300mL of 0.83mol/L acetic acid reacts with 12.0g of sodium carbonate at 21 C and 100.3kPa. What volume of dry carbon dioxide is released in this reaction? Water vapour pressure at this temperature is 2.49 kPa.

Answers

Answer 1

Answer:

The volume that carbon dioxide release is 2.83L

Explanation:

The reaction of acetic acid (CH₃COOH) with sodium carbonate (Na₂CO₃) is:

2 CH₃COOH + Na₂CO₃ →Na₂(CH₃COO)₂ + CO₂ + H₂O

Moles of acetic acid and sodium carbonate (Molar mass: 105.99g/mol) in the reaction are:

Acetic acid: 0.300L ₓ (0.83mol / L) = 0.249 moles.

Sodium carbonate: 12g ₓ (1mol / 105.99g) = 0.113 moles.

Based on the chemical equation, 2 moles of acetic acid reacts per moles of sodium carbonate. For a complete reaction of sodium carbonate you need:

0.113 moles Na₂CO₃ ₓ (2 moles CH₃COOH / 1 mole Na₂CO₃) = 0.226 moles of CH₃COOH

As you have 0.249 moles, Na₂CO₃ is limitng reactant.

As 1 mole of sodium carbonate produce 1 mole of CO₂, from 0.113 moles of Na₂CO₃ you obtain 0.113 moles of CO₂

Using PV = nRT, it is possible to find the volume that a gas occupies, thus:

V = nRT / P

n = 0.113 moles

R = 8.314 kPa×L/mol×K

T = 21°C + 273.15 = 294.15K

P = 100.3kPa - 2.49kPa = 97.81kPa

The vapor pressure is subtracted because is the pressure that water exerted.

Replacing:

V = 0.113mol×8.314 kPa×L/mol×K×294.15K / 97.81kPa

V = 2.83L

The volume that carbon dioxide release is 2.83L


Related Questions

How does the government control scientific research

Answers

Answer:

The government allocates a budget for research every year. The spending of that money is determined by government priorities. Some of the money is spent directly, in government-funded research centers.

Other money is distributed to other research institutions.

Money spent by other institutions for research has no government oversight.

Explanation:

A scanning tunneling microscope allows imaging of _______ particles.

Answers

Answer:

Atomic particles

Explanation:

A scanning tunneling microscope is an instrument used to view any surfaces at the levels of an atom. It was invented in the nineteenth century.

7.What is the chemical formula for Beryllium Nitride? *

Answers

Answer:

BE3N2

Explanation:

You have 3.00 m3 of a fixed mass of a gas at 150 kPa. Calculate the pressure if the volume is reduced to 1.20 m3 at a constant temperature.

Answers

Answer:

Solution:

Explanation:

V1   =   3.00m3

T1   =    150kPa

V2  =   1.20m3

T2  =     x

As ,

    V1    =    V2

     T1            T2

    3.00  =  1.20

      150        X

3.00 x X  =  150 x  1.20

3.00X  =   180

X   =  180

         3.00

X  =  60 kPa

     

The final pressure can be calculated using Boyle's law. The final pressure of the gas if the volume is increased from 3 m³ to 1.20 m³ with an initial pressure of 150 kPa is obtained as 375 kPa.

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, volume decreases with increase in pressure and vice versa.

If P₁ and V₁ be the initial pressure and volume respectively and P₂, V₂ be their final quantities, then the relation between them can be written as:

P₁  V₁  =  P₂ V₂ .

It is given that the initial volume and pressure is  3 m³ and 150 kPa and the final volume is  1.20 m³ . Then, the final pressure is calculated as follows:

P₂ =  P₁  V₁ / V₂

   = (3 m³  ×  150 kPa) /  1.20 m³

   = 375 kPa

Hence, the final pressure of the gas will be 375 kPa.

To find more on Boyle's law, refer here:

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2. The change in internal energy for the expansion of a gas sample is -4750 J. How much work is done if the gas sample loses 1125 J of heat to the surroundings? Is this work done by the gas or done by the surroundings?

