Part C
This simulation shows only the changes in energy that cause the motion of the skateboarder. What energy
transformations are going on within the skateboarder's body during this process?

Answers

Answer 1

As the skateboarder moves, several energy transformations take place within their body. Some of the energy transformations include:

1. Chemical energy to kinetic energy: When the skateboarder pushes off the ground, the energy stored in the chemical bonds of their muscles is converted into kinetic energy, which is responsible for their motion.

2. Kinetic energy to gravitational potential energy: As the skateboarder moves up a ramp, their kinetic energy is converted into gravitational potential energy.

3. Gravitational potential energy to kinetic energy: When the skateboarder moves down the ramp, the gravitational potential energy is converted back into kinetic energy.

4. Kinetic energy to thermal energy: As the skateboarder moves, they also experience frictional forces which convert some of their kinetic energy into thermal energy.

5. Chemical energy to thermal energy: The continuous movement of the skateboarder requires the energy stored in their muscles to be converted into thermal energy, which is released as heat.

I hope that the assistance I provided was helpful.

Answer 2

The motion of the skateboarder is powered by energy transformations that occur within their body. As the skateboarder moves, their body converts stored chemical energy (from food) into kinetic energy, which is the energy of motion. This conversion happens through a series of complex biochemical processes that occur within the skateboarder's muscles.

When the skateboarder pushes off the ground, their leg muscles contract, converting chemical energy stored in the form of ATP (adenosine triphosphate) into kinetic energy as the legs move and the skateboarder accelerates. As the skateboarder continues to move, the muscles in their body work together to maintain balance and control, converting chemical energy into kinetic energy and potential energy as the skateboarder jumps, turns, and performs tricks.

Additionally, the skateboarder's body also experiences other forms of energy transformation during this process. For example, as the skateboarder moves, their body generates heat through metabolic processes, which is a form of thermal energy. The skateboarder also loses energy through friction with the ground and air resistance, which is converted into heat and sound energy.

In summary, the motion of the skateboarder is powered by a series of complex energy transformations that occur within their body. These transformations involve the conversion of stored chemical energy into kinetic and potential energy, as well as the generation of heat and sound energy through friction and air resistance.


Related Questions

In The Context Of Emerging Infectious Diseases: (3) Briefly Describe 2 Reasons Why The Biology Of Bats Enables Them To Survive

Answers

Bats' robust immune systems and flight abilities enable them to survive and thrive in diverse environments, making them resilient against viral infections and allowing them to explore new habitats.

Bats, as a species, have a very unique biological characteristic that enables them to survive even in areas where other mammals would not. They possess certain features and behavior patterns that assist them in surviving in various environments.

In the context of emerging infectious diseases, bats have the following two biological features that help them survive: Immune system - The immune system of bats is unique and robust. They have evolved to withstand viral infections and remain healthy.

A group of proteins known as interferons are responsible for this. They are activated quickly when a bat is infected with a virus, and the virus's replication is halted. Bats' immune systems react quickly and efficiently to viral infections, allowing them to survive longer than other animals that are susceptible to these viruses.

FlightBats have a unique ability to fly, and their energy metabolism allows them to fly for extended periods without resting. They have a unique mechanism of releasing heat when they are flying that allows them to continue flying without becoming overheated.

Bats can reach places that other mammals cannot, which means they can migrate to new regions and habitats, where they can encounter new viruses that they have not previously encountered. In summary, the biology of bats enables them to survive in a wide range of environments, including in the context of emerging infectious diseases.

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Since the relative growth rate is 0.4416, then the differential equation that models this growth is?

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since the relative growth rate is 0.4416, then the differential equation that models this growth comes out to be dP/dt = 0.4416 * P. We may use the exponential growth formula to find the differential equation that describes the growth with a relative growth rate of 0.4416.

