What are balanced chemical equations

Answers

Answer 1

A balanced equation is an equation for a chemical reaction in which the number of atoms for each element in the reaction and the total charge are the same for both the reactants and the products

Answer 2

Final answer:

A balanced chemical equation equals the number of each type of atom on both sides, maintaining the law of conservation of matter and enabling stoichiometric calculations in chemical reactions.

Explanation:

A balanced chemical equation is a symbolic representation of a chemical reaction where the number of atoms for each element is equal on both the reactant and product sides, reflecting the law of conservation of matter. This balance is achieved by placing appropriate coefficients in front of the chemical formulas. For example, when carbon reacts with hydrogen gas to form methane (CH4), the balanced chemical equation would be: C (s) + 2 H2 (g) → CH4 (g). Here, we have one carbon atom on both sides and four hydrogen atoms on both sides, satisfying the balance.

The coefficients in a balanced equation give the relative amounts of reactants and products and are used to calculate stoichiometry, which is the measure of the quantitative relationships between the amounts of substances involved in the reaction. Balanced equations provide critical information for chemists to predict the amounts of products formed or reactants required in a given chemical reaction. Thus, writing proper balanced reactions is an essential skill in chemistry.


Related Questions

This is the process by which organisms transform chemical energy into a usable form for living, growing, and reproducing.

Answers

Final answer:

Cellular respiration is the process by which organisms transform chemical energy stored in glucose into a usable form, ATP, for living, growing, and reproducing.

Explanation:

The process by which organisms transform chemical energy into a usable form for living, growing, and reproducing is known as cellular respiration. This biological process happens within the cells of organisms, where energy stored in glucose (a type of sugar) is converted into ATP (Adenosine Triphosphate), the energy currency of cells. In essence, it is the conversion of chemical energy into a usable form for the essential functions of organisms like living, growing, and reproducing.

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Does arborist care for forests?

Answers

An arborist is a specialist in the care of individual trees. Arborists are knowledgeable about the needs of trees and are trained and equipped to provide proper care. does that help?

An arborist is someone who trims/ takes care of trees. Say you get a job at a tree company and you get called to trim or cut down a tree, you are an aborist. Because you trim trees doesn't necessarily mean you take care of forests. I would say no Aborists do not take care of forests.

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brainliest please!!

1.
Which process uses the products of photosynthesis as reactants?

DNA replication

protein synthesis

active transport

cellular respiration
2.
The diagram shows an energy transformation that typically occurs in plant cell plastids.
Which statement best describes this role of plastids in the plant cell?

Chloroplasts transform chemical energy into electromagnetic energy.

Chloroplasts transform light energy into chemical energy.

Mitochondria transform chemical energy into electromagnetic energy.

Mitochondria transform light energy into chemical energy.
3.

Cellulose is a carbohydrate and a polymer of glucose. Which statement best describes how
cellulose is formed within living organisms?

It is the result of a physical change that alters the shape of a compound.

It is the product of the decomposition of a much larger molecule.

It is constructed by connecting smaller monomer subunits.

It is assembled by bonding individual atoms.
4.
Which statement best describes a relationship between mitochondria and chloroplasts?

Chloroplasts release chemical energy from molecules and store it in mitochondria.

Chloroplasts convert light energy into chemical energy that can be used by mitochondria.

Mitochondria convert chemical energy into light energy that can be used by chloroplasts.

Mitochondria release chemical energy from molecules and store it in chloroplasts.
5.
A jackrabbit has large ears containing blood vessels that help it maintain a constant
body temperature by adjusting heat exchange with the surrounding environment.
Which characteristic of life is best described by this example?

homeostasis

growth

organization

energy use
6.
Which two statements correctly describe one similarity and one difference between
cellular respiration and photosynthesis?

statements 2 and 3

statements 3 and 4

statements 1 and 4

statements 1 and 2
7.
Plant cells use sunlight to make their own food. Which structure allows plant cells to perform
this function?

nucleus

mitochondrion

vacuole

chloroplast
8.
The indicated protein is part of a cell membrane. What is the most likely purpose
of this protein?