Answers

Answer:

The work done by the gas expansion is 5875 J,

Since the work done is positive, the work is done by the gas on the surroundings.

Explanation:

Given;

change in internal energy, ΔU = -4750 J

heat transferred to the system, Q = 1125 J

The change in internal energy is given by;

ΔU = Q - W

Where;

W is the work done by the system

The work done by the system is calculated as;

W = Q - ΔU

W =  1125 - (-4750)

W = 1125 + 4750

W = 5875 J

Since the work done is positive, the work is done by the gas on the surroundings (energy flows from the gas to the surroundings).

Therefore, the work done by the gas expansion is 5875 J

15 Ethanoic acid reacts slowly with calcium carbonate.
Which statements explain why an increase in temperature increases the rate oft
1
The activation energy of the reaction is decreased.
2
There is an increase in collision rate.
3
The particles have more energy.
4
There will be fewer successful collisions.
А
1 and 2
B
1 and 3
с
2 and 3
D
2 and 4

Answers

Answer:

C

2and3

Explanation:

increase in temperature causes the particles to gain more energy

The answer is C. 2 and 3



Next, break down the equation shown into the skeletal half-reactions for oxidation and reduction. Which of
these pairs shows the two skeletal half-reactions with their correct assignments?
reduction half reaction: HNO, NO
oxidation half reaction SH,SO,
oxidation half reaction: HNO3 -> NO
reduction half reaction: SH2SO,
reduction half reaction: HNO3 -H,SO,
oxidation half reaction S -> H2SO4

Answers

Answer:

Its answer A

Explanation:

I just took the test

Answer:

A:

reduction half reaction: HNO3-> NO

oxidation half reaction S->H2SO4

Explanation:

Calculate relative mass of chlorine and boron by the help of given data Only 30 mins are left

Answers

35.453 (chlorine) + 10.811 (boron) = 46.264

Primary succession is most likely caused by?

Answers

Answer:

volcanic eruption.

mark my answer as brainlest......

Which of the following is an amorphous solid?
O
A. Diamond
B. Graphite
O C. Glass
O D. Iron

Answers

Answer:

C. Glass

Explanation:

Amorphous solids have a non-crystalline structure and no order. In that case, Diamonds, Graphite, and Iron all have a crystalline structure and order. You are left with C as your answer.

amorphous carbon is a noncrystalline form. Glass is actually neither a liquid nor a solid. It is an amorphous solid—a state somewhere between those two states of matter.

Practice: Solve each of the following problems using dimensional analysis (or another method). Show your work. (Use a periodic table to look up the necessary atomic masses.) A. 75 g KMnO4 = molecules KMnO4 B. 7.23 × 1024 Al atoms = grams Al C. 9.23 × 1023 Au atoms = moles Au D. 125 g H3PO4 = molecules H3PO4 E. 0.75 moles CO2 = total atoms

Answers

Answer:

Explanation:

A )

molecular weight of KMnO₄ =   158

75 g KMnO4 = 75 / 158 moles

= ( 75 / 158 )x 6.02 x 10²³ molecules

= 2.857 x 10²³ molecules KMnO4

so 75g KMnO₄ = 2.857 x 10²³ molecules KMnO4

B )

7.23 × 10²⁴ Al atoms = grams Al

72.3 X 10²³ Al atoms = 72.3 X 10²³ / 6.02 X 10²³ moles of Al

= 12 moles of Al

= 12 x 27 gm of Al

= 324 gm of Al .

7.23 × 10²⁴ Al atoms = 324 grams Al

C )

9.23 × 10²³ Au atoms = moles Au

9.23 × 10²³Au atoms = 9.23 × 10²³ / 6.02 x 10²³ moles of Au

= 1.53 moles of Au .

