Answer:ThE aNsWeR iS B
Explanation: The earth was one a big ocean but than volcanoes explode and that created land :)
If you're hiking in the mountains and you find shells by accident, you know that the mountain was once under the sea. Therefore, the correct option is option B.
What is mountain?A mountain is indeed an elevated area of the crust of the Earth, typically with steep - sided that reveal a substantial amount of bedrock that has been exposed. Although variations exist, a mountain is normally taller than a hill, rising as least 300 meters (1,000 feet) just above surrounding ground.
Most mountains are found in mountain ranges, while a handful have solitary peaks. Tectonic forces, erosion, and volcanism, which operate on time spans as long as tens of millions of years, are responsible for the formation of mountains. You look for shells when you visit the beach. However, if you're hiking in the mountains and you find shells by accident, you know that the mountain was once under the sea.
Therefore, the correct option is option B.
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Nancy wants to find out how the steepness of a hill's slope affects the amount of soil that erodes from it. She has soil, a long pan, and a pile of books with which to build a model hillside. She has a watering can to model rainfall.
In her experiment, which of the following factors should Nancy make sure that she does not change?
It Is A Type Of Lily
Regarded botanically as perennial with the scientific name herbaceous perennial, Agapanthus Peter Pan is an African lily. Hence, it’s also called as “The Blue African Lily of the Nile”. The flowers appear in trumpet-shaped rounded clusters with darker mid-vein petals.
They come out in an upright position due to its long stalks and are surrounded by narrow, loose and strap-shaped leaves. In addition, some categorize the plant under bulbs although it’s not, but due to the fact that it has fleshy and thick roots.
#3 – It Has Other Names
There are other terms known for Agapanthus Peter Pan. Other than simply African lily, this is often called as The Blue African Lily of the Nile, African Lily Peter Pan, Lily of the Nile Peter Pan, Dwarf Lily of the Nile and Dwarf African Lily. This also explains the reason why most of the imported evergreen agapanthus came from certain parts of South Africa as these are better grown in milder climate areas with higher or heavy rainfall.
Therefore, the flowers typically bloom from the months of July to August, which are commonly known as the summer season in the US, Canada and Europe, and extends up to October. Of course, you’d see the glamorous, blue flowers in spring too.
#5 – It Needs Full Sun
This beautiful flower relies on sunlight in order to grow and remain healthy. However, planting it around a partly shaded area is alright.
You also have to keep in mind that this kind of plant must not be dried out or else it dies. Thus, watering regularly is a basic priority.
#6 – It Can Survive The Winter
Although it’s best planted in milder areas and sunny season, Agapanthus Peter Pan can endure the coldness of fall and winter seasons. In fact, you can place foliage in a pot or a small container so you can easily transport it inside your home.
This also implies that you don’t need a large, spacious garden to display this plant around your surroundings.
#7 – It Is Not Shrubby
Unlike some plants, Agapanthus Peter Pan grow in almost round, V-shape without spreading in a way that it reaches to an unparalleled position.
Its spread extends from 1 to 2 inches. Nevertheless, it can definitely create an elegant landscape view whether it’s planted in front of your house or in the backyard.
Based on an article excerpt from Plant Care Today, Agapanthus plants generally grow from 18 inches to 5 feet depending on the variant. But for Agapanthus Peter Pan, it can grow to a minimum height of 8 inches to 18 inches.
#8 – It Most Likely Grows In Moist, Drained Soil
In addition to the climate, remember that plants are best nurtured in an area where the kind of soil is met. It has to be a soil type of chalk, clay, loam or sand. In the case of Agapanthus Peter Pan, fertile, moist and well-drained soil must be considered.
#9 – It Is Easy To Grow
This plant requires low maintenance. All you need is enough sun, water and well-drained soil. Consider adding some organic material for fertilizing if you want to keep the plant healthy and flowers stunningly beautiful.
#10 – It Attracts Butterflies And Birds
The beauty of the blue flowers of Agapanthus Peter Pan is evident and undeniable due to the fact that they are favorite places for small birds and butterflies to go to. An even more so interesting fact is that it’s free from pests and diseases. It is also rabbit, deer and drought resistant.
Growing and Maintenance Tips:
As mentioned previously, Agapanthus Peter Pan is less difficult to take care of. But doing the right way is still vital to bear in mind. So here’s a list of quick tips on how to properly plant this agapanthus for beginners and maintain its beautiful foliage.
