Dear Editor,
As members of the ecology club, we are deeply concerned about the potential impact of the new highway project on the local biodiversity. As citizen-scientists, we understand the importance of preserving the delicate balance of our natural ecosystems, and we believe it is crucial to raise awareness about this issue. Here are some factors that we would like to include in our letter to help educate people about the importance of preserving biodiversity:
1. Biodiversity is essential for the health and well-being of our planet. It provides us with clean air, water, and food, and it supports many of the services that we rely on, such as pollination, pest control, and soil fertility.
2. Biodiversity is under threat from human activities such as habitat destruction, pollution, and climate change. By preserving biodiversity, we can help to protect our planet and ensure that future generations have access to the same resources and services.
3. The new highway project has the potential to disrupt local ecosystems by fragmenting habitats, disrupting migration patterns, and introducing invasive species. These impacts can have far-reaching consequences for the biodiversity of the region.
4. There are many ways to mitigate the impact of the new highway project on biodiversity, such as creating wildlife corridors, minimizing disturbance during construction, and using sustainable design practices.
5. As citizen-scientists, we have a responsibility to take action to protect biodiversity. We can do this by educating ourselves and others, participating in citizen science projects, advocating for policy changes, and supporting conservation efforts.
We urge the community to take action to protect the biodiversity around the new highway project. By working together, we can ensure that our planet remains healthy and vibrant for generations to come.
Sincerely,
[Your Name]
[Ecology Club Member]
Answer: we need to keep the air clean
Explanation: i dont know
what is the chemical formula for muscotive
The chemical formula of muscovite is given as (KF)₂(Al₂O₃)₂(SiO₂)(H₂O).
What is Muscovite?The mineral muscovite is very useful in the formation of rocks. It is composed of aluminum and potassium in the hydrated form and is part of the mica family. It can be found in igneous, metamorphic, and sedimentary rocks.
Rocks are massive structures which could be found above or below the earth's surface. They are formed by molten magma or by the deposition of materials in layers overtime. Some types of rocks are formed from changes in existing rocks.
The Muscovite could be used in cosmetics as well as to make a paint to shine The chemical formula of muscovite is given as (KF)₂(Al₂O₃)₂(SiO₂)(H₂O). We can see that it contains the elements aluminum, potassium and silicon.
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WHAT IS THE THEORY ASSOCIATED WITH THE 70 Wowirs EXPERIME HT' : (1) Linear air track (2) HoOke's LAW AND SIMPUE HARMOTIC motion (3) Defeemination of co efficient of restitution
The theory associated with the 70 Wowirs experiment is the determination of the coefficient of restitution.
What is the purpose and methodology of the 70 Wowirs experiment?The theory associated with the 70 Wowirs experiment is (3) the determination of the coefficient of restitution. The experiment involves colliding two objects on a linear air track and measuring the rebound velocity of one object after the collision. The coefficient of restitution is a measure of the elasticity of the collision and is calculated using the ratio of the rebound velocity to the initial velocity.
This experiment helps determine how much kinetic energy is conserved or lost during the collision, providing insights into the properties of the objects and the nature of the collision.
The 70 Wowirs experiment is a specific experiment that is not widely known or referenced. As a result, there are no details available regarding the specific experiment, its purpose, or its methodology. It is possible that the term "70 Wowirs" may be a misspelling or a specific reference that is not commonly recognized.
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what is the particular significance of valence electrons?
The number of valence electrons defines the type of element.
Valence electrons form chemical bonds between atoms by being transferred or shared.
The number of valence electrons is the atomic number for that element.
Valence electrons always balance the charge produced within the nucleus.Unlike electrons in other shells, valence electrons have no charge.
The number of valence electrons defines the type of element. Valence electrons form chemical bonds between atoms by being transferred or shared.
Valence electrons play a crucial role in determining the chemical properties of an element, including its reactivity, reactivity series, and the formation of chemical bonds. The number of valence electrons in an atom determines the type of element, and the chemical reactivity of an element is largely determined by the arrangement and behavior of its valence electrons. Additionally, valence electrons are involved in chemical reactions and bonding, as they are the outermost electrons and thus the most likely to be involved in chemical interactions with other atoms.
