Questions: 1) animais, plants, and fungi are all Multicellular eukaryotes. What unitying characteristics distinguish animals from members of these other two kingdoms?​

Answers

Answer 1

Animals, Plants, and Fungi are multicellular, meaning that they have more than one cell in their body. Each cell also has a nucleus in it, a property which the other two kingdoms, Bacteria and Eubacteria don't have.

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Related Questions

The cholesterol associated with animal cell membranes
a) is an abnormality resulting from a diet high in cholesterol.
b) makes the cell membrane fluid at room temperature.
c) helps to stabilize the cell membrane at body temperature.
d) helps solidify the membranes when the room temperature is below freezing.
e) is attached to membrane proteins and extends into the watery environment surrounding the cell.

Answers

Cholesterol is one of the molecules composing the cell membrane. b) makes the cell membrane fluid at room temperature.  

What is the role of cholesterol in the cell membrane?

The cell membrane is composed of two lipidic bilayers, cholesterol, proteins, and glucans incrusted in between.

Cholesterol is one type of lipid.

These molecules are incrusted in the membrane between the hydrophobic tails of lipids.

Their proportion on both sides of the membrane is almost the same.

Cholesterol is a significant molecule that contributes to the membrane fluidity, separates phospholipids, and interact with membrane proteins regulating in their activity.

The correct option is b). makes the cell membrane fluid at room temperature.

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Please help will mark brainlest, last question, please help

The diagram below shows a normal fault.

In this image, a section of rock is divided by a fault plane running from top-left to bottom-right. The section of rock to the left of the fault plane is pushed above the section of rock to the right of the fault plane.

Public Domain

Which answer choice correctly explains why this diagram shows a normal fault?

The fault plane divides two otherwise identical sections of rock.
The fault plane runs from the top of the rock to the bottom of the rock at an angle greater than 45 degrees.
The block of rock above the angle of the fault plane is raised above the block of rock below the angle of the fault plane.
The block of rock above the angle of the fault plane has fallen beneath the block of rock below the angle of the fault plane.

Please help will mark brainlest, last question, please helpThe diagram below shows a normal fault.In

Answers

The block of rock above the angle of the fault plane is raised above the block of rock below the angle of the fault plane diagram below shows a normal fault. Thus, the correct option is C.

What are reverse faults?

Reverse faults are those in which the higher block, known as the Hanging wall, rises over the lower block, known as the Footwall. The compressive stress exerted on the soil from both sides causes this type of fault to form.

During an earthquake, the fault plane is a planar surface along which the blocks slip. These are the tectonically active parts of the world. An earthquake causes a great deal of damage to both property and people's lives.

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What do mitochondria do in healthy cells, and ny had defective mitochondria caused
David to lose his vision?

Answers

Muscle weakness, intolerance to exercise, decreased hearing and vision, ataxia, seizures, learning difficulties, heart problems, diabetes, and poor growth are the hallmark signs of mitochondrial myopathy.

What will happen if have a defective mitochondria?Defects in mitochondria, the body's energy producers that may be found inside practically all cells, are the root cause of mitochondrial disorders. mitochondrial myopathies are mitochondrial diseases that create noticeable muscular issues, while mitochondrial encephalomyopathies are mitochondrial disorders that cause noticeable muscular and neurological abnormalities.Several of the syndromes linked to mitochondrial disease include Barth syndrome, Chronic progressive external ophthalmoplegia, Kearns-Sayre syndrome, Leigh syndrome, Mitochondrial DNA depletion syndromes , Mitochondrial encephalomyopathy, Lactic acidosis, and stroke-like episodes, Mitochondrial neurogastrointestinal encephalomyopathy, Myoclonus epilepsy with ragged red fibers, Neuropathy, ataxia, and retinitis pigmentosa , Pearson syndrome.The mtDNA mutation that causes NARP also causes MILS, and the two disorders can coexist in the same family. NARP can cause developmental delay, seizures, and dementia in addition to the primary symptoms for which it is called.

