The correct match of each statement with its term is as follows:
Has ribosomes - Both eukaryotes and prokaryotesContains linear chromosomes - eukaryotesArchaeans - prokaryotesHas lysosomes - eukaryotescontains plasmids - prokaryoteshas a cell membrane - both eukaryotes and prokaryotesWhat are eukaryotes and prokaryotes?Eukaryotes are any of the single-celled or multicellular organisms of the taxonomic domain Eukaryota, whose cells contain at least one distinct nucleus.
On the other hand, prokaryotes are organisms whose cell (or cells) are characterized by the absence of a nucleus or any other membrane-bound organelles.
Eukaryotes and prokaryotes both contain cell membranes and ribosomes. However, only eukaryotes contains linear chromosomes compared to the circular chromosomes in their counterpart, lysosomes in their cells etc.
Archaeans are prokaryotic organisms similar to bacteria but are more adapted to extreme conditions.
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The book, Structure of Scientific Revolutions written by Thomas S. Kuhn and he put forward three key concepts: normal science, scientific revolution, and _____________________. give an example of research/study that we discussed in the class and that could be credited as scientific revolution: _____________________.
The book, Structure of Scientific Revolutions written by Thomas S. Kuhn and he put forward three key concepts: normal science, scientific revolution, and paradigm shift.
One example of research that could be credited as a scientific revolution is the discovery of the structure of DNA by James Watson and Francis Crick. Their work represented a significant shift in the field of biology, as it led to a new understanding of genetics and the mechanisms of heredity.
Prior to their discovery, the prevailing view in biology was that genetic information was carried in protein molecules. Watson and Crick's discovery challenged this paradigm and ushered in a new era of research focused on DNA and its role in genetics. This revolution in biological understanding had a profound impact on fields such as medicine, agriculture, and biotechnology.
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what did the incorrect theory of alchemy lead scientist to discover
The incorrect theory of alchemy, which aimed to transmute base metals into noble metals like gold and achieve immortality, led scientists to discover several important aspects of chemistry.
Alchemists' experiments advanced chemistry, even though they never fulfilled their aims. They perfected distillation, filtration, and crystallisation, which are still used today.
Alchemists studied the characteristics and interactions of many substances, establishing the framework for chemical elements, compounds, and reactions. Alchemy accidentally advanced chemical understanding and experimental methods.
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1 is known as the "Father of Genetics". He was the first to show how traits are 2__ from parent to offspring. He used _
3
plants
in his experiments. In this plant, the sexual reproductive structures are completely enclosed within the flower, making this plant _4__.
Sex cells (egg and sperm are called .
_5_.
6_
occurs when the
sperm fuses with the egg. The "Father of Genetics" used a process called
_7_
when he wanted to breed one plant with a different
plant. When he bred true-breeding tall plants with true-breeding dwarf plants, all of the resulting offspring were _
. But when
these hybrids were allowed to self-pollinate, it resulted in offspring that were _
_9_
and
_10_. He realized this was caused by one
11 that occurred in two contrasting forms called.
_12_
I am not sure they are right but here u go:
1. Charles Darwin
2. inherited
13. Phenotype
14. Heterozygous
15. Receive
20. Nucleus
22. Homozygous
23. Dominant
Describe how environment and biological factors interact in development
The development of an individual is shaped by both environmental and biological factors, and the interaction between these two factors is complex and multifaceted.
Environmental factors can include things like nutrition, exposure to toxins or pollutants, stress, social experiences, and cultural practices. These factors can have a direct impact on the development of the body and brain, as well as on behavior and cognitive processes. For example, studies have shown that children who grow up in poverty or experience high levels of stress may be at greater risk for developmental delays or behavioral problems.
Biological factors, on the other hand, include things like genetics, hormones, and brain structure. These factors can also have a significant impact on development, and they can interact with environmental factors in complex ways. For example, genetic factors may influence a child's susceptibility to environmental toxins or pollutants, or they may impact how the child responds to stress.
The interaction between environmental and biological factors can occur at many different levels of development, from the prenatal period through adolescence and adulthood. For example, during the prenatal period, environmental factors such as maternal nutrition, stress, and exposure to toxins can impact fetal development and increase the risk of certain health outcomes later in life.
