all organisms require an influx of substances from their habitat to meet their needs for chemical elements and energy.

Answers

Answer 1

All organisms require an influx of substances from their habitat to meet their nutritional  needs for chemical elements and energy.

What are growth requirements of organisms ?

Every organism in the earth needs to meet the basic needs for air, food , water and shelter for their growth. Irrespective of the type of organism and level of development all organisms need an influx of nutrition to their body.

Certain microorganism species are referred to as facultative. These organisms can develop with or without oxygen present. Certain types of bacteria are microaerophilic, which means they can flourish in environments with little oxygen.

The nutrients which are needed in high quantity are called macronutrients. Nutrients which have to be intaken in small quantities or in traces are called micro nutrients or trace nutrients.

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Related Questions

Could you please explain how to calculate the answer?

Answers

ΔH° for the reaction Fe3O4(s)+2C (graphite) → 3 Fe(s) + 2CO2(g) is - 725kj/mol⁻¹.

What is Hess's law ?

Hess's law states that if a process can be showed as the sum of two or more steps, the enthalpy change for the overall process is the sum of the ΔH values for each step.

Fe3O4(s)+2C (graphite) → 3 Fe(s) + 2CO2(g),    

We invert (1) and change the sign of  ΔH

Fe3O4(s)   →  3Fe(s)+3CO2(g)  ΔH = 1118

We multiply (2) by 3

2C(g)+1/2O2(g) → CO2(g)         ΔH = - -394   (2)

3CO(g)+3/2O2(g)→3CO2(g)         ΔH = 1118

We add (1) and (2)

Fe3O4(s)  →  3Fe(s)+3CO2(g)  ΔH = 824.2 kJ

3CO(g)+3/2O2(g)→3CO2(g)         ΔH = -848.1 kJ

Fe3O4(s)+2C (graphite) → 3 Fe(s) + 2CO2(g),    

Therefore, ΔH° = - 725kj/mol⁻¹

Thus,  ΔH° for the reaction Fe3O4(s)+2C (graphite) → 3 Fe(s) + 2CO2(g) is - 725kj/mol⁻¹.

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Allicin is the compound responsible for the characteristic smell of garlic. An analysis of the compound gives the following percentage composition: 44.4% C, 6.21% H, 39.5% S and 9.86% O
a)Calculate the empirical formula of allicin
b)If the molar mass of allicin is 162, find the molecular formula of allicin

Answers

The empirical formula of the given compound is C₆H₁₀S₂O. The empirical mass and molecular mass is equal here. Hence, the molecular formula of allicin is the same.

What is empirical formula ?

The empirical formula of a compound is determined using the mass presents and number of moles of each element present in it.

Given, 44.4 % of C- 44.4 g of C contains = 44.4 g/12 g/mol= 3.7 moles.

number of moles of H = 6.21

number of moles of S = 39.5 g/32 g/mol = 1.23 moles

no.of moles of O = 9.86 g/16 g/mol = 0.61 moles.

Divide all of these number of moles by 0.61, we get the ratio and empirical formula as:

C₆H₁₀S₂O.

The formula mass = (6 ×12) + (10) + (2 × 32) + (16) = 162 g/mol.

Molecular mass = 162 g/mol.

Therefore, the molecular formula of the compound is the same C₆H₁₀S₂O.

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IUPAC NAME of the following

Answers

The IUPAC name of compound is propanoic acid.

What is IUPAC name?

The purpose of the IUPAC system of nomenclature is to establish an international standard of naming compounds to facilitate communication.

The goal of the system is to give each structure a unique and unambiguous name, and to correlate each name with a unique and unambiguous.

Alkanes are the family of saturated hydrocarbons, that is, molecules containing carbon and hydrogen connected by single bonds only. These molecules can be in continuous chains (called linear or acyclic), or in rings (called cyclic or alicyclic). The names of alkanes and cycloalkanes are the root names of organic compounds.

Therefore, The IUPAC name of compound is propanoic acid.