D )

125 g H₃PO₄ =   molecules H₃PO₄

125 g H₃PO₄ = 125 / 98 moles of H₃PO₄

= (125 / 98) x 6.02 x 10²³ molecules

= 7.678 x 10²³ molecules of H₃PO₄

125 g H₃PO₄ = 7.678 x 10²³  molecules H₃PO₄

E )

.75 moles of CO₂

= .75  x 6.02 x 10²³ molecules of CO₂

= 4.515 x 10²³ molecules of CO₂.

one molecule of CO₂ = 3 atoms

4.515 x 10²³ molecules of CO₂ = 3 x 4.515 x 10²³ atoms

= 13.545 x 10²³ atoms .

The molecules, atoms, and weight of all elements and compounds has been calculated.

(A) To calculate the molecules of a compound:

Molecules = [tex]\rm moles\;\times\;avagadro\;number[/tex]

Moles = [tex]\rm \frac{weight}{molecular\; weight}[/tex]

Moles of [tex]\rm KMnO_4[/tex] = [tex]\rm \frac{75}{158}[/tex]

Moles of [tex]\rm KMnO_4[/tex] = 0.474

Molecules of [tex]\rm KMnO_4[/tex] = [tex]\rm 0.474\;\times\;6.023\;\times\;10^2^3[/tex]

Molecules of [tex]\rm KMnO_4[/tex] = 2.85 [tex]\rm \times\;10^2^3[/tex]

(B) Weight of Al:

moles = [tex]\rm \frac{atoms}{avagadro\;number}[/tex]

Moles of Al = [tex]\rm \frac{7.23\;\times\;10^2^4}{6.023\;\times\;10^2^3}[/tex]

Moles of Al = 12

Weight of Al = [tex]\rm moles\;\times\;molecular\;weight[/tex]

Weight of Al = 12 [tex]\times[/tex] 27

Weight of Al = 324 grams

(C) Moles = [tex]\rm \frac{atoms}{avagadro\;number}[/tex]

Moles of Au = [tex]\rm \frac{9.23\;\times\;10^2^3}{6.023\;\times\;10^2^3}[/tex]

Moles of Au = 1.53 mol/liters

(D) Molecules = [tex]\rm moles\;\times\;avagadro\;number[/tex]

Moles = [tex]\rm \frac{weight}{molecular\; weight}[/tex]

Moles of [tex]\rm H_3PO_4[/tex] = [tex]\rm \frac{125}{98}[/tex]

Moles of [tex]\rm H_3PO_4[/tex] = 1.275

Molecules of [tex]\rm H_3PO_4[/tex] = 1.275 [tex]\rm \times\;6.023\;\times\;10^2^3[/tex]

Molecules of [tex]\rm H_3PO_4[/tex] = [tex]\rm 7.678\;\times\;10^2^3[/tex]

(E) Atoms of [tex]\rm CO_2[/tex]:

Molecules = [tex]\rm moles\;\times\;avagadro\;number[/tex]

Molecules of [tex]\rm CO_2[/tex] = 0.75 [tex]\rm \times\;6.023\;\times\;10^2^3[/tex]

Molecules of [tex]\rm CO_2[/tex] = 4.515 [tex]\rm \times\;10^2^3[/tex]

1 molecule of [tex]\rm CO_2[/tex] = 3 atoms

4.515 [tex]\rm \times\;10^2^3[/tex] molecules = [tex]\rm 4.515\;\times\;10^2^3\;\times\;3[/tex]

Atoms of [tex]\rm CO_2[/tex] = 13.545 [tex]\rm \times\;6.023\;\times\;10^2^3[/tex]

For more information about the dimensional analysis conversion, refer the link:

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The weight of the buggy was 40N on Mars. When the buggy landed on Mars it rested on an area of 0.025 m2. Calculate the pressure exerted by the buggy on the surface of Mars

Answers

Answer:

The pressure exerted by the buggy on the surface of Mars is 1600 pascals.

Explanation:

The pressure is determined by the definition of stress, which is the force exerted by the buggy on the martian surface divided by the contact area of the latter:

[tex]\sigma = \frac{F}{A}[/tex]

Where:

[tex]\sigma[/tex] - Stress, measured in pascals.

[tex]F[/tex] - Force, measured in newtons.

[tex]A[/tex] - Area, measured in square meters.