Similarly, during childhood and adolescence, environmental factors such as social experiences and exposure to trauma can impact brain development and lead to changes in behavior and cognitive processes. At the same time, biological factors such as genetics and hormones can interact with these environmental factors to influence how the brain responds to different experiences.
Overall, the interaction between environmental and biological factors is complex and multifaceted, and it can have a significant impact on the development of an individual. Understanding these interactions is essential for promoting healthy development and addressing the challenges that can arise when these factors interact in negative ways.
4. A piece of potato is placed in an open container of 0.22M sucrose solution. After a few minutes, you measure the mass of the potato again and no mass change has occurred. What is the solute potential the potato cells if the temperature is 27°C?
The solute potential of the potato cells in the given scenario is approximately -6.572 atm·L/mol at a temperature of 27°C.
To determine the solute potential of the potato cells in the given scenario, we need to use the formula for solute potential:
Ψ = -iCRT
Where:
Ψ is the solute potential
i is the ionization constant (which depends on the number of particles into which the solute dissociates)
C is the molar concentration of the solution
R is the ideal gas constant
T is the temperature in Kelvin
First, let's convert the temperature from Celsius to Kelvin:
T(K) = T(°C) + 273.15
T(K) = 27°C + 273.15 = 300.15 K
Since sucrose does not ionize in solution, i = 1.
The concentration of the sucrose solution is given as 0.22 M.
The ideal gas constant, R, is approximately 0.0831 L·atm/(mol·K).
Plugging in the values into the formula:
Ψ = -1 * (0.22 M) * (0.0831 L·atm/(mol·K)) * (300.15 K)
Calculating this equation gives us the solute potential of the potato cells.
Ψ = -1 * (0.22) * (0.0831) * (300.15) = -6.572 atm·L/mol
Therefore, the solute potential of the potato cells in the given scenario is approximately -6.572 atm·L/mol at a temperature of 27°C.
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why will the characteristics of a bug population change in different ways in response to different types of predators
The characteristics of a bug population, such as size, behavior, and reproductive patterns, may change in response to different types of predators due to selective pressures imposed by each predator.
Different predators may have different hunting strategies and preferences, which can lead to differential selection pressures on the bug population. For example, a predator that targets larger bugs may select for smaller body size, while a predator that targets bugs with bright colors may select for duller coloration.
Additionally, different types of predators may have varying levels of effectiveness in controlling bug populations, which can also impact their characteristics over time. The presence of predators can also impact the behavior of bug populations. Bugs may alter their activity patterns, foraging strategies, or mating behaviors to avoid or minimize the risk of predation.
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Most highly intelligent mammals are
A. whales
B. dolphins
C. elephants
D. elephants
Answer: D. elephants
Explanation:
Which statements about mutations are true ? Check all that apply
Mutations cannot be passed from generation to generation, mutations are rare, mutations are always harmful , Germaine mutations occur in body cells,
Mutations are rare and can occur in body cells.
Mutations are changes in the DNA sequence of an organism.
They can occur in both body cells and reproductive cells, meaning they can be passed down from generation to generation.
Mutations can be beneficial, harmful, or have no effect on an organism's fitness.
While some mutations can lead to diseases, others can help an organism adapt to its environment or improve its chances of survival.
However, most mutations are rare and do not have a significant impact on the organism.
Therefore, it is not accurate to say that mutations are always harmful.
Germline mutations specifically occur in reproductive cells and can be passed down to offspring.
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The chart shows the intake (consumption levels) of proteins in 14-18yr olds. For which proteins is there the greatest difference between the recommended intake and the actual intake?
What is a recommendation of a food that teenagers could eat more of to fix this difference?
The chart highlights the importance of consuming a variety of protein sources in the diet, particularly those that are under-consumed like seafood and nuts/beans, to meet recommended nutrient intake levels.
The chart displays the protein intake of 14-18 year olds, broken down by different protein sources, compared to the recommended intake. Based on the chart, it appears that there is a significant difference between the recommended intake and the actual intake of seafood and nuts/beans.
