As human travel increases, the number of introduced species likely,
A) Decreases
B) Increases
C) Stay the same
D) Is eliminated

Answers

Answer 1

Answer:

B), increases

Explanation:

because as human travels the More they introduce new specis


Related Questions

I Will give brainiest so please answer and this gives 69 points




Year Carbon Emissions (gigatons) Temperature (Fahrenheit)

1960 4.2 57.2

1970 5.8 57

1980 6.2 57.4

1990 7.8 57.6

2000 8 58

2010 9.8 58

Increase carbon dioxide emissions by 0.2 for each step forward for the rest of scenario three.

2020

2030

2040

2050

2060

2070

2080

2090

2100

2110

Answers

Answer:

2020 - 9.8 - 58

2030 - 9.8 - 58.5

2040 - 9.8 - 58.9

2050 - 9.8 - 59.1

2060 - 9.8 - 59.5

2070 - 9.8 - 59.8

2080 - 9.8 - 60

2090 - 9.8 - 60.1    

2100 - 9.8 - 60.5

2110 - 9.8 - 60.9

Hope this helps.

"Explain how chemical energy for use in the cell is generated by electron transport and chemiosmosis"

PLEASE HELP!!

Answers

Answer:

Explanation:

The electron-carrier proteins are arranged in the inner mitochondrial wall. A dehydrogenase enzyme (think of it as the first protein of the electron-transport chain) oxidises NADH2 (which is the reduced coenzyme NAD) and/or FADH2 (reduced coenzyme FAD). The energy from the oxidation process is used to pump hydrogen ions from the matrix to the inter-membrane space of the mitochondrion. Because of this, gradient of hydrogen ion concentration builds up across the inner mitochondrial membrane, which generates a potential difference across the membrane. The protons then flow back to the matrix through an enzyme called ATP synthase (also called ATPase). (This is called chemiosmosis because a chemical substance (H+) moves across a membrane, down the concentration gradient.) This releases energy needed for the ATP synthase to phosphorylate ADP, i.e. make ATP (chemical energy for use in the cell) from ADP and inorganic phosphate.

Note: Bolded things are important, everything else is just additional clarification in case you need it. This is the last major phase of cellular respiration. If you want a deeper insight into the process, I suggest you read a bit about glycolysis and Krebs cycle.

starting with the return of blood to the heart, place the major phases of the cardiac cycle in order.

Answers

There are four main stages of activity in the cardiac cycle: Isovolumic contraction, inflow, ejection, and relaxation are the order of events.

The human heart's activity from the start of one heartbeat to the start of the next is known as the cardiac cycle. It consists of two phases: a diastole, in which the heart muscle relaxes and re-fills with blood, and a systole, in which the heart muscle contracts forcefully and pumps blood.

The heart quickly relaxes and expands after emptying to receive a second inflow of blood returning from the lungs and other body systems, then contracts to send blood back to those systems. Before a heart can once again pump effectively and regularly, it must first be fully enlarged.

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when the pathway shown here is activated, the cellular response is gene transcription. what will happen to gene transcription if the signaling molecule (ligand) is absent, but the ras protein is always bound to gtp and why?

Answers

Because Ras-GTP is the active version of the signal transduction protein for cell division, cell division would increase.

What is mean by cell division?

The process by which a parent cell divides into two daughter cells is known as cell division. Cell growth and chromosome replication precede cell division, which often happens as part of a longer cell cycle.

The process of making new cells for the body, known as mitosis, is usually meant when the term "cell division" is used. Meiosis, a cell division process, is what creates egg and sperm cells.

New cells are created as cells divide. One cell divides into two, which divide into four more cells, and so on. Because new cells are created as old cells divide, we refer to these processes as "cell division" and "cell reproduction."

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Help me PLEASE! Choose one answer! First one to answer get Brainliest!

8.) Major evolutionary change such as the creation of a new species

A.) Embryology
B.) Phylogeny
C.) Macroevolution
D.) Microevolution

Answers

Answer: B.) Phylogeny

Explanation:MArk me as brainlists

Answer:it c

Explanation:

other animals that have become endangered? what caused a decline in their populations? was it one factor or many factors?

