Water is a key factor in contributing to landslides. Firstly, a rain event can increase the stress on a slope, resulting in a shallow failure known as a sluff.
This is especially likely in areas with recently saturated soils. Secondly, the presence of underground water can reduce the friction between soil particles, which in turn weakens the stability of a slope and increases the potential for a landslide to occur. Thirdly, water can accumulate inside a slope and increase pressure on the underlying material, thus destabilizing the slope and contributing to a potential landslide.
Lastly, runoff from either precipitation or snowmelt can increase the erosional forces on a slope and weaken it further, causing a failure. In all, water can contribute at many stages to a landslide: from aiding in the formation of the slope, to providing the lubrication and increased pressure that can cause the slope to fail.
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FinTech Students -
The Case Study - "Lending Loop: FinTech Disruption in Canadian Banking" describes the disruptive nature of FinTech companies to traditional banking institutions. In addition, the case discusses the considerations and challenges of scaling from an entrepreneurial venture to a financially viable business including the regulatory challenges.
At what point would Lending Loop become a financially viable business, or was more funding needed for marketing to scale the platform?
Should the platform include institutional investors?
Lending Loop is a P2P lending platform which connects investors and borrowers who need money.
The platform is currently disrupting the traditional banking industry by offering competitive interest rates and removing the intermediaries that add costs to the process.
However, as an entrepreneurial venture, Lending Loop had to overcome some regulatory challenges to scale its business and become a financially viable platform.
The case study “Lending Loop: FinTech Disruption in Canadian Banking” discusses the considerations and challenges of scaling from an entrepreneurial venture to a financially viable business including the regulatory challenges.
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When do the largest tides occur?
When the moon is in perigee during the month of January and there's a full or new moon
When there's a full or new moon
When the moon is in perigee during the month of July and there's a full or new moon
2.What type of tidal pattern do we have in Southern California?
Diurnal tidal pattern
Mixed tidal pattern
Semidiurnal tidal pattern
Diurnal mixed pattern
The largest tides occur When the moon is in perigee during the month of January and there's a full or new moon.
The tidal pattern for Southern California coasts is diurnal mixed, meaning that during the month the region experiences both semidiurnal and diurnal tidal movements.
Correct option is A and D.
Semidiurnal tides are characterized by two high tides and two low tides per day, with the highs and lows of each tide being approximately equal. Diurnal tides only have one high and one low tide per day, usually around the same time. The mixed pattern of Southern California is formed from both the hemispheric semidiurnal and the regional diurnal tide patterns in the ocean.
This mixed pattern is caused by several different factors like the size of the ocean, the position of the moon and unique characteristics of the coastline. The regional diurnal pattern is more frequent and pronounced in Southern California due to the more direct moon-tide connection as well as its “bathtub” shape.
Correct option is A and D.
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Research the skeptics of global climate change. What evidence do they offer in support of their views? How does it compare with the evidence from the IPCC? On balance, what do the data indicate?
thoroughly explain
The skeptics of global climate change offer a variety of evidence in support of their views. They argue that the Earth's climate has always been changing, and that current climate change is part of a natural cycle.
They also point to the fact that the Earth's temperature has not risen as much as predicted by the Intergovernmental Panel on Climate Change (IPCC). They also argue that the models used by the IPCC are flawed and that the data used to support their conclusions is unreliable.
The evidence offered by the skeptics is not as comprehensive as the evidence from the IPCC. The IPCC has used a variety of data sources, including satellite data, to support their conclusions. They have also used a variety of models to analyze the data and come to their conclusions.
On balance, the data indicate that the Earth's climate is changing and that human activity is a major contributor to this change. The evidence from the IPCC is more comprehensive and reliable than the evidence from the skeptics, and it is clear that human activity is having a significant impact on the Earth's climate.
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Why do commons experience environmental problems? Lack of funding No accountability in managing the area Too much shared vision Commons dorit usually experience environmental problems
Commons experience environmental problems due to no accountability in managing the area. Thus, option B is the correct option.