It attracts unbalanced electrical charges in the cell’s environment.

It releases stored chemical energy in membrane carbohydrates.

It allows passage of particles into and out of the cell.

It manufactures phospholipids to repair membrane damage.
9.
Which graph best shows how enzyme activity changes as the temperature is adjusted above
and below the enzyme’s optimum temperature?

10.
Which statement best describes how active transport differs from passive transport?

Only active transport allows substances to leave a cell.

Only active transport requires ATP.

Only active transport moves small particles.

Only active transport relies on a plasma membrane.

Answers

1. Cellular respiration: Photosynthesis produces glucose and oxygen, which are both reactants in cellular respiration for generating energy in cells.

2. Chloroplasts transform light energy into chemical energy: Plant cell plastids, specifically chloroplasts, capture sunlight's energy and convert it into chemical energy (glucose) used by the plant.

3. It is constructed by connecting smaller monomer subunits: Cellulose, a glucose polymer, is formed within living organisms by linking individual glucose molecules (monomers) together.

4. Chloroplasts convert light energy into chemical energy that can be used by mitochondria: Chloroplasts produce energy (glucose) used in mitochondria for cellular respiration, showcasing their complementary roles.

5. Homeostasis: The jackrabbit's ability to regulate body temperature through ear adjustments exhibits homeostasis, a key characteristic of life.

6. Statements 1 and 2: Both processes use organic molecules as reactants (similarity), but cellular respiration releases energy while photosynthesis stores it (difference).

7. Chloroplast: Plant cells utilize chloroplasts, specialized organelles containing chlorophyll, to capture sunlight and perform photosynthesis.

8. It allows passage of particles into and out of the cell: The membrane protein likely facilitates controlled movement of substances across the cell boundary, a crucial function.

9. Graph 3: Enzyme activity peaks at an optimal temperature and declines sharply above and below, as shown in Graph 3.

10. Only active transport requires ATP: Unlike passive transport, which utilizes concentration gradients, active transport actively pumps molecules against gradients, requiring energy (ATP).

Image Solve

Photosynthesis and cellular respiration are two complementary processes that provide energy for living organisms. Photosynthesis captures energy from sunlight and stores it in glucose, while cellular respiration releases that energy to power the cell's functions. Understanding these processes is essential for appreciating the interconnectedness of life on Earth.

Photosynthesis and Cellular Respiration:

Photosynthesis and cellular respiration are two essential processes that work together to sustain life on Earth. Photosynthesis is the process by which plants and other organisms use sunlight, water, and carbon dioxide to produce glucose, a sugar molecule that stores energy. Cellular respiration is the process by which cells break down glucose to release energy that they can use to power their functions.

Vocabulary Matching:

ATP (1): The molecule that cells use to store and transfer energy.

Cellular respiration (2): The process by which cells break down glucose to release energy.

Photosynthesis (3): The process by which plants and other organisms use sunlight, water, and carbon dioxide to produce glucose.

Glucose (4): A sugar molecule that stores energy.

Energy (5): The ability to do work.

Chloroplast (6): The cell organelle where photosynthesis takes place.

Mitochondria (7): The cell organelle where cellular respiration takes place.

Catabolic process (8): A process that breaks down molecules into smaller units and releases energy.

Anabolic process (9): A process that constructs molecules from smaller units.

Chlorophyll (10): The green pigment in plants that absorbs sunlight for photosynthesis.

True or False:

1. All life needs energy. (True)

2. Glucose is a carbohydrate that stores chemical energy. (True)

3. Only heterotrophs can perform photosynthesis. (False) Autotrophs, like plants, can perform photosynthesis.

4. The products of photosynthesis are the reactants of cellular respiration. (True) Photosynthesis produces glucose and oxygen, which are used in cellular respiration.

5. Glucose is the energy carrying molecule that cells use for energy. (True)

6. Photosynthesis uses the energy in sunlight to make ATP. (False) Photosynthesis produces glucose, which is then used in cellular respiration to make ATP.

7. One molecule of ATP contains more energy than one molecule of glucose. (False) A molecule of glucose contains more energy than a molecule of ATP.

