Answer:
c
Explanation:
The rocks would split over A LOT of time because of the water. It would be mechanical weathering because the water would be cutting away at it. Now if it was turning to clay it would be chemical weathering.
in Australia not registering to vote or not voting in an election can result in fines. True or False.
What is this answer?
when cloud-to-ground lightning occurs with thunderstorms that do not produce rain, the lightning is often called
When cloud-to-ground lightning occurs with thunderstorms that do not produce rain, the lightning is often called "dry lightning."
Dry lightning occurs when there is not enough moisture in the atmosphere for the precipitation to form and fall to the ground, but the electrical charges in the atmosphere still create lightning bolts. This type of lightning is dangerous because it can easily start wildfires, especially in areas that are prone to dry and hot weather conditions.
When a lightning bolt strikes the ground during a dry thunderstorm, the heat generated by the lightning can easily ignite dry vegetation and start a fire. This is why it is important to be aware of dry lightning conditions and take appropriate precautions, such as avoiding outdoor activities in areas prone to wildfires and reporting any signs of smoke or fire to local authorities.
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What is the difference between Climate Mitigation and Climate Adaptation? Give one example of climate mitigation action in the US and one climate adaptation action in the US. 12. Marijuana farming in Oregon consumes a lot of water. Oregon is getting warmer and drier due to climate change. More than one-third of Oregon, on average, has been in severe drought in 2020-2022, according to the fifth and latest Oregon Climate Assessment. Three-quarters of the state remained in severe drought or worse this week. What might be a climate adaptation measure in Oregon's agriculture sector.
Climate mitigation refers to actions taken to reduce greenhouse gas emissions and minimize the impacts of climate change, while climate adaptation refers to measures taken to adjust and prepare for the existing or anticipated impacts of climate change.
Example of Climate Mitigation in the US: The implementation of renewable energy sources, such as solar and wind power, to replace fossil fuel-based energy generation is an example of climate mitigation in the US. By reducing reliance on carbon-intensive energy sources, it helps to decrease greenhouse gas emissions and mitigate climate change.
Example of Climate Adaptation in the US: In the agriculture sector in Oregon, a climate adaptation measure could be the adoption of water-efficient irrigation techniques and technologies. Farmers can implement precision irrigation systems, use drought-resistant crop varieties, and improve water management practices to adapt to the increasing water scarcity and ensure efficient use of water resources.
Climate mitigation focuses on reducing greenhouse gas emissions and preventing further climate change. It involves actions like transitioning to renewable energy, improving energy efficiency, and adopting sustainable practices to minimize the carbon footprint.
On the other hand, climate adaptation involves preparing for and adapting to the impacts of climate change that are already occurring or anticipated. This includes measures to protect vulnerable communities, infrastructure, and natural resources from the effects of climate change.
In the given example, Oregon's agriculture sector can implement climate adaptation measures to address the increasing water scarcity caused by climate change. Adopting water-efficient irrigation techniques and technologies would help farmers optimize water use, reduce water consumption, and better manage drought conditions.
Climate mitigation focuses on reducing greenhouse gas emissions and preventing further climate change, while climate adaptation involves preparing for and adapting to the impacts of climate change. An example of climate mitigation in the US is the adoption of renewable energy sources, while an example of climate adaptation in the agriculture sector in Oregon could be the implementation of water-efficient irrigation techniques and technologies to address increasing water scarcity caused by climate change. These measures are essential in combating climate change and building resilience to its impacts.
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the heavier elements on the earth (those with atomic numbers greater than 5) group of answer choices are formed by stellar nucleosynthesis during the
The heavier elements on earth formed by stellar nucleosynthesis during the life cycle of existing stars.It is stellar nucleosynthesis that forms the heavier elements on Earth.
Nucleosynthesis is the process of creating new atomic nuclei from pre-existing nucleons (protons and neutrons). It is thought that the primordial nucleons themselves formed from the quark-gluon plasma from the Big Bang when it cooled below two trillion Kelvin. Minutes later, starting with just protons and neutrons, nuclei from aton down to lithium and beryllium (both mass number 7) formed, but only in relatively small numbers. Then the fusion process essentially stops as the temperature and density decrease, as the universe continues to expand. This first primordial nucleosynthesis process can also be referred to as nucleogenesis.