The Planting Process
1. If you choose to plant in the ground, dig holes but not too deep.
2. Amend the soil with some organic matter as fertilizer.
3. Carefully remove the plants from the containers and make sure the root ball is intact.
4. Loosen the soil and roots around the bottom as well as the edges of the root ball.
5. Place the plant in the hole leveling with surrounding soil, and spread roots outward.
6. Fill in the hole and around the roots with amended native soil.
7. Gently water.
8. Cover the whole area with leaf or bark.
9. Water again but this time deeply.
The Regular Watering Process
Water every morning. Night watering may promote diseases. As you water, go slowly and deeply, and if possible, do it twice with a few minutes apart. Keep in mind that you avoid over watering as this can cause some root problems. To conserve water, use a hose. Just keep the soil wet! And water the flowers everyday!
Answer: The amount of water she pours on the model
Explanation: Nancy wants to test how a hill's slope can affect erosion. Because of this, she will want to change the height of one end of her hill model as she pours water down the slope. Other variables, such as the amount of water she pours on the model and the type of soil she uses, should not change.
A solution has 3 mol of sodium dissolved into 500mL of solution. What is the molarity of the solution?
Answer:
6M
Explanation:
No of mole = concentrate × volume
n= c × V
C= n/V
V=500mL=0.5L
C= 3/0.5=6M
Determine the molecular weight of H2O.
189
18.0 g
18.019
18.016 9
Answer:
18.01534
The last one
Explanation:
The molar mass of H20 is 15.9994+(2 x 1.00797) which equals 18.01534 grams/mole.
Why has Earth's climate changed so rapidly in recent years?
(a)The sun has gotten much hotter.
(b)People are eating too many plants.
(c) People are burning too many fossil fuels.
(D) The Earth is rotating too slowly to cool off effectively
Final answer:
The rapid change in Earth's climate is primarily due to the burning of fossil fuels, which has led to increased greenhouse gas emissions and trapped more solar radiation in our atmosphere. Seventeen of the warmest years on record have occurred since 2000, highlighting the swift pace of climate change due to human activities.
Explanation:
The Earth's climate has undergone rapid changes in recent years, largely due to human activities rather than natural climatic variations. The most significant factor causing this rapid climate change is the burning of fossil fuels, leading to increased levels of greenhouse gases, such as carbon dioxide, in the atmosphere. This human-induced acceleration of climate change is clearly demonstrated by the fact that we have witnessed 17 of the 18 warmest years on record since the year 2000. Option C
Fossil fuels burned for energy during and after the Industrial Revolution have allowed advances in public health, food production, and urbanization. However, this has come at the expense of our environment. The greenhouse gas emissions trap solar infrared radiation, leading to a warming effect. This anthropogenic warming disturbs ecological relationships and has manifold influences on global temperatures, precipitation patterns, polar ice melting, sea levels, and biodiversity.
While natural factors such as volcanic activity, changes in the sun's intensity, and Earth's orbital shifts do contribute to climate variability, the unprecedented rate of current global warming is predominantly tied to human activity. This underscores the urgent need for mitigating greenhouse gas emissions to prevent further environmental degradation.
what is the coefficient for calcium oxide? CaO(s) + CO2(g) → CaCO3(s)
Answer:
The coefficient is 1
Explanation:
CaO(s) + CO2(g) -> CaCO3(s)
In the balanced equation, the coefficient for CaO is 1
The coefficient represents the number of moles of a compound in the stoichiometry of the reaction
Final answer:
The coefficient for calcium oxide in the reaction CaO(s) + CO₂(g) → CaCO₃(s) is 1. The reaction is in stoichiometric balance, with each reactant and product having a coefficient of 1, indicating a 1:1:1 molar ratio.
Explanation:
The coefficient for calcium oxide in the equation CaO(s) + CO₂(g) → CaCO₃(s) is 1. In chemical reactions, the coefficients indicate the number of moles of each substance involved in the reaction. In this case, one mole of calcium oxide reacts with one mole of carbon dioxide to produce one mole of calcium carbonate, making the coefficient for each reactant and product 1. This balanced equation represents a stoichiometric relationship, meaning the number of atoms for each element is conserved.