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the two molecular scenes below depict the relative concentrations of h3o (purple) in solutions of the same volume (with counterions and solvent molecules omitted for clarity). if the ph in beaker a is 4.45, what is the ph in beaker b?

Answers

The pH of a solution is determined by the concentration of hydrogen ions (H+) in the solutio The pH in beaker B is 6.45.

What is concentration?

Concentration is the ability to focus and maintain attention on a task or thought for an extended period of time. It involves using mental effort to maintain focus and block out distractions. Concentration is important for studying, problem-solving, and other activities that require sustained attention. It can be trained and improved with practice. Strategies such as eliminating distractions, breaking tasks into smaller steps, and taking regular breaks can help to improve concentration.

In Beaker A, we can see that the concentration of H3O+ is greater than Beaker B, which indicates that Beaker A has a lower pH. Since the pH in Beaker A is 4.45, this implies that the pH in Beaker B must be higher. To calculate the exact pH of Beaker B, we would need to know the exact concentration of H3O+ in each beaker.

The pH of a solution is determined by the concentration of hydrogen ions (H+) in the solutio The pH in beaker B is 6.45.

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how many milligrams of gas are formed if 10.0ml of 3.00% hydrogen eroxide solution decomposes? the density of the solution is 1.00 g/ml.

Answers

The milligrams of the gas are formed if 10.0ml of 3.00% hydrogen peroxide solution decomposes, The density of the solution is 1.00 g/mL is 300 mg.

The equation is as follows :

2H₂O₂(l)   ---->   2H₂O(l)   +   O₂(g)

The density of the solution = 1 g/mL

The volume of the water = 100 mL

The volume of the H₂O₂ = 10 mL

The mass of the hydrogen peroxide = 3 g

2 moles of the hydrogen peroxide produces the 1 mole of the oxygen gas.

The mass of the O₂ =   (10 mL × 3 g of H₂O₂ ) / 100 mL

                                = 0.3 g = 300 mg

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Practice 55
Which hydrate contains the greatest
percent of water by mass?
1) LiCl H₂O
2) CaCl₂ 2H₂O
3) CuSO4 5H₂O
4) FeBr3 6H₂O

Answers

CaCl₂ 2H₂O  contains the greatest percent of water by mass  By halving the hydrate's formula , one may compute the theoretical (real) percent hydration.

What does it mean to hydrate?

To provide with enough liquid or moisture; to make to occupy or mix with water or indeed the constituents of water. softens and moisturizes the skin. the intransitive verb "to hydrate"

What is a better hydrator than water?

Milk is one of finest liquids for hydration, according to research, even more than water or caloric beverages. Researchers attribute milk's efficiency to its protein, carbs, and natural electrolytes.

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Red light has a _____ frequency and a _____ wavelength than ultraviolet rays.

Answers

Red light has a lower frequency and a longer wavelength than ultraviolet rays.

Red light is a type of electromagnetic radiation with a wavelength between 630 and 700 nanometers, and a frequency of about 480 to 430 terahertz. It is one of the colors of the visible spectrum and is known for its longer wavelength and lower frequency compared to other colors like blue or violet. Red light is used in a variety of applications, including in traffic lights, in phototherapy to treat skin conditions, and in night-vision devices to preserve night vision.

Ultraviolet (UV) light is a type of electromagnetic radiation with a wavelength shorter than that of visible light but longer than X-rays. It has a frequency range of about 10 to 400 terahertz, and its wavelength ranges from about 100 to 400 nanometers. UV light is divided into three categories: UVA, UVB, and UVC, with UVC having the shortest wavelength and highest frequency. Although UV light is invisible to the human eye, it can cause sunburn and other skin damage, and is also used in various applications such as water purification, air purification, and in black light to illuminate fluorescent materials.

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Sodium chloride is a soluble salt that can be made by mixing sodium hydroxide with an acid. Sodium metal cannot be used because it is too... what?

Answers

Answer:

Reactive.

