Place the letters A-M in order from youngest to oldest event. Write a narrative for the events that occurred.
An orderly sequence of events is known as chronology. It is also a system that figures out when certain things happened. To put it another way, chronology is the arrangement of events according to when they happened.
Two distinct meanings can be conveyed through the use of chronology:
Schedule TimelineExample: Iranians have utilized a Persian chronology in which the names of the months are written in Persian since the time of the Persian Empire; On March 21, the first day of the year is celebrated as Nowruz.
Calendar is referred to as chronology in this example. The phrase could be rephrased as follows:
Iranians have used a Persian calendar with Persian month names since the time of the Persian Empire; On March 21, the first day of the year is celebrated as Nowruz.
Example: Dust Tracks on a Street by Zora Neale Hurston is a sequence of the significant occasions of her life; that is, it is her memoir.
The term "chronology" refers to a timeline in this example. The story begins with Hurston's birth in 1891 and continues until her death in 1960.
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Imagine that SpaceX also invented a way for your spacecraft to travel inside of a black hole and come back again, and to prove it, they wanted to build a tool—like a super-powerful telescope—for your friends and family to view your journey into and out of the black hole from their homes on Earth. From your family and friends' perspective, as you approached the black hole's event horizon, what would they see?
They would see the spacecraft frozen for all eternity.
What are spacecrafts called?The following are the main distinctions between rockets and spacecraft: The spacecraft is propelled into orbit by rockets before returning to earth. Although spacecraft can be either manned or unmanned, rockets are always unmanned. Additionally, spacecraft lack the power that rockets possess. Although not all satellites can be spacecraft, all spacecraft can be satellites. An object that orbits the Earth, the moon, or another celestial body is referred to as a satellite, whereas a spacecraft is a vehicle or technology designed for travel or operation outside the Earth's atmosphere. A device built to go across space is called a spaceship. They are capable of being utilized for Earth observation, communication, navigation, and space exploration.To learn more about spacecrafts, refer to:
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Ecosystems provide many benefits to humans, which are termed "ecosystem services."Visiting the Grand Canyon on a school field trip is an example of a __________ service that ecosystems can provide.
a. Regulating
b. Supporting
c. Cultural
d. provisioning
Ecosystems provide many benefits to humans, which are termed "ecosystem services. "Visiting the Grand Canyon on a school field trip is an example of a cultural service that ecosystems can provide. Thus, option C is the correct option.
Ecosystems offer a variety of advantages to people, or "ecosystem services." These services include cultural ones that improve our quality of life and general well-being. A school field trip to see the breathtaking beauty and significance of natural landscapes like the Grand Canyon is an illustration of cultural service. These encounters bring us closer to the natural world, foster an appreciation for biodiversity, and present educational possibilities.
Ecosystems provide cultural services that enhance our feeling of location, identity, and recreational and spiritual fulfillment. They promote a greater awareness and connection to the natural environment and its inherent worth by providing chances for introspection, relaxation, and inspiration.
Thus, option C is the correct option.
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Explain the basic principles of map reading?
Answer:
Map reading is the process of looking at the map to predict what is depicted and how the cartographer depicted it
Answer:
Map reading is the process of looking at the map to determine what is depicted and how the cartographer depicted it. This involves identifying the features or phenomena portrayed, the symbols and labels used, and information about the map that may not be displayed on the map.
Currently, average sea surface temperatures are decreasing across the globe.
a. True
b. False
This claim is untrue. Globally averaged sea surface temperatures are not currently dropping.
Is the surface of the ocean getting warmer or colder?The average SST for the entire planet has increased since the start of the industrial period. Although it has not been constant across time or space, the average global increase in SST over the past four decades has been roughly 0.6°C.
Despite some year-to-year variability, the sea surface temperature has consistently increased over the past three decades more than it has at any other point since reliable data began in the late 1800s. Despite this, there is a noticeable increase overall.
Why is the temperature of the sea rising?Rising levels of greenhouse gases are making it harder for heat radiated from the Earth's surface to escape into space as easily as it formerly did. The majority of the extra atmospheric heat gets returned to the ocean. Because of this, the top ocean heat content has considerably grown during the previous few decades.
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HELP Using information from the article and the lesson, as well as your understanding of Japan’s physical terrain and population patterns, explain why the country has become more reliant on railways rather than roadways. What evidence can you point to in support of your explanation?
Since the late nineteenth century, trains have remained the primary mode of passenger transportation in Japan. Government policy encouraged railroads as an effective mode of transportation for a nation lacking fossil resources and heavily reliant on imports.