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how would I draw this?
draw arrows and label them to show how energy enters released at terrarium​

Answers

To draw how energy enters and is released in a terrarium, you can follow these steps:
1. Draw the terrarium, which is a closed container that contains plants, soil, and sometimes animals.

2. Draw an arrow pointing towards the terrarium to show the source of energy. This can be the sun, a light bulb, or any other source of light and heat.

3. Label the arrow "Energy input" or "Light input" to indicate what it represents.

4. Draw another arrow within the terrarium, pointing towards the plants. Label it "Photosynthesis" to show how plants use energy to create food.

5. Draw a third arrow pointing towards the animals in the terrarium. Label it "Respiration" to show how animals use food to create energy.

6. Finally, draw an arrow pointing out of the terrarium to show how energy is released back into the environment. This can be heat or waste products from the plants and animals.

By following these steps and labeling each arrow, you can show how energy enters and is released in a terrarium. Remember to label each arrow and use clear and concise language to explain the process.

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The following is a short section of a DNA template before replication:

3’ TACGGCTTAACC 5’

Based on your knowledge of DNA replication, which sequence would be the correct complementary strand synthesized by DNA polymerase?

5’ AUGCCGTTUUGG 3’

5’ GGTTAAGCCGTA 3’

5’ ATGCCGAATTGG 3’

5’ CCAATTCGGCAT 3’

Answers

3’ TACGGCTTAACC 5’ based on knowledge of DNA replication, the correct complementary strand synthesized by DNA polymerase is

5’ ATGCCGAATTGG 3’ (option -c) is correct answer.

What is the procedure for DNA replication?

There are three main steps in the replication process: priming the template strand, assembly of the new DNA segment, and opening of the double helix and separation of the DNA strands. The DNA double helix's two strands uncoil during separation at a specific spot known as the origin.

Additionally, in vitro DNA replication (DNA amplification) is possible (artificially, outside a cell). Starting DNA synthesis at recognized sequences in a template DNA molecule is possible using artificial DNA primers and cell-isolated DNA polymerases.

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1.1.6 what does iron prevent?

Answers

Answer:

anemia aka. Lack of blood

Explanation;

Iron is a Mineral that contributes to good health, which if you do not have iron it will lead to unhealthy red blood cells which effects your blood which will cause less oxygen flow to your body's organs

the dropping of leaves and fruit are principally controlled by

Answers

The dropping of leaves and fruit in plants is primarily controlled by a combination of internal and external factors. Internally, plants have hormonal regulation systems that play a significant role in leaf and fruit abscission (the natural shedding or detachment of these plant parts).

The hormone responsible for leaf abscission is called auxin. As the days shorten and light levels decrease, auxin levels decrease as well, leading to the weakening of the cell walls between the leaf and stem. This eventually results in the leaf's detachment and subsequent fall.

In the case of fruit abscission, ethylene is the key hormone involved. As fruits mature, they produce ethylene gas, which triggers the enzymatic breakdown of cell walls in the fruit stalk or stem. This enzymatic activity weakens the attachment point, causing the fruit to separate from the plant.

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Does the formation of sperm is more in low temperature???​

Answers

Answer:

Sperm production is a process that's sensitive to heat. Ideally, sperm production occurs around 93.2ºF, which is about 5ºF below normal body temperature. This is why the testes hang below the body to keep the temperature a bit lower.

Explanation:

The oropharynx is the most inferior portion of the pharynx? T/F

Answers

The most inferior portion of the pharynx is the hypopharynx. Therefore, such statement is false.

What are the products when lipase acts on its substrate?

Answers

Answer:

Explanation:

Lipase is a type of enzyme known as a hydrolase and is responsible for catalysing the hydrolysis of triglycerides (the substrate) into fatty acids and glycerol

3 Normal things animals do

Answers

3 normal things that animal do are play,sleep,eat

What all animals have in common is that they move (walk, run, slither, swim or fly), breathe (with lungs or gills) and make babies (by eggs or live birth)!

