State two ways that active transport is different from diffusion.

Answers

Answer 1

Answer: Active transport goes against the gradient causing it to use ATP (energy) unlike diffusion which uses passive. Two types of diffusion are simple diffusion and facilitated diffusion, whereas two types of active transport are primary and secondary active transport.

Explanation: Active energy uses more energy to function rather than diffusion which has multiple types causing it to be different from active transport. Hope this helps!!


Related Questions

2. after work-up, the product of the wittig reaction was recrystallized from hot isopropanol. you were told to do a gravity filtration using a heated stemless funnel if the solution appeared cloudy. what was the likely identity of compound that caused the cloudiness? it was also indicated that the filter should be washed with hot isopropanol if crystals started to form on the stemless funnel. why would hot isopropanol be used instead of cold isopropanol

Answers

The molecules of isopropyl alcohol do not stick collectively as strongly at room temperature as water molecules do, because of this the alcohol evaporates more quickly than water does.

DNA isn't soluble in ethanol, consequently, it will clump collectively and come to be visible. The colder the ethanol, the less soluble the DNA can be in it, which is why it's far critical for the ethanol to be kept bloodless.

Isopropyl Alcohol may also shape an ignitable vapor/air combination in closed tanks or boxes. Isopropyl Alcohol can react with AIR and OXYGEN over the years to shape unstable peroxides which can explode. Isopropyl Alcohol forms explosive combos, whilst heated, with ALUMINUM.

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how many outer atoms and lone pairs are present in a molecule with a square planar shape? outer atoms: lone pair(s):

Answers

The total outer atoms present in a molecule with planar shape are four and total lone pairs are 2.

Square planar shape is formed when there are four bonds and two lone pairs on the central atom.

The four atoms that are attached to the central atom are known as the four outer atoms. These atoms are arranged in such a way that it makes the square shape. The outer atoms are not always fours. They can be 2,3 or four.

The lone pairs are present on the central atom.

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4.why benzoic acid showed a smaller rf value than 9-fluorenone in the tlc result? explain thoroughly for full credit.

Answers

Benzoic acid showed a smaller rf value than 9-fluorenone in the TLC result because of its different attraction phase, stationary phase, and mobile phase.

The Rf esteem depends on the stationary stage and portable stage of the TLC plate. The Rf esteem of a compound changes based on how pulled it is to the stationary and versatile stages.

As a rule, the stationary stage is silica gel, which is very polar, so the versatile stage is moderately non-polar.  

Benzoic corrosive is moderately polar since it incorporates a carboxylic corrosive bunch. So, it would have a moo Rf value on a TLC plate with silica gel as the stationary stage and hexane as the versatile stage.

The Rf esteem on a TLC plate with silica gel as the stationary stage and 60:40 hexane: ethyl acetic acid derivation as the versatile stage.

The benzoic corrosive would be more pulled into the generally polar 60:40 hexane: ethyl acetic acid derivation than the non-polar hexane portable stage.

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(a) how many grams of water will be produced from the combustion of 3.36 g of ethane gas with 9.56 g of oxygen gas?

Answers

4.609 grams of water will be produced from the combustion of 3.36 g of ethane gas with 9.56 g of oxygen gas. The chemical element with the atomic number 8 and symbol O is called oxygen.

Oxygen belongs to the periodic table's chalcogen group, is a very reactive nonmetal, and an oxidizing agent that easily produces oxides with most elements as well as other compounds.

The chemical formula for ethane, a paraffin series hydrocarbon with the properties of being colourless, odorless, and gaseous, is C2H6. The only hydrocarbon with a single carbon-carbon bond has the simplest structural makeup, and that is ethane. The primary use of ethylene, a feedstock for making plastics, is ethane.

A variety of intermediate products, the majority of which are transformed into plastics, are produced by the petrochemical industry using ethylene, which is primarily produced from ethane.

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when a 30.0 ml sample of a 0.461 m aqueous nitrous acid solution is titrated with a 0.467 m aqueous barium hydroxide solution, what is the ph at the midpoint in the titration?

Answers

The pH at midpoint in the titration will be 3.16

The pH at the midpoint of the titration (the half-equivalence point) will be equal to the pKa of nitrous acid i.e. 3.16. The calculation is quite simple as the Ka value is 4.0 x 10^-4. To find pKa =  -log Ka.