The exponential growth formula is as follows: P = k * dP/dt. where:

The population change rate is shown by the formula dP/dt where k is the growth constant or relative growth rate. The relative growth rate in this instance is reported to be 0.4416. Thus, the differential equation that describes this growth is as follows: dP/dt = 0.4416 * P

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SYNTHESIZE YOUR KNOWLEDGE Imagine yourself as a water molecule in the soil solution of a forest. In a short essay (100-150 words), explain what pathways and what forces would be necessary to carry you to the leaves of these trees.

Answers

Answer:Biology questions and answers. SYNTHESIZE YOUR KNOWLEDGE Imagine yourself as a water molecule in the soil solution of a forest. Part A What pathways would be necessary to carry you to the leaves of these trees. apoplastic o bulk flow transmembrane symplastic All of the above.

Explanation:

In a video we watched people walked toward the camera at night wearing different kinds of clothing Some wore white clothes and some wore reflective clothes. Although the video was about pedestrian safety, it also demonstrates the concept of:
A. motor neurons
B. the mindbody problem
C. the memory palace
D. absolute thresholds

Answers

Based on the information provided, the concept demonstrated in the video is most likely absolute threshold, option D is correct.

Absolute threshold refers to the minimum stimulation required for a person to detect a particular sensory stimulus, such as the ability to perceive the presence of individuals wearing white clothes or reflective clothes while walking towards the camera at night. The video likely showcased the varying degrees of visibility or detectability of pedestrians based on their clothing choices, highlighting the concept of absolute thresholds in the context of pedestrian safety.

In the video, the contrasting clothing choices of white clothes and reflective clothes emphasize the importance of visibility and its impact on pedestrian safety. By featuring individuals wearing different types of clothing, the video likely aimed to raise awareness about the significance of being easily seen by drivers and other pedestrians, especially in low-light or nighttime conditions, option D is correct.

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If you are going to allow a population of mice to randomly mate for 5 generations and you want to limit inbreeding to a maximum of 14.678481% after generation 5 (assuming you started with zero inbreeding), how many males do you need if you have 20 females?

a) 5

b) 10

c) 50

d) 2

e) 8

Answers

The answer is (b) 10. To limit inbreeding to a maximum of 14.678481% after 5 generations, we need to calculate the expected amount of inbreeding in each generation and then adjust the number of males to add to the population accordingly.

The expected amount of inbreeding in each generation can be calculated using the formula:

Expected inbreeding = (1 - (1/2)^(generation/2)) * (1 - (1/2)^(generation/2)^2) * ... * (1 - (1/2)^(generation/2)^(14))

Substituting the value of generation=5 gives:

Expected inbreeding = (1 - (1/2)^5) * (1 - (1/2)^5)^2 * ... * (1 - (1/2)^5)^(14)

= 0.81924005762932

The maximum amount of inbreeding allowed is 14.678481%. Substituting this value gives:

Maximum inbreeding = 14.678481 / 0.81924005762932

= 17.5937535396166

Therefore, to limit inbreeding to a maximum of 14.678481% after 5 generations, we need to add at least 17.5937535396166 males to the population.

Solving for the number of males needed if we have 20 females, we get:

17.5937535396166 = (20 * 1 - 14.678481) / 20

= 3.45344278981875

Rounding to the nearest whole number, we get:

The number of males needed is 3.

Therefore, the answer is (b) 10.

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Which gland maintains circadian rhythms?
a. Thyroid
b. Pineal
c. Ovaries
d. Pituitary

Answers

Pineal gland maintains circadian rhythms.

The correct answer is the pineal gland. The pineal gland is a small endocrine gland located deep within the brain. It is responsible for producing and secreting the hormone melatonin, which plays a crucial role in regulating circadian rhythms.

Circadian rhythms are the internal biological rhythms that help regulate various physiological processes over a 24-hour period, including sleep-wake cycles. The pineal gland receives information about light and darkness from the eyes and uses this input to regulate the production of melatonin. Melatonin levels increase in the evening and throughout the night, promoting sleepiness, and decrease during the day, promoting wakefulness.

By maintaining the circadian rhythms, the pineal gland helps synchronize the body's internal processes with the external environment, such as the day-night cycle. Disruptions in the pineal gland's function or melatonin production can lead to sleep disorders and disturbances in the sleep-wake cycle.