The force is the weight of the buggy (40 N) and [tex]A = 0.025\,m^{2}[/tex], the stress is now calculated:

[tex]\sigma = \frac{40\,N}{0.025\,m^{2}}[/tex]

[tex]\sigma = 1600\,Pa[/tex]

The pressure exerted by the buggy on the surface of Mars is 1600 pascals.

What is an ethical topic?

Answers

Answer:

its an issue

Explanation:

google words not mine

"ethical issue. A problem or situation that requires a person or organization to choose between alternatives that must be evaluated as right (ethical) or wrong (unethical). ... When considering this problem, lawyers may do well to ignore the letter of the law and realize that it is, at its heart, an ethical issue."

HURRY IM ON A TIMER

Which types of waves requires matter to carry energy?
A.electromagnetic waves only
B.mechanical waves only
C.electromagnetic and mechanical waves
D.longitudinal and electromagnetic waves​

Answers

Answer:

B: Mechanical waves only.

Explanation:

'Mechanical waves require medium in order to transport their energy from one location to another.'

Hope this helps!

Answer:

Mechanical waves requires matter to carry enegry.

As mechanical waves are defined as the wave which requires any medium to transfer enegry from one place to another place.

so, the answer is Mechanical waves.

hope it helps..

Globalization refers to the __________. A. idea that politics is becoming more about local community issues B. scientific community's consensus on the human causes of global climate change C. changes in transportation and communication technologies since the 1980s D. growing lack of cultural diversity

Answers

Answer:

scientific community's consensus on the human causes of global climate change

Explanation:

From where in the solar system did scientists conduct their spectral anaylses in 1948? How do you know?

Answers

Answer:

They conducted it from earth

Explanation:

There had never been anything capable of observing it from space launched at that time because Sputnik wasn't even launched

You arrive at a crime scene and are told the body of the victim is in the 10 m deep pool. You walk over to what you are told is a 12 m in diameter, cylindrical pool. From the outside of the pool, you can see that the body looks badly burnt. Your partner says, “It looks like our victim had been burned alive and tried to put out the fire by jumping in the pool. The victim likely drowned to death.”

Something does not sit right with you though. If there was a fire, where did it start? There are no signs of combustion anywhere. You aren’t so sure and ask the crime scene investigator to run a sample of the pool water before letting anybody try to pull the body out.

The CSI comes back to you and tells you that normal pool water pH is roughly around 7.2, but the pool pH is actually highly basic at a level of 13 with a concentration of hydroxide ions at 1.0 x 10-1 mol/L. It becomes obvious to you that the body wasn’t burned before going in to the pool , but AFTER and there was no fire needed!

You order the body to be removed from the pool, but the CSI interjects, “It would be too dangerous with a pH that high. I suggest you get some vinegar from the store and pour it in to the pool before hand to drop the pH to 7. Draining the pool would take far too long and we need to examine the body as soon as possible.” She asks one of your constables to go to the store to purchase 5 – 4L jugs of vinegar (pH = 2) to pour in the pool, as she states it is enough to bring the pH to a safe level of 7.

It sounds like it could be enough vinegar based on your knowledge of acids and bases, but you want to double-check her estimate before sending your constable to the store. Verify whether or not she is correct using calculations. A diagram may help you with your calculations.

Hint 1: 1m3 = 1000L

Hint 2: Vcylinder = πr2h

Answers

Answer:

The vinegar is not enough to neutralize the pool.

Explanation:

The [OH⁻] in the pool is 1.0x10⁻¹mol / L. To know how many moles of OH⁻ are in the solution, you must calculate volume of the pool thus:

V(pool) = πr²h

Where r, radius is d/2 = 12m/2 = 6m  and h is deep of the pool = 10m

V(pool) = π(6m)²*10

V(pool) = 1131m³

As 1m³ = 1000L:

1131m³  × (1000L / 1m³) = 1131000L in the pool.