Subsequent nucleosynthesis of the heavier elements required the explosion of heavy stars and supernovae. This happened theoretically because hydrogen and helium from the Big Bang (perhaps influenced by the concentration of dark matter), condensed into prime stars 500 million years after the Big Bang. The elements formed in stellar nucleosynthesis range in atomic numbers from 6 (carbon) to at least 98 (californium), which have been detected from the spectra of some supernovae. The synthesis of these heavier elements occurs as a result of either nuclear fission (including multiple slow and fast neutron capture) or nuclear fission, sometimes followed by beta decay.
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Identify the capital and state labeled #36 on the map above.
Carson City, Nevada
Boise, Idaho
Salem, Oregon
Sacramento, California
The Arabian Desert has an annual rainfall of _____ and summer temperatures that can reach _____. 2-3 inches / 125 degrees F 15 inches / 140 degrees F less than 20 inches / 110 degrees F less than 10 inches / 130 degrees F
Answer:
less than 10 inches / 130 degrees F
Explanation:
it just dont rain much
What could happen to climate in Europe if the Gulf Stream weakened due to climate change?
you own a restaurant and you have one employee you pay him $5.50 an hour for a 40 hour week you'll pay him and overtime rate of $8.25 an hour for any hours worked Beyond do 40 hours a week last week he worked a total of 40 hours this week she worked a total of 45 hour how much do you owe your employee for these 2 weeks
In the first week, the employee worked a total of 40 hours and did not work overtime, so the wages for the first week are:
40 hours x $5.50/hour = $220
In the second week, the employee worked a total of 45 hours, which means he worked 5 hours of overtime. Overtime is $8.25 per hour for him, so overtime for 5 hours would be:
5 hours x $8.25/hour = $41.25
Her regular 40 hour work for the second week will be paid the same as the first week.
40 hours x $5.50/hour = $220
So the total reward for the two weeks would be:
$220 (1st week) + $220 (2nd week regular wage) + $41.25 (2nd week overtime) = $481.25
So, in that two weeks, the employee owes her $481.25.
who coined the term cell?
Answer:
Robert Hooke coined the term cell
Explanation:
What are some problems associated with urbanization?
Which factor below largely controls what rock types and landforms develop from basaltic magma?a) The isotopic composition of the magmab) The atmospheric temperature in the vicinity of the magma or lavac) The geographic location of the magmad) The characteristics and behavior of the gas in the magma
The factor that largely controls what rock types and landforms develop from basaltic magma is d) The characteristics and behaviour of the gas in the magma.
Magma is a mixture of molten or semi-molten rock, crystals, and dissolved gases that form beneath the Earth's surface. The characteristics and behaviour of the gas in the magma play a crucial role in determining what rock types and landforms will develop from it. The amount of gas, the type of gas, and the pressure of the gas can all affect how the magma behaves and solidifies.
For example, if there is a large amount of gas in the magma, it can create explosive eruptions that produce pyroclastic rocks and landforms. On the other hand, if there is less gas in the magma, it may solidify more slowly and create different types of rocks and landforms.
Temperature is also an important factor in the development of rocks and landforms from magma, but it is not the main factor controlling the process. The isotopic composition of the magma and the geographic location of the magma are also important, but they are not the main factors controlling the process.
In conclusion, the characteristics and behaviour of the gas in the magma largely control what rock types and landforms develop from basaltic magma.
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A
Multinational states most often have political problems because
each nation desires an independent sovereign state
B. neighbors are more likely to invade them
C. they are more likely to support autocratic leaders
D. they are more likely to have economic problems
Please select the best answer from the choices provided.
Answer:
each nation desires an independent sovereign state
Explanation:
The above is actually true on the reason why they had a political problems. This is because, there will always be differences among them just as they are linked together by a common goal. With time, those problems will widen leading to each nation aiming towards having their own independent sovereign state. This will then lead to political problems for them.