Predict how each mutation would affect the amount (mass) of DNA in Calix's cells.
Point
Mutation
Chromosomal
Rearrangement
Nondisjunction
Mass of DNA
Increase Decrease No Change
0

Answers

The correct answers are:

Point Mutation: No change in the mass of DNA.Chromosomal Rearrangement: Possible increase or decrease in the mass of DNA.Nondisjunction: Possible increase or decrease in the mass of DNA.

Point Mutation: A point mutation refers to a change in a single nucleotide base within the DNA sequence. Depending on the specific alteration, the impact on the mass of DNA in Calix's cells can vary. In most cases, a point mutation would not significantly affect the overall mass of DNA, as it involves a substitution, insertion, or deletion of a single nucleotide.Chromosomal Rearrangement: Chromosomal rearrangements involve larger-scale changes in the structure or arrangement of chromosomes. These alterations can result in a change in the overall mass of DNA in Calix's cells. For instance, certain rearrangements, like duplications or translocations, can increase the mass of DNA due to the presence of additional genetic material and on the other hand, deletions or inversions can lead to a decrease in the mass of DNA by removing or rearranging segments of the chromosome. Nondisjunction: Nondisjunction is a mutation that occurs during cell division, leading to an abnormal distribution of chromosomes. It can result in an imbalance in the genetic material and affect the mass of DNA. In some cases, nondisjunction can cause an increase or decrease in the mass of DNA depending on whether an extra chromosome or a missing chromosome is present, respectively.

In conclusion, a point mutation typically does not affect the mass of DNA in Calix's cells, while chromosomal rearrangements and nondisjunction can potentially result in an increase or decrease in the mass of DNA.

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I don't understand any of it. I really need some help. Don't mind the answers on there, they're probably wrong. I know you have to use Hardy Weinberg but exactly how do I do that? Completely lost

I don't understand any of it. I really need some help. Don't mind the answers on there, they're probably
I don't understand any of it. I really need some help. Don't mind the answers on there, they're probably

Answers

Answer: I have done this work in the pass same answers as mine to so your correct.

Explanation:

hoped this helped have a mathtastic day

The Hardy-Weinberg theory states that a population in equilibrium expresses the same allelic and genotypic frequencies generation after generation. 1) F = 9.4%, fch = 29.6%, fh = 43.3%, f= 17.7%, FF = 0.88%, Ffch = 3.3%, Ffh = 5.5%, Ff = 8.1%, fchfch = 3.13%, fchfh = 10.5%, fchf = 15.3%, fhfh = = 8.8%, fhf = 25.6%, ff =  18.8%. 2) FF = 30.6, Ffch = 114.8, Ffh = 191.3, Ff = 281.8, fchfch = 108.9, fchfh = 365.3, fchf = 532.3, fhfh = 306.2, fhf = 890.6, ff = 654.

What is the Hardy-Weinberg equilibrium?

Hardy-Weinberg equilibrium is a theory that describes a population that is not evolving, it is in equilibrium. The allelic and genotypic frequencies in this population remain the same generation after generation.

Assuming a multiallelic gene, there are different equations we can use to determine the frequencies.

Assuming 4 alleles,

Allelic frequencies

prqs

Genotypic frequencies

p² ⇒ Homozygousq² ⇒ Homozygousr² ⇒ Homozygouss² ⇒ Homozygous2pq ⇒ Heterozygous2pr ⇒ Heterozygous2ps ⇒ Heterozygous2qr ⇒ Heterozygous2qs ⇒ Heterozygous2rs ⇒ Heterozygous

Equations,

p + q + r + s = 1p² + q² + r² + s² + 2pq + 2pr + 2ps + 2qr + 2qs + 2rs = 1

Available information,

Alleles       Frequency

F         p = 0.094fch      q = ?fh        r = ?f          s = ?

