does does volume of titrant stay the same for equivalence point despite the type of reaction (strong acid/base, weak acid/base)
Yes, the volume of titrant required to reach the equivalence point stays the same, despite the type of reaction (strong acid/base, weak acid/base). The equivalence point is achieved when the number of moles of the titrant is equal to the number of moles of the analyte. This can be calculated using the formula:
n_titrant = n_analyte
Where n_titrant and n_analyte are the moles of titrant and analyte
The moles can be calculated using the formula:
n = c × V
Where n is the number of moles,
c is the concentration, and
V is the volume.
To find the volume of titrant required to reach the equivalence point, you can rearrange the formula:
V_titrant = (n_analyte × V_analyte) / c_titrant
Since the moles of titrant and analyte are equal at the equivalence point, the volume of titrant required depends on the concentrations of the titrant and analyte, and the volume of the analyte. The type of reaction does not affect the volume of titrant needed to reach the equivalence point.
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Explain why volume is an example of an extensive property and density an intensive property.
Extensive property is dependent on mass. Intensive property is property that depends only on the type of matter rather than the amount. Hense, Volume is an example of Extensive property and Density is an example of Intensive property.
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How do you find the volume of solution when mass of solute and volume of solvent is given?
C = m V . The unit of concentration is typically given as g/mL because the solute mass is frequently given in grammes and the volume is frequently given in milliliters. However, there are a tone of other mass and volume unit combinations that are possible.
How do you determine a solution's volume?Given that a solution consists of both a solute and a solvent, its total volume is equal to the sum of the volumes of both the solute and the solvent it contains.
A solution's concentration is an indicator of how much solute has dissolved in a specific volume of solvent or solution. When there is a significant amount of dissolved solute in a solution, it is said to be concentrated. When a dissolved solute is present in a solution, it is said to be diluted.
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A chemical engineer is responsible for designing a plant that processes 50 tons per day of reactant. what quantities change, what quantities stay the same?
A chemical engineer is responsible for designing a plant that processes 50 tons per day of reactant generally deals with the new project related to plant.
When chemical engineer generally deals with the new projects which is on paper only. They are the specialist in directing and implementing capital projects for companies. The engineer involved in this processes to meet budgets and project goals following are the duties of chemical process design engineer. They have to understand the process thoroughly.
They have to do the basics overview study of the process. They should think the primary design. They should process risk assessment for the project initial project risk assessment. They have to make a material balance and energy balance. They should analyze initial project cost evaluation primary costing. They should analyze basic engineering of the process and the project site evaluation.
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for the following equilibrium, if hcl is added, how will the quantities of each component change? alpo4(s)↽−−⇀al3 (aq) po3−4(aq)
The chemical reaction given is:AlPO4 (s) ↔ Al3+ (aq) + PO34- (aq)What will happen if HCl is added to the given equilibrium.
The addition of HCl causes a change in the equilibrium because HCl dissociates into H+ and Cl- ions, and these H+ ions react with PO34- ions. The reaction goes in the forward direction to consume H+ ions, producing more Al3+ and PO34- ions. Here is the balanced chemical equation:HCl (aq) + PO34- (aq) ↔ HPO32- (aq) + Cl- (aq)So, as HCl is added, it will react with PO34- ions, reducing their concentration. Therefore, to compensate, the equilibrium will shift to the right to produce more PO34- ions. This, in turn, will shift the equilibrium to produce more Al3+ ions as well, as per the following equation:AlPO4 (s) + HCl (aq) ↔ Al3+ (aq) + PO34- (aq) + H2O (l)As a result, the quantities of Al3+ and PO34- will increase, while the concentration of AlPO4 will decrease. The addition of HCl will result in an increase in the concentration of both Al3+ and PO34- ions while the concentration of AlPO4 will decrease.
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The emission of electrons from a metallic surface depends on the intensity of the incident radiation.
Please select the best answer from the choices provided
A. True
B. False
Answer:
I ........believe it's true
Answer:false
Explanation: no idea
To go from grams of one compound to grams of another which of the following do you use?
Use the mole-to-mole conversion factor (B/A) to convert the mass of A first into moles, then back into grams of A using the mole quantity of B.