8. The process in which glucose is broken down and ATP is made is called cellular respiration. (True)

How is a plateau different from a fault-block mountain?

Answers

Plateau results from erosive processes whereas faultblock mountains are the result of orogenic faulting, usually the result of compression.

Answer:

A plateau is defined as a highland area that has a flat top topography, which has steep sides. These are often formed when the intrusive magma crystallizes before it comes out to the surface. The flat top surface of the plateaus are formed due to the continuous erosion process that has taken place since the geological time.

On the other hand, a fault-block mountain is a type of mountain which are formed due to the reverse faulting. It results from the upward movement of the blocks. These are jagged mountains and are formed from the compressional stress.

Thus, the plateaus are formed from the erosion process, and fault-block mountains are formed due to the compressional stress.

Which physiological adaptation would decrease the process of transpiration in a plant?
A.
growth of an extensive root structure
B.
development of the ability to bind metals to roots cells
C.
development of an altered growth cycle to match the seasons
D.
opening stomata at night only

Answers

D is the best option

Answer: The answer is D: Opening stomata at night only

Explanation:

Opening stomata at night only is the physiological adaptation that would decrease the process of transpiration in a plant.

Transpiration referred to the way water move through plant evaporation from aerial parts, such as leaves, stems and flowers. Transpiration of plant is also loss of water from stomata.

Stomata means pores used for gas exchange. It is found in plants and some stems.

How do plants store energy from photosynthesis?

Answers

Photosynthesis is the process plants and some algae use to convert light energy to chemical energy stored as sugar within chloroplasts -- the energy factories found in plant cells. Plants need only carbon dioxide and water for photosynthesis to work.

Answer:

The correct answer is "in the form of starch".

Explanation:

Plants store energy from photosynthesis in the form of starch. Starch is a polysaccharide, made from several units of glucose linked together following a particular disposition. The glucose that is produced during photosynthesis is used to synthesize starch, biomolecule that is used as a form to store energy.

how does precipitation assist in the rock cycle

Answers

I believe this will help When water freezes in cracks and crevices in rock and expands, the rocks are physically broken apart. The amount of rainfall will affect weathering as will the types of plants in the area (which are greatly affected by the amount of rainfall), whose roots break rocks apart and may chemically dissolve some rocks.

Vaccines can help protect against viruses by triggering the production of

Answers

Vaccines can help protect against viruses by triggering the production of _____.
"antibodies"

Hopefully this helped hun ! Have a good day!

Answer:

The correct answer is - antibodies.

Explanation:

Vaccines are the biological substance or the preparation that helps in building the active acquired immunity from a particular disease. Vaccines are basically weakened or dead infectious agents or particles that induce or active the B cells to produce antibodies and memory cells.

These antibodies are formed by the vaccines by triggering the production of B cells. This process of injecting vaccines is known as vaccination.

Thus, the correct answer is - antibodies.

40 To test acidity levels of water, scientists test the pH. As acid rain falls, the pH levels in lakes and streams decrease. While certain animals can tolerate low pH levels, others are extremely sensitive to the effects of acid rain and cannot live under the conditions. Students in Maria's class know, based on the chart, the pH range tolerated by specific organisms living in the ponds surrounding their school Maria and several other students are anxious to design an experiment to investigate this topic.

Answers

What is the question, sorry if I misunderstood

A woman with hemophilia and a man without hemophilia are expecting a baby boy. What are the chances that their son will also have hemophilia?

100%, 75%, 25 or 50

Answers

pretty sure its 100%

Answer:

Your correct answer is no doubt 100%

Explanation:

Who found that plants are composed of cells

Answers

Robert Hooke discovered cell structure and named cell


Answer:

Robert Hooke

Explanation:

The human body works to keep blood within a certain pH range an example of

Answers

Homeostasis, aka your body maintaining life and the right amounts of stuff.

Answer:

pH range.

Explanation:

The human body works to keep blood within a certain pH range.

which of the following is the most likely cause for succesion in ecosystems?
A. arrival of new species
B. Rain
C. loss of an animal species
D. wildfires

Answers

Hello.