What is Transportation in japan?Japan has invested a lot of money in its highways. The primary mode of transportation in japan is the 1.2 million kilometers of paved roads. Traffic in Japan is left-handed. Major cities are connected by a single platform of toll roads that are divided into several lanes and have limited access and are run by businesses that collect tolls.
The primary means of transportation in japan around the nation is via rail, which provides quick and regular transit within and between large metropolises. High-speed trains known as shinkansen, often known as "bullet trains," connect the country's northern island from Hokkaido to its southernmost region of Kyushu.
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Answer:
Japan’s mountainous terrain has led to a clustering of large populations along the coastline, often around seaports. This greater concentration of people along the coasts makes public transportation in the form of metro trains more efficient than roadways. Roads would clog up with cars in a city like Tokyo if people drove themselves to and from work or school each day. According to the article, Japan has no fossil fuels to operate cars, so a more efficient transportation vehicle, like a train, was needed to use natural resources wisely. Also, crowded roadways have led to car accidents, encouraging more people to use the safer transportation option of trains.
Explanation:
Edmentum/Plato
14. Sam bought 30 pounds of produce to feed his hippo. Bananas cost $1 per pound; guavas cost $2 per pound; and kiwi costs $3 per pound. Sam spent $46. The bananas weigh twice the weight of the guavas and kiwi combined. Which system can be used to find how many pounds of each fruit Sam bought?
The system of equation that can be used to find how many pounds of each fruit Sam bought include:
x + y + z=30
x + 2y + 3z = 46
x = 2y+2z
How to illustrate the equation?let x = Number of pounds of bananas
y = Number of pounds of guavas
z = Number of pounds of dragon fruit
According to the question,
x + y + z = 30 (i) (total fruits bought = 30 pounds)
Bananas cost $1 per pound; guavas cost $2 per pound; and dragon fruit costs $3 per pound and total cost = $46.
∴ x + 2y + 3z = 46 (ii)
Also, weight of the bananas = 2 (weight of the guavas + weight of dragon fruit)
∴ x = 2(y + z)
⇒x = 2y + 2z (iii)
from (i), (ii) and (iii)
x + y + z=30
x + 2y + 3z = 46
x = 2y + 2z
are the equations for the required system.
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What is the term for the process where precipitation slowly soaks into the ground?
Match the layer of the earth in column 1 to the characteristics in column 2
Inner core-Dense Solid iron, Outer core-liquid iron, Lower mantle-Close to the outer core, and Upper mantle-pushes the crust.
What is the Crust?The crust, in geology, is a rocky planet, a dwarf planet's, or a natural satellite's outermost solid shell. It can sometimes be separated from the mantle underneath it based on its chemical composition, especially in the case of ice satellites.
The outermost layer of a rocky planet is referred to as its "crust." The older, heavier continental crust and the denser, younger oceanic crust make up the majority of the Earth's crust.
The outside layer of a slice of bread is called the crust. The cooked pastry makes up a pie crust. A crust is indeed a hard coating that is present on top of anything softer or wetter. The Earth's outermost layer is called the crust.
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The Sierra Nevada and Sawtooth mountain ranges were caused by a huge intrusion type known as a ________.
The correct answer is Laccolith The Sierra Nevada and Sawtooth mountain ranges were caused by a huge intrusion.
When magma (molten rock) rising through the Earth's crust starts to spread out horizontally and tear apart the host rock strata, a laccolith is created. The laccolith's dome-like shape is the result of the overlaying strata being driven higher by the magma's tremendous pressure. A laccolith is a mass of igneous or volcanic rock found inside a stratum, whereas a batholith is a sizable irregular mass of intrusive igneous rocks that pushes itself into the surrounding layers. Igneous rocks and volcanic landforms include batholiths and laccoliths in their composition. In terms of geology, a laccolith is any igneous intrusion of a certain type that has broken apart two strata and produced a dome-shaped structure; the floor of the formation is typically horizontal.
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Small conical-shaped hills with truncated tops that formed during moderately explosive volcanic eruptions are known as _____
Small hills with conical shapes and truncated tips known as cinder cones were created during moderately violent volcanic eruptions.
What type of eruption causes the growth of cinder cones?Strong, pasty lava, as well as bursts of steam and gas, are released into the atmosphere during brief explosive eruptions known as strombolian eruptions. Strobolian eruptions typically produce very little lava. As a result, the cones produced by this kind of eruption are referred to as cinder cones and have extremely steep edges.