What is a compound?A chemical compound is a substance that contains atoms from many chemical elements bonded together by chemical bonds. It is made up of numerous similar molecules. Therefore, a molecule made up of only one type of atom is not a compound.
Examples of compounds are table salt (NaCl), which is generated from the elements sodium and chloride, and water (H2O), which is created from the components hydrogen and oxygen.
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Can someone help with making a discussion for the reactivity of group 1 and 2 elements
Group 1 elements will be more reactive than group 2 because group 1 element has one valence electrons.
The kind of elements which posses 1 valence electrons, will be kept in group 1. Due to it has 1 valence electrons, hence it will be more reactive.
In a group, by moving top to down in the periodic table reactivity increases.
Reactivity would be a parameter that expresses how easily a substance reacts chemically. The chemical may react alone or in combination with some other atoms or molecules, and energy is often released as a result of the reaction. The most reactive substances and elements have the potential to spontaneously as well as explosively ignite.
Therefore, group 1 elements will be reactive than group 2 elements.
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which process is a chemical change
A disc of platinum used for: Pt2+ (aq) + 2e- → Pt (s)Platinum wire used for: 2Cl- (aq) → Cl2 (g) + 2e-
In both cases, the platinum components provide an efficient and stable medium for the respective redox reactions to occur, ensuring that the electron transfer process is smooth and effective.
What is the function of Pt in the given reactions?To know about the role of a platinum disc and platinum wire in the following half-cell reactions:
1. A disc of platinum used for: Pt2+ (aq) + 2e- → Pt (s)
2. Platinum wire used for: 2Cl- (aq) → Cl2 (g) + 2e-
In these reactions, the platinum disc and platinum wire act as inert electrodes, providing a surface for the redox reactions to take place.
For the first reaction, the platinum disc serves as a solid surface for the reduction of Pt2+ ions to solid platinum (Pt). This occurs when Pt2+ ions gain 2 electrons (2e-) to form Pt (s).
For the second reaction, the platinum wire acts as an electrode for the oxidation of Cl- ions. Here, 2 Cl- ions lose 2 electrons (2e-) to form Cl2 gas.
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A sphere of radius 0.457 m, temperature 32.2 ∘
C, and emissivity 0.924 is located in an environment of temperature 82.9 ∘
C. At what rate does the sphere (a) emit and (b) absorb thermal radiation? (c) What is the sphere's net rate of energy exchange? (a) Number (b) Number Units Units
a) The sphere emits thermal radiation at a rate of 139.75 Watts.
b) The sphere absorbs thermal radiation at a rate of 37.66 Watts.
c) The sphere's net rate of energy exchange is 102.09 Watts.
What are the rates of thermal radiation emission, absorption, and net energy exchange for the sphere?To calculate the rates of thermal radiation emission and absorption, we can use the Stefan-Boltzmann law, which states that the rate of thermal radiation emitted or absorbed by an object is proportional to its surface area, temperature, and the Stefan-Boltzmann constant.
a) The rate of thermal radiation emitted by the sphere can be calculated using the formula:
Emitting Rate = emissivity * surface area * Stefan-Boltzmann constant * (\(temperature^4 - environment\ temperature^4\))
Plugging in the given values:
Emitting Rate = \(0.924 * (4\pi * (0.457)^2) * 5.67 \times 10^{-8} * ((32.2 + 273.15)^4 - (82.9 + 273.15)^4)\)
Emitting Rate ≈ 139.75 Watts
b) The rate of thermal radiation absorbed by the sphere can be calculated in a similar way but using the environment temperature as the object's temperature:
Absorbing Rate = emissivity * surface area * Stefan-Boltzmann constant * (\(environment\ temperature^4 - temperature^4\))
Plugging in the given values:
Absorbing Rate = \(0.924 * (4\pi * (0.457)^2) * 5.67 \times 10^{-8} * ((82.9 + 273.15)^4 - (32.2 + 273.15)^4)\)
Absorbing Rate ≈ 37.66 Watts
c) The net rate of energy exchange is the difference between the emitting rate and the absorbing rate:
Net Rate = Emitting Rate - Absorbing Rate
Net Rate = 139.75 Watts - 37.66 Watts
Net Rate ≈ 102.09 Watts
Therefore, the sphere emits thermal radiation at a rate of 139.75 Watts, absorbs thermal radiation at a rate of 37.66 Watts, and has a net rate of energy exchange of 102.09 Watts.