Answers

Examples of endangered animals include African elephants, Sumatran orangutans, vaquita porpoises, and black rhinoceroses, with declines caused by a combination of factors such as habitat loss, hunting, and human activity.

There are many other animals that have become endangered due to a variety of factors. For example, the African elephant has become endangered due to poaching for their ivory tusks, habitat loss due to human activity, and conflict with humans. The Sumatran orangutan has become endangered due to habitat loss from deforestation for agriculture and logging, as well as illegal hunting.

The vaquita porpoise has become endangered due to a bycatch in fishing nets, and the black rhinoceros has become endangered due to poaching for their horns. The decline in these populations is typically due to a combination of factors, rather than a single cause.

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Biology Question on statins

Biology Question on statins

Answers

The description of the  blood pressure and glucose are mentioned below.

What is blood pressure ?

Two measurements are used to determine blood pressure: systolic (measured during the heartbeat, when blood pressure is at its peak), and diastolic (measured between heart beats, when blood pressure is at its lowest).

What is glucose?

It is a monosaccharide, which means "one sugar," and is the most basic type of carbohydrate (carb). Fructose, galactose, and ribose are examples of other monosaccharides. This is the form in which the body eventually transforms food glucose and other carbs into blood glucose.

Therefore, description of the  blood pressure and glucose are mentioned above.

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Stenosis (constriction) of the pyloric sphincter would interfere with _________________.

Answers

Stenosis (constriction) of the pyloric sphincter would interfere with the movement of food from the stomach to the small intestine.

What is the Pyloric sphincter?

Pyloric sphincter is a thick band of muscles found between the stomach and small intestine. Its function is to control the movement of food and chyme into the small intestine for further digestion.The stenosis (constriction) of the pyloric sphincter leads to interference with the movement of food from the stomach to the small intestine. This is because the opening through which food passes is reduced in size, so the amount of food that can pass through is reduced as well.Therefore, the stenosis of the pyloric sphincter affects the normal function of the digestive system. If the stenosis becomes severe, it could cause an obstruction that could lead to other complications such as vomiting, abdominal pain, and distension.

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The two types of reproduction are....

The two types of reproduction are....

Answers

Answer:

Sexual & Asexual

Explanation:

Hope this helped!

Answer:

asexual and sexual.

Explanation:

trust me on this one

In pea plants, the allele for yellow seeds (Y) is dominant and the allele for
green seeds (y) is recessive. Two plants with the following genotypes are
crossed:
YY x Yy
What ratio of yellow seeds to green seeds should you expect in the offspring?
A. 2:2
B. 3:1
C. 1:3
D. 4:0

Answers

Answer: B: 3:1

Explanation: The first pair of alleles are homologous, consisting of both dominant yellow seeds, while the other pair is heterozygous with one yellow seed and one green seed. This would make the genotype 75% yellow and 25% green, or 3:1

Question 3 How many phenotypes result from a dihybrid cross involving completely linked genes (i.e., no crossover)?
A) 6
B) 2
C) 9:3:3:1
D)4

Answers

The number of phenotypes result from a dihybrid cross involving completely linked genes is B. 2.

A dihybrid cross is a genetic cross between two individuals who are both heterozygous for two distinct genes. The inheritance of both genes is studied in dihybrid cross. There are various aspects of Mendelian genetics that a dihybrid cross may demonstrate.

The law of independent assortment is demonstrated in a dihybrid cross involving unlinked genes. When two unlinked genes on two different chromosomes are considered, the F2 offspring will show a 9:3:3:1 phenotypic ratio. When both genes are completely linked, the F1 offspring will have only two phenotypes. In other words, in a completely linked dihybrid cross, only two phenotypes will be produced by the F1 offspring. Answer: B) 2

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What organelles are found inside cardiac muscle (cells)?

Answers

Answer:

Cardiac muscle cells also contain mitochondria, which many people call “the powerhouses of the cells.” These are organelles that convert oxygen and glucose into energy in the form of adenosine triphosphate (ATP).

As turgor pressure increases in guard cells, the transpiration rate would be expected to __________.

Answers

As turgor pressure increases in guard cells, the transpiration rate would be expected to increase.

It is commonly believed that the force behind cell development is the result of turgor pressure acting on extensible cell walls. Cells expand and apical cells, pollen tubes, and other plant structures, such root tips, extend when turgor pressure rises.