How do cinder cones form?A scoria cone, often referred to as a cinder cone, is a steep, conical mound formed around a volcanic vent using loose pyroclastic material like scoria, volcanic clinkers, or volcanic ash. The explosive eruptions or lava fountains from a single, frequently cylindrical vent are what produce the pyroclastic particles.
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due to their complexity, any given response to an environmental problem involves significant _____, and no one response is likely to present the perfect solution.
Due to their complexity, any given response to an environmental problem involves significant antigen and no one response is likely to present the perfect solution.
In order to bind to a specific protein, B lymphocytes use B mobileular receptors (BCRs) on their surface. This protein, known as an antigen, binds to the B cells, which then release antibodies that bind to the antigen and prevent it from damaging the body. To attract various immune cells, the B cells release cytokines afterwards.
Helper T cells comprehend the complex relationship between the receptor and the antigen and cause the production of plasma and memory cells, which in turn cause the production of antibodies. The term "antibody-mediated immunity" also applies to homorial immunity. B cells will differentiate into plasma B cells, which can manufacture antibodies against a specific antigen, with the assistance of helper T cells.
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When a river enters an ocean and begins deposition sediments to form deltas, the first particles to settle out are large particles and sand followed by _____ and _____, which settle farther offshore
silt; clay
Large particles and sand are the first particles that settle out when a river meets an ocean and starts depositing sediments to form deltas, followed by silt and clay, which settle further offshore.
What materials are the first ones to end up in a river?Sediment builds up in the water as a river slows down. Larger, heavier particles like pebbles, sand, and other materials settle first; lighter ones like silt and clay don't settle until the water is almost still.
What occurs when sediments are released by sand particles after they have settled out of the ocean or wind?This so-called detritus material is made up of rock and mineral fragments. When the energy of the carrying current is not enough to carry the particles, they fall out during the sedimentation phase. The word used to describe this process of sedimentary deposition is clastic sedimentation.
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Explain the basic principles of map reading
Answer:
Map reading is the process of looking at the map to determine what is depicted and how the cartographer depicted it
Match each distance to the appropriate category according to the unit of measurement that best describes the size scale of each distance.
The unit of measurement:
- kilometer (km)
- astronomical unit (AU)
- light-year (ly)
Distances:
- distance between Quebec and London
- radius of Mercury
- distance between Mercury and Neptune
- distance between the sun and the star Proxima Centauri
- distance between Neptune and the center of the Milky Way
- distance between galaxies
kilometers (km): Mercury's radius and the distance between Québec and London.
Mercury and Neptune's distance is measured in astronomical units (AU).
Light-year (ly): The separation between the sun and the star Proxima centauri, neptune and the galactic center, and the separation between galaxies.
What does an astronomical unit mean?The average distance between Earth and the Sun, or roughly 93,000,000 miles, is referred to as an astronomical unit. Then, if we say an object is 35 AU from the Earth, we mean it is 35 times farther away from the Earth than the Earth is from the Sun, or 35 times 93 million miles.
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How high is Mount Everest
Answer:
29,032 feet
Explanation:
Hope it helps!
Answer:
Mount Everest is about 29,032′.
Due to geographical patterns of the phenomena of interest to VORTEX 2, which of the following states would you think is the best for VORTEX 2 field operations?
Oklahoma is the place where tornado occurrence is the most concentrated and thus the best option for VORTEX 2 operations, because you'd be most likely to see a tornado there.
Oklahoma is the state with the highest concentration of tornadoes, making it the greatest location for VORTEX 2 operations because tornadoes are most likely to occur there.
Quiz about multiple vortex tornadoes to learn more.multi-vectored tornadoes Numerous suction vortices can be seen imbedded in some tornadoes. extremely harmful
Where on Earth in the United States would you anticipate seeing the most thunderstorms?The southeastern states experience this most frequently, with Florida having the most "thunder" days (80 to 105+ per year).
Quizlet: Why are tornadoes so prevalent in the United States?Low-lying geography in the country's central region prevents airflow disruption.
In the center and southern parts of the country, spring and summer offer the best conditions for thunderstorms.
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information about water, give easy information more than 100 words.
Water is a substance that exists in gaseous, liquid, and solid phases and is made up of the chemical elements hydrogen and oxygen. It is among the most common and necessary chemicals.
At normal temperatures, it is a tasteless, odorless liquid with the crucial property of dissolving many other compounds. In fact, living things depend on water's adaptability as a solvent. Living organisms rely on aqueous solutions, like blood and digestive juices, for biological activities, and life is thought to have originated in the aqueous solutions of the world's seas. On various planets and moons both inside and outside the solar system, water is present. Water has an intrinsic blue color, despite the fact that in little amounts it appears colorless. This color is created by slight light absorption at red wavelengths.