Answer:
A
Explanation:
rank the choices from the beginning stage to the final formation of petroleum and natural gas. (place the beginning stage on top.) need help? review these concept resources.
To rank the choices in the order of the formation of petroleum and natural gas, starting from the beginning stage to the final formation, the correct sequence is 1. Microorganisms in oceans or lakes die and settle to the bottom., 2. Organics are buried under sediments., 3. At shallow depths and moderate temperatures, organics are converted to kerogen. qne 4. Source rocks are buried and heated further and become oil and gas.
The process begins with the accumulation of organic material from microorganisms, such as algae and plankton, at the bottom of oceans or lakes. Over time, these organic deposits become buried under layers of sediments. Under increasing pressure and temperature, the organic matter transforms into kerogen, a solid organic material.
Finally, with further burial and higher temperatures, the kerogen undergoes thermal cracking and maturation, resulting in the formation of petroleum (oil) and natural gas within source rocks. It is important to note that the formation of petroleum and natural gas is a complex process that involves geological and chemical transformations over millions of years. The described sequence provides a simplified overview of this process.
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Complete Question : Rank the choices from the beginning stage to the final formation of petroleum and natural gas. (place the beginning stage on top.) need help? review these concept resources.
4. source rocks are buried and heated further and become oil and gas,
2. organics are buried under sediments,
1. microorganisms in oceans or lakes die and settle to the bottom,
3. at shallow depths and moderate temperatres , organics are converted to kerogen.
How were the Aztecs able to conquer the greatest empire yet seen in the history of North America and hold it for almost a century?
Discuss underlying factors as well as specific events and individuals.
The Aztec empire were able to conquer the greatest empire yet seen in the history of North America and hold it for almost a century due to several underlying factors and specific events and individuals.
The Aztecs were skilled warriors and tacticians who were able to conquer their neighbors through a combination of military force, diplomacy, and strategic alliances.
One of the main factors that allowed the Aztecs to conquer other tribes was their military might. They had a highly organized army that was well-trained and equipped with the latest weapons and technology of the time, including obsidian-tipped swords and spears, bows and arrows, and slingshots. They also had a well-organized system of military leadership that allowed them to quickly respond to any threats or attacks from neighboring tribes.
The Aztecs also used diplomacy to their advantage, forming alliances with other tribes and using marriage and other forms of exchange to create political and economic ties. This allowed them to expand their influence and gain control over more territory. They also used religion as a means of control, building temples and other religious structures in conquered territories to demonstrate their power and authority. This helped to maintain their control over these territories for many years.
One of the most significant events that helped the Aztecs to establish their dominance over the region was the arrival of the Spanish conquistadors. Although the Aztecs were initially successful in repelling the Spanish, they eventually succumbed to the superior technology and military tactics of the Europeans. This led to the downfall of the Aztec empire and the eventual colonization of the region by the Spanish.
Finally, some of the key individuals who helped the Aztecs to establish and maintain their empire include their legendary leader Moctezuma, who is credited with bringing the empire to its greatest extent; and the warrior Tlaxcala, who helped to form a strategic alliance with the Aztecs that allowed them to conquer other tribes and expand their territory.
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The hydrosphere refers to the total amount of water on Earth, including liquid, gas, and solid forms. Which is one way the hydrosphere has been impacted by the movement of the continents over time?
Answer:
A
Explanation:
Answer: a. Glaciers that once covered South Africa have melted and can no longer form.
Explanation:
two type of forces in geographic
Answer:
we can define endogenic forces (internal) and exogenic forces (external) as the two major geomorphic pressures that lead to the earth's movements and give shape to the earth's surface.
A 50-foot ladder is leaning against the side of a building and is positioned such that the base of the ladder is 30 feet from the base of the building. How far above the ground is the point where the ladder touches the building?
To find the distance above the ground where the ladder touches the building, we can use the Pythagorean theorem, which relates the lengths of the sides of a right triangle.