The answer: D. wildfires

For  succesion in ecosystems nothing remains the same or constaly changing. New specis, Rain and loss of animals can change an everment but only a Wildfire can change a ecosystem where nothing is left the same. So therefore the answer is Wildfires.

Have a nice day.

Hello.


The answer: D. wildfires


For  succesion in ecosystems nothing remains the same or constaly changing. New specis, Rain and loss of animals can change an everment but only a Wildfire can change a ecosystem where nothing is left the same. So therefore the answer is Wildfires.


Have a nice day.


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Calcium is an essential nutrient for all ages, but many marketing campaigns for high-calcium foods focus on childhood. Do you think there’s merit to telling children to get their calcium because it builds strong bones? Explain your response.

Answers

Answer:

Yes

Explanation:

, there’s merit to targeting children in marketing campaigns for high-calcium food. People reach peak bone mass at about age 30. If children don’t consume enough calcium, they may not build up enough bone density, which could cause them to be at risk for osteoporosis when they’re older.

There is a lot of merit in telling children to get their calcium in building strong bones because the increase in bone density by calcium stops between 25-30 years.

It is therefore for the children to take enough of calcium to make their bones

very dense and strong as attaining the age of 30 years means there will be

no change in the bone density regardless of the amount of calcium taken.

Intake of calcium at an early age also helps us plan for old age . At the age of

50 years and above , individual experiences bone loss which leads to

osteoathritis and other bone related diseases.

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Qualitative data definition

Answers

Qualitative data means information about qualities

information that can not be measured  

Which of the following is a FALSE statement about reactions?
A. Mass can’t be created or destroyed in a chemical reaction
B. Compounds that form have different properties than the ‘old’ reactants.
C. Atoms are rearranged in a reaction and joincto form new molecules
D. When a reaction gets cold, that means energy is destroyed

Answers

D is absolutely false.  Energy cannot be destroyed.  It can only be transferred.

bones function as levers for the muscles to provide movement of the body What refers to reducing the angle of the joint thus bringing two bones closer together

Answers

The answer is D: Flexion.

Flexors muscles of the cause’s flexion, which reduces the angle of the joint and reduces the dis-tance between two bones. In this process, the muscle contracts and this brings the bones attached to the muscle close to each other due to the movement of the nearby joint. For example when flexion occurs at the elbow, the bones “Ulna” and “ Humerus” get close to each other .  

what is the identity the genotypes of the aunt and her fiancé?

Answers

Genotypes are what is in people's genes not what you can see on the outside.

Which stage of the cell cycle involves the division of the cell’s nucleus?

Answers

Metaphase

At the end of the phase the cell divides into two new cells

The division of the cell's nucleus occurs during the mitotic phase of the cell cycle, specifically in the process known as mitosis, which is followed by cytokinesis resulting in two daughter cells.

The stage of the cell cycle that involves the division of the cell's nucleus is called the mitotic phase, which is more specifically known as mitosis. The cell cycle is primarily divided into two major phases: interphase and the mitotic phase. During interphase, the cell undergoes growth and DNA replication. This phase allows the cell to prepare for division, leading up to the mitotic phase. Mitosis then follows interphase and is the process by which the replicated chromosomes are segregated and distributed into two daughter nuclei. The mitotic phase can be further divided into several steps including prometaphase, metaphase, anaphase, and telophase. After mitosis, the cell typically goes through cytokinesis, a process dividing the cytoplasm, resulting in two daughter cells.

Which of the following occurrences affects the Earth's water systems?

 A. 

melting glaciers

 B. 

extreme drought

 C. 

increased rainfall

 D. 

all of these

Answers

D is the correct answer

All of these can affect the earth' s water systems.

What is water system?

Infrastructure for collecting, transferring, treating, storing, and distributing water for use in households, businesses, industries, irrigation, and other public purposes like firefighting and street flushing.

The provision of drinkable water is arguably the most important municipal service. For drinking, cooking, cleaning, getting rid of waste, and other home necessities, people rely on water. Systems for supplying water must also meet standards for industrial, commercial, and public uses.