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How many moles of Al are necessary to form 66.8 g of AlBr₃ from this reaction:
2 Al(s) + 3 Br₂(l) → 2 AlBr₃(s) ?
0.1250 moles of Al are necessary to form 66.8 g of AlBr₃.
To solve this problem, we need to use the molar mass of AlBr₃ to convert the given mass to moles, and then use the stoichiometry of the balanced chemical equation to determine the moles of Al required.
First, we calculate the molar mass of AlBr₃ by adding the atomic masses of its constituent elements:
Al = 1 × 26.98 g/mol = 26.98 g/mol
Br = 3 × 79.90 g/mol = 239.70 g/mol
Total molar mass = 26.98 + 239.70 = 266.68 g/mol
Next, we can use the given mass of AlBr₃ and its molar mass to determine the number of moles:
moles of AlBr₃ = mass / molar mass
moles of AlBr₃ = 66.8 g / 266.68 g/mol
moles of AlBr₃ = 0.2500 mol
Finally, we can use the stoichiometry of the balanced chemical equation to relate the moles of AlBr₃ to the moles of Al:
2 Al(s) + 3 Br₂(l) → 2 AlBr₃(s)
2 mol Al = 3 mol Br₂ = 2 mol AlBr₃
moles of Al = (moles of AlBr₃ / 2) × (2 mol Al / 2 mol AlBr₃)
moles of Al = 0.2500 mol / 2
moles of Al = 0.1250 mol
Therefore, 0.1250 moles of Al are necessary to form 66.8 g of AlBr₃.
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How many moles of citric acid is needed to completely react with 0.74 moles of bakin soda?
0.37 moles of citric acid is needed to completely react with 0.74 moles of baking soda.
This can be calculated using the balanced chemical equation for the reaction between citric acid and baking soda. The equation is:
3 NaHCO3 + C6H8O7 → Na3C6H5O7 + 3 CO2 + 3 H2O
From the equation, it can be seen that 1 mole of citric acid reacts with 3 moles of baking soda. Therefore, to calculate the number of moles of citric acid needed to react with 0.74 moles of baking soda, we divide 0.74 by 3, which gives us 0.37 moles of citric acid.
This calculation is important in cooking and baking, as the reaction between citric acid and baking soda is used as a leavening agent in many recipes. Understanding the stoichiometry of the reaction allows cooks and bakers to adjust the amounts of ingredients needed to achieve the desired outcome.
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Write the chemical equation and the Ka expression for the ionization of each of the following acids in aqueous solution. First show the reaction with H+(aq) as a product and then with the hydronium ion.
A) HBrO2. Show the reaction with H+(aq) as a product. Express your answer as a chemical equation. Identify all of the phases in your answer.
B) HBrO2. Show the reaction with the hydronium ion as a product. Express your answer as a chemical equation. Identify all of the phases in your answer.
C)C2H5COOH. Show the reaction with H+(aq) as a product. Express your answer as a chemical equation. Identify all of the phases in your answer.
D) C2H5COOH. Show the reaction with the hydronium ion as a product. Express your answer as a chemical equation. Identify all of the phases in your answer.
E) Write the Ka expression for ionization from the previous part.
Ka=
Write the expression for ionization from the previous part.
[H3O+][C2H5COO−][C2H5COOH][H2O]
[H3O+][C2H5COO−]
1[H3O+][C2H5COO−]
[H3O+][C2H5COO−][C2H5COOH]
The chemical reactions and Ka expressions are, HBrO₂ + H₂O → H₃O⁺ + BrO₂⁻, Ka expression is, Ka = [H₃O⁺][BrO₂⁻]/[HBrO₂]. HBrO₂ + H₃O⁺ → H₂O + H₃O⁺ + BrO₂⁻; Ka = [H₃O⁺][BrO₂⁻]/[HBrO₂]. 3. C₂H₅COOH + H₂O → H₃O⁺ + C₂H₅COO⁻; Ka = [H₃O⁺][C₂H₅COO⁻]/[C₂H₅COOH]. 4. C₂H₅COOH + H₃O⁺ → H₂O + H₃O⁺ + C₂H₅COO⁻; Ka = [H₃O⁺][C₂H₅COO⁻]/[C₂H₅COOH]. 4. Ka = [H₃O⁺][BrO₂⁻]/[HBrO₂] for HBrO₂; Ka = [H₃O⁺][C₂H₅COO⁻]/[C₂H₅COOH] for C₂H₅COOH.