Moreover, understanding the reaction between calcium oxide and water or carbon dioxide and water provides important context. Calcium oxide reacts with water to form calcium hydroxide (Ca(OH)₂), and carbon dioxide reacts with water to form carbonic acid (H₂CO₃). However, these are separate reactions from the one in the question. The decomposition reaction of calcium carbonate into calcium oxide and carbon dioxide is represented by the equilibrium equation: CaCO₃ (s) ⇌ CaO (s) + CO₂ (g). This equilibrium illustrates that the reaction can proceed in both the forward and reverse directions, and under certain conditions, can achieve a 100% yield of calcium oxide if the carbon dioxide is continuously removed.
An equilibrium mixture of O2, SO2 and SO3 contains equal concentrations of SO2 and SO3.
Calculate the concentration of O2 if Kc = 270 for the reaction: 2 SO2(g) + O2(g) - 2 SO3(0)
Answer:
[O₂(g)] = 0.0037M
Explanation:
2SO₂(g) + O₂(g) => 2SO₃(g)
Conc: [SO₂(g)] [O₂(g)] [SO₃(g)] and [SO₂(g)] = [SO₃(g)]
Kc = [SO₃(g)]²/[O₂(g)][SO₂(g)]² => Kc = 1/[O₂(g)] = 270 if [SO₂(g)] = [SO₃(g)]
∴ [O₂(g)] = (1/270)M = 0.0037M
The equilibrium constant Kc is the ratio of concentration of products to the product of concentrations of reactants. Here, the concentration of O₂ will be 0.0037 molar.
What is Kc ?Kc of a reaction is the equilibrium constant of that reaction expressed in terms of concentration of products and reactants. It is the ratio of product of molar concentration of products to the product of molar concentration of the reactants.
An equilibrium mixture of a reaction is attained when the reaction in both forward and backward reaction occurs in same rate.
The equilibrium constant Kc for the given reaction can be written as follows:
[tex]Kc = \frac{[SO_{3}]}{[SO_{2}][O_{2}]} = 270[/tex]
Provided that the concentrations [SO₃] and [SO₂ are equal and thus the expression becomes:
Kc = 1/[O₂] = 270
[O₂] = 0.0037 M
Hence, the molar concentration of oxygen in equilibrium mixture of the reaction is 0.0037 molar.
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How many grams of O2 are needed to react with 13.6 g of NH3
Answer:
Mass = 32 g
Explanation:
Given data:
Mass of O₂ needed = ?
Mass of NH₃ react = 13.6 g
Solution:
Chemical equation:
4NH₃ + 5O₂ → 4NO + 6H₂O
Number of moles of ammonia:
Number of moles = mass/ molar mass
Number of moles = 13.6 g/ 17 g/mol
Number of moles = 0.8 mol
Now we will compare the moles of ammonia and oxygen from balance chemical equation.
NH₃ : O₂
4 : 5
0.8 : 5/4×0.8 = 1
Mass of oxygen:
Mass = number of moles × molar mass
Mass = 1 mol × 32 g/mol
Mass = 32 g
Final answer:
To react 13.6 grams of NH₃ completely, one needs 32 grams of O₂ based on the balanced chemical equation and stoichiometric calculations.
Explanation:
To determine how many grams of O₂ are needed to react with 13.6 g of NH₃, we need to follow stoichiometric principles based on the balanced chemical equation. The reaction 4NH₃ (g) + 5O₂ (g) → 4NO (g) + 6H₂O (l) indicates that 4 moles of NH₃ react with 5 moles of O₂.
Firstly, we calculate the number of moles of NH3 we have:
Using the molar mass of NH₃ (17 g/mol), we find that 13.6 g NH₃ equals 0.8 moles NH₃ (13.6 g ÷ 17 g/mol).From the balanced equation, the molar ratio of NH₃ to O₂ is 4:5. Thus, 0.8 moles of NH₃ would require 1 mole of O₂ (0.8 moles NH₃ × (5/4)).Finally, we calculate the mass of O₂ needed by using its molar mass (32 g/mol). The mass of O₂ for 1 mole is 32 g (1 mole × 32 g/mol).Therefore, 13.6 grams of NH₃ require 32 grams of O₂ to react completely according to the given chemical equation.