While the other glands mentioned (thyroid, ovaries, and pituitary) play important roles in the endocrine system and overall health, they are not primarily responsible for maintaining circadian rhythms.

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In this discussion question, you will be explaining how the Central Dogma (the means by which genetic information is translated into protein structure) is evidence for evolution. In your post you should first demonstrate an understanding of the Central Dogma, then discuss its relationship to evolution. You should feel free to get creative in your description of the Central Dogma: videos, pictures, Power Points are all welcome

Answers

The Central Dogma of Molecular Biology is a fundamental concept in biology that describes the flow of genetic information from DNA to protein. It states that genetic information in DNA is first transcribed into RNA, and then this RNA is translated into a specific protein. This process is essential for the development and function of all living organisms.

The Central Dogma provides evidence for evolution because it demonstrates how genetic information can be passed down from one generation to the next, and how this information can be modified and adapted to suit the needs of different organisms. In other words, it shows how evolution can occur through changes in the genetic code.

For example, if a mutation occurs in the DNA that codes for a particular protein, this mutation will be passed down to the offspring. If this mutation results in a change to the protein structure, it may give the organism a selective advantage, such as improved survival or reproduction. Over time, this advantage may become more pronounced, leading to the spread of the mutation throughout the population.

Another way that the Central Dogma supports evolution is through the process of gene duplication. If a gene is duplicated, it creates an additional copy of the DNA sequence that codes for a particular protein. This allows for the evolution of new protein structures through variations in the copy of the gene.

In conclusion, the Central Dogma provides evidence for evolution by demonstrating how genetic information can be passed down from one generation to the next and how it can be modified to suit the needs of different organisms. This process allows for the evolution of new structures and functions, and provides a mechanism for the spread of beneficial mutations throughout a population.

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EVOLUTION CONNECTION In patients with nonresistant strains of the tuberculosis bacterium, antibiotics can relieve symptoms in a few weeks. However, it takes much longer to halt the infection, and patients may discontinue treatment while bacteria are still present. How might this result in the evolution of drug-resistant pathogens?

Answers

The incomplete treatment of tuberculosis (TB) can lead to the evolution of drug-resistant pathogens due to a process called natural selection.

Here's how it can happen:

1. Initial Treatment: When a patient with TB is treated with antibiotics, the drugs target and kill the susceptible bacteria. This initially reduces the population of the bacteria and relieves the symptoms.

2. Incomplete Treatment: If the patient discontinues the antibiotic treatment prematurely, before completely eradicating the bacteria, it allows the remaining bacteria, including those with slight resistance, to survive and reproduce.

3. Selection Pressure: When the patient resumes treatment or comes into contact with other individuals, the surviving bacteria, including the slightly resistant ones, can be transmitted to new hosts.

In summary, when patients discontinue TB treatment prematurely, it allows the survival and reproduction of bacteria that have some level of resistance to antibiotics.

This selective pressure promotes the evolution and spread of drug-resistant strains, making it harder to treat TB infections effectively.

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Loxodonta africana is?

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Loxodonta africana is the scientific name for the African bush elephant, also known as the African savanna elephant.

What is the African savanna elephant?

It is the largest living land mammal, with bulls reaching a shoulder height of up to 3.96 m (13 ft 0 in) and a body mass of up to 10.4 t (11.5 short tons).

African bush elephants are found in sub-Saharan Africa, and they inhabit a variety of habitats, including savannas, forests, and woodlands. They are social animals, and they live in herds of up to 100 individuals.

African bush elephants are herbivores, and their diet consists of a variety of plants, including grasses, leaves, fruits, and bark. They also eat roots and tubers, and they will occasionally eat meat.

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intralevator injection of botulinum toxin for the treatment of hypertonic pelvic floor muscle dysfunction and vestibulodynia

Answers

Intralevator infusion of botulinum harm can be an successful treatment alternative for hypertonic pelvic foot muscle brokenness and vestibulodynia.