The recommended intake for seafood is 8 oz per week, but the actual intake is only 2.8 oz per week. For nuts/beans, the recommended intake is 5 oz per week, but the actual intake is only 1.9 oz per week. These differences suggest that teenagers are not consuming enough of these protein sources in their diets.To address this difference, teenagers could incorporate more seafood and nuts/beans into their diets.
For example, they could try eating salmon or tuna instead of red meat or chicken a few times a week, or they could snack on almonds or peanuts instead of chips or candy. Other sources of protein that are already being consumed at recommended levels, such as poultry and eggs, could be maintained in the diet to ensure a balanced intake of nutrients.
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Hypothesize which embryo is from each of the following organisms:
Human, Fish, Chick, Rabbit, Salamander, Tortoise. (You will not lose points
if you get this question wrong, just do your best)
These are my hypotheses for which embryo is from each of the following organisms:
Human, FFish, AChick, DRabbit, ESalamander, BTortoise, CWhat describes these embryos?Human: The human embryo is the most complex of the embryos, with a well-developed head and brain. It also has a long tail, which is a characteristic of all vertebrate embryos.
Fish: The fish embryo is the simplest of the embryos, with a small head and brain. It also has a short tail, which is a characteristic of fish embryos.
Chick: The chick embryo is similar to the tortoise embryo in terms of complexity, but it has a beak and wings. It also has a yolk sac, which provides nutrients to the embryo.
Rabbit: The rabbit embryo is similar to the human embryo, but it has a fur coat. It also has a placenta, which provides nutrients to the embryo from the mother.
Salamander: The salamander embryo is similar to the fish embryo, but it has legs. It also has gills, which allow it to breathe underwater.
Tortoise: The tortoise embryo is similar to the chick embryo, but it has a shell. It also has a long tail, which helps it to balance.
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3. The principles of probability can be used to
a. predict the traits of the off spring of genetic crosses.
b. determine the actual outcomes of genetic crosses.
c. determine which species should be used in genetic crosses.
d. decide which organisms are best to use in genetic crosses.
Answer:
(A) predict the traits of the offspring of genetic crosses
Explanation:
In sexual reproduction, gametes containing parental DNA fuse to create an offspring. The fusion of gametes is random, so the outcomes of sexual reproduction are governed by chance
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Made up of hard, keratinized cells and grow from a nail root under the cuticle.• Protect the distal portions of the digits enhance precise movement of the digits aid in picking up objects.
The description you have given is of human nails. Nails are made up of hard, keratinized cells and grow from a nail root located under the cuticle. They protect the distal portions of the digits (fingers and toes), enhance precise movement of the digits, and aid in picking up objects. Nails also serve cosmetic purposes and can be decorated or painted in various ways.
What topic should I pick to study for my environmental science project
You should pick the rainforest
Because you can tell all kinds of information about the rainforest on how wet it is what species live their and how they interact with one another and how they protect themselves.
I need help with the true false section
On the circulatory system and the lymphatic system:
Gas exchange by diffusion occurs between the lungs and the aorta.Arteries always carry oxygenated blood. FalseSomeone who is type AB blood can receive blood from all people.FalseThe heart regulates its own beating through the nodal system. TrueLymph vessels carry blood back to the heart. TrueThe pressure inside veins is greater than the pressure inside arteries. FalseThe brain requires less oxygen and blood flow than other tissues. FalseThe smooth muscle wall of the arteries is much thicker than that of veins. TrueThe myocardium is the thick cardiac muscle layer that is part of the heart walls. TrueBoth the circulatory system and the lymphatic system travel in a closed, one-way loop. FalseWhat occurs in the circulatory system and the lymphatic system?Although they both play a role in the movement of fluids throughout the body, the lymphatic and circulatory systems serve distinct purposes. The blood vessels, which include arteries, veins, and capillaries, are used to deliver oxygen, nutrition, hormones, and waste items throughout the body.
The heart serves as the body's pump to move blood around. On the other hand, the lymphatic system is responsible for removing extra fluids, waste, and other detritus from the human tissues. In order to help the body fight infections, the lymphatic system transports lymphocytes, a kind of white blood cell, to numerous locations throughout the body.