Identify the spectator ions in this reaction:
H+ + Br – + K+ + OH– --> K+ + Br– + H2O
H+ and K+
Br – and OH–
K+ and Br–
Answer:
the correct answer is C) K+ and Br-
Explanation:
Spectator ions are the ions on the right side of the equation which do not combine to form products. we can see that potassium ions (K+) and bromine ions (Br-) appear unreacted on both sides of the equation
Electrons aren’t just smaller than atoms .electrons are part of
The ability to react with oxygen is a physical property.
True
False
Answer:
True.
Explanation:
If no modification is there, such as in melting, the property or change is termed physical. In comparison, chemical properties or changes involve changes in the composition of the substance. The ability to react with oxygen is a chemical property
The ability to react with oxygen is a physical property. - False
Explanation:Chemical properties are characteristics of a substance that describe how it interacts with other substances or undergoes chemical reactions. These properties include reactivity, flammability, acidity or alkalinity (pH), and the ability to form chemical bonds. Chemical properties help identify and classify substances based on their behavior in chemical processes.
The ability to react with oxygen is a chemical property, not a physical property. Chemical properties describe how a substance interacts with other substances and undergoes chemical changes. Reacting with oxygen involves a chemical change where a substance combines with oxygen to form new compounds or undergoes oxidation.
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is ionic compounds are compounds of two or more anions
Answer:
ionic compounds contain both types of ions,like postie or negative
Explanation:
what evidence caused bohr to change rutherfords nuclear model into the solar system model
Both noticed that different atoms gives different colours of light when they are exposed to flame.
Question 2 (1 point)
What are the products of the precipitation reaction:
NaOH (aq) + CuBr2 (aq) –
2NaOH + CuBr2 => 2NaBr + Cu (OH)2
what is the difference between speed, velocity,acceleration.
Answer:
Velocity is the rate of change of displacement( change of distance in a particular direction with respect to time) , and acceleration is the rate of change of velocity per unit of time. ... Also, speed is a scalar quantity but velocity and acceleration are vector quantities.
Explanation:
An opened carbonated drink is an example of what type of solution? *
Answer:
An open carbonated drink is an example of a saturated solution.
Explanation:
A carbonated drink is a saturated solution of carbon dioxide in water under a certain pressure. If the soft drink container is opened, the pressure on the surface of the drink is decreased to atmospheric pressure, and several carbon dioxide molecules leave the solution, and if enough time passes, the drink will end without gas.
Answer:
It is an example of an Aqueous solution.
Explanation:
A solution is a mixture that contains one or more solutes in a solvent. It can be in a solid, liquid or gaseous form, or the combination of two or more.
A carbonated drink is a solution that contains majorly liquids and gases. The main gas is the carbon (IV) oxide that has been used to preserve its taste.
When a bottle of carbonated drink is opened, the gas (carbon dioxide) stored under pressure escapes and evaporates. Thereby causing bubbles to move within the content of the bottle.
This is an example of an aqueous solution because the major solvent in the drink is water.
True
False
1. The phenolphthalein indicator is not affected by the pH of the
solution.
Answer:
the answer is False.
Explanation:
the indicator solution is directly related to the PH. When the solution becomes neutral (ph 7), the indicator will become clear.
The statement that Phenolphthalein is not affected by PH is False
Phenolphthalein is a colorless chemical compound, when added to alkaline solutions it will turns pink, which means it has been affected by the PH.Phenolphthalein will remain colorless if in acidic solution, that's less than PH of 7. But at pH level of 8.2 it turns pink then at pH 10 it turns magenta.Therefore, PH do affect Phenolphthalein indicator
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Balance this equation:
TRUE or FALSE: Volcanoes help warm the planet by releasing CO2 (carbon dioxide)
Answer: TRUE
Explanation: I’d say it is true because lava comes out of volcanos and lava is obviously VERY hot so it must help warm the planet by realizing carbon dioxide.
700 grams of glucose reacted fully with oxygen
How many moles of gas will be created
Answer:
23.34mole of CO2
Explanation:
C6H12O6 + 6O2 => 6CO2 + 6H20
Molar mass of C6H12O6 = 180g/Mol
No of mole of C6H12O6 = 3.89mol
1 mol of C6H12O6 gives 6mole of CO2
3.89mol of C6H12O6 gives X mole of CO2
X = 3.89×6 = 23.34mole
Which actions conserve fossil fuels? Choose the two correct answers.