Hypertonic pelvic foot muscle brokenness is characterized by excessive weight and fits within the pelvic foot muscles, driving to indications comparative as pelvic torment, urinary criticalness, and trouble with sexual intercut.

Vestibulodynia refers to periodic torment within the entranceway, the entrance to the vagina, which can be touched off by touch or pressure. Botulinum harm, for the most part known as Botox, could be a neurotoxin that works by briefly paralyzing the muscles it's fitted into.

When fitted into the levator ani muscles of the pelvic foot, it can offer assistance unwind and decrease the hyperactivity of these muscles, calming the related side effects.

The intralevator infusion is for the most part performed beneath direction, comparative as ultrasound or electromyography, to guaranteed exact focusing on of the influenced muscles.

The strategy is negligibly intrusive and for the most part well- allowed by cases. The merchandise of the botulinum harm infusion are transitory and for the most part final for a few months, after which repeat infusions may be fundamental.

Generally, intralevator infusion of botulinum harm can allow noteworthy alleviation for individualities with hypertonic pelvic foot muscle brokenness and vestibulodynia, culminating their quality of life and lessening torment and inconvenience.

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place in the correct order the sequence of events resulting in the action potential for cardiac muscle cells.

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In order to initiate and transmit an action potential, cardiac muscle cells go through a series of events. The following are the sequence of events resulting in the action potential for cardiac muscle cells:Depolarization: The action potential begins when sodium (Na+) channels open, and positively charged sodium ions rush into the cell.

This depolarizes the cell membrane, reducing the membrane potential from a resting level of around -90mV to a more positive level.Repolarization: The action potential peaks when the Na+ channels close, and potassium (K+) channels open. K+ ions then flow out of the cell, causing the membrane potential to become more negative and repolarize.Resting membrane potential: The cell returns to its resting membrane potential, and the ion channels return to their resting states. This process resets the cell, so it's ready to receive another stimulus.Explanation:Cardiac muscle cells generate electrical impulses that help them contract and pump blood to the heart. The sequence of events for the action potential in cardiac muscle cells is essential for the proper functioning of the heart. During depolarization, Na+ channels open and allow Na+ ions to enter the cell, making the interior more positive. As a result, the cell depolarizes and reaches the threshold potential, causing voltage-gated Ca2+ channels to open. Ca2+ ions then enter the cell and trigger muscle contraction. During repolarization, K+ channels open, and K+ ions exit the cell, making the interior more negative. This process restores the membrane potential to its resting state. Finally, the resting membrane potential is the cell's resting state when no stimulation occurs.

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How did Hershey and Chase's work support the findings of Avery's team?
OA. It provided evidence that heritable traits may be dominant and
recessive.
OB. It proved that alleles for a trait may come from only one or both
parents.
OC. It introduced the idea that factors are inherited by offspring from
their parents.
OD. It showed that a virus's heritable information is also carried by
DNA.

Answers

Hershey and Chase's work supported the findings of Avery's team by providing evidence for option D: "It showed that a virus's heritable information is also carried by DNA."

Hershey and Chase conducted an experiment using bacteriophages, which are viruses that infect bacteria. They labeled the DNA of the bacteriophages with radioactive isotopes and the protein coat with a non-radioactive substance. They then allowed the labeled bacteriophages to infect bacteria.

After infecting the bacteria, they used a blender to separate the protein coats of the bacteriophages from the bacteria. They observed that the radioactive DNA was transferred into the infected bacteria, while the non-radioactive protein coats remained outside. This experiment provided conclusive evidence that the heritable information of the bacteriophage, which determines its traits, is carried by DNA and not the protein coat.

This supported the earlier findings of Avery's team, who demonstrated that DNA is the substance responsible for carrying genetic information and passing it on to offspring. Hershey and Chase's work further solidified the understanding that DNA is the genetic material responsible for inheritance. Therefore, Option D is correct.

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Explain how the signaling molecules released by an embryonic cell can induce changes in a neighbouring cell without entering the cell. (See Figures 11.15 and 11.16.)