Explanation:

am sure bro..…….

Because it is too reactive, sodium metal cannot be used to make sodium chloride. Since sodium is a highly reactive alkali metal, it easily interacts with other substances to form new ones.

What is the intraction of the sodium ?

Sodium metal interacts fast with water to produce sodium hydroxide and hydrogen gas. The metal may catch fire and burn as a result of this reaction since it is so exothermic, or heat-producing.

Sodium metal interacts fast with acids like hydrochloric acid to produce sodium chloride and hydrogen gas. However, handling this reaction can be risky due to its high exothermic nature.

There is a significant safety risk since the heat from the reaction might cause the acid to boil and spray.Boil and spatter poses a major risk to people's safety. In comparison, using sodium hydroxide to create sodium chloride is significantly safer.

When sodium hydroxide and an acid are combined, the reaction is significantly slower and less exothermic. This response is considerably simpler to manage and does not provide a significant risk to safety. Sodium hydroxide is also considerably simpler to get than sodium metal. As a result, it is the technique of choice for producing sodium chloride.

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A student carefully measures a certain quantity of four different substances
into trays that will be used in a laboratory exercise. Which of these trays would
contain the largest number of atoms?
Sample
Mass of tray with sample
Water
Mass of empty tray

Answers

The substance with the most atoms per mole also has the most moles per mole. The Avogadro's number can be used to determine a substance's atom count.

How can I determine how many atoms are present in 1 mole of a compound?

12 grams of pure carbon-12 weigh exactly one mole, or 6.022 x 1023 atoms, making one mole equivalent to 12 grams of pure carbon-12. • Avogadro's Number is the quantity of particles included in one mole (6.0221421 x 1023).

This figure indicates how many atoms, molecules, and ions make up one mole of a given chemical. All you have to do is determine which chemical contains the most moles. This substance will also contain the most atoms overall.

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12. The heat of combustion of ethene is Calculate the heat of formation of the co that AH (CO₂) and AH (H₂O) are -39 f​

Answers

10_20 20_30 30_40 40_50 50_60

Determine the number of particles for
25 g Na

Answers

(SOMEONE ELSE'S ANSWER TO THE SAME QUESTION I FOUND I HOPE THIS HELPS!) Given:

mass of Na₂SO₄ = 25.0 g

Required:

moles of Na

number of Na particles

Solution: (moles of Na)

Step 1: Calculate the molar mass of Na₂SO₄.

molar mass of Na₂SO₄ = (22.99 g/mol × 2) + (32.07 g/mol × 1) + (16.00 g/mol × 4)

molar mass of Na₂SO₄ = 142.05 g/mol

Step 2: Calculate the number of moles of Na by using dimensional analysis.

Since there are 2 mol of Na in 1 mol of Na₂SO₄, the number of moles of Na is

Solution: (number of Na particles)

which is not one of the four elements that make up the vast majority (96%) of molecules in our body?

Answers

The element that is not one of the four elements that make up the vast majority (96%) of molecules in our body is gold. Option C is correct.

The four elements that make up the vast majority (96%) of molecules in our body are carbon, oxygen, hydrogen, and nitrogen. These elements form the building blocks for molecules such as carbohydrates, lipids, proteins, and nucleic acids, which are essential for life.

While gold is a chemical element and can be found in trace amounts in the human body, it is not one of the four elements that make up the majority of molecules in our body.

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--The given question is incomplete, the complete question is

"Which is not one of the four elements that make up the vast majority (96%) of molecules in our body? A) Carbon B) Oxygen C) Gold D) Hydrogen E) Nitrogen"--

A student works a problem and finds that a compound has 0.074 moles of carbon and 0.148 moles of oxygen. What is the empirical formula of the compound?​

Answers

Given the number of moles of carbon in the compound is 0.074 and the number of moles of oxygen is 0.148 moles. Convert these numbers to whole number ratios we get the empirical formula of the compound as CO₂.

What is empirical formula ?