In this case, the ladder forms the hypotenuse of the right triangle, the distance above the ground is the height of the triangle, and the distance from the base of the ladder to the base of the building is the base of the triangle.
According to the Pythagorean theorem:
hypotenuse^2 = base^2 + height^2
In our scenario:
50^2 = 30^2 + height^2
Simplifying the equation:
2500 = 900 + height^2
Subtracting 900 from both sides:
height^2 = 1600
Taking the square root of both sides:
height = √1600
height = 40 feet
Therefore, the point where the ladder touches the building is 40 feet above the ground.
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The worlds longest river
Answer:
The Amazon is the world's longest river.
ANSWER:
NILE is the longest river
how did confilcts in society lead to independence for spain colonies
The way that the conflict that was in the society led to the independence was that the Napoleonic war between Spain and Napoleon made the Spanish colonies to begin to question the allegiance that they had to Spain.
What is the meaning of independence?This is the term that is used to refer to the freedom that nations would have to be able to have their own self rule, that is the nations that are being governed by other nations would have the liberty to be able to determine the ways that they would want to run the affairs of their own governments.
The Peninsular war that they had with France had made Napoleon to occupy Spain. This made the Creoles to begin to question the allegiance that they had to the Spanish people that were in their nations.
Hence the push and the fight for independence in all of these colonies of Spain.
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Which of the following statements about tidal patterns and tidal charts is/are true? Choose all that apply.a. The tidal range is the difference in height between a high tide and a low tide.b. A tidal day is 24 hours and 50 minutes long.c. A mixed tidal pattern has two lows of about equal height and two highs of about equal height every tidal day.d. A diurnal tidal pattern has two high tides every tidal day.e. A semidiurnal tidal pattern has two low tides every tidal day.f. A mixed tidal pattern has two lows of unequal height and two highs of unequal height every tidal day.
Regarding the statements about tidal patterns and tidal charts, the true statements are:
a. The tidal range is the difference in height between a high tide and a low tide.
b. A tidal day is 24 hours and 50 minutes long.
f. A mixed tidal pattern has two lows of unequal height and two highs of unequal height every tidal day.
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According to robert christgau, chuck berry is the greatest of all rock and rollers. True or false
According to Robert Christgau, chuck berry is the greatest of all rock and rollers. Thus, the given statement is true.
According to Robert Christgau, Chuck Berry is heralded as the greatest of all rock and rollers. Christgau, a renowned music critic, has expressed his admiration for Berry's immense influence and pioneering contributions to the genre. Berry's innovative guitar riffs, energetic performances, and timeless hits such as "Johnny B. Goode" and "Roll Over Beethoven" have left an indelible mark on rock and roll history.
Christgau's assessment underscores Berry's significance in shaping the sound and spirit of rock and roll, solidifying his status as an iconic figure whose impact reverberates throughout generations of musicians and fans alike.
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Explique os elementos olímpicos: bandeira, lema, tocha e hino:
Answer:
okey que elementos olimpicos estas buscando aparte de deportivo ser cooperativo compañerimos etc
2. The list below shows the number of computer games a store sold each day for 11 days it was open. 27,28,29,35,35,36,37,42,43,46,76. A) find the five number summary for the data. Show your work.
The five-number summary for the data is 27, 76, 39.45, 32.42, 51.75.
How to do a five-number summary?To do a five-number summary calculate:
The largest and smallest valueThe meanThe first and third quartileThe largest and smallest value: In this case, the smallest value is 27 and the largest one is 76 as they represent the smallest and biggest number of products sold in one day.
The mean: To find it add all the numbers and divide the result into the total of values:
27 +28 +29 +35 +35 +36 +37 +42 +43+46+76 / 11 = 39.45
First quartile: Mean of numbers that are under the mean:
27 +28 +29 +35 +35 +36 +37/ 7 = 32.42
Third quartile: Mean of numbers that are over the mean:
42 +43+46+76/ 4 = 51.75
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How many lines are there in longitudes?
There are 360 lines of longitude, also known as meridians, which run from the North Pole to the South Pole.