A.
wasting food
B.
riding a bike
C.
planting trees
D.
buying bottled water
E.
using less electricity
need help
Two objects (A and B) of the same temperature are in contact with each other.
Which statement is true?
Although the molecules collide, no heat transfers because there is no temperature difference between the objects.
Heat transfers from object B to object A, because molecules from B collide with those from A.
Heat transfers from object A to object B, because molecules from A collide with those from B.
No heat transfers, because there are no collisions between the molecules of the objects.
Answer:
The answers are either 1 or 4
Explanation:
I am pretty dure it is 1
If two objects A and B of same temperature are in contact with each other, there will be no transfer of heat. Hence, option A is true.
Heat TransferHeat is the transfer of energy from one object to another, for this transfer it is necessary that there is difference between the temperature of the objects.
In this question the objects A and B of the same temperature are in contact with each other, and the law of transfer of heat energy says without temperature difference there will be no heat transfer, hence the option A which says "Although the molecules collide, no heat transfers because there is no temperature difference between the objects" is correct.
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The particles of a liquid, such as water, are more able to move around than the particles of a solid, such as foil. Water particles with more heat move to areas where there are water particles with less heat. In other words, convection allows heat to be transferred from warmer places to cooler places.
Complete the sentences to describe the convection experiment.
Answer:
2, 3, and 1
Explanation:
red water in hot water
rose to the top of the beaker
warmer than
The red water in hot water model showed convection. In the convection model, the red water on the bottom of the beaker rose to the top of the beaker. This means that the water at the bottom of the beaker was warmer than the water near the top of the beaker.
What is convection?Convection is the transfer of heat from one place to another due to the movement of fluid. Although often discussed as a distinct method of heat transfer, convective heat transfer involves the combined processes of conduction (heat diffusion) and advection. Convection is usually the dominant form of heat transfer in liquids and gases.
Note that this definition of convection is only applicable in Heat transfer and thermodynamic contexts. It should not to be confused with the dynamic fluid phenomenon of convection, which is typically referred to as Natural Convection in thermodynamic contexts in order to distinguish the two.
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Your question is incomplete, but most probably your full question was,The particles of a liquid, such as water, are more able to move around than the particles of a solid, such as foil. Water particles with more heat move to areas where there are water particles with less heat. In other words, convection allows heat to be transferred from warmer places to cooler places. Complete the sentences to describe the convection experiment The model showed convection. In the convection model, the red water on the bottom of the beaker This means that the water at the bottom of the beaker was the water near the top of the beaker.
IN A TEST! NEED HELP
Compare the atomic radii of sodium and chlorine. Based on their positions in the periodic table,
A.) sodium has a larger radius because it is in column 1.
B.) sodium has a smaller radius because it is in column 1.
C.)chlorine has a larger radius because it is in column 17.
D.) their radii are equal because they are in the same period.
The sodium has a larger atomic radius than chlorine because it is in column 1. Therefore, option (A) is correct.
What is an atomic radius?Atomic radius can be defined as half of the distance between two adjacent atoms of the same chemical element in a molecule. The atomic radius of chemical elements is of the order of 1.2 x 10⁻¹⁰ m.
The electron cloud around the nucleus acts as the atom's shell. It does not have a fixed shape which makes it difficult to determine the atomic size.
The atomic radius of sodium is larger than that of chlorine. As both Na and Cl belong to the 3rd period, so the atomic size generally decreases across the period as we move from left to right.
The sodium is placed in column 1 while chlorine is placed in column 17. The effective nuclear charge will increase as the atomic number increases. With increased effective nuclear charge electronegativity of the nucleus increases which results in the increased attraction of electrons to the nucleus.
Therefore, the atomic radius of sodium is larger than that of chlorine.
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How many grams of sodium nitrate (NaNO2) will dissolve in 100g of water at 20°C?
Answer:
82 grams of sodium nitrate (NaNO2) will dissolve in 100 grams of water at 20°C.
Explanation:
90.0 grams of sodium nitrate (NaNO2) will dissolve in 100g of water at 20°C.
To determine the grams of sodium nitrate (NaNO2) that will dissolve in 100g of water at 20°C, we can use the solubility data for NaNO2 at that temperature.
According to the solubility data:
- Solubility of NaNO2 in water at 20°C = 90.0 g/100 g water
This means that 100g of water can dissolve 90.0g of NaNO2 at 20°C.