Thus, pKa = -log (4.0 x 10^-4) = 3.16

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Balance the chemical equation for the
conversion of titanium dioxide to titanium chloride.
TiO₂ + Cl₂ + C → TICI + CO₂

Answers

Answer:

Explanation:

Here, we see that on the left-hand side the elements are as such -

TI - 1

O - 2

Cl - 2

C - 1

On the right-hand side, we have -

TI - 1

Cl - 1

C - 1

O - 2

So, this is how they will be balanced out -

2TIO₂ + Cl₂ + 2C => 2TICl + 2CO₂

Identify the calculations possible using only 28. 02 g/mol as a conversion factor.

Answers

The calculations possible using only 28.02 g/mol as a conversion factor are:

The grams of N2 in 5.03 x 10^20 moles of nitrogen gas.The moles of N2 in 3.94 grams of nitrogen gas.

How to do the conversion in chemistry?

One of many ways to do a conversion in chemistry is by using the conversion factor. It is an arithmetical multiplier for converting a quantity of a unit to the equivalent expressed in another.

Given the conversion factor of 28.02 g/mol (molar mass of nitrogen), we could calculate the grams of  N2 in 5.03 x 10^20 moles of nitrogen gas. We also can calculate the moles of N2 molecules in 3.94 grams of nitrogen gas by using 28.02 g/mol as the conversion factor.

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How does the atomic radius change as you move left to right in Period 3 from aluminum through chlorine? Refer to the periodic table.

A. it generally increases.

B. it does not change.

C. it generally decreases.

D. it varies unpredictably.

Answers

Answer:

C it generally decrease

Explanation:

Atomic radius of an element decrease from left to right of the periodic table

14.what volume, in milliliters, of 6.0 m naoh is needed to prepare 175 ml of 0.20 m naoh by dilution?

Answers

5.83ml of NaOH is needed to prepare 175 ml of 0.20 m by dilution.

Dilution is the process of “lowering the concentration of a solute in a solution by simply adding more solvent to the solution, such as water.” Diluting a solution enables adding more solvent without adding more solute.

into formula to find out the volume is ;

[tex]V_{1}[/tex][tex]N_{1}[/tex] = [tex]V_{2}N_{2}[/tex]

where [tex]V_{1}[/tex]= ?

[tex]V_{2}[/tex] = 175ml

[tex]N_{1}[/tex] = 6

[tex]N_{2}[/tex] = 0.2

So, ⇒ [tex]V_{1}[/tex]×6 = 175×0.2

[tex]V_{1}[/tex] = 5.83 ml

So, 5.83ml of NaOH is needed to prepare 175 ml of 0.20 m by dilution.

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What is the reduced element of H2O2 + PbS = PbSO4 + H2O

Answers

Answer:

4H₂O₂ + PbS = PbSO₄ + 4H₂O

2. A 12.2g sample of a hydrate was heated to a
constant mass of 10.2 grams. What is the
percent by mass of the water in the hydrate?

Answers

The percent by mass of the water in the hydrate is 83.6 percent.

Calculate the percent by the mass of each detail by using dividing the mass of that element by 1 mole of the compound by using the molar mass of the compound and multiplying by using one hundred%. consider your end result. the chances upload as much as a hundred%.

This system allows for displaying the bottom complete number of moles and the relative range of atoms of every detail in a compound. With the help of the empirical formulation, chemists can also calculate the actual molecular system. This component suggests the exact range of atoms within the compound.

Calculation:-

mass of hydrated sample = 12.2 gram

actual mass = 10.2

percentage mass = 10.2/12.2 × 100

                             =  83.6 percent.

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Metallic solids are solids composed of metal atoms that are held together by metallic bonds. They also tend to be good conductors because.

Answers

Metal solids tend to be good conductors because of the property of electron mobility.

Metal cations are the building blocks of metallic solids, and a delocalized "sea" of valence electrons holds them all together. Metallic solids are good conductors of heat and electricity because of the mobility of their electrons. Metal atoms bound together by metallic bonds form metallic solids, which are solids. These linkages act as expansive molecular orbitals that cover the entire solid.

The electrons in metallic solids are hence delocalized. They are not only linked together by two atoms in a sigma bond. Metals are effective heat and electricity conductors because they contain at least one free electron per atom, which means that it is not bound to any one atom and is therefore free to travel about the metal.

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where was oxygen discovered?