Commons, which are shared resources or areas managed by a community, can indeed experience environmental problems when there is a lack of accountability in their management. This lack of accountability can lead to several issues:
Overexploitation: Without clear rules and enforcement mechanisms, individuals may exploit common resources without considering long-term sustainability. This can result in overfishing, overgrazing, deforestation, or depletion of water resources.The tragedy of the commons: When no individual or group takes responsibility for the well-being of the commons, there may be a collective failure to conserve and sustainably manage the resource. Each individual acts in their own self-interest, which can lead to the degradation of the environment.Lack of regulation: The absence of regulatory frameworks and monitoring mechanisms can allow destructive practices or pollution to occur without consequences. There is no oversight to ensure compliance with environmental standards.Learn more about environmental problems here:
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Which of these is a potential source of light and glare?
Lighted signs
Indoor light escaping through windows
Reflective materials like glass or metal
All of the above
All of the above can be potential sources of light and glare.
How to determine the light sourcesLighted signs: Lighted signs, such as those found in commercial areas or on buildings, can emit bright and intense light that can cause glare, especially at night. Glare from lighted signs can be distracting and affect visibility.
Indoor light escaping through windows: When indoor lights are not properly shielded or controlled, they can escape through windows and cause glare. This can occur in office buildings, homes, or any indoor space with windows. Glare from indoor light can be bothersome and make it difficult to see clearly.
Reflective materials like glass or metal: Reflective surfaces like glass windows or metal surfaces can reflect sunlight or artificial light and create glare. The angle and intensity of the light reflection can lead to discomfort and reduced visibility.
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Which cities in the USA could be in danger of desertification? Oklahoma City,OK Houston, TX Wichita, Kansas New York City, NY
In the United States, cities such as Oklahoma City, Houston, Wichita, and New York City could be in danger of desertification due to their location in areas that are prone to drought and other environmental factors.
Correct option is A.
Oklahoma City, for example, is located in an area that is prone to extreme heat and drought, which can lead to desertification. Houston is located in an area that is prone to hurricanes and flooding, which can also lead to desertification. Wichita is located in an area that is prone to extreme temperatures and drought, which can also lead to desertification.
Finally, New York City is located in an area that is prone to extreme temperatures and flooding, which can also lead to desertification. All of these cities are at risk of desertification due to their location in areas that are prone to environmental factors that can lead to desertification.
Correct option is A.
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Topic: Consider the different energy sources that are currently used by households and industries and reflect upon what you believe energy sources will look like in the future and why you need to consider this as an emerging engineer
Energy sources have been the backbone of households and industries since the advent of human civilization.
Fossil fuels, which include coal, natural gas, and oil, have been the main sources of energy, but alternative sources, such as nuclear and renewable energy, have been gaining more attention in recent years.
Engineers are crucial in designing and developing energy systems that will meet the ever-increasing demand for power, while at the same time preserving the environment and mitigating the risks of climate change.
As an emerging engineer, it is essential to consider the different energy sources that are currently used and how they might evolve in the future.
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Why shouldn't you try to build permanent structures on a barrier island? because they move barrier islands can only hold so much weight before they flip over because they are made of limestone because they are only above water for part of the year
Barrier islands are not suitable for building permanent structures for a variety of reasons. Firstly, the nature of these islands means that they are constantly shifting and moving.
This means that the weight of these structures could cause the island to flip over. Additionally, these islands are typically made of limestone, which is also a non-permanent material that can suffer erosion due to the constant motion of the tides. Furthermore, as they are naturally only above water for part of the year, the structures that are built may not be able to withstand the constant wear and tear of the sea.
This leads to further damage and destruction of the structures, as well as the islands themselves. Therefore, it is not recommended that any permanent structures be built on a barrier island.
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What test do you need to perform to identify the mineral calcite from similar minerals like quartz and halite? Magnet Luster Weak HCL Acid Oder If a rock is hit with a hammer and the rock breaks into pieces of random size and shape with sharp irregular edges, that means the sample has good cleavage. True False Which of the following metamorphic rocks has experienced the most heat and pressure? Gneiss Phyllite Schist Shale Question 14 Rocks can contain non-mineral matter True False Rapidly cooling magma will form large igneous mineral crystals True False
1. To identify the mineral calcite from similar minerals like quartz and halite weak HCL test is performed. Calcite reacts with weak hydrochloric acid (HCL) and produces effervescence or bubbling.
Hence, the correct answer is option c.
