I NEED AN ANSWER ASAP! THIS IS DUE TOMARROW! at room temperature and standard pressure nitrogen is a gas and water is a liquid explain how the interactions between molecules cause a difference in the state of nitrogen and water

Answers

Answer 1

Nitrogen exists as a diatomic molecule, N2 (subscript 2). It exists as a gas at room temperature because of the type of interactions with other identical molecules: weak intermolecular forces are present between the molecules, specifically temporary dipole-dipole interactions.

These interactions are the second weakest type of intermolecular force (Van Der Waals and Hydrogen Bonds are the other two with Hydrogen Bonds being stronger).

Now the reason why Nitrogen exists as a gas is because these weak intermolecular forces can be overcome with little energy. Therefore, at room temperature, Nitrogen exists as a gas.

Now if we wanted to get liquid Nitrogen (quite common in Science demonstrations) we would have to cool Nitrogen down to -195.8°C (77.35°K). The energy of the particles would decrease so much that the dipole-dipole interactions would be strong enough to hold the molecules of Nitrogen together in a liquid state.

Answer 2

Intermolecular forces such as dipole-dipole forces, London dispersion forces exist between molecules and these depend on strength of electronegativity of molecule. Intermolecular forces of attraction decides the states of a matter.

What is intermolecular forces of attraction?

Intermolecular forces of attraction is force of attraction that make two molecule come closer. Intermolecular forces of attraction is directly proportional to the electronegativity of the molecule.

Intermolecular forces of attraction play an important role in deciding the states of a matter. Nitrogen is a gas because its molecule have vanderwaal force of attraction. Water is a liquid because its molecule have hydrogen bonding.

Therefore, intermolecular forces of attraction decides the states of a matter.

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Related Questions

five structural isomers, or constitutional isomers, have the formula c6h14 . draw the indicated isomers, grouped by number of carbon atoms in the main chain.

Answers

The first component is a six-carbon linear structure. Then we'll need to add a methyl group to a five-carbon linear structure.

Constitutional isomers:

This methyl group can be linked to either carbon 2 or carbon 3 in the carbon chain. Finally, we can make a four-carbon linear structure by adding two methyl groups. This addition can be done with carbon 2 alone or with carbon 2 and carbon 3 together.

The constitutional isomers have the same chemical formula, but their atom connections are different. Chain isomers, position isomers, and functional group isomers are the three forms of constitutional isomers.

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rom the following choices, identify those that are the inputs and outputs of the light reactions. (recall that inputs to chemical reactions are modified over the course of the reaction as they are converted into products. in other words, if something is required for a reaction to occur, and it does not remain in its original form when the reaction is complete, it is an input.)

Answers

In light reactions,

Input: light, water, NADP+, ADP

Output: O₂, ATP, NADPH

Not input or output: glucose, CO₂,G₃P

What is light reactions?

The energy storage molecule ATP and the reduced electron carrier NADPH are produced by the light-dependent reactions often called as light reaction using light energy, which is required for the subsequent stage of photosynthesis. Light reactions in plants occur in the thylakoid membranes of organelles referred to as chloroplasts.

The energy of sunshine is used in the light reactions to oxidize water (the electron donor) to O2, transfer the electrons to NADP+, and produce NADPH. ADP is transformed into ATP using some light energy. The Calvin cycle, which generates sugar, is then driven by the NADPH and ATP created.

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Complete question

From the following choices, identify those that are the inputs and outputs of the light reactions. (Recall that inputs to chemical reactions are modified over the course of the reaction as they are converted into products. In other words, if something is required for a reaction to occur, and it does not remain in its original form when the reaction is complete, it is an input.)

Choices are: light, water, NADP+, ADP, O₂, ATP, NADPH, glucose, CO₂,G₃P

Drag each item to the appropriate bin. If the item is not an input to or an output from the light reactions, drag it to the "not input or output" bin.

Which of the following shows the correctly balanced chemical reaction [tex]H_{2}SO_{4}[/tex] reacting with HI?

