in pea plants purple flowers are dominant to white flowers in a cross with a true breeding plant with purple flowers and a plant with purple flowers what percentage of plants will have purple flowers

Answers

Answer 1

100% have purple flowers , because the purple factor is the dominant factor.

What is Punnett Square?

Punnett Square is defined as the class diagram used to predict the genotype of a particular cross or breeding experiment which is named after Reginald C. Punnett, who formulated the approach in 1905. It is used by biologists to determine the likelihood of one offspring with a particular genotype.

An example of a Punnett square which shows the result of a cross between two purple flowers, each with a dominant factor and a recessive factor.

100% have purple flowers, because the purple factor is the dominant factor. So, the [tex]F_1[/tex] will produce 4 Bb progeny which is purple colour in colour. This cross occur between Purple (BB) and White (bb).

Thus, 100% have purple flowers , because the purple factor is the dominant factor.

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Related Questions

in pea plants purple flowers are dominant to white flowers. In a cross with a true breeding plant with purple flowers and a plant with purple flowers, what percentage of plants will have purple flowers?

A. 25%

B.50%

C. 75%

D.100%

Answers

Answer: So if you meant to say breeding a purple and white flower itd be 50 %

breeding two purple flowers and one white flower it’s 25%

If they are both purple flowers 100%

Through the course of evolution, plants have developed smaller gametophytes and larger sporophytes. Study the list of plants. Then, place them in order, from the one with the briefest gametophyte stage to the one with the longest gametophyte stage.

Answers

The gametophyte is one of the two alternative multicellular phases in the life cycles of plants and algae.

While gametophytes exhibit a haploid, gamete-forming stage of the plant's life cycle, sporrophytes exhibit a diploid, spore-forming stage. Green algae have isomorphic gametophytes and sporophytes (indistinguishable). Given that it is the most obvious stage in their life cycle, the gametophyte stage is common among bryophytes like mosses. Ferns and seed plants are examples of sporophytes, the earliest stage of vascular plants. As a result, mosses have the longest gametophyte stage and seed plants have the shortest. Bryophytes are more likely to be at the gametophyte stage than the sporophyte stage as compared to higher (i.e., vascular) plants. Despite the fact that certain types of algae have preset life cycles, environmental conditions frequently have an influence on the dominant phase in the majority of algae.

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Proteins are first digested by the enzyme pepsin in the stomach where the pH is 2. Then in the small intestines where the pH is 8, the digestion of the protein is continued by trypsin and chymotrypsin. Which of the following best explains the change in function of trypsin in the stomach?
Trypsin will not change and will continue to breakdown proteins in the stomach. Trypsin will not change shape; it will adapt to the acidic environment and continue to digest the proteins. The acidic environment of the stomach would change the shape of trypsin and decrease its enzymatic activity. Pepsin will change the shape of trypsin by acting as a competitive inhibitor.

Answers

Statement C. The acidic environment of the stomach would change the shape of trypsin and decrease its enzymatic activity best explains the change in the function of trypsin in the stomach.

Why do pH conditions affect enzyme activity?

The pH conditions affect enzyme activity because they are associated with the concentration of ions that are able to modify the structure of the enzyme and consequently also its catalytic functions.

Therefore, with this data, we can see that pH conditions affect enzyme activity in the case of trypsin to decrease the conversion of substrates to chemical products.

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all organisms with eukaryotic cells are grouped in domain__

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Eukarya. They are all a part of the Eukarya domain. Eukaryotes , or organisms having cells that have a nucleus, are the types of organisms found in this domain.

Protists, fungi, plantae (plants), and animalia are the four kingdoms into which scientists divide species belonging to the domain Eukarya (animals) .All species belonging to the kingdoms Protista, Plantae, Animalia, and Fungi contain eukaryotic cells. Large and complex creatures are made up of eukaryotic cells, which have a nucleus surrounded by the nuclear membrane. All organisms with a nucleus fall under the domain Eukarya. The last four kingdoms of the six-kingdom structure are "Protista," Fungi, Plantae, and Animalia.

