Living organisms can be classified as prokaryotes or eukaryotes

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Living organisms can be classified as prokaryotes or eukaryotes Living organisms can be classified as prokaryotes or eukaryotes. Which two structures are common to both prokaryotic and eukaryotic cells? A. cell wall and nucleus B. cell wall and chloroplast C. plasma membrane and nucleus D. plasma membrane and cytoplasm

Living organisms can be classified as prokaryotes or eukaryotes Living organisms can be classified as prokaryotes or eukaryotes. Which two structures are common to both prokaryotic and eukaryotic cells? A. cell wall and nucleus B. cell wall and chloroplast C. plasma membrane and nucleus D. plasma membrane and cytoplasm

The diagram models how a poison bonds to the active site of an enzyme The diagram models how a poison bonds to the active site of an enzyme. Which function is the enzyme most likely unable to perform because of the attachment of the poison molecule? A. the release of stored chemical energy B. the donation of electrons to the substrate C. the supply of activation energy for a reaction D. the catalysis of the reaction with the substrate

The diagram models how a poison bonds to the active site of an enzyme The diagram models how a poison bonds to the active site of an enzyme. Which function is the enzyme most likely unable to perform because of the attachment of the poison molecule? A. the release of stored chemical energy B. the donation of electrons to the substrate C. the supply of activation energy for a reaction D. the catalysis of the reaction with the substrate D

Which statement best describes what happens to the enzyme when the temperature of the reaction increases to 63°C? A. The enzyme is used up and the reaction stops. B. The enzyme begins to decrease the rate of the reaction. C. The enzyme continues to increase the rate of the reaction. D. The enzyme changes shape and can no longer speed up the reaction.

Which statement best describes what happens to the enzyme when the temperature of the reaction increases to 63°C? A. The enzyme is used up and the reaction stops. B. The enzyme begins to decrease the rate of the reaction. C. The enzyme continues to increase the rate of the reaction. D. The enzyme changes shape and can no longer speed up the reaction.

Blood type is inherited through multiple alleles, including IA, IB, and i. A child has type A blood. If the father has type AB blood, what are all the possible phenotypes of the mother? A. phenotypes O or A B. phenotypes A or AB C. phenotypes A, B, AB D. phenotypes O, A, B, AB

Blood type is inherited through multiple alleles, including IA, IB, and i. A child has type A blood. If the father has type AB blood, what are all the possible phenotypes of the mother? A. phenotypes O or A B. phenotypes A or AB C. phenotypes A, B, AB D. phenotypes O, A, B, AB

Photosynthesis and cellular respiration are two major processes of carbon cycling in living organisms. Which statement correctly describes one similarity between photosynthesis and cellular respiration? A. Both occur in animal and plant cells. B. Both include reactions that transform energy. C. Both convert light energy into chemical energy. D. Both synthesize organic molecules as end products.

Photosynthesis and cellular respiration are two major processes of carbon cycling in living organisms. Which statement correctly describes one similarity between photosynthesis and cellular respiration? A. Both occur in animal and plant cells. B. Both include reactions that transform energy. C. Both convert light energy into chemical energy. D. Both synthesize organic molecules as end products.

A. ATP B. mRNA C. protein D. lipid The diagram shows the movement of ions against a concentration gradient to an area of higher concentration. Which molecule provides the energy needed for this movement to occur in a cell? A. ATP B. mRNA C. protein D. lipid a

A. ATP B. mRNA C. protein D. lipid The diagram shows the movement of ions against a concentration gradient to an area of higher concentration. Which molecule provides the energy needed for this movement to occur in a cell? A. ATP B. mRNA C. protein D. lipid a

Which component of this membrane contains a hydrophobic region and acts as the primary barrier to most foreign substances? protein cholesterol carbohydrate chain phospholipid bilayer

Which component of this membrane contains a hydrophobic region and acts as the primary barrier to most foreign substances? protein cholesterol carbohydrate chain phospholipid bilayer

Which event most likely occurs next in mitosis? A. The chromatin condenses. B. The nuclear envelope dissolves. C. The chromosomes double in number. D. The cell membrane pinches inward to divide the cytoplasm.

Which event most likely occurs next in mitosis? A. The chromatin condenses. B. The nuclear envelope dissolves. C. The chromosomes double in number. D. The cell membrane pinches inward to divide the cytoplasm.

Mitosis and meiosis are processes by which animal and plant cells divide. Which statement best describes a difference between mitosis and meiosis? A. Meiosis is a multi-step process. B. Mitosis occurs only in eukaryotic cells. C. Meiosis is used in the repair of an organism. D. Mitosis produces genetically identical daughter cells.

Mitosis and meiosis are processes by which animal and plant cells divide. Which statement best describes a difference between mitosis and meiosis? A. Meiosis is a multi-step process. B. Mitosis occurs only in eukaryotic cells. C. Meiosis is used in the repair of an organism. D. Mitosis produces genetically identical daughter cells.