And moles of OH⁻ are:

1.0x10⁻¹mol / L ₓ 1131000L = 131100 moles of OH⁻ are in the pool

The neutralization of OH⁻ with H⁺ is:

OH⁻ + H⁺ → H₂O

That means to neutralize the pool you must add 131100 moles of H⁺.

The H⁺ concentration in a vinegar pH = 2 is:

pH = -log [H⁺]

2 = -log [H⁺]

1x10⁻²M = [H⁺]

4L are just 4x10⁻² moles of [H⁺]. As you need 131100 moles of H⁺:

The vinegar is not enough to neutralize the pool.

How long can a virus be kept on a plastic bag?

Answers

Answer: the longest a virus that can be kept on a plastic bag is a few hours to a couple of days.

Explanation: hope that helped!(:

List 15 different things made of plastic in your house group them as thermoplastics and thermosetting plastics?

Answers

Answer:

Things made of thermoplastics

1) Plastic chairs

2) Plastic table

3) Plastic cups and plates

4) Nylon bags

5) Plastic cabinet

6) PVC pipes-

7) Internal electronic component such as gears

8) Vehicle dashboard

Things made of Thermosetting plastics

1) Electrical insulation

2) Handles of electrical fittings

3) Plastic hoses

4) Electric switch covering

5) Coverings of electronic gadgets

6) Silicone in adhesives

7) Keyboard

Explanation:

A plastic polymer material that becomes soft upon heating and hard once again when cooled such that the material can be repeatedly or cyclically cooled and heated numerous times with its chemical and physical properties remaining constant is known as a thermoplastic.

A plastic, polymer or resin that is hardened from its soft or liquid state by curing irreversibly such that it cannot be made soft again without a change in its chemical properties is known as a thermosetting plastic.

Plz answer this ASAP

Answers

Answer:

heymate !

Explanation:

The air pressure is higher at sea level and lower at higher altitudes ( top of the mountain ) .

This is because as we go higher and higher the air in the surroundings become thinner and thinner. And this does not suit you as your blood pressure at high altitudes are comparatively higher compared to the pressure around you at the top of the mountains .

And that is why some of us face breathing issues or nose bleeding due to the imbalance in the atmosphere .

And as we go lower below the sea level the pressure of air around us increases.

And that is why swimmers were tough suits while going down below the sea level, so that their bodies don't get crushed under the extreme pressure on the bottom of the sea .

There are also chances of the skull to get crushed if we don't were the suit while we are under he sea .

hope it would help !

Earth's gravitational potential energy: GPE = mgh = Gravity (9.81m/s2)
Mass (kg) x Height (m)
Kinetic energy: KE 1 / m2
How would you calculate the gravitational potential energy of a 2 kg bottle of
soda falling off of a kitchen table that is 0.76 m tall?

Answers

Answer:

14.91 Joules

Explanation:

First you just plug stuff into the potential energy due to gravity equation [Potential Energy=acceleration due to gravity * Mass * Height].

PEg= (9.81m/s2)*(2kg)*(0.76 m) <<<<<<<<

(Just plug in all the values)

We get PEg= 14.91 Joules

Physics is pretty much just converting one unit to another, Joules are also known as (kg m2/s2)

Carbon monoxide (CO) reacts with hydrogen (H2) to form methane (CH4) and water (H20).
CO(g) + 3H2(g) + CH4(g)+H20(9)
The reaction is at equilibrium at 1,000 K. The equilibrium constant of the reaction is 3.90. At equilibrium, the concentrations are as
follows.
[CO] = 0.30 M
[H2] = 0.10 M
[H20] = 0.020 M
What is the equilibrium concentration of CH, expressed in scientific notation?
0.0059
5.9 x 10-2
0.059
5.9 x 102

Answers

Answer: The equilibrium concentration of [tex]CH_4[/tex] , expressed in scientific notation is [tex]5.9\times 10^{-2}M[/tex]

Explanation:

Equilibrium constant is the ratio of the concentration of products to the concentration of reactants each term raised to its stochiometric coefficients.