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Which of the following compounds is NOT an enzyme?

O B-galactosidase
O dehydrogenase
O cellulase
O sucrose
O catalase

Answers

The correct answer is D) sucrose. Enzymes are proteins that act as catalysts, accelerating biochemical reactions in the body. B-galactosidase, dehydrogenase, cellulase, and catalase are all examples of enzymes. Sucrose, on the other hand, is not an enzyme; it is a disaccharide sugar composed of glucose and fructose molecules.

Enzymes are proteins that act as catalysts, speeding up biochemical reactions in the body. B-galactosidase, dehydrogenase, cellulase, and catalase are all examples of enzymes. Sucrose, on the other hand, is not an enzyme; It is a sugar disaccharide made up of glucose and fructose molecules. Enzymes bind to substrates, forming an enzyme-substrate complex.

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Which of the following is the best evidence that Tanya has Type 2 (not Type 1) diabetes mellitus?
a. She is experiencing vision problems
b. She feels thirsty all the time
c. She has lots of sugar in her blood, but her cells are starved for sugar
d. She is 50-years old and out of shape

Answers

D: "She is 50 years old and out of shape", this describes the best evidence that Tanya has Type 2 (not Type 1) diabetes mellitus.

Type 2 diabetes is characterized by a malfunction in the way the body controls and utilizes sugar (glucose) as fuel. This long-term (chronic) disorder causes an excess of sugar to circulate in the bloodstream. High blood sugar levels can eventually cause cardiovascular, neurological, and immunological system problems.

Thus, Tanya is out of shape at the age of 50 years, providing the best description that she has Type 2, not Type 1, diabetes mellitus.

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All of the following are safe procedures to follow when heating a beaker of water except: A: use heat-resistant gloves B: watch the beaker as it is heated C: remove your goggles when you put the beaker on the hot plate D: keep the counter clear of papers

Answers

With the exception of taking off your goggles when placing the beaker on the hot plate, all of the following are safe practices to follow when heating a beaker of water. This surgery is risky.

What is the fundamental guideline for lab safety?

When handling dangerous materials in the lab, always wear long pants, safety glasses, and a lab coat. The easiest approach to protect oneself when working in a lab is to wear the correct protective clothing. Before leaving the lab, take off your personal protective equipment and wash your hands.

Why are lab safety regulations crucial?

Chemical safety regulations are essential because practically every lab utilizes chemicals of some form. By adhering to these guidelines, staff can prevent spills, other mishaps, and environmental harm.

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Which of the following does not contribute to water conservation?

A) The collecting duct
B) The countercurrent multiplier
C) ADH
D) Diuretics
E) The length of the nephrons

Answers

The correct answer is E) The length of the nephrons. The collecting duct, countercurrent multiplier, and antidiuretic hormone (ADH) all help the body conserve water by reabsorbing it from the nephrons and returning it to the bloodstream. Diuretics, on the other hand, help the body get rid of excess water. The length of the nephrons does not contribute to water conservation.

The nephrons are the functional units of the kidneys and are responsible for filtering and reabsorbing water and other substances from the bloodstream. They are made up of a glomerulus, proximal convoluted tubule, loop of Henle, distal convoluted tubule, and collecting duct. The length of the nephrons helps to determine the amount of water that is reabsorbed by the body. The longer the nephrons, the more water is reabsorbed. The collecting duct, countercurrent multiplier, and antidiuretic hormone (ADH) all help the body conserve water by reabsorbing it from the nephrons and returning it to the bloodstream.

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Non-Mendelian genetics practice

Answers

Any characteristics that are gradated, such as nose size or shape, skin colour, hair colour, and height.

What is non mendelian genetics?

any inheritance type where characteristics do not separate according to Mendel's laws. This comprises polygenic qualities, codominance, imperfect dominance, and the inheritance of several allele traits.