Note: The units for all the rates are Watts.
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What is the name of the following WHMIS symbol? *
!
O Corrosive
O Flammable
O Oxidizing Agent
O Toxic
O Biohazard
Poisonous
Compressed Gas
O Reactive
Pictograms are illustrative symbols that make it clear to the user of a potentially dangerous product what kind of hazard was present. You can quickly determine whether a product is combustible or health risk.
Where can I utilise WHMIS symbols?To make it simple for the user of the a hazardous product to understand what kind of danger is present, WHMIS uses a set of standardised pictograms for product labels or data sheets. For workers, these hazard graphics provide clear and concise meaning.
What is WHMIS stand for?The national ’s hazard standard for Canada is the Occupational Hazardous Materials Information Systems (WHMIS). Hazard classification, cautionary container labelling, the distribution of safety data sheets (SDSs), plus worker training programmes are the system's main components.
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Observe the phase-change diagram of an unknown substance below. What would be the meeting point of this substance? Can someone help with this? Thanks
Answer:
im pretty sure its b
Explanation:
When any substance converts to liquid then heat is required to break the intermolecular forces of attraction between the particles. In this process heat increase but temperature remains the same. The line along B represents the melting of unknown substance. Therefore the 72°C is melting point of the substance.
What is phase transition?Phase transition is a process in which transition takes place from one state to another of a medium on changing temperature or pressure. Phase transition is a physical process as there is no breaking of old bond and forming of new bonds takes place.
During phase transition temperature remain constant as the extra heat that is given to the system that goes into breaking of intermolecular forces of attraction between the particles. So overall temperature remains same but heat keeps on increasing.
The line along B represents the melting of unknown substance. Therefore the 72°C is melting point of the substance.
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What is the wavelength (in nm) of an electron with the following kinetic energies? (a) 20. 0 ev (no response) nm (b) 200 ev (no response) nm (c) 2. 00 kev (no response) nm (d) 20. 0 kev (no response) nm (e) 0. 200 mev (no response) nm (f) 2. 00 mev (no response) nm which of these energies are most suited for study of the nacl crystal structure? (select all that apply. ) 20. 0 ev 200 ev 2. 00 kev 20. 0 kev 0. 200 mev 2. 00 mev none of these
A mass of 9.1 1031 kilograms (Kg). A wavelength of 1010m, or around the size of an atom, can be calculated from the de Broglie relation. Due to this, we may directly examine the atomic structure of a crystal using electron microscopes.
Using the de Broglie relation between the momentum p and the wavelength of an electron (=h/p, where h is Planck constant), the wavelength of an electron is computed for a given energy (accelerating voltage). When the wavelength is expressed in meters, 1/ stands for the number of waves in a wave train that can fit within a length of one meter, or, if the wavelength is expressed in centimeters, the number of waves that can fit within a length of one centimeter.
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Lulu Labwrecker carefully pipets 25.0 mL of 0.525 M NaOH into a test tube. She places the test tube into a small beaker to keep it from spilling and then pipets 75.0 mL of 0.355 M HCl into another test tube. When Lulu reaches to put this test tube of acid into the beaker along with test tube of base she accidentally knocks the test tubes together hard enough to break them and their respective contents combine in the bottom of the beaker. Is the solution formed from the contents of the two test tubes acidic or basic? What is the pH of the resulting solution?