The site of the earliest inhabited villages was influenced by water, and the development of public water delivery systems is closely related to the expansion of cities.

Therefore, All of these can affect the earth' s water systems.

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How is a scientific law different from a scientific theory?
A) A theory becomes a law after a long period of time has passed
B) A theory is used for biology and chemistry and a law is used for physics
C) A theory is why something happens and a law is how something happens
D) A theory cannot be disproved but a law can be disproved

Answers

Your answer is option c.

We know a theory is not just for biology and chemistry since we have the theory of relativity

We also know that both theories and laws can be disproved or changed.

And a theory does not become a law after a long time period

thus the answer is C

Answer:

The correct answer will be option-C.

Explanation:

Scientific theories and scientific laws are proposed after many hypothesis related to the natural phenomenon is supported by experiments of many researchers.

Both scientific laws and scientific theory are the statements formed on the basis of the results but they differ as a scientific law represents the mechanism of how natural phenomenon is as it provides the data related to the natural event which hold true everywhere whereas a scientific theory provides the explanation of the causes of a natural event.

Thus, option-c is the correct answer.

which group of organic compounds stores genetic information?

Answers

I got D, C, A, B, C, B, D, C. 

C (proteins) instead of D (nucleic acids) because if you look at a nucleic acid structure, you'll see that sulfur is not found in it. Sulfur is found in two amino acids (methionine and cysteine), which means it could be found in proteins since amino acids build proteins

The group of organic compounds that store genetic information are nucleic acids.

NUCLEIC ACIDS:

Nucleic acids are one of the four biological molecules in nature. Nucleic acids are molecules that help store and transmit genetic information in living cells.

The two types of nucleic acids are DNA (deoxyribonucleic acid) and RNA (ribonucleic acid).

DNA helps store genetic information in the cells of living organisms, which is transcribed and translated into proteins.

Therefore, the group of organic compounds that store genetic information are nucleic acids.

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What would happen to a sample of your red blood cells if they were placed in a hypotonic solution?

Answers

Hypotonic solutions contain a low concentration of solute relative to another solution ( The cells cytoplsm)

Thus, when a cell in placed in a hypotonic solution, the water diffuses into the cell, which causes the cell to swell up.

The cell has lower solute concentration than the solution. So the solution is HYPERTONIC and the cell is HYPOTONIC.

As a result, a cell that does not have a rigid cell wall, such as a red blood cell, t'will most definitely swell and burst when placed in a hypotonic solution.

Final answer:

Red blood cells placed in a hypotonic solution will swell due to water rushing in, potentially causing hemolysis (bursting). In hypertonic solutions, they will shrink due to water loss.

Explanation:

When red blood cells are placed in a hypotonic solution, the concentration of solutes in the surrounding fluid is lower than those inside the cells. As a result, water rushes into the cells due to osmotic pressure. This influx of water causes the red blood cells to swell, potentially leading to hemolysis, which is the bursting of the cells due to excessive swelling. Conversely, if red blood cells are in a hypertonic solution, they lose water and shrink, which is known as crenation. Red blood cells function optimally in an isotonic environment, where the flow of water in and out of the cell occurs at equal rates, maintaining the normal shape of the cells.

During meiosis, homologous chromosomes exchange genetic material. This exchange of genetic material

Answers

The answer is; crossing over/synapsis


This occurs when the arms of homologous non-sister chromosome pairs connect at points called chiasma. They exchange genetic material causing recombination. This mostly occurs in the later stages of prophase I into metaphase I of meiosis. Flaws in crossing over can cause genetic diseases in offspring.  


Final answer:

During meiosis, homologous chromosomes undergo an exchange of genetic material, known as recombination or crossover. This process contributes to genetic variation as maternal and paternal alleles are combined onto the same chromosome. Errors in meiosis can result in genetic disorders like Down syndrome.

Explanation:

During the process of meiosis, homologous chromosomes undergo an exchange of genetic material, a process known as recombination or crossover. Starting in meiosis I, homologous chromosomes pair up and exchange non-sister chromatid segments, which leads to a unique genetic composition. This exchange significantly contributes to the diversity of genetic combinations in the resulting haploid gamete cells.