Guard cell-specific signals elicit a response from leaf turgor. In addition to internal factors, stomatal movement is triggered by them. Stomatal opening is triggered by light and low carbon dioxide levels, while the water gate is closed by darkness and high Carbon dioxide levels.

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Electrons were discovered because of the their
a. charge
b. movement
c. mass
d. shapre

Answers

Charge ? I’m not sure

Students in Mr. Painter's science class studied samples of pond water using a microscope. To prepare for the experiment, the students placed a drop of pond water on each microscope slide, and then covered the drop with a cover slip that was marked with a 1 mm grid. Using the microscope to view the slides, students counted how many of each type of organism they found in each 1 mm square. Finally, each student calculated the total number of each type of organisms. Their data is shown below. Which organism is the least plentiful in the pond water studied? A. amoeba B. volvox C. euglena D. paramecium

Answers

Answer:

Euglena

Explanation:
the least plentiful organism in the pond water studied. Each student found fewer euglena than any other organism.

Which of the following mutations could result in the insertion of proline in place of alanine? A mutation in Alanyl-tRNA synthetase which ligates alanine to tRNAPro. A mutation in Prolyl-tRNA synthetase which ligates alanine to tRNAPro A mutation in tRNAPro that allows it to be recognized and aminoacylated by Alanyl-tRNA synthetase A mutation in tRNAAla that allows it to be recognized and aminoacylated by Prolyl-tRNA synthetase.

Answers

None of the mutations listed would result in the insertion of proline in place of alanine. Alanyl-tRNA synthetase is the enzyme responsible for attaching alanine to tRNAAla, not tRNAPro. Therefore, a mutation in this enzyme would not lead to the incorporation of proline in place of alanine.

Prolyl-tRNA synthetase is the enzyme responsible for attaching proline to tRNAPro, not tRNAAla. Therefore, a mutation in this enzyme would not result in the incorporation of proline in place of alanine. A mutation in tRNAPro that allows it to be recognized and aminoacylated by Alanyl-tRNA synthetase would lead to the incorporation of alanine in place of proline, not the other way around.

A mutation in tRNAAla that allows it to be recognized and aminoacylated by Prolyl-tRNA synthetase would result in the incorporation of alanine in place of alanine, not the incorporation of proline in place of alanine.

Therefore, none of the mutations listed would result in the insertion of proline in place of alanine.

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a supracondylar or intercondylar fracture is also known as a fracture of the:

Answers

A supracondylar or intercondylar fracture is also known as a fracture of the distal humerus.

Fractures of the supracondylar and intercondylar regions of the distal femur are classified as distal femur fractures and are rather common injuries.

Adult intercondylar fractures of the distal humerus pose challenging therapeutic issues because of the intricate anatomy of the elbow, the small size of the fracture pieces, and the sparse sub-chondral bone, which is frequently osteopenic.

Young children frequently suffer from an elbow fracture known as a supracondylar fracture. A fracture in the upper arm immediately above the elbow joint is known as a supracondylar fracture.

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A supracondylar or intercondylar fracture is a fracture of the distal end of the humerus bone, specifically involving the area just above or between the two condyles (rounded protuberances at the end of the bone).

It is a common type of elbow fracture, and can result from a variety of traumatic injuries such as falls or direct blows to the elbow. Supracondylar fractures are more common in children, while intercondylar fractures are more common in adults.

A supracondylar or intercondylar fracture is a type of fracture that occurs in the distal end of the humerus bone. The humerus is the long bone in the upper arm, and its distal end forms the elbow joint with the bones of the forearm.

A supracondylar fracture is a break in the bone just above the condyles, which are the rounded protrusions at the end of the humerus that articulate with the forearm bones. This type of fracture is common in children, usually as a result of a fall on an outstretched hand or elbow.

An intercondylar fracture, on the other hand, is a break between the two condyles of the humerus. This type of fracture is less common than supracondylar fractures and typically occurs in adults, often as a result of a direct blow to the elbow.

Both types of fractures can be serious and may require surgical intervention to properly align and stabilize the bone fragments to promote proper healing.

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In multicellular organisms, cells working together and performing similar functions are called...