The empirical formula of a compound is derived from the number of moles of the constituent elements of the compound. The mole ratio of the elements give  the subscripts in the formula.

Given,

number of moles of carbon in the compound = 0.074 moles

number of moles of oxygen = 0.148 moles

mole ratio of C to O is 0.074 : 0.148.

Divide both numbers by 0.074 to get whole numbers. we will obtain 1:2.

Hence, carbon and oxygen are in the ratio of  1:2 and the formula of the compound is CO₂.

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Lithium has two naturally occurring isotopes lithium-6 and lithium-7
a. True
b. False

Answers

True, has two naturally occurring isotopes lithium-6 and lithium-7 has a natural abundance of 7.5%.

Lithium has two naturally occurring isotopes, lithium-6 and lithium-7. Lithium-6 is a stable isotope, meaning it does not undergo radioactive decay, and has a natural abundance of 7.5%. The heavier isotope, lithium-7, is an unstable isotope with a natural abundance of 92.5%. It is a low-energy beta emitter with a half-life of 8.5 hours. The two isotopes behave differently in chemical reactions and can be used to trace the origin of materials. Lithium-6 is used in nuclear reactors to control the release of energy, and Lithium-7 is used in Nuclear Magnetic Resonance imaging and spectroscopy. Both isotopes of lithium are essential for many industries, including aerospace and pharmaceuticals.

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a 29.3 ml sample of a 1.4 m potassium chloride solution is mixed with 36.8 ml of a 1.06 m lead(ii) nitrate solution and a precipitate forms. the solid is collected, dried, and found to have a mass of 2.00 g. what is the percent yield? enter to 2 decimal places

Answers

A precipitate occurs when a 29.3 ml sample of a 1.4 m potassium chloride solution and a 36.8 ml sample of a 1.06 m lead(ii) nitrate solution are combined. The solid is gathered, dried, and determined to weigh 2.00 g. 36.70% is the percent yield.

To calculate the percent yield of the reaction, we need to compare the actual yield with the theoretical yield, and express the result as a percentage.

According to the balanced equation, 2 moles of KCl react with 1 mole of Pb(NO3)2 to produce 1 mole of PbCl2. Therefore, the theoretical yield of PbCl2 is:0.0196 mol.

The molar mass of PbCl2 is 278.10 g/mol, so the theoretical mass of PbCl2 is:5.454

The actual yield of PbCl2 is given as 2.00 g. Therefore, the percent yield is:

percent yield = actual yield / theoretical yield x 100% = 2.00 g / 5.454 g x 100% = 36.70%

Rounding to two decimal places, the percent yield is 36.70%.

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lassify each of the substances as an atomic element, molecular element, molecular compound, or ionic compound. a. fluorine b. n2o c. silver d. k2o e. fe2o3

Answers

A class of chemical compound known as an ionic compound is made up of positively charged ions (cations) and negatively charged ions (anions) that are held together by electrostatic forces or ionic bonds

Ionic compounds: what are they?

. Typically, the formation of these compounds involves the transfer of electrons from a metal to a non-metal, which produces positive and negative ions.

At room temperature, ionic compounds are typically solid because they have high melting and boiling points. Additionally, when melted or dissolved, they conduct electricity. Ionic compounds include things like calcium carbonate (CaCO3), magnesium oxide (MgO), and sodium chloride (NaCl).

a. Fluorine - Atomic element

b. N2O - Molecular compound

c. Silver - Atomic element

d. K2O - Ionic compound

e. Fe2O3 - Ionic compound

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calculate the ph of a 500-ml solution to which has been added 20 ml of 100 mm glycinamide hydrochloride

Answers

Being a weak acid (Ka = 5.6x104), the nitrous acid reacts with NaOH as follows: NaOH (l) + HNO2 = NaNO2 (aq) + H2O.