The given balanced equilibrium reaction is,

                          [tex]CO(g)+3H_2(g)\rightleftharpoons CH_4(g)+H_2O(g)[/tex]

At eqm. conc.     (0.30) M     (0.10) M      (x) M   (0.020) M

The expression for equilibrium constant for this reaction will be,

[tex]K_c=\frac{[CH_4]\times [H_2O]}{[CO]\times [H_2]^3}[/tex]

Now put all the given values in this expression, we get :

[tex]3.90=\frac{x\times (0.020)}{(0.30)\times (0.10)^3}[/tex]

By solving the term 'x', we get :

x = 0.059 M=  [tex]5.9\times 10^{-2}M[/tex]

Thus, the concentrations of [tex]CH_4[/tex] at equilibrium is :

Concentration of [tex]CH_4[/tex] = (x) M  = [tex]5.9\times 10^{-2}M[/tex]

The equilibrium concentration of [tex]CH_4[/tex] , expressed in scientific notation is [tex]5.9\times 10^{-2}M[/tex]

Answer:B

Explanation:B

An isotope contains 47 protons, 47 electrons, and 60 neutrons. What is the identity of the isotope?

Answers

Answer:

To find the identity of the isotope we must first calculate the mass number

Mass number (M) = A + Z

Where

A is the atomic number

Z is the neutron number

A = 47

Z = 60

M = 60 + 47 = 107

From the options above

The answer is option A

Hope this helps you

ionic compound (NH4)2SO4. b. Explain why it cannot be molecular by referring to the Lewis diagrams you drew above as well as the octet rule.

name the bleaching agent for cloth​

Answers

Hydrogen peroxide is one of the most common bleaching agents. It is the primary bleaching agent in the textile industry, and is also used in pulp, paper, and home laundry applications.

bleaching agent is a material that lightens or whitens a substrate through chemical reaction. The bleaching reactions usually involve oxidative or reductive processes that degrade color systems. These processes may involve the destruction or modification of chromophoric groups in the substrate as well as the degradation of color bodies into smaller, more soluble units that are more easily removed in the bleaching process. The most common bleaching agents generally fall into two categories: chlorine and its related compounds (such as sodium hypochlorite) and the peroxygen bleaching agents, such as hydrogen peroxide and sodium perborate. Reducing bleaches represent another category. Enzymes are a new category of bleaching agents. They are used for textile, paper, and pulp bleaching as well as for home laundering. Chlorine‐containing bleaching agents are the most cost‐effective bleaching agents known. They are also effective disinfectants, and water disinfection is often the largest use of many chlorine‐containing bleaching agents. They may be divided into four classes: chlorine, hypochlorites, N‐chloro compounds, and chlorine dioxide. Except to bleach wood pulp and flour, chlorine itself is rarely used as a bleaching agent. The principal form of hypochlorite produced is sodium hypochlorite. Other hypochlorites include calcium hypochlorite and bleach liquor, bleaching powder and tropical bleach. The principal solid chlorine bleaching agents are the chlorinated isocyanurates, eg, sodium dichloroisocyanurate dihydrate. Other N‐chloro compounds include halogenated hydantoins, and sodium N‐chlorobenzenesulfonamide (chloramine B). Chlorine dioxide is a gas that is more hazardous than chlorine. Large amounts for pulp bleaching are made by several processes in which sodium chlorate is reduced with chloride, methanol, or sulfur dioxide in highly acidic solutions by complex reactions. Hydrogen peroxide is one of the most common bleaching agents. It is the primary bleaching agent in the textile industry, and is also used in pulp, paper, and home laundry applications. Hydrogen peroxide reacts with many compounds, such as borates, carbonates, pyrophosphates, sulfates, etc, to give peroxy compounds or peroxyhydrates. Peracids have superior cold water bleaching capability versus hydrogen peroxide because of the greater electrophilicity of the peracid peroxygen moiety. Lower wash temperatures and phosphate reductions or bans in detergent systems account for the recent utilization and vast literature of peracids in textile bleaching. The reducing agents generally used in bleaching include sulfur dioxide, sulfurous acid, bisulfites, sulfites, hydrosulfite (dithionites), sodium sulfoxylate formaldehyde, and sodium borohydride. These materials are used mainly in pulp and textile bleaching.