Genotypes       Frequencies

FF                       p² = ?Ffch                  2pq = ?Ffh                    2pr = ?Ff                      2ps = ?fchfch                 q² = ?fchch                2qr = ?fchf                   2qs = ?fhfh                     r² = 0.088fhf                      2rs = ?ff                         s² = 0.188

Now, let us first take allelic frequencies,

p = 0.094

r = √r² = √0.088 = 0.296

s = √s² = √0.188 = 0.433

q = ?

We can clear the equation p + q + r + s = 1 to get the value of the q allele

p + q + r + s = 1

0.094 + q + 0.296 + 0.433 = 1

q = 1 - 0.094 - 0.296 - 0.433

q = 0.177

So,

p = 0.094 = 9.4%r = 0.296 = 29.6%s = 0.433 = 43.3%q = 0.177 = 17.7%

Now, let us get the genotypic frequencies,

p² = 0.094² = 0.0088 = 0.88%2pq = 2 x 0.094 x 0.177 = 0.033 = 3.3%2pr = 2 x 0.094 x 0.296 = 0.055 = 5.5%2ps = 2 x 0.094 x 0.433 = 0.081 = 8.1%q² = 0.177² = 0.0313 = 3.13%2qr = 2 x 0.177 x 0.296 = 0.105 = 10.5%2qs = 2 x 0.177 x 0.433 = 0.153 = 15.3%r² = 0.088 = 8.8%2rs = 2 x 0.296 x 0.433 = 0.256 = 25.6%s² = 0.188 = 18.8%

If these calcs are right, then the addition of all these genotypic frequencies should equal one.

p² + q² + r² + s² + 2pq + 2pr + 2ps + 2qr + 2qs + 2rs = 1

Now, to get the number of individuals with each genotype, you just need to multiply the genotypic frequency by the total number of individuals.

Number of individuals with each genotype,

p² = 0.0088 x 3479 = 30.6 2pq = 0.033 x 3479 = 114.82pr = 0.055 x 3479 = 191.32ps = 0.081 x 3479 = 281.8q² = 0.0313 x 3479 = 108.92qr = 0.105 x 3479 = 365.32qs = 0.153 x 3479 = 532.3r² = 0.088 x 3479 = 306.22rs = 0.256 x 3479 = 890.6s² = 0.188 x 3479 = 654

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Before a plant grown in a greenhouse can be planted in a field or garden, it should first be ______off.
Fill in the blank please.

Answers

Answer:

hardening off

Explanation:

I need someone find a Name for each species (from the Tropical Rainforest)

Invasive species:

Indicator species:

Native species:

Answers

Native species are species that are native to a particular ecosystem. Indicator species are tools for understanding and managing the health of ecosystem. Invasive species are non-native species that have been introduced to a new environment.

Examples of native species in a tropical rainforest include the red maple tree, which is native to eastern North America and is an important source of food and shelter for many species of animals, and the eastern gray squirrel, which is native to North America and is an important seed disperser in many forests. All other examples also given below.

These species have evolved in response to the specific environmental conditions of the ecosystem and have developed unique adaptations to survive in that environment.  When discussing species in a tropical rainforest, it is important to consider whether they are invasive, indicator, or native species.

Invasive species are non-native species that have been introduced to a new environment and have the ability to outcompete native species for resources. Invasive species can cause significant harm to the ecosystem by altering the balance of species and disrupting the natural processes that maintain the ecosystem.

Some examples of invasive species in a tropical rainforest include lionfish, which are native to the Indo-Pacific but were introduced to the Atlantic Ocean and have become a invasive species there, and kudzu, which is native to Japan but was introduced to the United States.

Indicator species are species that can be used to indicate the health of an ecosystem. These species can be used to monitor changes in the ecosystem over time and to identify potential threats to the ecosystem. For example, the tiger swallowtail butterfly is an indicator species in a tropical rainforest because it is sensitive to changes in the environment and can be used to monitor the health of the ecosystem.