Answers

The correctly balanced chemical reaction of [tex]H_2SO_4[/tex] with HI is [tex]H_2SO_4 + 8HI -- > H_2S + 4I_2 + 4H_2O[/tex]

Balancing chemical equations

The equation of chemically balanced reactions must obey the law of conservation.

According to the law of conservation, the number of participating atoms in a reaction must be conserved. In other words, the number before must be the same as after the reaction.

However, the law opines that the forms of atoms may change after reactions.

Sulfuric acid reacts with hydrogen iodide to produce hydrogen sulfide, iodine molecules, and water according to the following equation:

[tex]H_2SO_4 + HI -- > H_2S + I_2 + H_2O[/tex]

However, the equation is yet to obey the law of conservation. The correctly balanced equation of the reaction would be: [tex]H_2SO_4 + 8HI -- > H_2S + 4I_2 + 4H_2O[/tex]

The above equation shows that the number of each atom in the reactants is the same as in the product.

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Which of the following shows the correctly balanced chemical reaction reacting with HI?

a. [tex]H_2SO_4 + 8HI -- > H_2S + 4I_2 + 4H_2O[/tex]

b. [tex]H_2SO_4 + 4HI -- > H_2S + 2I_2 + 2H_2O[/tex]

c. [tex]H_2SO_4 + HI -- > H_2S + I_2 + H_2O[/tex]

a solution is made by dissolving 52.0 g of sucrose, c12h22o11, in 117 g of water, producing a solution with a volume of 125 ml at 20°c. what is the expected osmotic pressure at 20°c?

Answers

The osmotic pressure is the least amount of pressure that must be applied to a solution in order to block the passage of the solution's pure solvent through a semipermeable membrane. Additionally, it is described as a measurement of a solution's propensity to osmotically absorb a pure solvent.

Temperature and concentration both have an impact on osmotic pressure. Temperature and solute concentration both have an impact on how much pressure is generated when water moves through a membrane. Osmotic pressure rises with temperature and concentration.

The osmotic pressure formula is

Op = C*R*T*i

where, Osmotic pressure is unknown, therefore OP

C = moles/liter of solution multiplied by the molarity of the solution.

Mass of sucrose or molar mass of sucrose equals a mole of sugar.

sucrose mass=52g

Sucrose's molar mass is 342g/mol (C12H22O11).

thus, 52/342 = 0.152 moles of sucrose.

Moles per liter of solution equals the solution's molarity.

117mL*1L/1000mL = 0.117L when converting from 117mL to liters where 1000mL = 1L

the solution's molarity is 0./0.117=1.299M.

R = 0.0821 L atm/mol/K, the universal gas constant.

20 degrees Celsius are converted to Kelvins using the formula T = absolute temperature = degrees in Kelvin. 20+273=293K

The van't Hoff Factor equals 1.

subsequently, the OP = 1.299*0.0821*293*1=31.24atm.

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The air pressure in a tank is measured using an inclined manometer whose arm is inclined 45 degree from the horizontal line. The densities of the air and water are 1. 225 kg/m3 and 1000 kg/m3, respectively. Determine the gauge pressure of air in the tank.

Answers

The gauge pressure of air in the tank is Pg= 1.076 psi

Gauge pressure (sometimes written as "gauge pressure") is measured relative to the local atmospheric pressure. Gauge pressure is thus zero when the pressure is the same as atmospheric pressure. Gauge pressure is indicated by pg, and is related to absolute pressure as follows: pg = p - pa, where pa is the local atmospheric pressure.

Given these data

Density of air = 1.225 kg/m3

Density of water = 1000 kg/m3

Note that the absolute pressure of air in the tank = 100kpa

Acceleration due to gravity = 9.8 m/s2

P=hρg

100 = h * 1000* 9.8

h = 98m

So replacing the value of h to calculate the atmospheric pressure

P=hρg

P= 98 *1.225*9.8

P= 1176.49

Substitute these values into the formula

Pg= p - pa,

Pg= 1176.49-100

Pg= 1.076 psi

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What do you think is happening to the soda and air in the can?