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determine which part of a hurricane is the strongest, and describe which parts of a coast will be most impacted by a hurricane.
The strongest and most hazardous region of the storm, known as the eyewall, is located just outside the area where it is calmest. Within a hurricane, this is where the greatest winds are located. As you get out from the storm's eyewall, the winds significantly lessen.
The storm's strongest winds are located in the thick wall of thunderstorms encircling the eye. Wind speed, a measure of the storm's strength, can alter due to changes in the eye and eyewall's structure. However, they can travel throughout the Atlantic Basin anywhere between the northern Bahamas and Atlantic Canada, in the Gulf of Mexico, the eastern Caribbean Sea, and the western tropical Atlantic.
Tropical storms and hurricanes most regularly form off the Southeast and mid-Atlantic coasts (to the east of the Lesser Antilles). The storm's right flank and frequently its right-front quadrant relative to its forward motion are where the strongest winds are almost always found. Therefore, the extent of the wind field in each quadrant will depend on the storm's forward motion, both in terms of direction and speed.
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frequency of storm-sewage overflows. the frequency of storm-sewage overflows in combined sewerage systems in connection with storage and pump capacity, conclusions from the rainfall data of the knmi for 1926-1962
The conclusions for the rainfall data from the knmi during 1926-1962 is that precipitation try to extremes at the US Gulf Coast which have increased because of global-warming.
Rainfall Prediction Model has a chief goal in prediction of the quantity of rain in a selected nicely or department in advance via way of means of the usage of diverse regression method and discover which one is first-rate for rainfall prediction. frequency for all storm-sewage overflows. then the frequency is in combined sewerage type of systems in connection among storage as well as with pump capacity.
As is extensively recognized, rainfall information is necessary for the mathematical modelling of severe hydrological events, which includes droughts or floods, in addition to for comparing floor and subsurface water sources and their quality. Since 1901, international precipitation has expanded at a median charge of 0.04 inches in keeping with decade, at the same time as precipitation withinside the contiguous forty eight states has expanded at a charge of 0.20 inches in keeping with decade.
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Which characteristic is part of a tropical climate?
• contains mostly frozen ground
• contains most of the world's population
• has the widest variety of vegetation
• located along the equator
Answer:
4th 1
Explanation:
because the tropics are warm
Regional species diversity is also called _____ diversity.
a. beta
b. alpha
c. delta
d. gamma
Option (d), gamma diversity, or local species diversity, is another name for it.
What does gamma diversity in ecology mean?Gamma diversity is the total species diversity found throughout all communities within a larger geographic area. Often, it is reduced to political or biogeographic units, such as nations or ecoregions. It refers to the variety of habitats found over the entire landscape or geographical area. The word used to describe the species variety along the full length of the mountain slope in the slope example is gamma diversity of the landscape.
Why is gamma diversity so important?It is an extensive action. Gamma diversity is the term used to describe the biodiversity of organisms over a large area. It is a really comprehensive measure. All of these actions are essential for maintaining biodiversity around the world.
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in addition to ground shaking, several peripheral hazards occasionally accompany earthquakes. in the top photo, the foundations of several large buildings sank into soft, soupy sediments. in the bottom figure, a sinkhole full of wet sand opened up in a roadway. which earthquake-related hazard caused these events?
From those event, the earthquake which related to hazard caused, is liquefaction.
When earthquakes occur they release energy in the form of seismic waves?Seismic tremors happen when versatile vitality is collected gradually inside the Earth's hull as a result of plate movements and after that released abruptly at breaks within the outside called flaws. The discharged vitality voyages within the frame of waves called seismic waves.A sinkhole may be a discouragement within the ground that has no characteristic outside surface seepage. This implies that when it downpours, all of the water remains interior the sinkhole and regularly channels into the subsurface. Bringing down of groundwater levels can cause a earthquake of back for the soft fabric within the shake spaces that can lead to break down. A few of the caution signs that can imply that there's a sinkhole incorporate auxiliary breaks in floors and dividers, windows and entryways that don't near legitimately and cloudy or sloppy well water.Liquefaction takes put when freely pressed, water-logged dregs at or close the ground surface lose their quality in reaction to solid ground shaking. Liquefaction happening underneath buildings and other structures can cause major harm amid seismic tremors.
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Where in North Carolina did many Hmong settlers establish a small farming community?
until the early there were only neglible amounts of free oxygen in the atmosphere.