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Which type of graph do I use for this data table?

Which type of graph do I use for this data table?

Answers

Answer:

you should use normal Data table only and mark

what is the selective agent in natural selection? choose the correct answer. responses humans humans breeders breeders mutations mutations environment environment

Answers

The selective agent in natural selection is the environment. Natural selection is the process by which certain heritable traits become more or less common in a population over time as a result of differential reproductive success.

The environment acts as the selective agent by influencing which individuals are more likely to survive and reproduce based on their traits. For example, in a population of organisms living in a cold climate, individuals with thicker fur may be more likely to survive and reproduce than those with thinner fur. Over time, this can lead to an increase in the frequency of the trait for thicker fur in the population. Therefore, the environment plays a critical role in shaping the traits that are favored by natural selection.

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Ammonia is commonly used as a fertilizer for plants. It is made when nitrogen gas and hydrogen gas react under specific conditions.
Consider the following reaction:
2 molecules of nitrogen (N2) react with 6 molecules of hydrogen (H2) to produce some amount of ammonia (NH3).
Complete the table below.

H = ?
N = ?

During this reaction, how many molecules of ammonia (NH3) are produced?

Answers

Answer:

2

Explanation:

NH3 = N(1) + H(3)

N2H6 = 2(NH3)

= 2

Answer:

4

Explanation:

Just do the math Zoey -.-

The protein, lipid, and carbohydrate compositions of the cytoplasmic and extracellular sides of membranes are different from one another. Why is this the case? (3 points)



a) Some membrane components are synthesized outside of the cell, while others are synthesized in the cytosol.


b) The two sides of a cell membrane face different environments and carry out different functions.


c) The molecular composition of the inner and outer layers of the cell membrane is determined by genes.


d) Proteins only function on the cytoplasmic side of the cell membrane, which results in asymmetry across the membrane.

Answers

Answer:

The protein, lipid, and carbohydrate compositions of the cytoplasmic and extracellular sides of membranes are different from one another , this happens because the two sides of a cell membrane face different environments and carry out different functions.

Explanation:

PROTEINS , LIPID AND CARBOHYDRATES , all are the components of the plasma membrane , located at different sites .

PROTEINS -: The main component of plasma membranes is proteins. Two key categories of membrane proteins are available: integral and peripheral. As their name implies, integral membrane proteins are incorporated into the membrane: they have at least one hydrophobic region that anchors them to the phospholipid bilayer's hydrophobic center. Others just stick partway through the membrane, while others extend from one side of the membrane to the other and on either side are exposed.

On the outside and inside surfaces of membranes, peripheral membrane proteins are found which are bound either to integral proteins or to phospholipids. Peripheral membrane proteins do not stick into the hydrophobic center of the membrane as opposed to integral membrane proteins, and appear to be more loosely bound.

LIPID -: Phospholipids, arranged in a bilayer, make up the plasma membrane 's essential cloth. Since they are amphipathic, they are well-suited for this function, meaning they have both hydrophilic and hydrophobic regions.

The hydrophilic or "water-loving" component of a phospholipid is its head, which includes a phosphate group that is negatively charged, as well as an additional small group that can also be charged or polar.

Its long, nonpolar fatty acid tails make up the hydrophobic, or "water-fearing," portion of a phospholipid. The tails of fatty acids can interact easily with other non-polar molecules, but interact poorly with water.

CARBOHYDRATES -: The main component of plasma membranes is carbohydrates. In general, they are located on the outer surface of the cells and are either bound to proteins (glycoproteins forming) or to lipids (glycolipids forming). These chains of carbohydrates can consist of 2-60 units of monosaccharide and can either be straight or branched.

Hence , the correct option is B.

Chromosome 17 is made of over million base pairs. Approximately how many genes are found on chromosome 17?