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The beak of this finch may be described as a gasping bill . Which of the following is the most likely function of this kind of beak
Answer:
to pick up the insect to eat
Explanation:
i hoped this helped
Help help help please
In the Netflix show "You," the character Love Quinn attends therapy sessions with her therapist, Dr. David Fincher. Dr. Fincher uses cognitive-behavioral therapy techniques to help Love identify and challenge her negative thoughts and beliefs about motherhood.
During the session, Dr. Fincher asks Love to identify the thoughts that come to mind when she thinks about being a mother. Love expresses her fear of not being a good mother and worries about passing on negative traits to her child. Dr. Fincher helps Love challenge these thoughts by asking her to consider evidence that contradicts her negative beliefs and to reframe them in a more positive light.
Through this cognitive-behavioral therapy technique, Love is able to shift her perspective on motherhood and feel more confident in her ability to be a good mother. This scene demonstrates the use of cognitive-behavioral therapy in addressing anxiety and negative beliefs.
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In a population of 100 people, 58 have brown eyes (the dominant phenotype). What percent of this population is heterozygous?
Answer:
rA
Explanation:
In which situation would it be least likely for a scientist to revise her experimental methods?
O if her results support her hypothesis
if her data do not support her hypothesis
if no conclusions can be drawn from the data
O if results are the same after repeating the procedure
Save and Exit
Next
3
Submit
Answer: if her data do not support her hypothesis (Option B.)
Explanation:
If a scientist has a hypothesis, and the data does not support her hypothesis, then it would be likely to revise the experimental methods.
In a given population 12% of the people have blue eyes (the recessive phenotype). What is the frequency [percentage] of the recessive allele in this population's gene pool?
The frequency of the recessive allele in this population's gene pool is 24%.
How to calculate allele frequency?To calculate the frequency of the recessive allele, use the following formula:
Frequency of recessive allele = 2 x (percentage of people with recessive phenotype)
In this case, the percentage of people with the recessive phenotype is 12%. So, the frequency of the recessive allele is:
Frequency of recessive allele = 2 x (12%)
= 24%
This means that 24% of the people in this population carry the recessive allele for blue eyes, even if they do not have blue eyes themselves. The other 76% of the people in this population do not carry the recessive allele for blue eyes.
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When do some cells undergo programmed death? O When they are diseased. O When they are differentiating. O When they are healthy. O When they are dividing.
Explain the differences and similarities between the Digestive system and the Excretory system. Be sure to specify what they are individually responsible for. helppp
Answer:
The excretory system removes waste from the body. remove waste from the blood. The digestive system breaks down the food you eat into nutrients that provide energy and building materials for cells. The digestive and excretory sytems work together to process the food that you eat.
A concept which suggests that a historical event affects a cohort differently than it affects subsequent cohorts because of the life phase in which it occurred is called
The are the plants, algae, and other organisms that can make their own food.
Autotrophs are plants, algae, and other organisms that can make their own food.
These organisms are called autotrophs, which translates to "self-feeders." Autotrophs play a crucial role in ecosystems as primary producers, forming the foundation of food chains and providing sustenance for other organisms. Photosynthesis is a complex biochemical process that occurs in the chloroplasts of plant and algal cells.
It involves the conversion of light energy from the sun into chemical energy in the form of glucose. Autotrophs accomplish this by utilizing pigments, primarily chlorophyll, to absorb light energy. During photosynthesis, autotrophs take in carbon dioxide from the atmosphere and water from the environment. With the aid of sunlight, these raw materials are transformed into glucose and oxygen.
Glucose serves as an energy source for organisms, while oxygen is released back into the atmosphere as a byproduct. This ability to synthesize their own organic compounds from inorganic substances gives autotrophs a distinct advantage.
Autotrophs exist in various forms, including land plants, such as trees, grasses, and flowers, as well as aquatic plants like seaweeds and pond algae. Additionally, certain bacteria and protists are capable of photosynthesis, broadening the range of autotrophic organisms.
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Unit 3 Forum Topics
If you read the Chapter 7 "Chapter Mystery," you saw an example of the relationship between
biological science and medicine. Give another example of how the ongoing study of biology is
important to the practice of medicine.
Although we often discuss cancer as if it were a single disease, there are many different types of
cancer, each with its own specific treatments. Complete an internet search on one type of cancer
and summarize the current methods of treatment that are available for it.