A: Mesozic
B Cenozoic
C Proterozoic
D Precambian
C
Quite sure it is C
according to chapter 14 of earth's climate past and future, there is strong evidence that millennial oscillations occur in regular intervals.
No, there is no strong evidence that the millennial oscillations occur in regular intervals in earth's climate past and future.
What is climate?The long-term weather pattern of an area, often averaged over a 30-year period, is referred to as its climate. The average and variability of meteorological variables over a time span of months to millions of years, to put it more precisely, are what it is. Temperature, humidity, air pressure, wind, and precipitation are among the meteorological variables that are often measured. The term "climate" is used more broadly to describe the interactions between the atmosphere, hydrosphere, cryosphere, lithosphere, and biosphere. A location's climate is influenced by its latitude and longitude, topography, altitude, land use, nearby bodies of water, and their currents. Climates can be categorized using typical and average variables, particularly temperature and precipitation.
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Which of the following terms refers to an area of instability located between regions with opposing political and cultural values?
Which of the following terms refers to an area of instability located between regions with opposing political and cultural values?
Gerrymandered area
Enclave
Heartland
Shatter belt
Rimland
The answer is- Shatterbelt is referred to an area of instability located between regions with opposing political and cultural values.
A shatterbelt develops when rival great powers have a toehold in a single area. Shatterbelts are often-
Weak and newly formed regions where there is a lack of national unity and governments are not in action.Their international borders are partitioned by more than one country following their steps to create new ethnic states.These regions are usually on the watch of at least two strong diplomatic rivals with great military power.A shatterbelt also contains huge reserves of natural resources such as diamonds, oils, gold, etc.
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A forecast method that compares past weather maps and weather patterns to those of the present is:
a. persistence forecasting
b. the analogue method
c. the trend method
d. nowcasting
The analog method is a forecasting technique that evaluates current weather conditions against historical weather maps and patterns.
Which weather forecast indicates that the current weather will continue into the future?Forecasting persistence means that the current weather will continue into the future. Surface weather systems often travel in the same direction and at the same speed, according to the steady-state or trend technique.
Which form of weather prediction expects that weather systems would move similarly to how they have been moving—that is, in the same direction and at the same rate?If there is no evidence to suggest otherwise (such as a blocking weather pattern upstream, a strengthening storm, etc.), the steady-state or trend method (which has a lower accuracy) is used. It assumes that weather systems will tend to move in the same direction and roughly at the same speed as they have been moving.
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“How does the presence of additional nutrients affect the process of succession?”
Any plant life that is grown in compost that has nutrients added to the soil will grow better, and the succession of growth will be boosted since the soil will be more nutrition rich.
What are nutrients?Generally, Nutrients are the compounds that may be found in food and are important for the human body. They are the substances that drive biological activity. They are arranged according to the categories of proteins, lipids, carbs (sugars, dietary fiber), vitamins, and minerals, and they are responsible for the following essential functions:
Any plant life that is grown in compost that has nutrients added to the soil will grow better, and the succession of growth will be improved since the soil will be more nutrition-rich once the compost has been applied.
A substance that is needed by the body for life, development, and reproduction is referred to as a nutrient. This definition comes from the World Health Organization. In other words, nutrients are what provide us with energy and enable our bodies to carry out the activities that are necessary for survival. Nutrients are essential for life and are thus required by all organisms that live on our planet.
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Refer to the accompanying photos of an elliptical galaxy and a spiral galaxy to answer the following: a. Which image (A or B) is an elliptical galaxy? b. Which of these galaxies appears to contain more young, hot, massive stars? How did you determine your answer? c. When stars are born from a cloud of dust and gases, high- and low-mass stars form at about the same time. Which group of stars, high-mass or low-mass, will die out first? Over time, how will this affect the color of the light we observe coming from this group of stars? Beyond Our Solar System Chapter 24 ESO image NASA А. В.
a) It's elliptical galaxy
b) Spiral galaxies appears to contain more young, hot, massive stars
Researchers accept that elliptical galaxies are the absolute most established systems known to mankind and hence the most developed of the three universe types. Elliptical galaxies, which have either a round or cucumber-like shape, address almost 33% of worlds in the universe. Mature stars that have spent most of accessible residue and gas in the universe structure this circular shape. Furthermore, elliptical galaxies are portrayed by stars that turn in arbitrary circles.
Thus, elliptical galaxies have next to no residue and gas, some of the time causing them to seem faint contrasted with other system types. A black hole alludes to a district of room where a solid gravitational field keeps matter and light from getting away.
A spiral galaxy commonly has a pivoting circle with winding 'arms' that bend out from a thick focal district. The Milky Way is a spiral galaxy.
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