These lines represent angular measurements that are used to locate points on the Earth's surface. All lines of longitude are the same length but they get closer together as they get closer to the poles.
Each line of longitude is divided into 60 minutes and each minute is divided into 60 seconds. This system of dividing lines of longitude into smaller sections makes it easier to locate points on the globe with precision.
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How do scientists forecast the weather?
Answer: Observational data collected by doppler radar, radiosondes, weather satellites, buoys and other instruments are fed into computerized NWS numerical forecast models. The models use equations, along with new and past weather data, to provide forecast guidance to our meteorologists.
Explanation:
Which type of satellite is useless for meteorologists at 3AM?
a. visible satellite imagery.
b. infrared satellite imagery.
c. water vapor imagery.
Answer:
Hey There!
Your answer is A. VISIBLE SATELLITE IMAGERY
Explanation:
You can guess from the name...
To use this satellite means the SUNLIGHT is needed to fall on an area of Earth which is going to be graphically imaged via the satellite (much like Google Earth, Weather Reports or a GPS)
Obviously when its 3AM it is dark...so using these satellites for meteorological purposes (or anything else really) IS NOT POSSIBLE WITHOUT LIGHT!
I HOPE THIS HELPED WITH YOUR WORK!!
:D
The visible satellite imagery satellite is useless for meteorologists at 3AM. Thus option (a) is correct.
What is Satellite?A satellite is an object in space that orbits or circles around a bigger object. There are two kinds of satellites: natural (such as the moon orbiting the Earth) or artificial (such as the International Space Station orbiting the Earth).
There are dozens upon dozens of natural satellites in the solar system, with almost every planet having at least one moon. Saturn, for example, has at least 53 natural satellites, and between 2004 and 2017, it also had an artificial one — the Cassini spacecraft, which explored the ringed planet and its moons.
Earth observation satellites gather information for reconnaissance, mapping, monitoring the weather, ocean, forest, etc. Space telescopes take advantage of outer space's near perfect vacuum to observe objects with the entire electromagnetic spectrum.
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In the Northern Hemisphere, surface winds around an area of surface low pressure (L on a weather map) blow Group of answer choices a. clockwise and inward b. clockwise and outward c. counterclockwise and inward d. counterclockwies and outward
In the Northern Hemisphere, surface winds around an area of surface low pressure (L on a weather map) blow in a counterclockwise and inward direction. The correct option is C.
This is known as cyclonic circulation. As air converges towards the low-pressure center, it is deflected to the right due to the Coriolis effect, causing the counterclockwise rotation. Inward movement occurs because air flows from areas of higher atmospheric pressure towards lower pressure regions.
These winds associated with low-pressure systems bring moist air and are often associated with cloudy and rainy weather conditions.
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Complete Question:
In the Northern Hemisphere, surface winds around an area of surface low pressure (L on a weather map) blow in which direction? Choose the correct option from the following:
a. Clockwise and inward.
b. Clockwise and outward.
c. Counterclockwise and inward.
d. Counterclockwise and outward.
Different between mayan and hindi vigesimal or base-20 (base-score) numeral system is based on twenty (in the same way in which the decimal numeral system is based on ten). Vigesimal is derived from the Latin adjective vicesimus, meaning 'twentieth'. Contentsarabic in zero
The placement of the symbols used to represent numbers and their use in the Mayan and Hindi vigesimal numeral systems is one of the major difference.
The Hindi system uses digits and reads from left to right, whereas the Mayan system uses dots and bars and reads from bottom to top.
Both systems are based on the number 20 with the Hindi system using digits to represent 1 to 9 and a combination of digits to represent 10 to 19 and the Mayan system using a combination of dots and bars to represent 1 to 19. Both systems incorporate the zero concept, which is derived from the Arabic numeral system.
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Environmental science
The blanks have multiple-choice options, these are the answer choices.