A 0.15 m naoh solution is used to titrate 100 ml of 0.15 m nitrous acid (HNO2). The pH of the initial solution is 2.04, 3.85 for the equivalence point, 8.06 for the point at which 80.0 ml of the base has been added, and 11.56 for the point at which 105 ml of the base have been added. There is initially simply a 0.12M HNO2 solution. Like Ka is: Ka is equal to [H+] [NO2]/[HNO2]. When the ions [H+] and [NO2] come from the same equilibrium, [H+] = [NO2] = x, 5.6x10⁻⁴ = X² / 0.15M. 8.4x10⁻⁵ = X². X = [H⁺] = 9.165x10⁻³M. Since pH = -log [H+], pH = 2.04.

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What is the molecular formula of a compound that has a molecular weight of 240. 0 grams?. A 5. 00-gram sample contains 2. 00 grams of carbon, 0. 34 grams of hydrogen, and 2. 69 grams of oxygen

Answers

The molecular formula of the compound is C₂H₂O.

The molecular formula of a compound can be determined by finding the ratio of the moles of each element in the compound, and then using that ratio to write the formula.

The number of moles of carbon can be found by dividing the mass of carbon by its molar mass:

n_C = 2.00 g / (12.01 g/mol) = 0.166 mol

The number of moles of hydrogen can be found by dividing the mass of hydrogen by its molar mass:

n_H = 0.34 g / (1.01 g/mol) = 0.338 mol

The number of moles of oxygen can be found by dividing the mass of oxygen by its molar mass:

n_O = 2.69 g / (16.00 g/mol) = 0.168 mol

Next, we need to find the ratio of moles of each element in the compound. To do this, we divide the number of moles of each element by the total number of moles:

n_C / (n_C + n_H + n_O) = 0.166 / (0.166 + 0.338 + 0.168) = 0.166 / 0.672 = 0.246

n_H / (n_C + n_H + n_O) = 0.338 / (0.166 + 0.338 + 0.168) = 0.338 / 0.672 = 0.500

n_O / (n_C + n_H + n_O) = 0.168 / (0.166 + 0.338 + 0.168) = 0.168 / 0.672 = 0.250

We use these ratios to write the molecular formula:

C_x H_y O_z where x = 0.246, y = 0.500, and z = 0.250

The molecular formula of the compound is then obtained by multiplying each ratio by the smallest whole number that results in integers for x, y, and z:

C_x H_y O_z = C_(0.246 × 2) H_(0.500 × 2) O_(0.250 × 2) = C_0.492 H_1.000 O_0.500

Therefore, the molecular formula of the compound is C₂H₂O.

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based on the structural studies, when nag3 interacts with amino acids in hew, it can hydrogen bond to the side chains of the amino acids at all of the positions described except for the amino acid at which position?

Answers

NAG3 is able to hydrogen bond to the side chains of all of the amino acids except for the amino acid at the position of the 5' end of the peptide bond. This is because the 5' end of the peptide bond is typically blocked by the N-terminal amino group of the  N- acetyl glucosamine molecule.

NAG3 is a molecule found in some polysaccharides (carbohydrates) and is able to interact with amino acids in a protein through hydrogen bonding. This interaction between NAG3 and amino acids can occur with all of the side chains of the amino acids, except for the one at the position of the 5' end of the peptide bond. The peptide bond is a chemical bond between two amino acids that links them together in a protein. The 5' end of the peptide bond refers to the end of the bond that is closer to the N-terminal (beginning) of the protein.

The reason why NAG3 cannot hydrogen bond with the amino acid at the 5' end of the peptide bond is because this end is typically blocked by the N-terminal amino group of the N-acetylglucosamine molecule. This blocking effect prevents NAG3 from forming a hydrogen bond with the amino acid at this position, which is why NAG3 can hydrogen bond to all other side chains of the amino acids except for this one.

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A total of 8 L of He is stored at sea level (1013 mb). If the gas is carried to the top of a mountain where the pressure is 500 mb, what volume will it occupy if the temperature and mass are held constant?

Answers

Here, the final volume can be determined using Boyle's law. The volume at 1013 mb pressure  is 8 L. Then the volume at  500 mb will be 16 L.