The relative concentration of solute inside and outside a cell can cause water molecules to move across the membrane. Which phrase would be an alternate title to the diagram? Exocytosis in a Cell Active Transport in a Cell Osmosis Across a Membrane Facilitated Diffusion Across a Membrane

The relative concentration of solute inside and outside a cell can cause water molecules to move across the membrane. Which phrase would be an alternate title to the diagram? Exocytosis in a Cell Active Transport in a Cell Osmosis Across a Membrane Facilitated Diffusion Across a Membrane

A. dominance B. sex-linkage C. co-dominance D. incomplete dominance A scientist observes that a certain trait is determined by a single allele. An organism inherited one version of the trait from one parent and another version from the other parent. Both versions of the trait are expressed in the phenotype of the offspring. Which pattern of inheritance best classifies the observed trait? A. dominance B. sex-linkage C. co-dominance D. incomplete dominance

A. dominance B. sex-linkage C. co-dominance D. incomplete dominance A scientist observes that a certain trait is determined by a single allele. An organism inherited one version of the trait from one parent and another version from the other parent. Both versions of the trait are expressed in the phenotype of the offspring. Which pattern of inheritance best classifies the observed trait? A. dominance B. sex-linkage C. co-dominance D. incomplete dominance

Carbohydrates and proteins are two types of macromolecules Carbohydrates and proteins are two types of macromolecules. Which functional characteristic of proteins distinguishes them from carbohydrates? A. large amount of stored information B. ability to catalyze biochemical reactions C. efficient storage of usable chemical energy D. tendency to make cell membranes hydrophobic

Carbohydrates and proteins are two types of macromolecules Carbohydrates and proteins are two types of macromolecules. Which functional characteristic of proteins distinguishes them from carbohydrates? A. large amount of stored information B. ability to catalyze biochemical reactions C. efficient storage of usable chemical energy D. tendency to make cell membranes hydrophobic

A researcher observing an ecosystem describes the amount of sunlight, precipitation, and type of soil present. Which factors is the researcher most likely describing? A. biotic factors in a forest B. biotic factors in a tundra C. abiotic factors in a prairie D. abiotic factors in an ocean

A researcher observing an ecosystem describes the amount of sunlight, precipitation, and type of soil present. Which factors is the researcher most likely describing? A. biotic factors in a forest B. biotic factors in a tundra C. abiotic factors in a prairie D. abiotic factors in an ocean

A mutation occurs at the midpoint of a gene, altering all amino acids encoded after the point of mutation. Which mutation could have produced this change? A. deletion of two nucleotides B. deletion of three nucleotides C. insertion of six nucleotides D. insertion of twelve nucleotides

A mutation occurs at the midpoint of a gene, altering all amino acids encoded after the point of mutation. Which mutation could have produced this change? A. deletion of two nucleotides B. deletion of three nucleotides C. insertion of six nucleotides D. insertion of twelve nucleotides

The diagram shows a reaction that forms a polymer from two monomers The diagram shows a reaction that forms a polymer from two monomers. What is this type of reaction called? A. glycolysis B. hydrolysis C. photosynthesis D. dehydration synthesis

The diagram shows a reaction that forms a polymer from two monomers The diagram shows a reaction that forms a polymer from two monomers. What is this type of reaction called? A. glycolysis B. hydrolysis C. photosynthesis D. dehydration synthesis

Using a microscope, a student observes a small, green organelle in a plant cell. Which energy transformation most likely occurs first within the observed organelle? A. ATP to light B. light to chemical C. heat to electrical D. chemical to chemical

Using a microscope, a student observes a small, green organelle in a plant cell. Which energy transformation most likely occurs first within the observed organelle? A. ATP to light B. light to chemical C. heat to electrical D. chemical to chemical

A. orientation of cholesterol in the plasma membrane Carbon dioxide and oxygen are molecules that can move freely across a plasma membrane. What determines the direction that carbon dioxide and oxygen molecules move? A. orientation of cholesterol in the plasma membrane concentration gradient across the plasma membrane configuration of phospholipids in the plasma membrane location of receptors on the surface of the plasma membrane

A. orientation of cholesterol in the plasma membrane Carbon dioxide and oxygen are molecules that can move freely across a plasma membrane. What determines the direction that carbon dioxide and oxygen molecules move? A. orientation of cholesterol in the plasma membrane concentration gradient across the plasma membrane configuration of phospholipids in the plasma membrane location of receptors on the surface of the plasma membrane

The frogs living in the pond represent a population. A group of students measured a ten-square-meter section of a pond ecosystem and recorded observations. Which statement is a testable hypothesis? The frogs living in the pond represent a population. Water is an abiotic component in the pond ecosystem. If the fish are given more food, then they will be happier. If the frogs are startled, then they will jump into the water.