Multiple allele traits, co-dominance, polygenic traits, sex-linked inheritance, and incomplete dominance are the four non-Mendelian inheritance examples.

Genetic diversity and the impact of the environment

Numerous variables affect a variety of traits, including height, skin tone, eye colour, and disease risk. They could be hereditary, environmental, or a combination of the two. Genetic diversity.

The ABO blood type alleles IA and IB are neither dominant nor recessive to one another. They are co-dominant instead. When two alleles of a gene are expressed equally in the phenotypic of heterozygotes, codominance develops.

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Which of the following is most likely to cause
an inheritable genetic disorder?
• A. Somatic cells are produced with a missing or incorrect sequence
in a part of a gene that produces a single amino acid
• B. Gametes are produced with a missing or incorrect sequence in a
part of a gene that produces a single amino acid
• C. Somatic cells are produced with a missing or incorrect sequence
in a part of a gene that controls the activation of other gene
sequences
• D. Gametes are produced with missing or incorrect sequences in
the part of a gene that controls the activation of other genes

Answers

Gametes are produced with a missing or incorrect sequence in a part of a gene that produces a single amino acid.

What are Gametes?

Gametes are reproductive cells, such as sperm and egg cells, that contain half the normal number of chromosomes and are capable of fusing with another gamete of the opposite type to form a new individual organism.

Gametes produced with a missing or incorrect sequence in a part of a gene are known as gene mutations. These mutations can disrupt the normal functioning of the gene, resulting in a single amino acid being missing or incorrect in the protein product. This can lead to a variety of health issues, depending on the gene and the severity of the mutation.

Hence, Option B is correct.

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A. Discuss the transfer of biomass when one organism eats another. Use your knowledge of digestion to discuss how food is broken down and used by the consumer.

Answers

Biomass is transferred from one organism into another through the eating of another organism.

It should be noted that food is broken down as the body of the organism converts the biomass that is eaten into micro-molecules such as fatty acid, glucose, and amino acid.

Furthermore, when an organism eats another organism, then only 10% of the energy of the biomass will be transferred into the organism while 90% of the energy is lost as heat energy. When we go up in the energy pyramid, the number of organisms will reduce due to the fact that there is less food that's available for the organisms at the top of the pyramid. An example is when there are 100 herbivores that are present in a jungle while the carnivores are 10. It implies that there are typically fewer organisms at the top of an energy pyramid.

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The origins of the lateral head of the gastrocnemius muscle are the __________.
medial condyle and posterior surface of the femur
patellar surface and posterior surface of the femur
lateral condyle and posterior surface of the femur
patellar surface and anterior surface of the femur

Answers

The origins of the lateral head of the gastrocnemius muscle are the lateral condyle and posterior surface of the femur.

The gastrocnemius muscle is found in the posterior compartment of the leg, beside the soleus. It is classified as a superficial muscle since it is positioned directly beneath the skin and its form can frequently be seen through the skin.

The soleus muscle is located deep to the gastrocnemius (far away from the skin). Some anatomists regard them to be a single muscle, the triceps surae, or "three-headed of the calf," because they share an insertion via the Achilles tendon. The plantaris muscle and a piece of its tendon pass between the two muscles and are responsible for "locking" the knee from a standing posture. Because the anterior compartment of the leg is lateral to the tibia, the bulge of muscle on the anterior side is really medial to the tibia.

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How does muscular endurance impact health and wellness?

Answers

Muscular endurance plays an important role in health and wellness:

Having good muscular endurance can help improve posture, balance, coordination, and agility, reducing the risk of injury. It can also help improve performance in physical activities such as running, cycling, and swimming, and can help reduce the risk of chronic diseases. Additionally, muscular endurance can help improve overall physical fitness, allowing the body to work for longer periods of time before becoming fatigued. Finally, having good muscular endurance can help improve mental and emotional health, as it can help to reduce stress and anxiety.

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Each home ring in hemoglobin encloses an atom of
A) magnesium.
B) calcium.
C) iron.
D) sodium.
E) copper.