2. If a rock is hit with a hammer and the rock breaks into pieces of random size and shape with sharp irregular edges, that means the sample has good cleavage. - False
3. Metamorphic rocks that has experienced the most heat and pressure is Gneiss. It is a high-grade metamorphic rock that has undergoes intense heat and pressure, resulting in distinct banding and mineral segregation.
Hence, the correct answer is option a.
4. Rocks can contain non-mineral matter - True.
5. Rapidly cooling magma will form large igneous mineral crystals - False
Rapidly cooling magma forms small mineral crystals, while slowly cooling magma allows for the growth of large mineral crystals in igneous rocks.
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The given question is not properly written. Hence the proper question is:
1. What test do you need to perform to identify the mineral calcite from similar minerals like quartz and halite?
a. Magnet
b. Luster
c. Weak HCL
d. Acid Oder
2. If a rock is hit with a hammer and the rock breaks into pieces of random size and shape with sharp irregular edges, that means the sample has good cleavage.
True or False
3. Which of the following metamorphic rocks has experienced the most heat and pressure?
a. Gneiss
b. Phyllite
c. Schist
d. Shale
4. Rocks can contain non-mineral matter.
True or False
5. Rapidly cooling magma will form large igneous mineral crystals.
True or False
The main limitation in physically describing a reservoir is that wireline logs and cores only provide information in the immediate vicinity of the wellbore. What geophysical methods have helped to overcome this limitation? A. Gravity and magnetics B. 3-D seismic techniques C. Refraction methods D. Cross-well tomography E. (a) and (c) F. (b) and (d)\
Geophysical methods have been used to help overcome the limitation of wireline logs and cores in physically describing a reservoir. This limitation is only able to provide information in the immediate vicinity of the wellbore.
Correct option is E.
Gravity and magnetics are geophysical methods used to discern subsurface properties at greater depths than what is detectable by wireline logs. Three-dimensional (3-D) seismic techniques allow for the imaging of structures and boundaries in the subsurface. The result of 3-D seismic typically gives a higher resolution than what is seen in 2-D seismic.
Refraction methods are used to map subsurface geological features by analyzing the amount of time different waves of seismic energy take to travel between two points. Lastly, cross-well tomography involves sending and receiving wave energy through one well and receiving the resulting waves in another, with the purpose of imaging the subsurface.
Correct option is E.
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Motor control is the ability to regulate movement patterns in organisms that possess a nervous system. Motor control includes involuntary reflexes to stimuli (e.g., stretch reflex), as well as willful, voluntary movements. Explain why motor control is affected following denervation and then reinnervation. Consider both afferent and efferent muscle physiologies.
Motor control is the process of regulating and controlling movement patterns in organisms that have a nervous system.
Motor control includes both involuntary and voluntary movements, such as reflexes and intentional movements. When denervation and reinnervation occur, motor control is significantly affected.Denervation occurs when the nerve supply to a muscle is lost. This can happen due to damage to the nerves that control the muscle.
Denervation can cause a reduction in muscle mass, strength, and tone.
It can also cause changes in the muscle's physiology, including a decrease in muscle fiber size and an increase in the amount of connective tissue present in the muscle.
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What evidence is there of a major earthquake in the Seattle area approximately 1,100 years ago, besides the uplifted wave-cut terrace at the south end of Bainbridge Island?
Studies of sedimentary deposits in the Puget Sound region have revealed evidence of a large earthquake that occurred around the same time as the uplifted wave-cut terrace at the south end of Bainbridge Island.
Evidence of a major earthquake in the Seattle area approximately 1,100 years ago can be found in the geological record. The deposits contain evidence of liquefaction, which is a process that occurs when the ground shakes so violently that the soil loses its strength and behaves like a liquid.
Additionally, the deposits contain evidence of landslides, which are caused by the shaking of the ground during an earthquake. Furthermore, the deposits contain evidence of ground deformation, which is caused by the shifting of the Earth's crust during an earthquake. All of this evidence suggests that a major earthquake occurred in the Seattle area approximately 1,100 years ago.
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Help please i need to submit this in 11 hrs!!!!!!!!
A.)Examine the following climatographs closely. In which
location does the temperature vary the most?
B.)Which location receives less precipitation?
A) The graph with the greatest temperature variation is graph B, ranging from about 10°C (50°F) to 30°C (86°F).