Ka expression refers to the equilibrium constant expression for the ionization of a weak acid in water, where Ka represents the acid dissociation constant. It is defined as the ratio of the concentrations of the products to the concentration of the reactant, where each concentration is raised to the power of its coefficient in the balanced chemical equation. For a weak acid HA, the Ka expression is,
Ka = [H3O⁺][A⁻] / [HA]
where [H3O⁺] is the concentration of hydronium ions, [A⁻] is the concentration of the conjugate base of the weak acid, and [HA] is the initial concentration of the weak acid.
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If an object does Not explode, catch fire, or dissolve, how would you describe this object? (Three answers)
Non-combustible
eg:-glass,water,stone, Portland cement etc ...
Answer:
Noncombustible
Explanation:
Not explode means no blastsCan't catch fire hence no combustionnot dissolve means not reacts with H and OSo
Some examples are ,glass ,stone
Explain how the iron atom can form both an iron 2+ ion and an iron 3+ ion
To form the 2+ ion the iron atom loses the 4s2 electrons. When forming the 3+ ion the iron atom loses the 4s2 electrons and one 3d electron.
What is an ion?An ion is described as an atom or molecule with a net electrical charge. The charge of an electron is considered to be negative by convention and this charge is equal and opposite to the charge of a proton, which is considered to be positive by convention.
During the formation of ionic bonds positive ion is attracted to a negative ion and lattice energy is released.
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2. What is forensic odontology ? Why is this area helpful for investigators?
Explanation:
forensic odontology is the study of dental applications in legal proceedings. which may include bite marks.
it is helpful as it allows for the identification of unknown bodies through dental records.
Answer:
Also called forensic dentists, forensic odontologists are typically called in to: Identify human remains that cannot be identified using face recognition, fingerprints or other means. Identify bodies in mass fatalities, such as plane crashes and natural disasters. This area is helpful for investigators as it helps find more evidence for each case.
During which event does the moon appear closer? Select one: a. Apogee b. Penumbra c. Perigee d. Umbra
Answer:
Perigee
Explanation:
In Perigee, The moon appears closer.
PLSS HELPP Giving brainliest!! Suppose you place the coefficient 4 before H2O. How many atoms of hydrogen and how many atoms of oxygen will the formula have?
Answer: 8 oxygen atoms and 4 hydrogen atoms. Explanation down below.
Explanation: One molecule of oxygen gas is composed of two oxygen atoms (O2). Here there is four atoms of oxygen gas which in total gives eight oxygen atoms. Same ways One molecule of hydrogen gas is composed of two hydrogen atoms (H2), so 2 atoms of hydrogen gas in total gives four hydrogen atoms. As per the formula of water, 2 (H2) and 1(O) to form a water molecule (H2O). Here there are 4 H2, so divide the number of hydrogen atoms by the number needed per water molecule i.e. 4 / 2 = 2. This means 2 water molecules will be produced.
Earth's gravitational potential energy: GPE = mgh = Gravity (9.81m/s2) *
Mass (kg) x Height (m)
Kinetic energy: KE= Imov?
How do the mass and speed of an object affect the kinetic energy?
Answer:
as mass and the square of speed is directly proportional to the the kinetic enegry so, more there will be mass and speed there will be more kinetic enegry.
Hypothesis: How easily for you think the following substances are fermented by yeast?
Yeast is a type of fungus that can ferment certain substances, meaning it breaks down sugars and converts them into alcohol and carbon dioxide. The ease with which a substance is fermented by yeast depends on a few factors, including the type of yeast being used and the composition of the substance itself.
Generally speaking, substances that contain a high amount of simple sugars are more easily fermented by yeast. This is because yeast is able to quickly and efficiently break down these sugars into alcohol and carbon dioxide. Examples of substances that are easily fermented by yeast include fruit juices, honey, and molasses.
On the other hand, substances that are more complex or contain less sugar may be more difficult for yeast to ferment. For example, yeast may have a harder time breaking down starches, such as those found in grains, without additional processing steps.
It's worth noting that different strains of yeast may also have varying levels of ability to ferment certain substances. Some strains may be better suited for fermenting certain types of beer or wine, for example, while others may be more effective at fermenting bread dough.
Overall, the ease with which a substance is fermented by yeast depends on a variety of factors, and may require some trial and error to determine the best approach for a particular substance.