Answers

The soda and air will bubble, increasing the chances of an explosion.

Carbonation in soda is made up of carbon dioxide or CO2 bubbles. Carbonated beverages are injected with this colorless and odorless gas under high pressure during manufacture until the liquid is supersaturated with gas. Individuals determined, at the discretion of the Federal Aviation Surgeon, to have a static or non-progressive disqualifying condition.

In soda ash, the dispersed phase is a gas and the dispersion medium is a liquid. Soda ash is an example of a gas that dissolves in a liquid. Shaking the can introduces many small air bubbles into the liquid, so the dissolved gas is more likely to combine with existing air bubbles and evaporate rather than form new air bubbles. By avoiding the difficult step of shaking and frothing the soda, the gas can escape faster creating more fizz.

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An element reacts with oxygen to give a compound with a high melting point. This compound is also soluble in water. Which element - calcium or carbon is it likely to be? ​

Answers

Answer:

Calcium as carbon is insoluble in water

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It is calcium ! Not carbon because carbon is insoluble ( does not dissolve in water)
Please mark me brainliest!

using periodic table write full electron configuration of bromine so that all subshells in each principle energy cell are grouped together

Answers

The atomic number 35 and symbol Br identify the chemical element bromine. The third-lightest halogen, it is a volatile reddish-brown liquid that easily evaporates to produce a vapour of a similar color. Its characteristics fall in between iodine and chlorine.

Bromine's electron configuration is [Br]4s^2.3d^10.4p^5

A maximum of two electrons can fit into a s subshell, six into a p subshell, ten into a d subshell, and fourteen into a f subshell.

The maximum number of electrons in a subshell and the number of orbitals may both be calculated using the angular momentum quantum number, l, which stands for various subshells. These quantities can be found using the formulas 2 ( 2 l + 1 ) and 2 l + 1 correspondingly.

The s subshell is represented by a l of 0, the p subshell by a l of 1, the d subshell by a l of 2, and the f subshell by a l of 3.

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20 points

Answer each of these the following three questions saying if the amount of energy is going up, down, or staying the same. Support your argument with evidence.

Since more of the daily solar energy is staying here on earth—


1-.how does this affect the amount of energy in the universe?


2-.How does this affect the amount of energy in the earth system (all of the parts of the earth put together?


3-. How does this affect the amount of energy in the atmosphere?

Answers

1. The total energy of the universe is zero.

2. Because each part of the Earth's system is interrelated, changes in one part can lead to changes in one or all other parts.

For example, when a volcano erupts, lava can flow to the surface and block nearby valleys.

This new obstacle affects the local drainage system by creating lakes and diverting rivers.

Volcanic ash and gases that can be released during eruptions can be blown high into the atmosphere and affect the amount of solar energy that can reach the surface. Temperatures across the hemisphere could drop as a result.

3. Solar radiation warms the atmosphere and is fundamental to atmospheric composition.

Atmospheric radiation is the flow of electromagnetic energy between the sun and the surface of the earth influenced by clouds aerosols and gases in the earth's atmosphere. This includes both solar radiation sunlight and longwave thermal radiation.

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describe dehydration synthesis. in your answer, use starch synthesis as an example. be sure your answer includes the roles of starch, glucose, polymers, monomers, water, and covalent bonds in the process.

Answers

The chemical process known as dehydration synthesis, also known as a condensation reaction, involves the covalent bonding of two molecules to create a new molecule while simultaneously releasing a water molecule.

Complex carbohydrates, proteins, DNA, and RNA are just a few of the molecules that are formed via dehydration synthesis processes and are crucial to human health.

Dehydration synthesis forms covalent bonds between sugar molecules. The hydroxyl (-OH) group from one reactant joins with the hydrogen atom from the other to generate water throughout the reaction, while the leftover oxygen forms a glycosidic bond that binds the two molecules together. Repeated dehydration synthesis of individual glucose molecules (monomers) can result in the formation of a polymer, which is a long chain or branched chain structure.