B) Location A receives less precipitation compared to location B, as indicated by lower precipitation values on graph A.
A)The location where the temperature varies the most can be determined from the given climatographs as follows:
Temperature is a measure of the average heat or thermal energy of the molecules in a substance. It is normally expressed in degrees Celsius (°C) or Fahrenheit (°F). In general, temperature varies from place to place based on a variety of factors, including latitude, altitude, topography, and distance from large bodies of water.
The graph with the greatest variation in temperature is graph B, which shows that the temperature ranges from a low of about 10°C (50°F) in the coldest month to a high of about 30°C (86°F) in the warmest month.
B)To determine which location receives less precipitation, look for the location with the lower precipitation values in the given climatographs.
Precipitation is the amount of moisture that falls from the atmosphere to the Earth's surface, which can take the form of rain, snow, sleet, or hail. It is typically measured in millimeters or inches, and can vary significantly from place to place based on a variety of factors, including latitude, altitude, topography, and proximity to large bodies of water.
In this case, graph A shows lower precipitation values than graph B, indicating that location A receives less precipitation than location B. Therefore, location A receives less precipitation.
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Compare and contrast the radiation hazards at LEO and GEO. Give
an example of a spacecraft in each type of orbit.
The radiation hazards at Low Earth Orbit (LEO) and Geostationary Earth Orbit (GEO) are quite different. LEO orbits are much closer to the Earth’s surface, and therefore are exposed to more radiation from the Van Allen belts.
This radiation can cause damage to spacecraft electronics and can even be hazardous to astronauts. An example of a spacecraft in LEO is the International Space Station.
GEO orbits are much further away from the Earth’s surface, and therefore are exposed to less radiation. However, GEO orbits are still exposed to solar radiation, which can cause damage to spacecraft electronics. An example of a spacecraft in GEO is the Hubble Space Telescope.
Overall, the radiation hazards at LEO and GEO are quite different. LEO orbits are exposed to more radiation from the Van Allen belts, while GEO orbits are exposed to more solar radiation. Both types of radiation can cause damage to spacecraft electronics, and can even be hazardous to astronauts.
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Compute the amount of energy required to heat your house from 15 ºC to 25 ºC if the volume of air is 1000 m3? Assume that you only heat the air in the house and that you can ignore the water vapor in the air. The specific heat of dry air is 1005 J kg-1 K-1. Assume an air density of 1 kg m-3. The unit for the answer is in Joules but you do not need to put the unit in your answer or in scientific notion.
To compute the amount of energy required to heat your house from 15 ºC to 25 ºC, we can follow these steps.
First, we need to calculate the mass of the air in the house by multiplying the air density (1 kg/m³) by the volume (1000 m³), which gives us 1000 kg. Then, we calculate the temperature difference by subtracting the initial temperature (15 ºC) from the final temperature (25 ºC), resulting in 10 ºC.
Next, we multiply the mass of the air (1000 kg) by the specific heat of dry air (1005 J/kg-K) and the temperature difference (10 ºC). This gives us the energy required to heat the air, which is 10,050,000 J or 10.05 MJ.
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Explain the 4 main causative agents of Environmental Diseases: Diet, Infection, Drugs and Toxins
Environmental diseases are caused by exposure to environmental factors such as pollutants, toxins, and other hazardous substances that lead to disease development.
These environmental factors can be categorized into four main causative agents: diet, infection, drugs, and toxins.Diet: The diet plays a significant role in the development of environmental diseases.
Poor diet is a primary cause of a variety of diseases such as obesity, cardiovascular disease, and type 2 diabetes.
A diet lacking fruits, vegetables, fiber, and lean proteins can lead to the development of such conditions.Infection: Pathogenic organisms such as bacteria, viruses, and fungi can lead to the development of environmental diseases.
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Given that we don't live near the polar ice-caps, the largest available reservoir of fresh water for human use is (a) The great rivers which flow across the continents (b) The vast lakes of the world, including those we have created with dams (c) Supplies of ground-water, which lie beneath the surface of the land (d) In the vast marsh-lands, bogs and swamps of the world
Given that we don't live near the polar ice-caps, the largest available reservoir of fresh water for human use is Supplies of ground-water, which lie beneath the surface of the land.