Answers

Oxygen was discovered in Poland

Answer: nowhere from trees

Explanation:

the reaction between copper and silver nitrate produces beautiful silver flakes and a bright blue copper (ii) nitrate solution according to the following reaction: cu 2agno3 2ag cu(no3)2 how many moles of agno3 will be needed to completely react with 10.0 g of cu?

Answers

0.3147128245 moles of AgNO₃ will be needed to completely react with 10.0 g of Cu.

Determine the number of moles of copper by dividing its mass by its molar mass.

moles Cu = mass Cu / MM Cu

moles Cu = 10.0 g/ 63.55 g/mol

moles Cu = 0.1573564123

Based on the balanced chemical reaction between copper and silver nitrate, 1 mole Cu needs 2 moles AgNO₃ to proceed with the reaction completely.

Cu + 2AgNO₃ ⇒ 2Ag + Cu(NO₃)₂

If there are 0.1573564123 moles Cu, then 0.3147128245 moles AgNO₃ is needed.

moles AgNO₃ = 0.1573564123 moles Cu(2 moles AgNO₃ / 1 mole Cu)

moles AgNO₃ = 0.3147128245

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hydrogen gas and nitrogen gas react to form ammonia gas. what volume of ammonia would be produced by this reaction if 2.9 ml of hydrogen were consumed?

Answers

On balancing the reaction of formation of ammonia we know that for every one mole of Nitrogen gas, we need three moles of Hydrogen gas to produce, two mole of the ammonia.

We are given with volume of Hydrogen gas i.e. 2.9 ml and are asked to determine the volume of ammonia

Since the volume of hydrogen is given as 2.9 ml = 2.9/1000 l

Mole of hydrogen =2.9/(22.4)(1000)

Mole of hydrogen = 0.129/1000 moles of H₂

Get the number of moles of NH₃

Number of moles of  NH₃ = 2/3 of moles of Hydrogen

Number of moles of  NH₃ = 2/3 * 0.129/1000 moles of H₂

Number of moles of  NH₃ =0.0863/1000 moles of  NH₃

Get the volume of ammonia  NH₃

Volume of ammonia produced = 0.0863 * 22.4

Volume of ammonia produced = 1.933 ml

Hence the volume of ammonia that would be produced by this reaction if 2.9 ml of hydrogen were consumed is 1.933 ml

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the combined gas law relates volume and temperature. the combined gas law relates volume and temperature. true false

Answers

True, Combined gas law does relates volume and temperature.

The combined gas law is effectively a restructuring of the ideal gas law, where both n (mols of gas) and R (already a constant) remain constant. It can be used to determine how changes in pressure, volume, or temperature can be used to calculate the conditions of the resulting system.

The combined gas law is a combination of the three previously known laws which are- Boyle’s law PV = K, Charles law V/T = K, and Gay-Lussac’s law P/T = K. Therefore, the formula of combined gas law is PV/T = K,

Where P = pressure, T = temperature, V = volume, K is constant.

One can adjust the formula for the combined gas law so as to compare two sets of conditions in one substance. In the equation, the figures for temperature (T), pressure (P), and volume (V) with subscripts of one are representative of the initial condition. Also, those with the subscripts of two are representative of the final condition.

So we can conclude that the combined gas law relates volume and temperature.

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The compound xanthophyll is a yellow compound found in bird feathers and flowers. xanthophyll contains atoms of carbon, hydrogen, and oxygen in the ratio 20:28:1. its molecules each have six oxygen atoms. write the molecular formula of xanthophyll

Answers

Molecular formula of xanthophyll is C HO .

In the question given that

Compund xanthophyll is yellow in color and found in bird feathers and flowers.

It contains carbon , hydrogen and oxygen in ratio 20:28:1 .

Molecular formula : Μultiply each index of the molecular formula by n to get the molecular formula, as denoted by the general empirical formula AxBy: (AxBy)n= AₙₓBₙᵧ

from the given ration of composition of elements in compund we can drive empirical formula of xanthophyll.

empirical formula is C₂₀H₂₈O

Now , time to drive molecular formula for xanthophyll.

Molar mass of xanthophyll = 659g/mol

empirical formula mass = 12×20+1× 28+2× 16 = 300 g/mol

n formula per unit = molar mass of compound / empirical formula mass

=> n = 659/ 300 = 2.1 ~ 2

So , Molecular formula of xanthophyll is (C₂₀H₂₈O)2 = C₄₀H₅₆O₂

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the separator breaks down making the process isobaric. will the benzene composition of the liquid leaving the separtor increase, decrease, or stay the same?