Dehydration synthesis processes, in which one monomer establishes a covalent connection to another monomer (or expanding chain of monomers), release a water molecule in the process, are frequently used to create large biological molecules. Dehydration stands for the loss of the water molecule and synthesis for the development of a new bond, making it easy to recall what occurs.

The methods through which monomers can combine to produce polymers are quite diverse. For instance, starch, cellulose, and glycogen are all made up of glucose monomers. These three polysaccharides, which are categorized as carbohydrates, were created as a result of several glucose monomer-to-glucose dehydration synthesis processes. These three distinct polysaccharides, however, have varied characteristics and functions because of the way that glucose monomers combine, particularly the positions of the covalent connections between linked monomers and the orientation (stereochemistry) of the covalent bonds.

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Below is a list of some substances and their symbols.
Oxygen O
Sodium Chloride NaCl
Gold Au
Neon Ne
How many of these substances are an example of an element?

Answers

Answer:

3 of the 4 are elements

Explanation:

An element can be found on the periodic table, and are only composed of one type of atom. For example, carbon is an element because you can find it on the periodic table. Fire isn't an element because you can't find it on the periodic table. A short-cut to see if something is an element is to look at the number of capital letters in the formula. If it only has one capital letter, it is an element. If it has two or more, it is a compound. This works because elements always have only one capitalized letter. For example, Ne has a capitalized N. O has a capitalized O. This only works if you are given the molecular formula and not the name, so looking at the periodic table is the best thing to do. Oxygen is an element, Sodium chloride is a compound, Gold is an element, and Neon is an element

Oxygen, O
Gold, Au
Neon, Ne
Are elements because you can find them in the periodic table.

The solubility of a substance at varying temperatures is listed:

1.1 g solute per 100 g solution at 20oC
0.8 g of solute per 100 g solution at 30oC
0.4 g of solute per 100 g solution at 40oC
Based on the data, what can you infer about this solute?

A) The solute is a gas.

B) The solute is a solid.

C) The solute is a liquid.

D) The solute is concentrated.

Answers

The substance is a gas because its solubility decreases with temperature.

What is a solution?

A solution is formed when a solute is dissolved in a solvent. We know that the solubility has to do with how much of the solute in mass or moles that is able to be dissolved in the solvent at a given temperature. This shows that the temperature is very important when we are looking at solubility.

The solubility of a gas gets lesser and lesser as the temperature of the system increases and this is what we are seeing in the data that is shown in the question above.

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we want to design an implant step which will implant phosphorus ions through 50nm of sio 2 into an underlying silicon substrate such that the peak concentration in the substrate is 1 × 10 17 cm − 3 and the concentration at the sio 2 /si interface is 1 × 10 15 cm − 3 . what energy and dose would you use to achieve these conditions. assume that the stopping power of sio 2 is the same as that of silicon. neglect channeling effects.

Answers

According to the Gaussian distribution model, 8.8 x [tex]10^{11}[/tex][tex]cm^{-2}[/tex] energy is required to design the implant setup.

A probabilistic model called a "Gaussian mixture model" posits that all of the data points were produced by combining a limited number of Gaussian distributions with unknown parameters.

First, the mean and covariance functions of a Gaussian distribution model are the only variables that matter. Due to the fact that just the first and second order moments of the process need to be specified, this attribute makes model fitting easier. Second, it's not too difficult to solve the prediction problem using Gaussian distribution model.

Given:

At z = 50nm

C (50nm) = 1 x [tex]10^{16} cm^{-3}[/tex]

C (50nm) / Cp = 0.1

Calculations:

Using the Gaussian distribution model, the concentration as a function of depth can be related to peak concentration, Cp:

[tex]Cz = Cp * exp ( - \frac{(z - Rp)^2}{2\Delta R^2p} )[/tex]

Taking log on both sides,

[tex]\sqrt{2ln10}[/tex] = Rp – 0.05 / ΔRp = 2.416

To find an energy that gives Rp – 2.15 ΔRp = 0.05µm

(By trial and error method)

100 Kev Rp = 0.125, ΔRp = 0.035, Rp – 2.15 ΔRp = 0.048µm

120 Kev Rp = 0.15, ΔRp = 0.040, Rp – 2.15 ΔRp = 0.064µm

Interpolating linearly between 100 and 120 Kev gives about 103Kev.