1: irregular, uniform
2: east, north, south, west
3: lower, higher, both
4: disappears altogether, decreases quickly, expands vigorously
5: boreal, hardwood, both
Also, please answer all other questions with multiple-choice on screen. Thank you.a
5. Climate-change effects on forest types and locations Regional climate, soil, and other environmental factors contribute to the different blomes found on the planet, as seen in the following map. As human activities continue to increase global surface temperatures on earth, however, the current locations of these biomes, and the various ecosystems within them, are expected to shift in location in degrees north or south of the equator (also known as latitude). For example, click the outlined temperate deciduous forest in the eastern United States. On a smaller scale, scientists have used model simulations to project the shifts of the forest types within this biome over time. The figure on the left shows the current distribution of forest types, and the figure on the right shows the projected distribution of forest types 80 years from now, assuming that global temperatures continue to increase over time. Biomes ARCTICO NORTH AMERICA EUROPE ASIA PACIFIC OCEAN ATLANTIC OCEAN CENTRAL AMERICA MIDDLE EAST PACIFIC OCEAN AFRICA SOUTH AMERICA INDIAN OCEAN N OCEANIA WCOME 1,000 2,000 LODE 2.000 High mountains Polarice Arctic tundra Temperate grassland Tropical grassland Chaparral ANTARCTICA Coniferous forest Temperate deciduous forest Temperate rainforest Tropical rainforest Tropical dry forest Desert As expected, the temperate deciduous forest biome is made up of a mosaic of patches, likely due to the distribution of resources and land-use changes in the region. Generally, forest types in this region are estimated to move in latitude as global surface temperatures continue to increase. in latitude, but it also Review the range shift in oak-pine forests. Not only does this forest type move from the original range area. Range shifts in biomes and their associated vegetation are expected not only with respect to latitude but also with respect to elevation. For example, forest types found on latitudinal gradients are similar to forest types found on elevational gradients. As such, range shifts of these forest types due to climate change should be observed on mountains as well. In 2008, Brian Beckage and colleagues measured whether the ranges of two forest types-hardwood and boreal—in the Green Mountains of Vermont had shifted in elevation due to global warming. They compared the 1964 distribution of each of these forest types with the 2004 distribution. The range in elevations where these two forest types overlap, also known as the transition zone, is seen between 732 m and 914 m (highlighted by the shaded portions of the following graphs). Review the graphs carefully before answering the following questions. Hardwood forests 100- 1964 2004 Transition zone Percent area (%) 549 610 671 732 975 1036 1097 1158 792 853 914 Elevation (m) Boreal forests 100 Percent area (%) 549 610 671 732 975 1036 1097 1158 792 853 914 Elevation (m) Dula dupled from Beckyje, B. Ostromne, D. G. Guvin, C. Pucku, T Siczne, Perkins. "A tapi weld shilli foreslelone dutiny 10 years of walining in the Green Mountains of Vermont," Proceedings of the National Academy of Sciences 105, no. 11 (2000): 4197-4202. 2009 National Academy of Sciences, USA forests. What effect did increasing global temperatures have on these two forest The transition zone is dominated by types? Check all that apply. Boreal forest distribution has expanded to lower elevations where it was not present before. Hardwood forest distribution has generally decreased in the transition zone, particularly at 732 m and 792 m. At 732 m, hardwood forest distribution increased by more than 10%.
1. irregular
2. both north and south
3. both
4. decreases quickly
5. both
Based on the information provided, increasing global temperatures have caused the boreal forest distribution to expand to lower elevations where it was not present before, and the hardwood forest distribution has generally decreased in the transition zone, particularly at 732 m and 792 m.
Additionally, it suggests that the distribution of hardwood forest in the transition zone has decreased, particularly at elevations of 732 m and 792 m. This means that the forest has become less abundant in these areas.
The decrease in the hardwood forest distribution is due to the expansion of the boreal forest, which is better adapted to the warming climate.
Therefore, both the boreal and hardwood forests are affected by increasing global temperatures, but in different ways.
The boreal forest expands to lower elevations, while the hardwood forest distribution decreases, and the changes are observed in both the north and south regions of the transition zone.
The decrease in hardwood forest distribution occurs quickly, while the boreal forest expansion is irregular.
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