Answers

Answer:

1,100 to 1,200 genes

Explanation:

these are instructions for proteins which help around the body

The number of genes on chromosome 17 is estimated to be around 1,200 to 1,500.

What are genes?

A gene is the most basic physical and functional unit of inheritance. They carry information that determines your traits. They are present on specific location of chromosomes.

Chromosome 17 is one of the 23 pairs of chromosomes in humans and is approximately 81 million base pairs long. The number of genes on chromosome 17 is estimated to be around 1,200 to 1,500. However, the exact number of genes on chromosome 17 is not yet known, as gene prediction algorithms have limitations and some genes are yet to be discovered or accurately annotated.

Additionally, some sections of the chromosome may not contain protein-coding genes but may still play important regulatory roles in gene expression.

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pongids: a. are incapable of walking bipedally b. can walk bipedally only by holding on to branches with their arms c. are capable of bipedal locomotion, but inefficiently d. are, in fact, habitually bipedal

Answers

What is a biped?

One of the earliest adaptations made by hominids was bipedalism, and there are several theories as to how the human ancestors acquired it. One of them claims that after a group of our ancestors started living in Savannah habitats, bipedalism emerged (open areas covered with grasses). The Savannah lineages didn't have many trees to climb, so the upright posture let them see predators in the distance. Other lineages remained in the forests, where they could use the treetops and branches for protection and to collect food.

The second theory links the use of tools to the evolution of human bipedalism. The two forelimbs are free to explore the environment, aid in the use of tools, and even gather food while moving because a species does not move on all four limbs.

With this knowledge, we can conclude that bipedalism gave the human race a free arm to build technology and allowed them to move more slowly while walking, among other benefits.

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Larissa had a painful pelvic inflammatory disease, which meant that she was more likely than other woman to have an embryo implantation in the
A. oviduct (fallopian tube)
B. uterus
C. vagina
D. ovary

Answers

Larissa had a painful pelvic inflammatory disease, which meant that she was more likely than other woman to have an embryo implantation in the option (b) uterus.

Pelvic inflammatory disease (PID) is an infection of the female reproductive organs, typically caused by sexually transmitted bacteria. It primarily affects the uterus, fallopian tubes, and ovaries.

During normal reproductive processes, after fertilization of an egg by sperm, the resulting embryo travels through the fallopian tubes (oviducts) towards the uterus. Implantation of the embryo usually occurs within the lining of the uterus, where it can develop into a pregnancy.

However, in the case of pelvic inflammatory disease, inflammation and infection can cause scarring and damage to the fallopian tubes. This can interfere with the normal movement of the embryo through the fallopian tubes and increase the risk of ectopic pregnancy, where the embryo implants outside of the uterus, most commonly in the fallopian tube itself.

Given the scenario of Larissa having pelvic inflammatory disease, the likelihood of embryo implantation is higher in the **fallopian tube (oviduct)** rather than in the uterus. The scarring and damage caused by PID can disrupt the normal process of embryo transport, leading to an increased risk of ectopic pregnancy in the fallopian tube.

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what is penetrance? a situation where the stronger or earlier expression of a genetic trait occurs in succeeding generations the percentage of individuals having a particular genotype who express the expected phenotype the degree to which a trait is expressed a situation where a trait is only expressed at a particular temperature a situation where an allele is only expressed in one sex and does not produce the same phenotype in the other sex

Answers

Penetrance is the percentage of individuals having a particular genotype who express the expected phenotype. Therefore, the correct answer is the second option.

Penetrance is a measure of the likelihood that a genetic trait will be expressed. If a trait has complete penetrance, it means that 100% of individuals with a particular genotype will express the expected phenotype. If a trait has incomplete penetrance, it means that not all individuals with a particular genotype will express the expected phenotype.

For example, if a trait has 80% penetrance, it means that 80% of individuals with a particular genotype will express the expected phenotype, while 20% will not.