At this energy, ΔRp = 0.035 µm

Therefore,

[tex]Q = \sqrt{2\pi } \Delta Rp Cp[/tex] = 8.8 x [tex]10^{11}[/tex][tex]cm^{-2}[/tex]

Result:

8.8 x [tex]10^{11}[/tex][tex]cm^{-2}[/tex] energy is required.

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Balance the following chemical reaction:
Al2(SO4)3 (aq) + K3PO4 (aq) → AIPO4 (S) + K2SO4 (aq)

Answers

Answer:

Al2(SO4)3 + 2 K3PO4 → 2 AlPO4 + 3 K2SO4

Explanation:

The balanced chemical equation for the given chemical reaction is Al₂(SO₄)₃ + 2 K₃PO₄[tex]\rightarrow[/tex] 2 AlPO₄ + 3 K₂SO₄.

What is chemical equation?

Chemical equation is a symbolic representation of a chemical reaction which is written in the form of symbols and chemical formulas.The reactants are present on the left hand side while the products are present on the right hand side.

A plus sign is present between reactants and products if they are more than one in any case and an arrow is present pointing towards the product side which indicates the direction of the reaction .There are coefficients present next to the chemical symbols and formulas .

The first chemical equation was put forth by Jean Beguin in 1615.By making use of chemical equations the direction of reaction ,state of reactants and products can be stated. In the chemical equations even the temperature to be maintained and catalyst can be mentioned.

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Consider the sn2 reaction between 1‑bromo‑2‑methylpropane and methoxide. Add curved arrows to the starting materials to indicate the flow of electrons. Draw the product species to show the balanced equation, including nonbonding electrons and formal charges.

Answers

1-bromo-2-methylpropane undergoes an Sn2 reaction with the methoxide to yield 1-methoxy-2-methylpropane (isobutyl methyl ether) and the bromide ion. Please see the reaction mechanism shown in the attached material.

Alkyl halides are excellent electrophiles because of the polar carbon-halogen bond that provides both the electrophilic carbon atom and the excellent leaving group in the form of the halide ion. When attacked by a nucleophile (such as the methoxide ion), they undergo an Sn2 reaction (bimolecular nucleophilic substitution).

The reaction mechanism of an Sn2 reaction consists of a single phase: the simultaneous attack by the nucleophile and the abstraction of the leaving group. This process implies that there is a transition state that contains a quasi-pentavalent carbon atom, as one bond is forming and the other is being dissolved.

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One mole of iron _____.

has the same mass as one mole of lead.

cannot be compared to lead because it is magnetic.

has less mass than one mole of lead.

has more mass than one mole of lead.

Answers

Answer:

One mole of O2 will have approximately the same mass as one mole of methanol (CH3OH).

Recall that: mole = mass/molar mass

Thus, one mole O2 will have a mass of:

                       mass = mole x molar mass

                                   = 1 x 32

                                     = 32 g

One mole of CH3OH = mass/molar mass

           mass = 1 x 32

                         = 32 g

Hence, 1 mole of O2 will have the same mass (32 g) as 1 mole of CH3OH

As a reminder, the atomic mass of an atom equals the mass of a mole of this atom.

Just so you know, a mole is defined as a quantity of 6.02x10^{23} things.

We know that the atomic mass of Oxygen is 16 so one mole of O2's mass is 16*2=32g.

So I guess we need to figure out something which a mole of will weight 32 g.

You can pick Ethanol which formula is CH3OH.

C has an atomic mass of 12

H has an atomic mass of 1

O has an atomic mass of 16

So one mole of CH3OH weights 12+(3*1)+16+1=32g which is the same amount.