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Please need help!!!!!!!!!!!!!!!!!!!!!!!!
Answer:
See below
Explanation:
Bohr Model
well-defined circular orbits like the solar system
Quatum Mechanical Model
Electrons do not travel around the nucleus in simple circular orbits.
electron clouds around the nucleus
what is the name of s and p blocks on the periodic table??
Answer:
The s-block and p-block together are usually considered main-group elements, the d-block corresponds to the transition metals, and the f-block encompasses nearly all of the lanthanides (like lanthanum) and the actinides (like actinium).
Explanation:
Explain the role of photosynthesis in the carbon cycle
Answer:
During photosynthesis, plants absorb carbon dioxide and sunlight to create fuel, glucose and other sugars for building plant structures. This process forms the foundation of the fast carbon cycle.In all four processes, the carbon dioxide released in the reaction usually ends up in the atmosphere.
Answer:
During photosynthesis, plants also absorb carbon dioxide and sunlight to create fuel, glucose, and other sugars for building plant structures. This process forms the foundation of the fast carbon cycle.
Explanation:
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How many moles are there is 45.5 g of Calcium?
Answer:
1.1352861919257495 mol
Explanation:
AKALI METALS ARE HIGLY_______ SINCE THEY ______ easily to form ions. HELP ASAP
Answer:
Reactive and lose 1 electron
Explanation:
An antique automobile bumper is to be chrome plated. The bumper, which is dipped into an acidic Cr2O72- solution, serves as a cathode of an electrolytic cell. The atomic mass of Cr is 51.996; 1 faraday = 96,485 coulombs. If oxidation of H2O occurs at the anode, how many moles of oxygen gas will evolve for every 107 grams of Cr(s) deposited?
a. 2.97
b. 0.495
c. 11.9
d. 7.92
e. 2.64
Option b is correct. In the process of chrome plating an antique automobile bumper, the bumper acts as the cathode in an electrolytic cell.
To find the number of moles of oxygen gas evolved per 107 grams of Cr(s) deposited, we need to calculate the amount of charge required to deposit 107 grams of Cr(s) and then determine the ratio of moles of oxygen gas evolved to the amount of charge.
The molar mass of Cr is 51.996 g/mol. To deposit 107 grams of Cr(s), we divide 107 g by the molar mass to get the number of moles of Cr(s):
107 g / 51.996 g/mol = 2.0646 mol
Since the atomic mass of Cr is 51.996, the number of moles of Cr(s) deposited is 2.0646 mol.
The charge required to deposit one mole of Cr(s) can be calculated using Faraday's constant:
1 mole of Cr(s) = 1 Faraday = 96,485 coulombs
Therefore, the charge required to deposit 2.0646 mol of Cr(s) is:
2.0646 mol * 96,485 coulombs/mol = 199,527 coulombs
For every 4 moles of electrons transferred in the oxidation of \(H_2O\), 1 mole of \(O_2\) gas is evolved. This means that for every mole of electrons, 1/4 mole of \(O_2\) gas is produced.
To determine the number of moles of oxygen gas evolved, we need to find the number of moles of electrons transferred. Since 1 Faraday is equal to 96,485 coulombs, the number of moles of electrons transferred is equal to the charge divided by Faraday's constant:
199,527 coulombs / 96,485 coulombs/mol = 2.07 mol
Therefore, the number of moles of oxygen gas evolved is 1/4 times the number of moles of electrons transferred:
(1/4) * 2.07 mol = 0.5175 mol
Rounded to three significant figures, the moles of oxygen gas evolved for every 107 grams of Cr(s) deposited is approximately 0.495. Therefore, the correct answer is (b) 0.495.
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1. A neutral atom has a mass number of 128 and an atomic number of 52. Use this information to fill in the table below.
Question Answer
How many protons are in this atom? How do you know?
How many electrons does the atom have? How do you know?
Calculate the number of neutrons – show your work.
If this atom becomes an ion with a +4 charge, how many electrons would the ion have?
This atom has an isotope with one extra neutron – what is its mass number?
1) p=52
2)p=e=52
52-4=48
128
What separates the inner planets from the outer planets in our solar system?
()Comet Belt
()Asteroid Belt
()Their differences
()Distance
Help plss!!