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sketch and label a eukaryotic cell for animal and plant

Answers

Answer:

Here is a diagram of eukaryotic cells! hope it helps

Explanation:

sketch and label a eukaryotic cell for animal and plant

in the absence of direct sunlight, the euglena might lose its:______.

Answers

The euglena is not able to undertake photosynthesis without direct sunlight.

Thus, the single-celled creature euglena has traits that are similar to both plants and animals. It can perform photosynthesis in the presence of sunlight because it possesses chloroplasts, which house the pigment chlorophyll. Euglena can transform light energy into chemical energy during photosynthesis, which results in the production of glucose and the release of oxygen.

Euglena may lose its capacity for photosynthesis in the absence of direct sunshine, though. Without enough light, the organism would have to rely on alternate energy sources or survival strategies to maintain itself since the chloroplasts cannot absorb energy to generate glucose.

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Organic molecules are the same as biomolecules true or false?

Answers

Answer:

false

Explanation:

ayo ill give brainliest if u re-write this in a different wording!
I believe that the young Earth creationism make more sense. If this universe exists for million years, we might know more record of the history, our technology might be better. Phones, computers, and TVs will not be invented at 20th and 21th century, they shall be invent earlier. The Earth might be destroyed because all the time people are making environmental damage. If the world exists for million years, and people are destroyed the world every day, that our home Earth might already be destroy and disappear. Any way I think both theories are support with the evidence, and both have possibilities. Nevertheless, I believed the word of the Bible, that God created this world by his word. No matter when God created this world, it was perfect at the beginning, because Adam and Eve sinned so sin came to this world.

Answers

Answer:

in my opinion the young Earth creationism makes more sense. say if the world exists for many more years to come we will therefore know more about he history resulting to us having a better quality of technology since we have more information, more history. Because of this the technology we have today like phones computers ect would have been invented much earlier in history due to the amount of information we would have retained. I believe this would cause destruction upon our planet mainly because people are consistently creating environmental damage. imagine if the earth exists for a million more years, and people destroy the earth daily then our planet may be gone forever and we would be the cause of this incident. in conclusion I believe in what God says in what it says in the holy Bible as it says in the genesis how God created this world perfectly in 6 days and Adam and Eve ate the apple from the tree this was the reason for sin coming down on to earth otherwise we would all be in heaven.

Why is genetic editing a bad thing?

Answers

Answer:

Although it has some good effects it can also harmfully reduce human diversity and increase social inequality majority of genetic editing is pretty bad.

It probably shouldn't even be allowed because it can cause risks to future children, creating new forms of discrimination. This can also make people lose their trust in science technology.

New toxins can be produced, Gene Transfer to Wild or Weedy Relatives, change in Herbicide Use Patterns. There are most Unkown harms yet to be discovered.

Answer:

it messes with genes. genes are important for forming organs and organ system in humans' early stages. Genes define the way we look. If we redefine genes, it may lead to abnormal consequences for humankind.

Genetically editing anything in general could cause serious complications in our world. It's almost like using our precious invention, life as a toy.

hope it helps!

1. What type of muscle controls leg movement?

cardiac

smooth

striated

2.What happens when a muscle contracts?

It shortens

It lenthens

3. How many muscles are in the human muscular system?

under 200

over 500

over 1,000

over 600

4. What type of muscles are found in the large intestine?

cardiac

smooth

striated

Answers

1. Striated.

2. It shortens.

3. Over 600

4. Smooth

The blue color of the sky results from scattering of sunlight by air molecules the blue light has a frequency of 7.5x10^14Hz calculate the wavelength (in meters) associated with this radiation

Answers

Answer:

Explanation:

Electromagnetic waves all travel at the speed of light when in vacuum, and essentially this same speed in normal air. Since wave speed is product of frequency and wavelength, c = f λ and λ = c/f = (3.00 x 108 m/s) / (7.5 x 1014 Hz) = 4.00 x 10-7 m = 400 x 10-9 m = 400 nm.

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