A group of students measured a ten-square-meter section of a pond ecosystem and recorded observations. Which statement is a testable hypothesis? A. The frogs living in the pond represent a population. B. Water is an abiotic component in the pond ecosystem. C. If the fish are given more food, then they will be happier. D. If the frogs are startled, then they will jump into the water.

A. deletion B. insertion C. inversion D. translocation Which type of change in chromosome composition is illustrated in the diagram? A. deletion B. insertion C. inversion D. translocation

A. deletion B. insertion C. inversion D. translocation Which type of change in chromosome composition is illustrated in the diagram? A. deletion B. insertion C. inversion D. translocation

Which characteristic is shared by all prokaryotes and eukaryotes? A. ability to store hereditary information B. use of organelles to control cell processes C. use of cellular respiration for energy release D. ability to move in response to environmental stimuli

Which characteristic is shared by all prokaryotes and eukaryotes? A. ability to store hereditary information B. use of organelles to control cell processes C. use of cellular respiration for energy release D. ability to move in response to environmental stimuli

What has most likely happened to the allele for the shortest tail lengths? A. The allele changed from being dominant to being recessive. B. The allele changed from being autosomal to being sex-linked. C. The allele became less frequent than the alleles for longer tail lengths. D. The allele began to code for long tail lengths instead of the shortest ones.

What has most likely happened to the allele for the shortest tail lengths? A. The allele changed from being dominant to being recessive. B. The allele changed from being autosomal to being sex-linked. C. The allele became less frequent than the alleles for longer tail lengths. D. The allele began to code for long tail lengths instead of the shortest ones.

Which statement best compares the energy transformations of photosynthesis and cellular respiration? A. Only photosynthesis uses oxygen to create energy. B. Only photosynthesis causes an increase in kinetic energy. C. Photosynthesis and cellular respiration both store energy in chemical bonds. D. Photosynthesis and cellular respiration both require chemical energy to make food.

Which statement best compares the energy transformations of photosynthesis and cellular respiration? A. Only photosynthesis uses oxygen to create energy. B. Only photosynthesis causes an increase in kinetic energy. C. Photosynthesis and cellular respiration both store energy in chemical bonds. D. Photosynthesis and cellular respiration both require chemical energy to make food.

Which statement best describes a difference between prokaryotic cells and eukaryotic cells? The presence of both DNA and ribosomes in prokaryotic cells indicates that they are more complex than eukaryotic cells. B. The larger size of prokaryotic cells indicates that they are more complex than eukaryotic cells. C. The presence of membrane-bound organelles in eukaryotic cells indicates that they are more complex than prokaryotic cells. D. The larger size of eukaryotic cells indicates that they are more complex than prokaryotic cells. c

Which statement best describes a difference between prokaryotic cells and eukaryotic cells? The presence of both DNA and ribosomes in prokaryotic cells indicates that they are more complex than eukaryotic cells. B. The larger size of prokaryotic cells indicates that they are more complex than eukaryotic cells. C. The presence of membrane-bound organelles in eukaryotic cells indicates that they are more complex than prokaryotic cells. D. The larger size of eukaryotic cells indicates that they are more complex than prokaryotic cells. Key: Eukaryotes are more complex because they have organelles that are membrane bound, such as the nuclei which contain their DNA. Prokaryotes have DNA, but it is not bound by a membrane as in eukaryotes.

A sodium-potassium pump within a cell membrane requires energy to move sodium and potassium ions into or out of a cell. The movement of glucose into or out of a cell does not require energy. Which statement best describes the movement of these materials across a cell membrane? A. Sodium and potassium ions move by active transport, and glucose moves by osmosis. B. Sodium and potassium ions move by active transport, and glucose moves by facilitated diffusion. C. Sodium and potassium ions move by facilitated diffusion, and glucose moves by osmosis. D. Sodium and potassium ions move by facilitated diffusion, and glucose moves by active transport.

A sodium-potassium pump within a cell membrane requires energy to move sodium and potassium ions into or out of a cell. The movement of glucose into or out of a cell does not require energy. Which statement best describes the movement of these materials across a cell membrane? A. Sodium and potassium ions move by active transport, and glucose moves by osmosis. B. Sodium and potassium ions move by active transport, and glucose moves by facilitated diffusion. C. Sodium and potassium ions move by facilitated diffusion, and glucose moves by osmosis. D. Sodium and potassium ions move by facilitated diffusion, and glucose moves by active transport.

A researcher noticed that a similar CH2 molecular structure was also located in the plasma membrane of an animal cell. This CH2 molecular structure contained a negatively charged phosphate group. Which statement best describes the primary function of the CH2 and phosphate molecular structure located in the plasma membrane?

A. It contains the genetic information needed for protein production. B. It catalyzes specific chemical reactions in the cytoplasm of a cell. C. It stores the energy that a cell needs to perform various life processes. D. It allows a cell to regulate the movement of materials into and out of a cell.