As the chromosomes align, particular segments of genetic material are exchanged, while the gene order remains unchanged. The result of this recombination is that maternal and paternal alleles combine on the same chromosome, causing extensive shuffling of alleles. These crossover events serve as an essential source of genetic variation.

If there are errors in meiosis, such as incorrect chromosome segregation, genetic disorders like Down syndrome can occur. These crossover events are fundamental in producing genetic variation, leading to a diverse gene pool and enhanced adaptability for species.

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which item below does not contain lipids a.beeswax b.cellular membranes c.cooking oil d.table sugar

Answers

b.cellular membranes is the answer

How would the global climate be different if more of Earth was covered by land than water? A) The climate would be more extreme than it is today. B) There would be no winds in the Northern Hemisphere. C) The climate would be more moderate than it is today. D) There would be no rainfall in the Northern Hemisphere.

Answers

The answer is option A. The climate would be more extreme than it is today.

The global climate is different if more of Earth was land than water, as the climate would be more extreme than it is today. The correct option is A.

What is climate?

Climate is the different weather patterns that are long-term. The climatic changes happen due to changes in the activities of organisms.

The climate is already warming so much, that if there will be no water, the climate would be unfavorable to live in.

Thus, the correct option is A) The climate would be more extreme than it is today.

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The density of an object with a mass of 27 g and a volume of 9 cm3 is?

Answers

the density is 3 gram cubic meter

HOPE THIS HELPS

Final answer:

The density of an object with a mass of 27 g and a volume of 9 cm3 is 3 g/cm3.

Explanation:

The density of an object can be calculated by dividing its mass by its volume. In this case, the mass is given as 27 g and the volume as 9 cm3. To find the density, we divide 27 g by 9 cm3 which gives us a density of 3 g/cm3.

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Which structure, if cut off, will hamper sexual reproduction in fungi? A. hyphae B. fruiting body C. rhizoids D. mycorrhizae

Answers

Answer:

B. fruiting body

Explanation:

Fruiting body is the term used for the part of fungi that produce spores that take part in the sexual reproduction of fungi.

As you can see in picture, it is very prominent part of fungal body that where spores are formed as a result of sexual reproduction or fusion of gametes. These spores disperse from one place to another and upon landing on a suitable substrate, they give rise to the whole fungus body.

Mushroom is the most common example of fungus with a prominent fruiting body. Now the question is how the fruiting body is formed, they are produced from small thread like structures called hyphae that make most of the fungus body and are collectively termed as mycelium. They grow above the soil layer and develop new structures called gills,cap  and stalk. In gills of the fruiting body, spored are formed.

Therefore, f one hyphae is cut off it will not hamper the sexual reproduction because fungus contains million of hyphae called mycelum that form fruiting body where sexual reproduction occurs. However, if fruiting body is cut, it wiil hamper the formation of spores and sexual reproduction.


Hope it help!


Answer:

b

Explanation:

After Pangaea broke up, South America was part of

Rodinia


Panthalassa


Laurasia


Gondwana

Answers

After Pangaea broke up , south America was part of Gondwana

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[hope it will help you]

South America was part of Gonwana, after Pangea broke in two

during which phase of mitosis do the chromosomes become visible with a microscope?

A. crotokinesid
B. prophase
C. Anaphase
D. Telphase

Answers

Prophase,

Prior to that, the chromosomes were long strands of DNA material called 'chromatin'. During Prophase, the chromatin curls up into tightly wound shapes called chromosomes.

Final answer:

During the Prophase phase of Mitosis, the chromosomes condense and become visible under a microscope.

Explanation:

The phase of mitosis during which the chromosomes become visible when viewed under a microscope is the Prophase. Mitosis is the process of cell division. It has several phases: Interphase, Prophase, Metaphase, Anaphase, and Telophase. In Prophase, the chromosomes condense and become visible under a microscope. They appear as two identical sister chromatids joined in the center by a structure called a centromere.

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