
It is given by the formula -
Q = mcΔT
where, Q = amount of heat
m = mass
c = specific heat
ΔT = Change in temperature
Given,
mass = 10g
c = 0.901J/g⁰C
Initial temperature (T₁) = 22⁰C
Final Temperature (T₂) = 55⁰C
Q = mcΔT
= 10 × 0.901 × (55 -22)
= 297.33 J = 0.297 kJ
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To scientific notation 0.004058
Answer:
\(0.004058 = 40.58 \times {10}^{ - 4} \\ thank \: yo\)
The density of an object is 5g/cm^3 and the volume of the object is 10 cm^3. What is the mass of the object
The mass of the object of density 5g/cm³ and volume 10 cm³ is 50kg.
What does physics mean when it refers to density?Defining density How tightly a material is packed together is determined by its density. Its definition is "mass per unit volume". D or, the symbol for density
Density Formula: = m/V,
where is the density, m is the object's mass, and V is its volume.
The units used change depending on the calculation's use of mass and volume units. Density would be expressed in kg/cm³ if the mass is expressed in kg and the volume in cm³.
Density = mass / volume
Mass = density × volume
Mass = 5×10
Mass = 50 kg.
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Convert 100.6 Kelvin to degrees C.
°C = K - 273
[?] °C
Answer:
-172.6 °C
Explanation:
You want to know the Celsius equivalent of the temperature 100.6 K.
ConversionThe relation is ...
C = K - 273.15
C = 100.6 -273.15 = -172.55
The temperature is -172.55 °C, about -172.6 °C.
__
Additional comment
We have rounded to tenths, because that is precision of the temperature given. If you use 273 as the conversion constant, you will get -172.4.
HELP ME PLEASE!!!!! I NEED TO GET THIS RIGHT I CANT FAIL
The following reaction shows the products when sulfuric acid and aluminum hydroxide react.
2Al(OH)3 + 3H2SO4 → Al2(SO4)3 + 6H2O
The table shows the calculated amounts of reactants and products when the reaction was conducted in a laboratory.
Initial Mass and Yield:
Sulfuric Acid Aluminum Hydroxide
Initial Amount of Reactant 40 g 1.5 g
Theoretical Yield of Water from Reactant 14.69 g 10.38 g
What is the approximate amount of the leftover reactant? (4 points)
a.11.73 g of sulfuric acid
b.10.33 g of sulfuric acid
c.11.12 g of aluminum hydroxide
d.13.67 g of aluminum hydroxide
Answer:
c.11.43 g of aluminum hydroxide
Explanation:
How many moles are there in 16 g of oxygen?
2 moles
3 moles
1 mole
4 moles
Answer:
0.5 mole
Explanation:
16 g i equal to 0.5 mole of oxygen molecule
What variable must be held constant to use the combined gas law?
a. mass of gas sample
b. number of moles of gas
c. number of gas molecules
d. all of the above
e. none of the above
Answer:
The answer is (e) none of the above. The combined gas law relates the pressure, volume, and temperature of a gas, so all three variables (pressure, volume, and temperature) must be considered and at least one of them should be held constant to use the combined gas law. The mass of the gas sample, number of moles of gas, and number of gas molecules are not directly related to the combined gas law.
Question 6 (1 point)
Consider the hypothetical equilibrium system below:
A+B+C
What is the equilibrium constant of this system if the initial concentrations of A and
B were each 0.238 M, and the equilibrium concentration of C is 0.072?
Your Answer:
The equilibrium constant of the system can be obtained as 2.6.
What is the equilibrium constant?We know that we have to obtain the equilibrium constant by setting up the ICE table of the reaction as we can see in the portion below and this is shown as;
A + B ⇆ C
I 0.238 0.238 0
C -x -x +x
E 0.238 - x 0.238 - x 0.072
At equilibrium, we would have;
[A] = 0.238 - 0.072
= 0.166
[B] = 0.238 - 0.072
= 0.166
Then;
K = [C]/[A] [B]
K = [0.072]/(0.166)^2
K = 2.6
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How are ocean waves formed? gravity energy transfer conduction radiation
Answer:
I apologize that I'm late and all But your answer is B. Energy Transfer.
Explanation:
The waves transfer energy to the sand for example.
three sections of the periodic table are labeled a, b, and c in the image below. a representation of the periodic table is shown. the cells of the periodic table are left blank. a zig zag section of the periodic table is shaded gray. this section is labeled b. the section on the right of this gray shaded section is labeled c and the section on the left of this gray shaded section is labeled a. which of the following statements is most likely true for an element present in section a? (5 points) it is dull and brittle. it is malleable and ductile. it is a liquid at room temperature. it is a poor conductor of electricity.
The most likely answer is that it is malleable and ductile.
What is periodic table?The periodic table is an organized arrangement of the known chemical elements. It is arranged in order of increasing atomic number (the number of protons in the nucleus of an atom). Each element is placed in a specific location because of its atomic structure. The table is organized into rows and columns, with each element represented by its atomic number, symbol, name, and atomic mass. The periodic table is used to predict the properties of elements, as well as their compounds. It is also used to identify the elements in a compound and determine the number of atoms present in a given sample.
Section A of the periodic table is made up of the alkali metals, which are generally soft and have low melting points, making them malleable and ductile. They are also solid at room temperature and poor conductors of electricity.
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Rough ER is connected to the nucleus membrane and to
Rough ER is connected to the nuclear membrane and is responsible for the synthesis and processing of proteins.
The rough endoplasmic reticulum (ER) is a network of membrane-bound sacs and tubules that is studded with ribosomes on its surface. These ribosomes are responsible for protein synthesis. The rough ER is connected to the nuclear membrane because it receives instructions for protein synthesis from the DNA in the nucleus. This connection allows for the efficient transfer of genetic information from the nucleus to the rough ER.
Once the ribosomes on the rough ER synthesize proteins, the rough ER is also involved in the processing and modification of these proteins. It helps in folding the newly synthesized proteins into their functional three-dimensional shapes and also adds various modifications such as glycosylation (the addition of sugar molecules) or signal sequences that target the proteins to specific locations within or outside the cell.
After processing, the proteins may be transported to other parts of the cell or exported to the cell membrane or extracellular space. The connection between the rough ER and the nuclear membrane ensures a coordinated flow of genetic information and protein synthesis, allowing the cell to efficiently carry out its functions.
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b. How many kJ of heat are needed to completely vaporize 50.0g of water at 100°C? [Ans:113. kJ]
The amount, in kJ, of heat needed to completely vaporize 50.0g of water at 100°C is 118.8 kJ.
Heat of vaporization of waterThe heat needed to completely vaporize 50.0g of water at 100°C can be calculated using the following formula:
q = m x Hv
where:
q is the heat needed in joules (J)m is the mass of water in grams (g)Hv is the heat of vaporization of water which is approximately 40.65 kJ/mol at standard temperature and pressure.First, we need to convert 50.0g to moles by dividing by the molar mass of water which is approximately 18.015 g/mol3:
moles of water = 50.0 g / 18.015 g/mol moles of water = 2.776 mol
Thus:
q = (2.776 mol) x (40.65 kJ/mol) q = 112.8 kJ
In other words, 112.8 kJ of heat is needed to completely vaporize 50.0g of water at 100°C.
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KF + 02
Balance the equation
Explanation:
this equation is balanced
if you look at it carefully
k=1
f=1
o=2
we do not have any opposing element
Answer:
this equation is balanced
if you look at it carefully
k=1
f=1
o=2
we do not have any opposing element