Answers

Iron. Your blood has a large content of iron. That is because the hemoglobin vines with it.

Below is a sequence of bases along one side of a DNA molecule.
Write out the sequence of DNA bases that would pair with the
ones shown.
ATGGCGATT

Answers

Answer:

TACCGCTAA

Explanation:

A and T pair together, so do G and C.

PLS ANSWER

Which of the following is most likely to cause an inheritance genetic disorder?

A. Somatic cells are produced with a missing or incorrect sequence in a part of a gene that produces a single amino acid

• B. Gametes are produced with a missing or incorrect sequence in a part of a gene that produces a single amino acid

C. Somatic cells are produced with a missing or incorrect sequence in a part of a gene that controls the activation of other gene sequences

D. Gametes are produced with missing or incorrect sequences in the part of a gene that controls the activation of other genes

Answers

Answer: I think it would be C and/ or D cuz if there's a gene that connects to other genes and isn't working ALOT could go wrong and the kid could be messed up.

Answer:

Option B, gametes are produced with a missing or incorrect sequence in a part of a gene that produces a single amino acid.

Explanation:

Somatic mutations don't cause any genetic disorders due to the mutations happening to cells that aren't the sperm or the egg. Therefore, you can eliminate A and C.

Most mutations stem from the problem of DNA replication, where a codon is erroneously copied during the process of duplicating DNA. However, that does not lead to the deactivation of other genes.

Option B is correct.

medical professionals are concerned with the increase in the number of bacterial species that are resistant to antibiotics. Once resisitance appears in a bacterial population, it spreads rapidly. This is most likely because

Answers

This is most likely because of the process of natural selection. Bacteria with a resistance to antibiotics will be more likely to survive, reproduce, and pass on their resistant trait. As more bacteria with this trait are produced, the frequency of antibiotic resistance in the population increases.

examples of alterations of chromosomal structures include all of the following except __________.
a. deletions b. inversions
c. aneuploidy
d. translocations
e. duplications

Answers

Examples of alterations of chromosomal structures include all of the following except c. aneuploidy.

Chromosome issues may be divided into categories: abnormalities in chromosome wide variety and chromosome structural rearrangements. Because even small segments of chromosomes can span many genes, chromosomal issues are ordinarily dramatic and frequently fatal. A trisomy is a chromosomal situation characterized with the aid of using a further chromosome. A individual with a trisomy has forty seven chromosomes rather than 46. Down syndrome, Edward syndrome and Patau syndrome are the maximum not unusual place varieties of trisomy.

Thus, option c is the correct choice.

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Label the indicated parts of the eukaryotic cell. Plasma munbond KO Mitochondrion A cytoplusu Endoplasmic reticulum Golgi apparatus Transport vesicle C

Answers

Eukaryotic cell (eg. human epithelial cell)

a) Plasma membrane (for the protection of cell from external pressure)

b) mitochondria( give energy to cell in the form of ATP(adenosine tri phosphate)

c) cytoplasm ( where orgenells of cell present, organells eg. ribosome, mitochondira, nucleous )

d) endoplasmic recticulm( protein folding is the main fuction, transport of protein will take place  )

f) ribosome (protein synthesis happens)

g) Nucleous and extra nuclear part is endoplasmic recticulm

you can see a vescicular part near endoplasmic reciticulm that part is called transport vesicle where protein transport will happen.

What exactly are eukaryotic cells?

Eukaryotes are creatures with nuclei and other membrane-bound organelles. The term "eukaryotic organisms" refers to plants that have been exposed to a wide spectrum of toxins. Eukaryotes can be single-celled or multicellular in nature.