Answer:
The solution formed is acidic
pH = 0.87
Explanation:
The acid-base reaction of NaOH with HCl is:
NaOH + HCl → NaCl + H₂O
Where 1 mole of NaOH reacts with 1 mole of HCl
In the problem, moles of NaOH and HCl are:
NaOH: 0.0250L × (0.525mol / L) = 0.013125 moles NaOH
HCl: 0.0750 × (0.355mol / L) = 0.026625 moles HCl
As moles of HCl > moles NaOH, HCl is in excess and the solution formed is acidic
Moles in excess of HCl are:
0.026625 moles - 0.013125 moles = 0.0135 moles HCl
As the volume of the solutions is 25.0mL + 75.0mL = 100.0mL = 0.100L, molarity of HCl after reaction is:
0.0135 moles HCl / 0.100L = 0.135M HCl = 0.135M H⁺
As pH is defined as - log [H⁺], pH of the solution is:
pH = -log 0.135M H⁺ = 0.87
pH = 0.87
The pH of the resulting solution of the acid and base mixture is; Acidic with a PH = 0.87
We are given;
Volume of NaOH = 25 mL = 0.025 L
Volume of HCl = 75 mL = 0.075 L
Concentration of NaOH = 0.525 M
Concentration of HCl = 0.355 M
Total volume of solution = 0.025 + 0.075 = 0.1 L
Now, the the equation of the reaction is;
HCl + NaOH = NaCl + H2O
We can see that 1 mole of HCl reacts with 1 mole of NaOH.
Since; number of moles = Volume × concentration
Number of moles of HCl = 0.075 × 0.355
Number of moles of HCl = 0.026625 moles
Similarly;
Number of moles of NaOH = 0.025 × 0.525
Number of moles of NaOH = 0.013125 moles
We can see that the number of moles of HCl is greater than that of NaOH and as such there is excess HCl acid in the mix.
Thus,
Excess moles of HCl acid = 0.026625 - 0.013125
Excess moles of HCl acid = 0.0135 moles
Concentration of this excess HCl is gotten by the formula;
M = Excess moles/total volume
M = 0.0135/0.1
M = 0.135 M
PH of this excess concentration is;
PH = -log [H+]
PH = -log [0.135]
PH = 0.87
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What does EtOH stand for?
Answer:
EtOH stands for ethyl alcohol, which is the type of alcohol found in alcoholic beverages such as beer, wine, and spirits. It is a central nervous system depressant that can cause a range of effects, from mild relaxation to severe impairment of cognitive and motor functions. EtOH is often used in the medical and research fields as a short notation for Ethanol.
EtOH is the chemical label or acronym for ethyl alcohol (ethanol). EtOH refers to the kind of alcohol that can be found in alcoholic beverages like wine, beer, and spirits.
It is a depressant of the central nervous system that can have a variety of effects, ranging from mild relaxation to severe cognitive and motor impairment. In the medical and research industries, EtOH is frequently used as a short notation for ethanol.
Why do we use EtOH?It is used in the production of other chemicals, as a solvent, and in alcoholic beverages. Ethanol is a colorless, somewhat toxic substance. Solutions of ethanol and water that contain more than 50% ethanol are extremely flammable. The most well-known use of ethanol is as alcohol in alcoholic beverages.
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can
someone please help
Answer: protein bar,it gives alot of energy and wont upset your stomach!!
O2 +
C3H60 →
H2O +
CO2
Balance please
Answer:
C3H6O + 4O2 → 3CO2 + 3H2O
Explanation:
I think that's the answer
Hope this helps :)
what was the general trend from 1985 to 2014 in the size of the area with ph levels less than or equal to 4.5 (below which the environment is considered to be acidic)?
From 1985 to 2014, the general trend in the size of the area with pH levels less than or equal to 4.5 (indicating acidic environment) showed an increase. This trend suggests that over this time period, the acidic areas expanded or became more prevalent.
Several factors contribute to this trend. One major factor is human activities, particularly the burning of fossil fuels and industrial emissions. These activities release pollutants such as sulfur dioxide and nitrogen oxides into the atmosphere, which can then react with water and form acids, leading to acid rain. Acid rain can contribute to the acidification of soil and water bodies, leading to a decrease in pH levels.
Another contributing factor is deforestation. When forests are cleared, the soil is exposed to rainfall, which can lead to increased leaching of acidic compounds into the soil and water systems. Additionally, without the buffering capacity of trees, the pH of the soil can become more susceptible to fluctuations.
Climate change can also impact pH levels. Rising temperatures can affect the carbon dioxide levels in the atmosphere, leading to increased absorption of CO2 by the oceans. This can result in ocean acidification, where the pH of seawater decreases, negatively impacting marine life.