Explanation:

30.00 g of a solid compound x contains 63.3% mn and 36.7% o by mass. when x is heated, 3.68 g of oxygen gas is evolved and a new solid compound y containing mn and o is formed.

Answers

The inorganic chemical with the formula MnO2 is manganese dioxide. Pyrolusite, a naturally occurring mineral and the primary manganese ore and component of manganese nodules, is this dark-brown to blackish solid.

Manganese is a chemical element with the atomic number 25 and the letter Mn in its name. In minerals, it is a hard, brittle, silvery metal that is frequently present next to iron. Manganese is a transition metal used mostly in the production of stainless steels and other industrial alloys.

Assume X weighs 100

Moles of Mn

= 54.94 /

63.3 (1 /54.94 ) = 1.51

Moles of O

= 16.00 /

36.7 (1 /16.00 ) = 2.29

the number of moles divided by the smallest (1.15 mol)

Mn O

1.15 /1.15 = 1.00

2.29 /1.15 = 1.99

Empirical Formula

MnO2

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Question
What is the density of a substance that has the mass of 14.5 g and the volume of 8 mL? (D=m/v) will this object float or sink?

Answers

Answer:

Sink

Explanation:

Density is defined as the amount of substance per unit volume, and is given by the formula below:

Density= mass ÷volume

Given that mass and volume, calculate the density of the substance:

Density of substance

= 14.5 ÷8

= 1.8125 g/mL

Compare the density of the substance with that of the medium it is place in, for example water:

The density of water is 0.9998395 g/mL, thus the density of the substance is greater than that of water.

Since the substance is more dense than water, it will sink in water.

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Base your answers to questions 1 and 2 on
the diagram below, which represents a solid material
of uniform composition.
2.0 cm
Density-2.7 g/cm³
-20 cm-
We
1. The mass of this piece of material is approximately
A) 32 g
Q4.4g
X) less
-3.0 cm
2. When this material is placed in a container of water, i
sinks to the bottom of the container. Compared to the
density of water, the density of this material is
B) greater
the same
B) 0.23 g
9.3 g

Answers

Answer:

A. 32 g

Explanation:

Density = 2.7 g/cm3

Volume = 2 x 2 x 3 = 12 cm3

Mass = dV = 2.7 x 12 = 32.4 g or 32 g

what is the molar mass of NaBr with solution

Answers

Sodium bromide (NaBr) has a molar mass of 102.890 grams per mole.

Why is molar mass significant?

The weight of one mole of a sample is referred to as the molar mass. Multiply the subscript (number of atoms) by the atomic mass of each component of the molecule to determine its molecular mass, and then add the masses of all the components together.

How can you calculate molar mass?

We first obtain the atomic weights of the individual elements in a periodic table in order to calculate the molar mass of a molecule. Then, we multiply the total number of atoms by each one's atomic mass. The molar mass is obtained by combining all of the atomic masses.

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ggggygyggyygygygygyggy

Answers

Answer:

ggggygyggyygygygygyggy

Explanation:

What's this for?

classify the indicated alkenes in terms of e/z stereoisomer configurations. an alkene a has four substituents. the alkene is placed horizontally. on the top left is c h 2 o h and on the top right is h. on the bottom left is an aldehyde and on the bottom right is o c h 3. the stereochemistry of alkene a can be classified as: neither z e a 6 membered ring has a hydroxy group on carbon 1. carbon 3 is an s p 2 carbon and bonded to another alkene alkene carbon. the other alkene carbon is bonded to a hydrogen and a methyl. the methyl is on the side opposite to carbon 2. the stereoche

Answers

The indicate alkanes in terms of e/z stereoisomer configuration is classified.

What is stereoisomer classification?

stereoisomer are the molecule that have the same molecular formula and sequence of bonded atoms.

It have chemical bond but they have different spital arrangments. Stereoisomer have two types

Configurational and conformational.

Sol-

stereoisomer of alkanes A is Z higher priority in each carbon oriented.

Thus the stereochemisty of alkanes C can be classified as Z.

And the stereochemisty of alkanes D is classified as non of either as per the question.