Answer:
the answer is B Astroid Belt
3000 CFM of air is flowing through the coil with the inlet and outlet conditions just described in Question 1 (TDB, in = 84 °F and TWB,in = 72
"F. TDB.out 55 F and TDP out = 50 'F).
What is the total cooling performed by the coll?
What is the sensible cooling performed by the coil?
Use the standard density of air (0.075 lbm/ft³) and specific heat of air (0.24 BTU/lbm-'F).
NOTE: Please provide units for your answers.
The total cooling performed by the coil is 29168.21 BTU/Hr and the sensible cooling performed by the coil is 1209.93 BTU/Hr.
Inlet Condition: TDB, in = 84 °F and TWB, in = 72 "F
Outlet Condition: TDB,
out = 55 F and TDP out = 50 'F
Flow Rate: CFM of air = 3000
Standard Density of Air = 0.075 lbm/ft³
Specific Heat of Air = 0.24 BTU/lbm-'F.
The total cooling performed by the coil can be calculated using the following formula;
Sensible Cooling = CFM x Density x Specific Heat x (TDB, in - TDB, out)
Latent Cooling = CFM x Density x (HFG x (W, in - W, out)
Total Cooling = Sensible Cooling + Latent Cooling
First, we need to calculate the density of air at the inlet condition and outlet condition using the formula:
Density = 0.075 x (460 + TDB) / (460 + TWB) at inlet and outlet condition
Density at inlet condition = 0.075 x (460 + 84) / (460 + 72)Density at inlet condition = 0.0666 lbm/ft³
Density at outlet condition = 0.075 x (460 + 55) / (460 + 50)Density at outlet condition = 0.068 lbm/ft³
The sensible cooling performed by the coil is;
Sensible Cooling = CFM x Density x Specific Heat x (TDB, in - TDB, out)
Sensible Cooling = 3000 x 0.0666 x 0.24 x (84 - 55)
Sensible Cooling = 1209.93 BTU/Hr
The total cooling performed by the coil is;
Total Cooling = Sensible Cooling + Latent Cooling
Here, Latent Cooling = CFM x Density x (HFG x (W, in - W, out))
At the inlet condition; W, in = (0.62198 x PWS) / (PB - PWS)W,
in = (0.62198 x 0.6237) / (14.433 - 0.6237)W,
in = 0.0427
At the outlet condition; W, out = (0.62198 x PWS) / (PB - PWS)W,
out = (0.62198 x 0.315) / (14.266 - 0.315)W,
out = 0.0237
HFG at average of inlet and outlet air temperature = 1074 BTU/lbm
Latent Cooling = CFM x Density x (HFG x (W, in - W, out))
Latent Cooling = 3000 x 0.0666 x (1074 x (0.0427 - 0.0237))
Latent Cooling = 27958.28 BTU/Hr
Therefore, Total Cooling = Sensible Cooling + Latent Cooling
Total Cooling = 1209.93 + 27958.28
Total Cooling = 29168.21 BTU/Hr
Therefore, the total cooling performed by the coil is 29168.21 BTU/Hr and the sensible cooling performed by the coil is 1209.93 BTU/Hr.
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The electrons between atoms in metallic bonds
allow for bonding metals to be reactive.
allow for bonding metals to be stable.
are stationary and provide durability to the metal.
are attracted to the neutrons of the metal.
Answer:
Metallic bonding is the type of chemical bonding that occurs between atoms of metals. In a metallic bond, atoms share their electrons in a way that allows them to form a “sea” of free electrons. This electron sea is responsible for the unique physical and electrical properties of metals.
Explanation:
Answer:
B. allow for bonding metals to be stable.
Explanation:
edge 2022
Which statement accurately describes the structure of the atom?
A. Protons, neutrons, and electrons are all located in the nucleus.
B. The electrons are located in the nucleus, and the protons and neutrons are located in the space surrounding the nucleus.
C. The protons and neutrons are located in the nucleus, and the electrons are located in the space surrounding the nucleus.
D. The protons are located in the nucleus, and the electrons and neutrons are located in the space surrounding the nucleus.
Answer:
The statement that accurately describes the structure of the atom is C. The protons and neutrons are located in the nucleus, and the electrons are located in the space surrounding the nucleus.