It is important to note that the trend may vary in different regions due to specific local factors and mitigation efforts. However, overall, the general trend from 1985 to 2014 indicates an increase in the size of areas with pH levels less than or equal to 4.5, signaling a growing concern for acidic environments.
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how many moles of lead(ii) chloride will precipitate when 1mol of potassium chloride is allowed to react with an excess of lead(ii) nitrate?
From the balanced equation, We know that
one mole of Lead(II) nitrate requires two mole of potassium chloride to produce one mole of lead(II) chloride and mole of potassium nitrate.
From stochiometric calculations,
When 1mol of potassium chloride is allowed to react with an excess of lead(ii) nitrate, hence KI is limiting reagent.
So, from every one mole of potassium chloride, 0.5 mole of lead(II) chloride can be produced.
We can define, Stoichiometry as the calculation of products and reactants in a chemical reaction. It is concerned with the numbers of moles of reactant and product.
Stoichiometry is an important concept in chemistry, We use balanced chemical equations to calculate amounts of reactants and products in a reaction.
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The line "Come, I will make the continent indissoluble" from "For You O Democracy" implies democracy will make the nation stronger than ever before. Given this, what is most likely the meaning of indissoluble?.
Answer:
Permanent
Explanation:
I took the text
How many miles away is New York from the North American plate?
Answer:
Explanation:
The Eurasian Plate is moving away from the North American Plate at a rate the is about 3cm per year. That is about the same rate at which your fingernails will grow.
The distance from New York to London in 5 million years will be 3552 miles (5717 km). So if today it takes us 7 hours and 30 minutes to fly to London at a speed of 460 miles per hour, in 5 million years at the same rate of speed will take us close to 8 hours.
London is a North American Plate
Which explains the charge of an ion of calcium (Ca)?
A. 2 electrons are gained by the atom.
B. 2 electrons are removed from the atom.
C. 2 protons are removed from the atom.
D. 2 protons are gained by the atom.
Answer:
B. 2 electrons are removed from the atom
Explanation:
The charge of an ion of calcium (Ca) is +2, which means that the calcium atom has lost 2 electrons.
Therefore, the correct answer is B. 2 electrons are removed from the atom.
Which of the following is exchanged between two or more atoms that undergo ionic bonding? A. electrical charges. B. valence electron
Electrical charges is exchanged between two or more atoms that undergo ionic bonding . The correct answer is A. electrical charges.
In ionic bonding, one or more electrons are transferred from one atom to another, resulting in the formation of positively charged cations and negatively charged anions. These oppositely charged ions are then attracted to each other by electrostatic forces, forming an ionic bond.
In ionic bonding, atoms transfer one or more electrons from one atom to another, resulting in the formation of charged particles called ions. One atom loses electrons and becomes a positively charged ion (cation), while the other atom gains those electrons and becomes a negatively charged ion (anion). This transfer of electrons creates a strong electrostatic attraction between the oppositely charged ions, leading to the formation of an ionic bond.
Therefore, it is the exchange of electrical charges that allows for the formation of ionic bonds, rather than the exchange of valence electrons. Hence, option A. is correct.
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PLEASE HELP YOU HAVE TO CLICK THE CORRECT ONES PLEASE IM BEGGING YALL IF I FAIL THIS I FAIL MY GRADE....... Directions: Select each correct image. More than one image may be correct.
The diagrams below show interactions between charged particles. The blue particles are negatively charged, and the red particles
are positively charged.
Which of the diagrams shows a correct interaction between the fields of two charged particles?
Answer:
D
Explanation:
Since the negative particles are going towards the negative section and the positive particles are leaving the positive section. Additionally, opposite charges attract each other and like charges repel each other.
There will be attraction between the opposite charges and repulsion among the like charges. Here the diagram D shows a correct interaction between the fields of two charged particles.
What is a electric field?The electric force acting per unit charge is defined as the electric field. They are generally produced by changing the electric charges or magnetic fields. The electric field strength is expressed in volt per meter (V/m).
E = F/Q
In an electric field it is the electric charge which provides the direction of field. If the charge is negative, then the field is directed towards the charge. A field is directed away from the charge if the charge is negative.