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Label The Indicated Parts Of The Eukaryotic Cell. Plasma Munbond KO Mitochondrion A Cytoplusu Endoplasmic Reticulum Golgi Apparatus Transport Vesicle C

Which of the following best describes the action of an endocrine disruptor?
A. An endocrine disruptor attacks hormones that invade a body system and cause disease.
B. An endocrine disruptor blocks the receptor protein binding site of a hormone so that the cell cannot receive a signal.
C. An endocrine disruptor acts as an organic catalyst, produced by living things to regulate the rate of chemical reactions.
D.An endocrine disruptor helps to transport substances, such as pesticides, in an organism following exposure.

Answers

The correct option is B ;  An endocrine disruptor blocks the receptor protein binding site of a hormone so that the cell cannot receive a signal.

Endocrine disruptors' mode of action Endocrine disruptors can replicate or partially mimic natural hormones in the body, such as oestrogens and androgens, as well as thyroid hormones.

It may prevent natural hormones from interacting with their receptors by affecting their metabolism in vivo. Endocrine disruptors are substances that mimic naturally existing hormones in animals, causing developmental abnormalities. Endocrine disruptor. a (occasionally) manufactured substance that, when taken into the body, mimics or inhibits hormones and affects normal physiological processes (either antagonists or agonists) Endocrine disruptors are examples. Pesticides containing diethylstilbesterol (DES) (DDT, PCB)

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Histone deacetylase is recruited by a protein that binds to:
a promoter
an enhancer
a silencer
histones
none of the above

Answers

The answer is none of the above. A protein will always find to an active site.

A protein that binds to histones induces the recruitment of histone deacetylase. So, the correct option is D.

Proteins called histones are essential for protecting DNA and controlling genes. They associate with DNA to form complexes that give rise to chromatin structure. Acetylation and deacetylation of histones can change how accessible DNA is to transcription factors and other regulatory proteins, which can have an effect on how genes are expressed.

It deacetylates histones in the context of histone deacetylases, resulting in a more compact chromatin structure and often repressing gene expression. Specific proteins that bind to histones and mark them for modification often make it easier for histone deacetylases to be recruited.

Therefore, the correct option is D.

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In the same mouse species, a fourth unlinked gene (gene P/p) also affects fur color.
For mice that are either homozygous dominant (PP) or heterozygous (Pp), the organism’s fur color is dictated by the other three genes (A/a, B/b, and C/c).
For mice that are homozygous recessive (pp), large patches of the organism’s fur are white. This condition is called piebaldism.
In a cross between two mice that are heterozygous for agouti, black, color, and piebaldism, what is the probability that offspring will have solid black fur along with large patches of white fur?

Answers

The correct response is that 1/4 of the progeny will likely have pieblad, or white patches, 3/4 will have black fur, 3/4 will likely have colourful fur, and 1/4 of the mice offspring will likely have solid colour. The chance is 1/4 X 3/4 X 3/4 X 1/4, which is 9/256.

What is homozygous or heterozygous?

Allele pairings are categorised using the terms homozygous and heterozygous. Homozygous individuals are those who have two copies of the same allele (RR or rr). While a gene region with two unique alleles is referred to as being heterozygous (Rr), an organism with numerous alleles is. A heterozygous genotype can consist of one normal allele and one mutated allele, or two different mutated alleles.

What is homozygous example?

You are considered to be homozygous for a gene if you have two identical copies of it. A genotype with heterozygosity, however, has various alleles.

Due to the independent segregation of each gene, the probability of each genotype must be determined separately, and the four probabilities must then be multiplied. The likelihood of having a child with a solid colour (aa) is 1/4; the likelihood of having a child with black fur (BB or Bb) is 3/4; the likelihood of having a child with colourful fur (Cc or cc) is 3/4; and the likelihood of having a child with piebaldness, or white patches, is 1/4. The chance is 1/4 X 3/4 X 3/4 X 1/4, which is 9/256.

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somatic cells in animals differ from gametes in that somatic cells __________.

Answers

Answer:

contain two sets of each of the chromosome types

Explanation:

Somatic cells are 2n (diploid) so they contain two copies of each chromosome whereas gamete cells are n so they only have 1 of each chromosome.

Why do brothers grow apart?