Answers

By acting through cell surface receptors, the signaling molecules released by an embryonic cell can effectively communicate and coordinate the development of neighboring cells without the need for direct entry into the cells themselves.

When a signaling molecule, such as a growth factor or a morphogen, is released by an embryonic cell, it diffuses through the extracellular space and reaches the cell surface of the neighboring cell. The signaling molecule binds to specific receptors present on the surface of the neighboring cell. This binding triggers a cascade of intracellular events, leading to changes in gene expression and cellular behavior.

Although the signaling molecule does not enter the neighboring cell, the binding of the molecule to its receptor initiates a signal transduction pathway that transmits the information from the cell surface to the nucleus. This pathway can involve the activation of various intracellular proteins and second messengers, ultimately resulting in the desired changes in gene expression and cellular responses.

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Nutrient absorption occurs primarily in the? stomach and small intestine. stomach. large intestine.

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Nutrient absorption occurs primarily in the stomach and small intestine.Nutrients are substances that are necessary for the growth, maintenance, and repair of body tissues.

Nutrients can be found in a variety of foods, and the human body requires a variety of nutrients to function properly.Nutrient absorption:Absorption is the process by which nutrients are taken up and incorporated into the body. Nutrient absorption occurs in the small intestine, where the majority of digestion occurs. The small intestine's mucous membrane has finger-like projections known as villi that increase its surface area.

Nutrients are absorbed by the small intestine's villi and then passed into the bloodstream for transport to the body's cells.The stomach's primary function:The stomach is where food is initially broken down by acids and enzymes. Food is stored in the stomach for a short period before being transferred to the small intestine for further digestion and nutrient absorption.

Therefore, it can be concluded that nutrient absorption primarily occurs in the small intestine, but some nutrients are absorbed by the stomach as well.

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pdf heart rate variabil- ity in relation to prognosis after myocardial infarction: selection of optimal processing techniques

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PDF heart rate variability refers to the power density function (PDF) of heart rate variability (HRV) signals in patients who have experienced myocardial infarction (MI). HRV analysis has a crucial impact on the relationship between HRV and the prognosis after MI.

The selection of the optimal processing techniques for the PDF HRV analysis has a crucial impact on the relationship between HRV and the prognosis after MI. There are several techniques that can be used for PDF HRV analysis, including time-domain, frequency-domain, and non-linear analysis.

However, the most commonly used techniques are time-domain and frequency-domain analysis.Time-domain analysis assesses the overall variability of RR intervals, and some commonly used indices include standard deviation of normal-to-normal (SDNN) RR intervals and root mean square of successive differences (RMSSD).

Frequency-domain analysis, on the other hand, evaluates the spectral power of HRV signals, and the main indices include high frequency (HF) power, low frequency (LF) power, and LF/HF ratio.The selection of the optimal processing techniques should depend on the research question and the characteristics of the HRV signal under investigation.

Therefore, researchers need to select the most appropriate processing techniques based on the research objectives and the properties of the HRV signals under investigation.

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The correct question is:

What is the optimal processing technique for pdf heart rate variability in relation to prognosis after myocardial infarction? What is myocardial infarction?

An experimental manipulation in which animals come to lack functional copies of a gene is called?

Answers

An experimental manipulation in which animals come to lack functional copies of a gene is called "knockout" experiment.

In such experiments, researchers create mice or other animals that are unable to make a particular gene's protein.

The usual approach involves using "homologous recombination" to replace the gene of interest with a defective copy in embryonic stem cells. The altered cells are injected into early mouse embryos, which are then implanted in a female mouse that has been induced to breed. Most genes have more than one function, so a knockout mutation that disrupts one function might leave the other unaffected. As a result, the effects of knocking out a gene can vary depending on how the experiment is conducted.


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What would happen if you removed the dihydroxyacetone phosphate generated in step 4 as fast as it was produced?

Answers

Dihydroxyacetone phosphate (DHAP) is an important intermediate in the metabolic pathway known as glycolysis. It is produced in step 4 of glycolysis from glyceraldehyde 3-phosphate (G3P).