Question 9 options:

organ systems.


organisms


tissues


organs

Answers

Answer:

tissues

Explanation:

Your friend khamil experience a sharp, intense pain when he contracted his leg muscle running. Assuming this is indeed a muscle strain, it would be described as

Answers

Answer:

Muscle strain

Explanation:

Muscle strain

Answer:

B. Active

You're Welcome

Cells remove waste from their cytoplasm by passing it through the cell membrane and out of the cell. What two human body systems perform similar functions?.

Answers

Answer:delete it

Explanation:just do it

Amino acids are seen in ______ as _______ are needed to create DNA.

A)protein; nucleotide

B)fatty acid; hydroxides

C)polysaccharide; carboxyl

D)RNA; glucose

E)fats; sugars

Answers

Amino acids are seen in proteins as nucleotides are needed to create DNA.

Amino acids refers to organic compounds which are the building blocks of proteins with a central carbon atom known as the alpha carbon connected to an amino group (-NH2), a carboxyl group (-COOH), a Hydrogen (-H) group and a side chain (-R group) which can be alkyl or aryl depending on the specificity of the amino acids. A protein is formed by a linear chain of amino acids. This implies that they are combined in a certain order to form a linear chain called a polypeptide, which folds into a three-dimensional protein structure. Glycine, alanine, valine, leucine, isoleucine, proline, phenylalanine, tyrosine, tryptophan, methionine, cysteine, serine, threonine, asparagine, glutamine, aspartic acid, and glutamic acid are the 20 most common amino acids (EAA) found in proteins. Out of these 20 amino acids, 9 are essential amino acids (EAA), while the other 11 are non-essential amino acids (NEAA).

On the other hand, nucleotides are the building blocks of DNA. DNA is formed by a chain of nucleotides. Deoxyribonucleic Acid (DNA) is a long molecule that carries the genetic information required for the development, function, and reproduction of all living organisms, from bacteria to plants to animals. DNA is formed by two polynucleotide chains wrapped around each other in a double helix, with nucleotide subunits as the building blocks. Nucleotides are linked together by phosphodiester bonds to form a double helix structure of DNA. DNA molecules contain genetic information or instructions that determines the characteristics of living organisms for their development and functioning, and these instructions are written in the genetic code.

Amino acids are conjoined together by peptide bonds in a specific order and sequence to form a protein. DNA provides the genetic information needed to make proteins. Proteins are incorporated in various cellular functions as the likes of metabolism, structure, and signaling.

Therefore, amino acids are seen in proteins as nucleotides are needed to create DNA.

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Connective tissue provides which of the following functions? (Multiple answers)
1) support and structure
2) excretion
3) absorption
4) transportation of fluids

Answers

Answer:

1. support and structure. 4. transportation of fluids.

Explanation:

Answer:

1) support and structure

and

4) transportation of fluids

Explanation:

While performing the remainder of the physical exam, the doctor noted that ling has some swollen gland in her neck area, how would you refer to this area?

Answers

While performing the remainder of the physical exam, the doctor noted that ling has some swollen gland in her neck area. he would refer this area as lymphadenopathy.

The swelling of lymph nodes is referred to as lymphadenopathy. The lymph nodes are small glands that filter fluid from the lymphatic system. They are divided into follicles, which are further subdivided into B zones and T zones, which represent the starting point for lymphocytic maturation.Because abnormal lymphocyte proliferation can be caused by inflammation, infection, or cancer, clinicians must conduct a thorough history and physical to screen for lymphadenopathy. When inspecting for lymphadenopathy, all relevant anatomic regions should be thoroughly examined, including the neck, supraclavicular, axillary, and inguinal regions.

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Protein A has a binding site for ligand X with a dissociation constant, Ka, of 3.0 Ã 10-' M. Protein B has a binding site for ligand X with a Ka of 4.0 x 10-8 M. Calculate the K, for each protein. Protein A Ka= M-1 Protein B Ka= M-1 Which protein has greater affinity for ligand X? Why? Protein B has greater affinity because it has a lower Ka than Protein A. Protein A has greater affinity because it has a greater Ka than Protein B. Protein A has greater affinity because it has a greater Ka than Protein B
Protein B has greater affinity because it has a lower Ka than Protein A.