Answers

Many events occurring in life can cause brothers to grow apart.

There are many reasons why brothers can drift apart over time. Life has a way of taking us in different directions, making it harder to stay connected.

Busy schedules, competing interests, and life changes can all contribute to a gap between brothers. Long distance can also be a factor, making it difficult to maintain regular contact.

Even when brothers live close by, heavy work and family commitments can reduce the amount of time spent together and cause brothers to grow apart. As life moves forward, brothers can find themselves growing apart, leading to a feeling of disconnection and loneliness.

Fortunately, there are ways to bridge the gap and stay close, no matter how far apart brothers may be.

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The ________ pathway connects the ventral tegmental area with the nucleus accumbens.
a. mesocortical
b. mesolimbic
c. nigrostriatal
d. corticofugal
e. spinothalamic

Answers

The b. mesolimbic  pathway connects the ventral tegmental area with the nucleus accumbens.

Mesolimbic pathway: what is it?

Dopamine is transported via the mesolimbic route from the VTA to the nucleus accumbens, amygdala, and hippocampus. It is thought that the nucleus accumbens, which is located in the ventral medial region of the striatum, is involved in the processes of reward, desire, and the placebo effect.

The brain's reward system is interconnected with regions responsible for behaviour and memory. Dopamine-releasing neurons in the ventral tegmental region are where pleasure is first felt. The brain starts to establish links between the conduct and the pleasure, making it more likely that we will engage in the behaviour again.

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the male produces an average of __________ sperm a day, yet only __________ reach the ovum.

Answers

The male produces an average of 300 million sperm a day, yet only 300 to 500 reach the ovum.One sperm interacts with sperm-binding receptors on the plasma membrane of the oocyte . Now, the placenta is being formed as blood vessels expand.

Through the umbilical cord, the placenta, a structure attached to the uterus, transfers nutrients and oxygen from the mother to the growing oocyte. It can take the sperm 30 to 45 minutes to reach the egg once it has entered the reproductive system. For this, it's critical to have a sperm that is in good health and has the proper range of motion to reach the egg and fertilise it.

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in pea plants, green pods are dominant and yellow pods are recessive. if a heterozygous green pod plant was crossed with a yellow pod plant, what percentage of the plants will likely be yellow?

Answers

50%

If you look at a pinnet square you achieve 2 Yy (dominant green trait present) and 2yy(both recessive yellow trait)

What age difference is too much for siblings?

Answers

Answer:

Explanation: 19-25

If one has ever had a cup of coffee or sipped a beer, one has taken a(n) drug. A. psychoactive B, antiarrhythmic C. interferon D. antianginal.

Answers

If one has ever had a cup of coffee or sipped a beer, one has taken a(n) psychoactive drug

A psychoactive drug, psychopharmaceutical, psychoactive agent, or psychotropic medication is a pharmacological substance that alters nervous system functioning, causing changes in perception, emotion, consciousness, cognition, or behaviour.

These chemicals can be used therapeutically, recreationally, or spiritually to increase perceived performance, alter consciousness (for ceremonial, spiritual, or shamanic purposes, for example), or for study.

Some psychoactive medications, which some believe to have therapeutic benefit, may be prescribed by physicians and other healthcare practitioners.If you are looking for a unique method to express yourself, here is the place to be (e.g. increased alertness)

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“Effort overcomes ability every time”

What does this quote mean

Answers

" Effort overcomes ability every time "  means hard work wins over unused potential.

This saying is one of the most famous and my favorite, it is commonly used as " Hard work wins when talent doesn't work hard ".

All of us are born with different abilities and at different levels. I can be good at football, but my friend might be better than me. It's called Natural Ability.

Similarly in everything, there are levels to one's expertise, however, it can be changed through consistent effort and also how intense one's effort is.

Since progress happens through effort, one can progress beyond Natural.

This means I can be better than my friend through continuous practice and effort in football.

Hence, it means Hard work wins regardless of the level of ability or Consistency wins.

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