If DHAP were removed from the system as fast as it was produced, it would have significant consequences for cellular metabolism.

1. Impaired Glycolysis: Removal of DHAP would disrupt the flow of metabolites through the glycolytic pathway. Glycolysis is the process by which glucose is broken down to produce energy in the form of ATP.

2. Altered Energy Balance: The removal of DHAP would disrupt the normal energy balance of the cell. Glycolysis is an important source of ATP, which is the primary energy currency of the cell.

3. Accumulation of G3P: Since DHAP is removed as fast as it is produced, G3P would accumulate within the cell. This buildup of G3P could lead to metabolic imbalances and disrupt other cellular processes that depend on the proper regulation of G3P levels.

4. Potential Feedback Effects: The removal of DHAP could trigger feedback mechanisms to compensate for the disrupted glycolytic pathway.

These feedback mechanisms might involve regulatory enzymes and other metabolic pathways attempting to restore the balance.

Overall, removing DHAP as fast as it is produced would disrupt glycolysis, impair energy production, and potentially lead to imbalances in cellular metabolism.

The consequences would extend beyond glycolysis itself and could impact other metabolic pathways and cellular functions.

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Which of the following would tend to increase transpiration? a. spiny leaves b. sunken stomata c. a thicker cuticle d. higher stomatal density

Answers

Transpiration is the loss of water through the stomata on the leaves of plants. The correct option that would tend to increase transpiration is d. higher stomatal density.

Explanation:Higher stomatal density means there are more stomata per unit area on the surface of the leaves. The stomata are tiny pores that regulate gas exchange and transpiration in plants.

With more stomata, the rate of transpiration will be greater due to more water vapor being released into the atmosphere through these openings.

This is because each stomata opening serves as an exit for water to leave the plant.

Therefore, the higher the number of stomata, the greater the rate of transpiration.

Spiny leaves, on the other hand, help to reduce transpiration because they provide a barrier to the wind and limit the loss of water. Sunken stomata can also reduce transpiration because they reduce the amount of water vapor that can escape from the plant by creating a protected microclimate around the stomata.

A thicker cuticle will also limit transpiration because it is a waxy layer that covers the surface of the leaves, thus reducing water loss.

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What type of feodback process is exemplifled by the productlon of efthylene during frult ripening? Explaln. (See Flgure 1.11.)

Answers

Since ethylene frequently encourages its synthesis, ethylene production during fruit ripening serves as an example of the positive feedback control mechanism.

The hormone ethylene is naturally produced by plants. Fruit ripening and leaf senescence are accelerated by this substance. In addition, ethylene is produced during the development of fruits, regulated cell death, and external application of strong auxin concentrations. Fruit ripening is the process that increases its flavour. As the fruit ripens, it gets softer, sweeter, and less green. Ripe fruit attracts animals that disperse the seeds after they are grown because of its aroma.

Loops in a feedback system start with a stimulus that modifies a variable and end with an effector that modifies the variable. A sophisticated feedback system can operate within a multi-variable, complex system. Mechanisms for both positive and negative feedback exist. Ethylene triggers a chain reaction that leads to ripening, which in turn triggers more ethylene production. The production of ethylene explodes as a result. Since ethylene is a gas, ripening signals are sent from fruit to fruit.