What is Boyle's law ?

Boyle's law states that, at constant temperature, the volume of a gas is inversely  proportional to the pressure of the gas.

Hence, PV = a constant.

Let P1 and V1 be the initial pressure  and volume and P2 and V2  be the final pressure and volume then we can write it as,

P1 V1 = P2 V2.

Given that, P1 = 1013 mb

P2 = 500 mb

V1 = 8 l

V2 = P1 V1 / P2

V2  = 1013 mb  × 8 L /500 mb

     = 16 L.

Therefore, the volume of the gas at a pressure of 500 mb is 16 l.

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how to calculate the change in temperature of the cold water and the change in temperature of the hot water

Answers

To calculate the change in temperature of the cold water and the hot water is

ΔT = T (final) - T (initial)

To calculate the change in temperature you need to know the initial temperature of each water sample and the final temperature after they are mixed.

where ΔT represents the change in temperature, T final represents the final temperature, and T initial represents the initial temperature.

For example, if you have 50 grams of cold water at 10°C and 50 grams of hot water at 80°C, and after mixing, the final temperature is 60°C, then you can calculate the change in temperature for the cold water as follows:

ΔTcold water = T final - T initial cold water = 60°C - 10°C = 50°C

And for the hot water:

ΔT hot water = T final - T initial hot water = 60°C - 80°C = -20°C

the change in temperature of the cold water is positive, which means that its temperature has increased, while the change in temperature of the hot water is negative, which means that its temperature has decreased.

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PLEASE PLEASE HELP!! I WILL GIVE BRAINLYEST 5 STARS, A THANKS, AND 100 POINTS!!!!
Plate Tectonics Lab Report
Instructions: In the Plate Tectonics lab you will investigate the interactions between continental and oceanic plates at convergent, divergent, and transform boundaries around the globe. Record your observations in the lab report below. You will submit your completed report.

Name and Title:
Include your name, instructor's name, date, and name of lab.


Objective(s):
In your own words, what was the purpose of this lab?


Hypothesis:
In this section, please include the if/then statements you developed during your lab activity for each location on the map. These statements reflect your predicted outcomes for the experiment.


Location One: Select two events that you predict will be observed. If I explore two continental plates at a convergent boundary, then I will observe:

earthquakes
faults
ocean formation
mountains
volcanoes
island chains
seafloor spreading
Location Two: Select three events that you predict will be observed. If I explore two continental plates at a divergent boundary, then I will observe:

earthquakes
faults
ocean formation
mountains
volcanoes
island chains
seafloor spreading
Location Three: Select three events that you predict will be observed. If I explore two continental plates at a transform boundary, then I will observe:

earthquakes
faults
ocean formation
mountains
volcanoes
island chains
seafloor spreading
Location Four: Select two events that you predict will be observed. If I explore two oceanic plates at a convergent boundary, then I will observe:

earthquakes
faults
ocean formation
mountains
volcanoes
island chains
seafloor spreading
Location Five: Select three events that you predict will be observed. If I explore two oceanic plates at a divergent boundary, then I will observe:

earthquakes
faults
ocean formation
mountains
volcanoes
island chains
seafloor spreading
Location Six: Select two events that you predict will be observed. If I explore two oceanic plates at a transform boundary, then I will observe:

earthquakes
faults
ocean formation
mountains
volcanoes
island chains
seafloor spreading

Procedure:
The procedures are listed in your virtual lab. You do not need to repeat them here. Please be sure to identify the test variable (independent variable), outcome variable (dependent variable).

Reminder: Test variable = the item you are changing or manipulating; Outcome variable = the item you are measuring

Test variable (independent variable):
Outcome variable (dependent variable):

Data:
Record the data from each location below.