Answers

Protein B has greater affinity because it has a lower Ka than Protein A. This means that Protein B has a stronger binding affinity for ligand X and will bind to it more tightly and with greater specificity than Protein A. Here option D is the correct answer.

The dissociation constant (Ka) is a measure of the affinity of a protein for a ligand. The lower the Ka, the stronger the binding between the protein and the ligand, and the greater the affinity.

In this case, Protein B has a Ka of 4.0 x 10-8 M, which is lower than the Ka of Protein A, which is 3.0 x 10-7 M. This means that Protein B has a stronger binding affinity for ligand X than Protein A.

This difference in binding affinity can have important implications for the biological functions of these proteins, as proteins with high affinity for specific ligands can regulate biological processes and mediate cellular signaling pathways.

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What role does DNA's structure play in its function (for example, the type of bonds holding the bases together vs the type of bonds holding
the sugar/phosphate together)?

Answers

Answer:

DNA is the information molecule. It stores instructions for making other large molecules, called proteins. These instructions are stored inside each of your cells, distributed among 46 long structures called chromosomes. These chromosomes are made up of thousands of shorter segments of DNA, called genes.

Match the following neurotransmitters with their appropriate sites of release.
Postganglionic neuron from the sympathetic nervous system
A. Norepinephrine (NE)
B. Acetylcholine (Ach)

Answers

The neurotransmitter NE is released primarily from the sympathetic nervous system and the adrenal medulla, while Acetylcholine is released at neuromuscular junctions, in the autonomic nervous system.

Norepinephrine (NE) is primarily released from the sympathetic nervous system and the adrenal medulla in response to stress or arousal, while Acetylcholine (Ach) is released at neuromuscular junctions, in the autonomic nervous system, and in the central nervous system, playing a role in motor control, attention, learning, and memory.

NE is involved in the "fight or flight" response, increasing heart rate, blood pressure, and respiration, while Ach slows down heart rate and constricts pupils.

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Describe Lamarckian and Darwinian ideas about Evolution, and highlight the key differences between them.

Answers

Lamarckian and Darwinian ideas of evolution both attempt to explain the changes that occur in species over time. However, they differ in their approach to this topic. Lamarckian theory is based on the concept of "inheritance of acquired characteristics," whereas Darwinian theory is based on natural selection and survival of the fittest.

According to Lamarck's theory, an organism can acquire new characteristics during its lifetime in response to changes in its environment. These acquired traits can then be passed on to its offspring, resulting in a new species. For example, Lamarck believed that a giraffe could stretch its neck to reach higher leaves, and that over time, its neck would become longer as a result of this behavior. The offspring of this giraffe would then have longer necks, and this trait would be passed down from generation to generation.

In contrast, Darwin's theory of natural selection suggests that organisms with advantageous traits are more likely to survive and reproduce, passing these traits on to their offspring. Over time, this leads to the evolution of a species. For example, Darwin suggested that the long necks of giraffes are the result of a process of natural selection, where giraffes with longer necks were better able to reach food in tall trees and were therefore more likely to survive and reproduce.

In conclusion, the key difference between Lamarckian and Darwinian theories of evolution is that Lamarck believed in the inheritance of acquired traits, whereas Darwin's theory is based on natural selection and survival of the fittest. Darwin's theory has been widely accepted by the scientific community, while Lamarck's theory has been largely discredited.

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Air and water quality are made worse by urbanization. true or false​

Answers

True!!

Urbanization causes a lot of pollution, which can ruin air and water quality.

Which part of a plant cell contains chromosomes?

Answers

Answer:

Its the nucleus.

The Nucleus contains chromosomes

what the pulmonary circulation includes the movement of blood to and from the for gas exchange?

Answers

The right ventricle's oxygen-poor blood is transported to the lungs through pulmonary circulation, where it receives a fresh blood supply. The oxygenated blood is then returned towards the left atrium.

The definition of pulmonary circulation

The blood is shunted from of the heart to the lungs where it is resaturated by oxygen before being distributed throughout the systemic circulation. This process is known as pulmonary circulation.

What is the pulmonary circulation's primary purpose?

There are many essential functions performed by the pulmonary circulation. Its main job is to exchange gasses across the alveolar membrane, which ultimately results in oxygenated blood being delivered to the rest of the body and carbon dioxide being removed from the bloodstream.