Answers

The process is isobaric as a result of the separator breaking down. The amount of benzene in the liquid leaving the separator increases, This is also known as isobaric process.

A thermodynamic process known as an isobaric process occurs at a fixed pressure. Greek words "iso" and "baros," which both signify equal pressure, were used to create the phrase "isobaric." Therefore, when the volume is increased or decreased, the constant pressure is obtained.

With the molecular formula C6H6, benzoene is an organic chemical substance. Six carbon atoms linked together in a planar ring, with one hydrogen atom connected to each, make up the benzene molecule. Benzene is a hydrocarbon since it is made up only of carbon and hydrogen atoms.

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what three flaws of the traditional periodic table does jeff moran feel he has addressed with his periodic spiral

Answers

The three major flaws addressed by Moran's periodic spiral are:

1) Since hydrogen possesses distinct attributes that set it apart from every other element in the table, it effectively does not belong to any of the table's 18 columns.

2) The lanthanides and actinides, which are the elements from each period of the f block, have comparable properties but are not shown in columns in the table.

3) The column-and-row layout of the  periodic table hides the continuity between the pieces, which is better represented by an a spiral.

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what kind of compound would 5A and 7A make

Answers

In periodic table group 5A consist of nitrogen, phosphorus, arsenic and the group 7A consist of all the halogens.

What is periodic table ?

The periodic table is a table form of chemical elements arranged according to atomic number, starting with hydrogen and ends to oganesson, which has the highest atomic number.

Because they are arranged in table form  of the elements, it is known as the periodic table. They're present in rows and columns. Periods and Groups are the names given to the horizontal rows that comes from left to right and the vertical columns that comes from top to bottom.

Thus, Group 5A contain nitrogen, phosphorus , arsenic compounds while in group 7A contain all the halogens.

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when energy-depleted elements associated with a proton are accepted by an organic molecule, the process is called

Answers

When energy depleted elements associated with a proton are accepted by an organic molecule the process is called Fermentation.

Fermentation is a metabolic process that causes a chemical change inside body by the actions of enzymes.

The main purpose of fermentation is to generate NAD+ and 32 ATP in the presence of oxygen.

Fermentation allows cells to survive without using ATP.

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A 59.3 g sample is heated to 98 °C and placed in a calorimeter containing 150.0 g of water. The water temperature rises from 19.0°C to 27.5 °C when energy transfer is complete. Calculate the specific heat of the sample

Answers

The specific heat of the object can be obtained as 1.3 J/Kg/°C.

What the specific heat capacity of the sample?

We know that energy can neither be created nor destroyed. The meaning of this is that, when the object looses heat, the heat must be transferred to the water since the heat energy can not be lost.

Thus;

Heat lost by the object = Heat gained by water.

Let us denote the heat lost using a negative sign.

Then;

H = mcdT

H = heat lost/ gained

m = mass of the object

dT = temperature change

Then;

-(59 * c * (27.5 - 98)) = 150 * 4.18 * (27.5 - 19))

4159.5c = 5329.5

c = 5329.5/4159.5

c = 1.3 J/Kg/°C

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Explain how to
count the
number of atoms
in a molecule
that has
parentheses ()
around it?

Answers

The subscript outside of the parentheses in such a formula indicates that you must multiply it by the number of atoms within to calculate the number of atoms.

How do atoms work?

One or more electrons with negative charges surround the core nucleus of an atom, which is made up of all of them. One or more protons and neutrons, which are comparatively heavy particles, can be found in the positively charged nucleus. The fundamental units of matter are called atoms.

How are atoms created?

It is made up of neutrons, which have no charge, and protons, with a positive charge. All regular, naturally occurring atoms contain protons, neutrons, and the electrons that orbit them. These particles have a lengthy lifetime. Along with these three categories of particles, more subatomic particles might be present.

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ammonia (nh3) chemically reacts with oxygen gas to produce nitric oxide and water. what mass of nitric oxide is produced by the reaction of 2.81 g of ammonia?

Answers

The mass of nitric oxide produced by the reaction of 2.81 grams of ammonia is 1.59 grams.