Correct option is C.
The largest available reservoir of fresh water for human use is found in the great rivers which flow across the continents, the vast lakes of the world, including those we have created with dams, supplies of ground-water which lie beneath the surface of the land, and in the vast marsh-lands, bogs and swamps of the world.
Rivers are the most accessible source of fresh water, and are used for drinking, irrigation, and other purposes. Lakes are also a major source of fresh water, and are used for drinking, irrigation, and other purposes. Groundwater is a major source of fresh water, and is used for drinking, irrigation, and other purposes.
Correct option is C.
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Discuss how the following may affect the Environmental Risk
Assessment process citing appropriate examples in each case: a.
Climate change (10 mks) b. Corona virus (COVID-19)
Climate change may modify environmental conditions, introduce new hazards, and intensify existing ones, which has substantial consequences for the Environmental Risk Assessment (ERA) process.
Coastal communities and low-lying areas are at risk from sea level rise brought on by climate change. Flooding, coastal erosion, and saltwater intrusion into freshwater sources are all made more likely by it.
The COVID-19 pandemic has presented the ERA process with a number of unique issues, notably with regard to the threats to public health and social dynamics.
Human behavior has changed as a result of COVID-19, including improved cleanliness standards, remote employment, and less travel. These behavioral changes and their effects on exposure to environmental dangers should be taken into consideration by ERA.
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Name any five (5) water pollutants and, write one (1) sentence
each on the importance of your selected
pollutant(s):
1. Nitrogen:
Nitrogen pollution in water can lead to overgrowth of algae and other aquatic plants, which can unbalance ecosystems, reduce oxygen levels, and adversely affect fish and other organisms.
2. Phosphorus:
Phosphorus pollution can cause harmful algal growth in aquatic environments, threatening human health and aquatic life, and causing ecological imbalances.
3. Heavy metals (lead, mercury, cadmium, etc.):
Heavy metal contamination in water can have severe toxic effects on aquatic organisms and pose a hazard to human health through biomagnification in the food chain.
4. Petroleum and petroleum products:
Underwater petroleum pollution can damage aquatic ecosystems and affect marine life, birds and other wildlife, causing long-term damage to habitats.
5. Pesticides:
Water pollution from pesticides can pollute drinking water sources, adversely affect aquatic life, destroy ecosystems, and affect biodiversity.
Addressing these pollutants is important because their presence in water can adversely affect the environment, human health and overall ecological balance.
By understanding and managing these pollutants, we can work together towards maintaining clean and healthy water resources for current and future generations.
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Which of the following is most likely to cause pollution due to leaching through the soil profile? peat moss compost processed sewage sludge ammonium sulfate sulfur coated urea
Ammonium sulfate is the most likely cause of pollution due to leaching through the soil profile. Ammonium sulfate is a widely used inorganic fertilizer and is soluble in water.
Correct option is C.
When applied to the soil, it quickly dissolves in water and becomes available for plant uptake. However, when too much ammonium sulfate is added to the soil, the nitrogen and sulfate ions can leach through the soil profile and travel downward, eventually entering groundwater supplies and polluting them.
This can be especially problematic for water sources used for drinking or swimming as too much nitrate and sulfate can be toxic to humans. To minimize the risk of leaching, it is important that these fertilizers are used as recommended and should not be over applied to soil to reduce the risk of potential groundwater contamination.
Correct option is C.
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Archaeological research investigate within: - (approximately) 100 Kilometers
- (approximately) 10 Kilometers
- All the above
- (approximately) 10 meters
Archaeological research investigates within approximately 100 kilometers, 10 kilometers, and 10 meters. Archaeology is the study of past human cultures through the investigation of physical remains and artifacts.
Archaeological research is usually conducted to find information about a specific location. The process of archaeological research requires that researchers work with a specific range of distance.
The range is usually determined by the area that is under investigation.The first distance range in archaeological research is approximately 100 kilometers.
This range is usually used to study the wider area around the archaeological site.
The study of a wide area helps the researchers to get an understanding of the context of the site.
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what are the parts of the atom, and where are they located? (b) why does the H atom have different energy (quantum) levels? (c) what happens when the electron takes a quantum jump from one level down to a lower level?