All the electric fields start form a positive charge and end on a negative charge. If two positive charges interact then there will be repulsion between them. But if a positive charge interact with a negative charge then there will be attraction among them.
In diagram D there is an attraction between the opposite charges.
Thus the correct option is D.
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Which of the following correctly predicts the most likely mode of radioactive decay for the nuclide As3384As3384?
Of the following correctly predicts the most likely mode of radioactive decay for the nuclide \(As^{33}_{84}\)
The nuclide \(As^{33}_{84}\) has an atomic number of 33, indicating that it is arsenic. To predict the most likely mode of radioactive decay for \(As^{33}_{84}\), we need to consider its position on the periodic table and the stability of its nucleus
\(As^{33}_{84}\) falls into the category of a stable nuclide since it has a stable atomic number. Stable nuclides do not undergo radioactive decay. Therefore, it is unlikely that \(As^{33}_{84}\) would undergo spontaneous radioactive decay through alpha decay (emitting an alpha particle), beta decay (emitting a beta particle), or gamma decay (emitting gamma radiation). Nuclides that are unstable and undergo radioactive decay typically have atomic numbers higher than the stable region of the periodic table or have an imbalance of protons and neutrons in the nucleus. However, as \(As^{33}_{84}\) is a stable nuclide, it is not expected to undergo any form of radioactive decay. Hence, the most likely mode of radioactive decay for the nuclie \(As^{33}_{84}\) is no decay at all since it is a stable nuclide.
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Calculate the specific heat of an unknown metal if it took 58.1 J to increase the temperature of 89.4 g of the metal from 23.4°C to 25.5°C.
Answer:
\(c=0.309\ J/g^{\circ} C\)
Explanation:
The increase in heat, Q = 58.1 J
Mass, m = 89.4 g
The temperature increases from 23.4°C to 25.5°C. We need to find the specific heat of an unknown metal.
We know that the increase in heat is given by :
\(Q=mc\Delta T\\\\c=\dfrac{Q}{m\Delta T}\\\\c=\dfrac{58.1}{89.4\times (25.5-23.4)}\\\\c=0.309\ J/g^{\circ} C\)
So, the specific heat of an unknown metal is equal to \(0.309\ J/g^{\circ} C\).
When cations and anions meet, they. A. repel. B. form ionic bonds. C. form covalent bonds. D. form individual molecules
When cations and anions meet, they B. form ionic bonds.
Why cations and anions can form an ionic bond?This is because cations are positively charged ions and anions are negatively charged ions. When they come together, they form an ionic bond, which is a type of chemical bond that involves the electrostatic attraction between oppositely charged ions.
This is different from a covalent bond, which is formed when atoms share electrons to form molecules.
Therefore, the correct answer is B. form ionic bonds.
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Organize the steps below to show the correct order in which the process of natural selection causes evolutionary change.
Darwinism holds that natural selection, inheritance of variations, survival of the fittest, and struggle for existence are the proper order of events leading to the genesis of species. According to Darwin, nature is characterized by a constant "battle for survival" in which only the strongest will survive.
A genetic event that results in individuals or groups of a particular type or species possessing distinctive features from one another is referred to as variation in genetics. Darwin believed that variation had no upper bound.According to Charles Darwin's "survival of the fittest" theory, groups that are genetically more diverse are those who have the best chances of surviving and reproducing. This is in accordance with the "survival of the fittest" theory, where "fitness" refers to a person's capacity to pass down copies of his genes to succeeding generations.Natural selection, as defined by Charles Darwin, is the differential survival and reproduction of individuals as a result of phenotypic differences. The shift in the heritable characteristics of organisms is a crucial mechanism of evolution.
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What is the pOH of a solution that has an H+=7.7x10^-7 M
Answer:
Explanation:
Step 1
The question is based on the concept of PH and pOH calculations.
pH is defined as negative logarithmic of hydronium Ion concentration.
while pOH is defined as negative logarithmic of hydroxide ion concentration of the solution.
Step 2
[H+] = 7.7*10-7 M
pH = -log[H+]
= -log ( 7.7*10-7 )
= 6.12
Step 3
pOH = 14 - pH
= 14 - 6.11
= 7.89