The equation for the reaction of ammonia and oxygen to produce Nitric oxide and water is,

4NH₃ + 5O₂ → 4NO + 6H₂O

From the reaction we can see,

4 moles of ammonia = 4 moles of nitrix oxide.

Mole of ammonia = moles of nitric oxide.

Moles = reacted/formed mass/ molar mass

Molar mass of ammonia = 17 g/mol.

Molar mass of nitric oxide = 30 g/mol.

Mass of ammonia reacted = 2.81 grams.

Putting values,

2.81 x 17 = Formed mass of nitric oxide x 30

Formed mass of nitric oxide  = 1.59grams.

The mass of nitric oxide formed is 1.59 grams.

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A chemist wants to make 100.0 mL of a 4.0 M sodium hydroxide (NaOH) solution.
Approximately what mass of NaOH is required to make the solution?

Answers

Mass of NaOH that is required to make the solution is 16 grams

To find out the mass of the Sodium hydroxide that is required to make the solution, we need to know the concentration terms.

The concentration of a substance is the quantity of solute present in a given quantity of solution. Concentrations are usually expressed in terms of molarity, defined as the number of moles of solute in 1 L of solution

The formula for concentration is given as:

Concentration =     Moles        

                             Vol of Solution

⇒ Number of moles = Volume × Concentration

                 Moles = 0.10 L × 4.0 Mol/L

                           = 0.4 Moles

Mass of NaOH = Number of moles × Molecular weight

                        = 0.4 mol × 40 ⇒ 16 grams

Therefore the mass of NaOH required to make the solution is 16 grams

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Calculate the time it will take to deposit 1 mole of silver if a current of 6A is passed through a solution of silver trioxonitrate (v) (F=96500)

Help!!!

Answers

The time taken to deposits one mole of silver if a current of 6 ampere is passed through the silver trioxonitrate solution is 16083 seconds or 283 minutes.

What is electrolysis?

Electrolysis is the process of converting electrical energy into chemical energy.  If current is passed between two electrodes which are immerse in an electrolyte solution, the metal which is reduced will deposited at the cathode.

The weight of the deposited metal w related with its equivalent weight z, current I and time t is :

w = zIt /96500.

One mole of silver is 108 g. Its equivalent weight also be 108 g Thus the time t is calculated as follows:

108 g = 108 × 6 × t /96500

      t = 96500/6

        = 160835 seconds or 268 minutes.

Hence, the time taken to deposits one mole of silver in this electrolysis is 268 minutes.

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what volume in \pu{ml}ml of 6.00 \pu{m}m acetic acid is needed to make 200 \pu{ml}ml of 0.05 \pu{m}m acetic acid?

Answers

1.6 ml volume of 6.00 m acetic acid is needed to 200 ml of 0.05 m acetic acid

WE know that

V1 * M1 = V2 * M2

V2 = 200 ml = 0.2 l

M1 = 6.00 m

M2 = 0.05 m

V1 * 6m = 0.2 l * 0.05 m

V1 = (0.2 * 0.05) / 6

V1 = 0.0016 L

V1 = 1.6 ml

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The electronic geometry of a carbon dioxide molecule would
be
a Linear
b T-shaped
c Trigonal bipyramidal
d Square pyramidal

Answers

Answer:

linear

Explanation:

carbon doixide is a nonpolar covalent bond since their polar charges repels each other at 180 degrees that is why its linear.

please rate it,thanks.

Is a process that is internally reversible and adiabatic necessarily isentropic?.

Answers

No, a process that is internally reversible and adiabatic is not necessarily isentropic. A process is isentropic if there is no change in entropy during the process. However, a process can be internally reversible and adiabatic and still have a change in entropy.

Entropy is a measure of the disorder of a system, and a reversible process can still have a change in entropy if the system is not in equilibrium.A reversible process is one that can be reversed without any change in entropy. However, if the system is not in equilibrium, the process can still have a change in entropy. This is because the entropy of a system is a measure of the disorder of the system, and a system that is not in equilibrium is not in a state of maximum disorder.

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Physical change involves a change in composition.

True
False

Answers

A physical change does indeed involve a change in composition. Hence,t the given statement is true.

A physical change is one in which the form of the matter is altered but this does not mean it transforms into another. By composition, we refer to the size and the shape of the matter which is altered after a physical change occurs.

A physical change is reversible. This means that even though the shape and size of the matter change completely, it can always be reverted back to how it was by applying all the conditions that were present there before.

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