(a) The parts of the atom are the nucleus, containing protons and neutrons, and electrons orbiting around the nucleus. The protons and neutrons are located in the nucleus at the center of the atom, while the electrons are located in “shells” around the nucleus.
(b) The different energy levels of the H atom are due to the fact that electrons can only occupy discrete energy levels.
(c) When an electron takes a quantum jump from one level down to a lower level, a photon - a quantum of energy - is released.
The atom is made up of three main parts: the protons and neutrons, which are found in the nucleus, and the electrons, which are found in the energy levels (or "shells") outside of the nucleus.
The protons and neutrons give the atom its mass, while the electrons are responsible for the chemical and physical properties of the atom. The energy levels of the atom determine its stability and distinguish one element from another.
The H atom has different energy (quantum) levels because of the number of electrons found in its outermost shell. For example, an electron cloud of two electrons in its outermost shell gives the H atom a particular energy level (the ‘ground’ energy level), while an electron cloud of three electrons gives the H atom a higher energy level.
When an electron takes a quantum jump from one level down to a lower level, it is releasing a small ‘packet’ of energy in the form of light, heat, or other radiation. This phenomenon is known as ‘spontaneous emission’ and is the basis for many everyday phenomena, such as the dimming of fluorescent lights when they are turned off.
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Which of the following weathering processes is likely responsible for the formation of a solution cave? Frost wedging Oxidation Carbonation Exfoliation
Carbonation is likely responsible for the formation of a solution cave. The Option B.
How does carbonation contribute to the formation of solution caves?Carbonation is a weathering process that occurs when carbon dioxide (CO2) combines with water to form carbonic acid (H2CO3). This weak acid can dissolve certain types of rocks, particularly those rich in calcium carbonate such as limestone and marble.
In the case of solution caves, carbonic acid reacts with the calcium carbonate in the rock causing it to dissolve over time. This process is known as carbonation or dissolution. As the rock dissolves, cavities or caverns are formed underground eventually leading to the creation of solution caves.
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What would a graph of solar altitude look like for the Equator (0°) and for a location in the Arctic (72°N)? On the graph paper provide, graph SA for Jacksonvile on one day each month. Then do the same for the Equator and 72°N. After you have done this use the monthly average temperatures and add them to your graph. Describe your findings. You can use the below graph or just download some blank graph paper. You can upload a picture of a hand drawn chart or do it online. Use the data from your data of SA from the above question.
A graph of solar altitude for the Equator (0°) and for a location in the Arctic (72°N) would look like a bell curve. The graph would show the highest solar altitude at noon and the lowest solar altitude at sunrise and sunset.
For Jacksonville, the solar altitude would be highest in the summer months and lowest in the winter months. The solar altitude for the Equator would be highest in the summer months and lowest in the winter months, but the solar altitude for the Arctic would be highest in the winter months and lowest in the summer months.
When the monthly average temperatures are added to the graph, it is clear that the solar altitude and temperature are related. As the solar altitude increases, the temperature increases. This is because the sun's energy is absorbed by the Earth's surface, which warms the air. Conversely, as the solar altitude decreases, the temperature decreases.
This is because the sun's energy is not being absorbed as much, so the air does not warm as much. Overall, the graph of solar altitude and temperature shows that the sun's energy is a major factor in determining the temperature of a location.
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What are your impressions of the capacity factors for the
various renewable and non-renewable fuel types listed on the NEI
chart? Does anything surprise you?
The capacity factors for the various renewable and non-renewable fuel types listed on the NEI chart are quite revealing. It is not surprising that nuclear power has the highest capacity factor at 92.5%, as it is the most reliable and efficient form of energy production.
It is also not surprising that solar and wind have the lowest capacity factors, as they are dependent on weather conditions and are not as reliable as other forms of energy production. What is surprising is the capacity factor of natural gas, which is only slightly lower than nuclear power at 87.5%.
This is surprising because natural gas is a non-renewable fuel source and is not as efficient as nuclear power. Overall, the capacity factors of the various fuel types listed on the NEI chart provide a good indication of the efficiency and reliability of each fuel type.
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Large portion of western North
America were ______ during the middle part of the Jurassic.