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Is that statement true or false?One adaptation of bioluminescent fish is that they may have lures that can produce light to help them hide from predators A. trueB. falsePlease Help!!! Ann has 3/4 as many stickers as Brenda. Brenda has 2/5as many stickers as Corrinea) Find the ratio of the number of stickers Ann has to the number of stickers Corrine hasb) What fraction of the number of stickers Ann has is the number of stickersCornine has? 5. which technique would a nurse employ when using listening skills appropriately when interviewing a client? you want the maximum compression of the spring to be 0.28 m . what must be the force constant of the spring? When Gerald started on his trip, his odometer read 109,875. At the end of his trip it read 110,480. How many miles did he travel? Explain how you got your answer. WILL GIVE brainliest HELP ASAP a known woman with diabetes is found unresponsive. her respirations are rapid and shallow; her skin is cool, clammy, and pale; and her pulse is rapid and weak. which of the following would best explain the likely cause of her condition? a) insulin overdose b) excessive eating c) high blood sugar d) failure to take insulin LOTS OF POINTS FOR THIS!! PLEASE ANSWER QUICk The printing press revolutionized communication. What effect do you think the abilityto mass-produce an image had on the art world?. How do you think periods of war or political revolution change the way people createand understand art?What ideas or images come to mind when you think of the terms "modern" or"modern era?" Which one of the following statements is true?A. Soil is composed of 4 components: water, eroded rock, air, and living organismsB. Water cannot move easily through the small, flat particles of clay.C. Liming increases the porosity of soil, leading to reduced waterlogging.D. Charles Darwin discovered how soil is formed by the weathering of rocks. Which statement about modernist writing is best supported by the text?Answer choices for the above questionA. Modernist writers wanted to return to classical values and virtues.B. Writing of the modernist period often defied conventions and form.C. Magical realism emerged in the early modernist period.D. Writers of the modernist period only wrote in stream-of-consciousness form. factorize 4x+17x-15 Solve the following equation for W.P=2L+2W I need help with this question, one cell phone plan is costs 29.94 per month plus 0.10 for each text message sent, Another plan costs 65.98 per two months plus 0.05 for each text message sent. For what number of text messages will the monthly bill for both plans be the same? The space between leaves on a stem is called Protein 1: Xenopus zygote will rapidly divide after fertilization. Mitosis requires microtubule assembly from tubulin monomers that are found in the cytoplasm. Task: Determine (i) whether tubulin is synthesized on free or bound ribosomes, (ii) how it gets to the cytoplasm Protein 2: Like all animal cells, Xenopus oocytes have numerous Na+/K+ pumps in their cell membrane needed for secondary active transport of, for example, glucose. Task: determine (i) whether the Na+/K+ pump is synthesized on free or bound ribosomes, and (ii) how it gets to the membrane Protein 3: Xenopus oocytes have cortical granules at the cell periphery. At fertilization, a fertilization membrane forms that prevents fertilization by more than one sperm. This happens when the cortical granules (vesicles that contain proteases) exocytose and the proteases catalyze reactions in the ECM to form a fertilization membrane. Task: determine (i) whether these proteases are synthesized on free or bound ribosomes, and (ii) how they get into the vesicles and then to the outside of the zygote. PLZZZZZZZZZZZZZZZZZZ HELP willam and debra are celebrating their anniversary by having a reception at a local reception hall. They have budgeted for their reception. If the reception hall charges a cleanup fee plus per person, find the greatest number of people that they may invite and still stay within their budget additional 10-10 use jflap to build a pda for the palindromes of even length over the alphabet {a,b .All of the following occur during the latent period of muscle contraction EXCEPT which one?a. Muscle cell membrane initiates an electrical impulse, which travels into the muscle cell.b. Myosin heads bind to actin filaments.c. Troponin-tropomyosin complex shifts, exposing myosin heads.d. Calcium is released from the sarcoplasmic reticulum.e. Myofibrils shorten. Kelly ran 3 miles fewer than twice as far as Jim. Jim ranm miles. Which expression represents how far Kelly ran? Filling in the missing words or phrases Estas verduras son del mercado. (the best)