Directions
Write a 250-word response (or longer) to one of the topics above and post it in the discussion forum. Please include the topic written out at the start of your post. Your writing should have at least a semi-formal tone: pay attention to the standard conventions of English writing (grammar, mechanics, spelling, and so on).
After you post your first response, stay and write a 100-word response to another student's post. Please remember to be kind with your responses, and remember that each student is entitled to his or her own personal opinion. Do your best to write a meaningful, thoughtful response.
We can see here that the study of biology has led to the development of new drugs and treatments for diseases. For example, the study of the human genome has led to the development of new drugs for cancer and other diseases.
What is biological science?Life itself is the subject of biological research. The study of all living things, from simple single-celled creatures to intricate multicellular organisms, is included in this large field of study.
Scientists who specialize in biology research the composition, mechanism, behavior, and evolution of living organisms. They also research how living things interact with their surroundings.
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Which of the following processes is decreased when many trees are removed
from an area?
OA. Transpiration
OB. Runoff
OC. Evaporation
D. Precipitation.
The process that is most likely to be decreased when many trees are removed from an area is A. Transpiration.
Transpiration is the process by which plants, including trees, release water vapor into the atmosphere through their leaves. Trees play a crucial role in the water cycle by absorbing water from the soil through their roots and releasing it into the air through transpiration. This process contributes to the overall moisture content in the atmosphere and influences weather patterns and precipitation.
When many trees are removed from an area, the transpiration rates are significantly reduced. This is because there are fewer trees to uptake water from the soil and release it into the atmosphere. As a result, there is less water vapor being added to the air, which can have several effects.
Therefore, the correct answer is A. transpiration.
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Add the complementary bases to the following nitrogen bases
what would happen if the sun's light was blocked for a year
Answer:
the end of life on Earth probably within a matter of years or decades
Explanation:
A permanent blockage of sunlight, or if our star went dark, would pretty much mean the end of life on Earth probably within a matter of years or decades (cave dwelling organisms and/or deep ocean critters that derive their energy from ocean volcanic vents might survive).
In many popular fictional movies and books, future projections of the earth (and other fictional planets) show a world devoid of plants, with civilization bustling with activity throughout a worldwide city of skyscrapers hundreds of stories high.
Based on your reading about photosynthesis and cellular (aerobic) respiration, is this future world possible? Explain why it is or is not possible in terms of energy flow in the biosphere.
Which of the following is correctly describes porosity and permeabilty
Answer:Which of the following is correctly describes porosity and permeabilty
Explanation:
In a woodland, the bark on most of the trees was dark gray. Over time, a population of moths that lived in the woodland gradually changed from light gray to dark gray.
Which ,begin emphasis,best,end emphasis, describes how this change in the moth population was the result of natural selection?
In the given scenario, where the bark on most trees in a woodland was dark gray, and the population of moths that lived in the woodland gradually changed from light gray to dark gray over time, natural selection best explains how this change in the moth population was the result of natural selection.
Natural selection is the mechanism of evolution where the traits that help organisms survive and reproduce become more common in a population over time. The best explanation of how this change in the moth population was the result of natural selection is provided as follows: Initially, the moth population was light gray, and the tree bark was dark gray.
This meant that the light gray moths were easily seen by predators on the dark gray bark, whereas the dark gray moths could blend in with the dark bark, making them difficult to see by predators. As a result, the light gray moths were more vulnerable to predation, whereas the dark gray moths had better survival rates.
This difference in survival rates led to a higher proportion of dark gray moths in the population over time. This change in the moth population from light gray to dark gray was due to natural selection because it involved the differential survival and reproduction of individuals with certain traits.
The dark gray moths had a higher fitness (i.e., ability to survive and reproduce) than the light gray moths, and this led to the gradual increase in the frequency of the dark gray trait in the population. Therefore, this scenario is a classic example of how natural selection can lead to the evolution of populations over time.
In conclusion, the change in the moth population from light gray to dark gray in the woodland was the result of natural selection because it involved the differential survival and reproduction of individuals with certain traits. The dark gray moths had a higher fitness than the light gray moths, and this led to the gradual increase in the frequency of the dark gray trait in the population over time.
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