So, if we have 100g of water, the maximum amount of NaNO2 that can dissolve in it is 90.0g.
Therefore, 90.0 grams of sodium nitrate (NaNO2) will dissolve in 100g of water at 20°C.
Which of the following is closest to the meaning of the term ancestor?
A. a relative from long ago
B. an organism that has evolved
C. a trait that has changed over time
D. an organism that is adapted to its environment
Answer:
I would say A
Explanation:
our ancestors are the people that lived long before us
What is always true of a weak base
Answer: Some of the original base remains in the solution.
How do the isotopes hydrogen-2 (deuterium) and hydrogen-3 (tritium) differ?
A. deuterium has one more electron than tritium
B. tritium has one more neutron than deuterium
C. deuterium has two protons
D. there is no difference because it is the exact same atom.
The isotopes hydrogen-2 (deuterium) and hydrogen-3 (tritium) differ in the number of neutrons in their nuclei. Option B is the answer.
Explanation:The isotopes hydrogen-2 (deuterium) and hydrogen-3 (tritium) have different numbers of neutrons in their nuclei. Deuterium has one more neutron than hydrogen-1, while tritium has two more neutrons than hydrogen-1. The difference in the number of neutrons gives these isotopes different properties and behaviors.
Option B is the correct answer: tritium has one more neutron than deuterium. The number of electrons and protons in isotopes of an element remains the same, so options A and C are incorrect. Option D is also incorrect because deuterium and tritium are different isotopes of hydrogen with different numbers of neutrons.
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What is the % yield if 17.4g of sodium hydroxide is produced when 20.0g of sodium metal reacts with 19g of water according to the chemical equation 2Na(s) + 2H₂O(l) → 2NaOH(aq)+ H₂(g)?
50.05% is the percent yield if 17.4g of sodium hydroxide is produced when 20.0g of sodium metal reacts with 19g of water.
Explanation:
Balanced chemical equation for the reaction:
2Na + 2 [tex]H_{2}[/tex]O ⇒ 2NaOH + [tex]H_{2}[/tex]
Data given:
mass of NaOH produced = 17.4 grams
mass of Na reacted = 20 grams
mass of water reacted = 19 grams
percent yield =?
atomic mass of Na = 23 grams/mole
atomic mass of water = 18 grams/mole
atomic mass of NaOH = 39.9 grams/mole
number of moles is calculated as:
number of moles = [tex]\frac{mass}{atomic mass of 1 mole}[/tex]
putting the values in above equation to know number of moles:
number of moles of Na = [tex]\frac{20}{23}[/tex]
= 0.869 moles
number of moles of water = [tex]\frac{19}{18}[/tex]
= 1.05 mole
number of moles of NaOH = [tex]\frac{17.4}{40}[/tex]
= 0.435 moles
limiting reagent in the reaction is Na
2 moles of Na reacted to give 2 moles of NaOH
So, 0.869 moles of NaOH will give 0.869 moles of NaOH
Grams of NaOH = 34.76 grams (theoretical yield)
2 moles of water will give 2 moles of NaOH
Hence, 1.05 moles will give 1.05 moles of NaOH
grams of NaOH = 42 grams
percent yield = [tex]\frac{actual yield}{theoretical yield}[/tex]
putting the values in the equation:
percent yield = [tex]\frac{17.4}{34.76}[/tex] x100
= 50.05 %
50.05 % is the percent yield.
What would Earth's surface look like if there were no movement of tectonic plates? Explain your answer.
Answer: Earths surface wouldn't have mountains for an example there wouldn't be any if it wasn't for divergent plate boundary
Explanation:
Determine the mass of NaOH needed to make 750.0mL of a 6.00 M solution of NaOH
Answer: 180g
Explanation:
No of moles= volume ×molarity/1000
Volume is given as 750ml
Molarity is given as 6M
Substitute to get the mole
No of moles = 750×6/1000
No of moles= 4.5moles
Remember that
No of moles also = mass given/molar mass
Molar mass of NaOH
Na= 23
O=16
H=1
Molar mass = na +o+h
Molar mass =23+16+1
Molar mass=40g/mol
Substitute
No of moles = mass given/molar mass
Mass = 4.5×40
Mass = 180g
The mass of NaOH needed is 180g