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Your are sailing along the coast of Australia. Explain why you won't be able to use Polaris to determine your latitude.​

Answers

We won't be able to use Polaris to determine the latitude if we are present south of the equator because from the south we can't see the Polaris.

How we can determine latitude?

We can determine latitude by measuring the angle of the North Star, which is called Polaris that is present above the horizon. There is no similarity to Polaris in the South, but to find your latitude if you are in the Southern hemisphere you can use a band, called the Southern cross and two stars called the Southern Pointers. Polaris cannot be seen from the south of the circuit. The altitude of a star is the estimation in degrees of the angle of the star above the horizon. which has an unusual name, the zenith. Polaris is used to determine the star is by no means the brightest star in the sky, and cannot help you determine longitude at all, as it is always on the meridian.

So we can conclude that Polaris is pointing directly toward the north pole there is no equivalent of Polaris in the South.

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Based on the graph below, what is the most likely explanation for what happened halfway through year 15?
A graph with Years on the x-axis from 14 to 16 and Rabbits on the y-axis from 0 to 400, by hundreds. The line begins above 400, drops to 350 at year 14, increases above 400 and drops to below 350 at year 15, increases to over 400 and drops to 200 at year 16.
a.
a hot summer
b.
a harsh winter
c.
a sharp increase in available land
d.
a sharp decrease in available land


ANsWER is D

Answers

The most likely explanation for what happened halfway through year 15 is D. a sharp decrease in available land.

What is the most likely explanation for what happened?

The term "population" refers to the average number of distinct residents in a particular area or region across time. They are individuals who are part of the same class of creatures. Halfway through year 15, the amount of land available begins to rapidly decline.

Beginning above 400, the line increases above 400 and declines below 350 at year 14, increases over 400 and rises to over 400 and drops to 200 at year 16, and so on.

Due to unfavorable weather and a lack of food, the number of rabbits drastically decreases during the cold winters and scorching summers. The population grows when the conditions are good, such as in the spring and summer, and the amount of land accessible shrinks as a result. As a result, there will be a dramatic drop in the amount of land that is available.

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URGENT!!
please help me figure this out :)

Answers

The variables of the ideal gas equation and their units of measurement are as follows:

P = pressure; atm, bar, mmHgV =volume of the gas; L, dm³ n = number of moles; molesT = temperature of the gas; KR = molar gas constant; L.Pa/K/mol

What is the formula of the ideal gas equation?

The ideal gas equation is an equation that shows the relationship between the four parameters used in gas measurements.

The four variables are:

volumepressuretemperaturenumber of moles

The ideal gas equation is given below:

PV = nRT

where:

P is the pressure of the gasV is the volume of the gas n is the number of moles of the gasT is the temperature of the gasR is the molar gas constant

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BRAINLEST If I were to change the 4 (4H2O) in the above problem, to a 2, what would happen to the amount of hydrogen and oxygen present?

Answers

Answer:

i didn't understand the question properly but i think the answer will be that amount of hydrogen will decrease while amount of oxygen will be same

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Identify: What type of eclipse is shown in the
diagram?

Answers

Answer: a annular eclipse

Explanation:

This is urban 67 meters. ms french bikes 3km. who biked farther?.

Answers

Answer:

Ms French

Explanation:

1km is equal to 1000m so ms French biked further

Calculate the pH of 1 × 10-2 molar aqueous solution of H2SO4

Answers

The pH of a 1 × 10-² molar aqueous solution of H2SO4 is 2.

How to calculate pH?

pH is the degree of acidity or alkalinity of a solution. The pH of a solution can be calculated by using the following formula;

pH = - log {H+}

According to this question, the concentration of 1 × 10-² molar aqueous solution of H2SO4. The pH of this solution can be calculated as follows:

pH = - log {0.01}

pH = 2

Therefore, the pH of the aqueous solution is 2.

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chemistry 1.17 living by chemistry answers?

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Answer:

Where's the actual question so we can help?

Explanation:

I don't see a question I can help with

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