ANSWER:
Hydrogen peroxide is one of the bleaching agents that is most commonly used worldwide.
HOPE IT HELPS!!!

(Help please!!! important question!!!) A neutral atom has an atomic number of 20 and a mass number of 41; how many protons, neutrons, and electrons are found within the atom? (2 points) 21 protons 21 electrons and 20 neutrons, 20 protons 20 electrons and 21 neutrons, 1 protons 20 electron and 20 neutrons, 41 protons 41 electrons and 20 neutrons

Answers

Answer: 20 protons,20 electrons and 21 neutrons

Explanation: because the number of protons is the same as the atomic number, and if the atom is neutral it has the same number of protons and electrons. if the mass number is 41 it means that there are 21 neutrons because to find the mass number you have to add protons and neutrons, so 20 + 21 = 41 and to confirm it the neutrons have been subtracted from the mass number and the atomic number, so 41-20 = 21

To increase the current in a circuit, which can be increased? A. voltage B. resistance C. interference D. ohms

Answers

Answer:

voltage I'm just guessing

Answer:

Option A

Explanation:

Looking at the following formula:

I = V/R

Where V is voltage, I is current and R is resistance

In the above equation, Current and Voltage are in direct relationship such that if I is increased , V is also increased and vice versa. So, To increase the current, voltage should be increased.

Reptiles, amphibians, and fish are all cold-
blooded animals. Their body temperatures are
determined by their surroundings. How does a
cold blooded animal's ability to digest food
change in colder temperatures?
It digests food at the same rate regardless of
the temperature.
It digests food more quickly at lower
temperatures.
It digests food more slowly at lower
temperatures.

Answers

Answer:

it digests food more slowly at lower temperatures

It digests food more slowly at lower temperatures.  

• Based on the given question, it can be stated that the cold blooded animal's surroundings determine the temperature of their body and as an outcome, they possess the tendency to eat food differently.  

• It can be said that the cold blooded animals like amphibians, reptiles, and fishes all digest food more gradually at the time of cold in comparison to warmer climates.  

Thus, a cold blooded animal's tendency to digest food varies in colder temperatures as they digests food more slowly at lower temperatures.

To know more about:

https://brainly.com/question/11904373

According to the Bronsted Lowery definition, a base is a a substance that increases the hydroxide ion concentration in water b a substance that can accept a proton from an acid c a substance that can donated an electron pair to the formation of a covalent bond. d a substance tha increases the anion formed by the autoionization of the solven t e none of these

Answers

Answer:

B. a substance that can accept a proton from an acid

Explanation:

Johannes Brønsted and Martin Lowry independently developed definitions of acids and bases based on compounds abilities to either donate or accept protons (H+ ions).

The acid is the donor of the hydrogen ions while the bass is the acceptor of the hydrogen ions.

Back to the options, the correct option is B. Which is a substance that can accept a proton from an acid. All other options are incorrect.

describe two ways in which sodium chloride is different from sodium​

Answers

Answer:

sodium chloride is a component is a salt made of a metal Sodium and a non chlorine is a alone only and element and very less stable until bonded with them metal like a n, a, k or H

HELPPPPP ME

PLISSSSS ​

Answers

Answer:

pH value of a solution depends on the concentration of hydrogen ions

(pH = -log[H+(aq)].

Hydrochloric acid is a strong acid, while ethanoic acid is a weak acid. Strong acids ionize completely in water (to give ions which includes H+(aq)), while weak acids only ionize partially in water.  

Therefore, even if both hydrochloric acid and ethanoic acid are monobasic acids (each molecule can ionize completely to give 1 hydrogen ion), since hydrochloric acid ionizes completely in water and ethanoic acid does not ionize completely, the concentration of hydrogen ions in hydrochloric acid is higher than that of ethanoic acid, leading to a lower pH value for hydrochloric acid, while higher for ethanoic acid.

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