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3 and 4 form a linear pair. The measure of 3 is four more than three times the measure of 4 . Find the measure of each angle. Survey, ethnographic research, qualitative interviews and statistics are main research methods that sociologists use. c. Given the advantages and disadvantages of each method, how do sociologists decide which method to use? Is there one "best" method? d. If you were a sociologist and you wanted to understand undergraduate students experiences of college during coronavirus in order to plan next semesters course schedule, what method(s) would you use and why? Who would you sample? What would you ask? Note the time frame--you need this information quickly in order to plan for next semester. A consultant has made two statements about sampling: X 1. An entire set of data from which a sample can be selected for analysis a called a distribution 2. Statistical methods can be applied to a representative sample in both exploratory and confirmatory data analysis Are these statement accurate? A. Only state 1 is accurate B. Only state 2 is accurate C. Both state are accurate D. Neither state is accurate 40. FreeFree plc manufacturers maintain computers and Ibrahim is a planner in its Quality Assurance Department. In terms of Mintzberg's descreprion of organizational structure, to which of FreeFree plc's 'building blocks' does Inbrahim belong? A. Support staff B. Middle line C. Operating core D. Technostructure Government to legislate for multi-employer bargaining, strengthening push for wage increaseswill MPS Marginal propensity to save) decrease or increase? A company's weekly revenue R is given by the formula R=-p+30 p , where p is the price of the company's product. The company is considering hiring a distributor, which will cost the company 4 p+25 per week.b. 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Please describe at least two different concepts or findings from the book in detail and explain how they apply to this area. Don't forget to add APA citations properly.How can the growth mindset concepts be applied to addiction to help people overcome addictive behaviors (re: Deckers C3: Addictions and Addictive Behaviors)? Please describe your application/connection in detail and cite consider the value of t such that the area to the left of |t||t| plus the area to the right of |t||t| equals 0.050.05. X Your answer is incorrect. Alysha would like to support the education of her favourite grand-nephew, Stephen, who plans to begin university in 3 years. How much will Alysha have to invest today, at 6 percent, to be able to give Stephen $6,600 at the end of each year for 4 years? (Round answer to 2 decimal places, e.g. 125.12. Do not round your intermediate calculations.) In microsoft excel, currency, text, number, and percentage are all examples of _____. What are the 3 key goals of the underwriting function?What are the 3 key goals of a claims adjuster when settling claims?What are 3 reasons that reinsurance is used? Walmart Inc. is the worlds largest retailer. A large portion of the premises that the company occupies are leased. Its financial statements and disclosure notes revealed the following information: Balance Sheet ($ in millions) 2017 2016 Assets Property: Property under finance lease obligations $ 11,637 $ 11,096 Less: Accumulated amortization (5,169) (4,751) Liabilities Current liabilities: Finance lease obligations due within one year 565 551 Long-term debt: Long-term finance lease obligations 6,003 5,816 Required: 1. The net asset "property under finance lease obligations" has a 2017 balance of $6,468 million ($11,637 $5,169). Liabilities for these leases total $6,568 ($565 + $6,003). Why do the asset and liability amounts differ? 2. Prepare a 2017 summary entry to record Walmarts lease payments, which were $800 million. 3. What is the approximate average interest rate on Walmarts finance leases? Explain what an average interest rate is and why it is important to Walmart. AA Corporation is preparing its December 31, 2020 Statement of Financial Position. The following items may be reported as either current or long- term liability. On December 31, 2020, AA declared a cash dividend of P2.50 per share to shareholders of record December 31. The dividend is payable on January 15, 2021. AA has issued 1, 000, 000 ordinary shares, of which 50, 000 shares are held in treasury. At December 31, bonds payable of P100, 000, 000 are outstanding. The bonds pay 12% interest every September 30 and mature in installments of P25, 000, 000 every September 30, beginning September 30, 2021. At December 31, 2019, customer advances were P12, 000, 000. During 2020, AA collected P30, 000, 000 of customer advances, and advances of P25, 000, 000 were earned. At December 31, 2020, retained earnings appropriated for future inventory losses is P15, 000, 000. What amount should Allison report as current liability and as long-term liability in its December 31, 2020 statement of financial position? Good listening skills and an understanding of ________ are the foundation of good conversational skills. Use the Terms & Names list to identify each sentence online or on your own paper.A. John LockeB. Battle of QuebecC. French and Indian WarD. George WhitefieldE. John Peter ZengerF. Jonathan EdwardsG. English Bill of RightsH. Benjamin FranklinI. Albany Plan of UnionJ. Pontiacs RebellionK. Edmund AndrosL. Proclamation of 1763My sermons promised that all could be saved. ____ Research any organization/company and bring out the differences in HRM activities from a domestic and International perspective. Determine whether each system has a unique solution. If it has a unique solution, find it. y=(2/3)x-3 y=-x+7]