Explanation:
The nucleus of the atom contains most of the mass of the atom, and it is positively charged due to the presence of protons. The electrons, on the other hand, have a negative charge and orbit the nucleus in a series of shells or energy levels. The number of protons in the nucleus determines the element to which the atom belongs, while the number of electrons determines the atom's overall charge. Neutrons, which are electrically neutral, also exist in the nucleus and help to stabilize it. However, they do not play a role in determining the atom's overall charge or identity.
need help to fill im chart
The following is in the order of: Element / Group / Ion Name / Ion Formula
Lithium / Alkali Metals / Lithium Ion / Li⁺Aluminum / Boron Group (Group 13) / Aluminum ion / Al³⁺Fluorine / Halogens / Fluoride Ion / F⁻Strontium / Alkaline Earth Metals / Strontium Ion / Sr²⁺Oxygen / Chalcogens (Group 16) / Oxide Ion / O²⁻Boron / Boron Group (Group 13) / Boron Ion / B³⁺Nitrogen / Nitrogen Group (Group 15) / Nitride Ion / N³⁻ Sulfur / Chalcogens (Group 16) / Sulfide Ion / S²⁻Potassium / Alkali Metals / Potassium Ion / K⁺Iodine / Halogens / Iodide Ion / I⁻3. The total pressure of helium and Argon gas in a closed cylinder is 3.0 atm. If the partial pressure of the Argon is 0.365 atm, what is the partial pressure of the helium?
Ethers can be cleaved using ______.A. NaOH or KOH B. H2SO4 or HCl C. HI or HBr D. HNO3 or H2SO4
Ethers can be cleaved using a variety of reagents, but the most common methods involve either acid or base-catalyzed cleavage. Option A, NaOH or KOH, refers to base-catalyzed cleavage, also known as "Williamson ether synthesis." In this reaction, an ether is reacted with a strong base to form an alkoxide ion, which is then protonated to form an alcohol and an alkyl halide. This method is commonly used to synthesize alcohols from ethers.
Option B, H2SO4 or HCl, refers to acid-catalyzed cleavage. In this reaction, the ether is protonated by the acid to form an oxonium ion, which can then undergo nucleophilic attack by a variety of nucleophiles, such as water or an alcohol, to form two different products. This method is commonly used to prepare alcohols from ethers, but can also be used to form carbocations or other intermediates.
Option C, HI or HBr, refers to a specialized method of cleaving ethers called "acid-catalyzed hydrolysis." In this reaction, the ether is protonated by the strong acid, followed by nucleophilic attack by the halide ion. This method is commonly used to convert ethers into halohydrins.
Option D, HNO3 or H2SO4, is not commonly used to cleave ethers, but can be used to oxidize them to ketones or aldehydes. Overall, the choice of reagent used to cleave ethers depends on the specific desired products and reaction conditions.
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What happens to particles when they are heated?
a they speed up and spread out
b they stop moving
c they slow down and compress
d they move closer together and speed up
How does the CO2 level affect photosynthesis?
Answer:
Elevated [CO2] increases the availability of carbon in leaves causing greater Rubisco activity and higher rates of photosynthesis. Greater photosynthesis increases the content of non-structural carbohydrates in leaves which can lead to greater starch reserves and increased auxin biosynthesis.
Explanation:
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What is the best definition, or description for the term, uplift?
Question 12 options:
when a low pressure front meets a high pressure front and pushes the clouds upward
the pressure from a volcano pushing the lava to the surface
when an area of rock is pushed vertically upward, caused by forces from within the Earth and occurs over long periods of time, and forms type of mound on the surface.
When an area of the earth releases CO2 and rises into the atmosphere
Answer: It is B. :)
Explanation:
The best definition or description for the term uplift is the pressure from a volcano pushing the lava to the surface.
What is the meaning of uplift in geographical terms?Uplift in geographical terms is a vertical elevation of earth's surface which is in response to the natural causes. It is associated with earthquakes and mountain building .
Uplift of earth's surface is in response to removal of ice sheets through melting of ice.It refers to the rising of the earth's portion while sinking is the downward shift of earth's surface.Uplift can be due to plate tectonic movements ,mountain building or gravitational adjustment of earth's crust.Mountain building results from uplift of lands.
During the process of uplift, the floor of the sea rises as the outer shell of the earth divides into sections which are moving,called as plates.When these plates crash they result into formation of mountains.
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