Location Name Boundary Type
(C=Convergent, D=Divergent, or T=Transform) Year Observed
(5, 10, or 20 million years) Geologic Events Observed
(earthquakes, faults, ocean formation, mountains, volcanoes, island chains, seafloor spreading)
Location One
Himalayas 5 Event 1-
20 Event 2-
Location Two
East Africa 5 Event 1-
10 Event 2-
20 Event 3-
Location Three
San Andreas fault zone 5 Event 1-
10 Event 2-
20 Event 3-
Location Four
Aleutian Islands 5 Event 1-
20 Event 2-
Location Five
Mid-Atlantic Ridge 5 Event 1-
10 Event 2-
20 Event 3-
Location Six
Alpine Fault 5 Event 1-
20 Event 2-
Conclusion:
Your conclusion will include a summary of the lab results and an interpretation of the results. Please write in complete sentences.

What types of geological events or changes occur at divergent plate boundaries?
What types of geological events or changes occur at convergent plate boundaries?
What types of geological events or changes occur at transform plate boundaries?
Explain how these geological processes and interactions have changed Earth's surface through the years. Be sure to use evidence to support your answer.

Answers

Name and Title: Miles Junior

[Instructor's Name]: Tom Hales

[Date] - February, 7th , 2023.

Plate Tectonics Lab Report (see attached document)

Objective(s): The purpose of this lab was to investigate the interactions between continental and oceanic plates at convergent, divergent, and transform boundaries around the world and to record observations in the lab report.

What is the experiment about?

At divergent plate boundaries, geological events such as earthquakes, faults, and ocean formation occur. At convergent plate boundaries, earthquakes, faults, mountains, and volcanoes occur. At transform plate boundaries, earthquakes and faults occur.

Through the years, these geological processes and interactions have changed the Earth's surface by creating new land, causing earthquakes, and creating new oceanic and continental crust. This lab showed that the interactions between plates at different boundaries have different outcomes and have a significant impact on the Earth's surface over time.

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help me 8th grade need answer ASAP!!!!!!!!!!!!!!!!! science

Answers

Examining the graph the missing parts are

21. pressure

22. Solid

23. condensation

24. gas

What is phase diagram?

A phase diagram is a graphical representation of the conditions (temperature, pressure, and composition) under which different phases of a substance exist in thermodynamic equilibrium with each other. It is a powerful tool for understanding the behavior of a substance under varying conditions, and for predicting the conditions under which a particular phase of the substance will form or transform into another phase.

A typical phase diagram shows the boundary lines separating different phases, such as solid, liquid, and gas, and indicates the conditions under which each phase is stable.

The phase diagram can also indicate the conditions under which a substance will undergo a phase transition, such as melting or boiling, and the conditions under which the substance will be in a single phase, such as a supercritical fluid.

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PLS HELP I WILL GIVE BRAINLIST

Answers

Answer:

plants make their own food using the process of photosynthesis.  plants capture energy from sunlight  which they use to combine carbon dioxide and water.  the products include  glucose  which is food for the plant the other product is oxygen gas.

Explanation:

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Answer:

Hi there!

Plants make their own food using the process of photosynthesis.  

Plants capture energy from sunlight which they use to combine carbon dioxide and water.

The products include glucose  which is food for the plant the other product is oxygen gas.

The other product is oxygen.

Explanation:

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What phase of matter holds its shape, has definite volume and is rigid?

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solids, phase of matter holds its shape, has definite volume and is rigid

One of the three fundamental states of matter, along with liquid and gas. (Ionized gases or plasmas are occasionally regarded as the fourth state of matter.) Because the energy of atoms lowers when they occupy a reasonably organised, three-dimensional structure, a solid develops from a liquid or gas. Solids differ from liquids and gases in that they have particular properties. For instance, all solids can withstand forces that are parallel or perpendicular to a surface (i.e., normal or shear loads, respectively). Those characteristics are influenced by the solid's constituent atoms' characteristics, their arrangement, and the forces that act between them.

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how many grams of solute are present in 35.0 ml of 0.236 m sodium sulfate? a. what is the molarity of the sodium ions?