A. buried in glacier ice.
B. small islands.
C. a tropical jungle.
D. covered with vast inland sea
"
Large portion of western North America was covered with a vast inland sea During the middle part of the Jurassic period.
Correct option is D.
This sea was part of the Western Interior Seaway, which stretched from the Arctic Ocean to the Gulf of Mexico. This sea was home to a variety of marine life, including ammonites, plesiosaurs, and ichthyosaurs. The sea was also home to a variety of plants, including ferns, cycads, and conifers.
The sea was also a major source of sediment, which was deposited in the form of sandstone, shale, and limestone. This sediment was eventually uplifted and formed the Rocky Mountains. The inland sea eventually receded, leaving behind a variety of fossils and sedimentary rocks that are still visible today.
Correct option is D.
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In at least 5 sentences, answer the following questions: Why do
you think the film "The Gleaners and I" was included in the course?
How does this film relate to other course material?
"The Gleaners and I" was included in the course to provide a unique perspective on social and environmental issues, complementing the course material on sustainability towards consumption and waste.
"The Gleaners and I" was likely included in the course due to its exploration of social and environmental issues, which align with the themes covered in the course.
The film provides a unique perspective on the concept of gleaning, the act of collecting leftover crops or discarded items, and sheds light on the lives of those who depend on this practice for survival.
It delves into issues of consumption, waste, and societal attitudes towards material possessions, linking it to the broader discussions on sustainability and resource management in the course.
Additionally, the film's documentary style and personal narration by the filmmaker, Agnès Varda, offer an intimate and reflective approach that complements the academic material by providing a humanistic and experiential viewpoint.
Overall, "The Gleaners and I" enhances the course by providing a thought-provoking and engaging exploration of social and environmental concerns.
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why
is this wrong?!
The earth: is a perfect sphere has an Equatorial diameter equal to polar diameter is roundish is a prolate ellipsoid
The Earth is not actually a perfect sphere, contrary to popular belief. Instead, it is an Oblate Ellipsoid. This means that although its Equatorial diameter is approximately equal to its polar diameter, it is slightly wider at the Equator than at the poles.
This "roundish" shape is due to the spinning of the Earth which causes it to bulge at the Equator. As such, it is not a sphere but a type of ellipsoid. Additionally, the large oceans on the planet contribute to this non-spherical shape.
The uneven distribution of gravity due to the Earth's rotation causes greater surface deformation than the oceans alone and further adds to the planet's elliptical shape. The Earth's non-spherical shape is also reflected in its gravitational field which is more pronounced at the Equator than at the poles, further distinguishing it from the perfect sphere.
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Briefly explain how geologists distinguish between an intrusive igneous rock and an extrusive igneous rock. Describe in your explanation the physical characteristics used to determine the difference between intrusive and extrusive. What interpretations can geologists make about the cooling rates of rocks from the rock's physical apperance/texture?
Geologists distinguish between an intrusive igneous rock and an extrusive igneous rock using physical characteristics.
An intrusive igneous rock cools and solidifies below the earth's surface, while an extrusive igneous rock cools and solidifies above the earth's surface.
The physical characteristics used to determine the difference between intrusive and extrusive are:-
Intrusive rocks have larger crystals, while extrusive rocks have smaller crystals.- Intrusive rocks have a coarser-grained texture, while extrusive rocks have a fine-grained texture.
Intrusive rocks have a more irregular shape, while extrusive rocks have a more uniform shape.
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Plants that grow without constraint exhibit determinate
growth.
Group of answer choices
True
False
The statement "Plants that grow without constraint exhibit determinate growth" is false. The correct statement is: "Plants that grow without constraint exhibit indeterminate growth", according to the concept of plant growth.
Plant growth can be categorized into two main types: determinate growth and indeterminate growth. Contrary to the false statement, plants that grow without constraint actually exhibit indeterminate growth. Indeterminate growth refers to the continuous development of plant structures throughout their lifespan, allowing them to increase in size and produce new leaves, branches, and flowers. This growth pattern is commonly observed in many perennial plants and allows for continuous expansion and development. In contrast, plants with determinate growth have a predefined limit to their growth, typically reaching a certain size or height and then ceasing further growth.
Understanding the distinction between determinate and indeterminate growth is crucial in studying and managing plant growth for various purposes such as agriculture, horticulture, and ecological research.
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