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The molarity of sodium ions is 0.118

Molarity (M) is the amount of a substance in a sure extent of solution. Molarity is described because the moles of a solute are in keeping with the liters of an answer. Molarity is also referred to as the molar concentration of an answer.

The molarity of a given solution is described as the overall quantity of moles of solute per liter of answer. The molality of an answer is depending on the adjustments in physical properties of the machine along with strain and temperature as unlike mass, the volume of the gadget adjusts with the change in bodily situations of the gadget. Molarity is represented through M, that's termed as molar. One molar is the molarity of a solution wherein one gram of solute is dissolved in a liter of answer.

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The element that has properties most similar to those of potassium is: _________

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The element that has properties most similar to those of potassium is rubidium (Rb).

Potassium (K) and Rubidium (Rb) are both members of Group 1 in the periodic table, also known as the "alkali metals". This group of elements is characterized by its high reactivity, low ionization energy, and the presence of a single valence electron. As a result, both potassium and rubidium are highly reactive and easily form compounds with other elements. In terms of physical properties, both potassium and rubidium are soft, silvery-white metals that are relatively low in density and have relatively low melting and boiling points. Furthermore, they are both highly soluble in water and are highly reactive with air, forming a protective oxide layer that helps to prevent further corrosion. In summary, potassium and rubidium have very similar properties and are both highly reactive, soft, silvery-white metals.

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1. Calculate the enthalpy change for the dissolution of SO3 in water to give H₂SO4: SO3(g) + H₂O(1)→ H₂SO4)(1) f Given: AH (SO3) = -395 kJ mol-¹ AH (H₂O) = -286 kJ mol-¹ f AH (H₂SO4) = -811 kJ mol¹. f​

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The enthalpy change for the dissolution of SO3 in water to give H₂SO4 is -130 kJ/mol.

What is enthalpy change?

Enthalpy change (ΔH) is a thermodynamic quantity that represents the amount of heat energy absorbed or released in a chemical reaction or physical process at constant pressure.

The enthalpy change for the dissolution of SO3 in water to give H₂SO4 can be calculated using the equation: ΔH = ΔH products - ΔH reactants.

ΔH = (-811 kJ/mol) - [(−395 kJ/mol) + (-286 kJ/mol)] = -811 kJ/mol - (-681 kJ/mol) = -130 kJ/mol.

Therefore, the enthalpy change for the dissolution of SO3 in water to give H₂SO4 is -130 kJ/mol.

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how will you convert the masses of anhydrous MgSO4 and water to moles

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Convert the mass of anhydrate to moles: Mass of anhydrate / Molar mass anhydrate =120.4g / 120.4g/mol = 1 mole MgSO4.

What is mass?

One of a body's fundamental properties is its mass. In spite of having the same amount of matter in theory, different atoms and elementary particles have been found to have different masses.

In modern physics, there are a number of conceptually distinct but physically equivalent conceptions of mass. Experimentally, the body's resistance to acceleration (change in velocity) in the presence of a net force can be quantified as mass, which is the same as inertia. The mass of the object affects the gravitational pull it exerts on other bodies.

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if a sample of oxygen gas contains 7.2 x10^23 oxygen atoms, what is the mass of the sample of oxygen gas?

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The mass of the sample of oxygen gas is 115.2 x 10²³g.

What is The mass ?

The mass is the quantity of matter that an object has and is measured in kilograms (kg). It is an important physical property of objects and is related to the inertia of an object, which is the tendency of an object to resist changes in its motion. Mass is a scalar quantity, meaning it has only magnitude and no direction. Mass is also distinct from weight, which is a measure of the force of gravity on an object.

Mass = (Number of atoms) x (Atomic Mass of Oxygen)

In this case, the number of oxygen atoms is 7.2 x 10²³  and the atomic mass of oxygen is 16.0 g/mol.

Therefore, the mass of the sample of oxygen gas is:

Mass = (7.2 x 10²³  atoms) x (16.0 g/mol)

Mass = 115.2 x 10²³ g

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