The rivers have always been the points of entry. The Ohio River's headwaters were discovered by traders and explorers who ventured through the mountain obstacles to the west; the Dutch and later the English followed the Hudson to and above Albany; and the New Englanders made quick progress into the Connecticut Valley.
With a total length of nearly 3,500,000 miles, the United States of America is home to over 250,000 rivers. The Missouri River, a tributary of the Mississippi River, is the longest river in the USA at 2,540 miles, but the Mississippi River, which is deeper, has the largest volume of water. The Yellowstone River is the longest unobstructed river in the contiguous United States (it is 692 miles long). Rivers offer transportation, electrical power, drainage, food, recreation, and drinking and irrigation water.
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which of the following is a proxy used to reconstruct past oceanic conditions? select all that apply.
Diatoms, foraminifera, radiolarians, ostracods, and coccolithophores are examples of biotic proxies for lake and ocean conditions that are commonly used to reconstruct past climates.
Climate proxies, which stand in for direct meteorological observations in the field of paleoclimatology (the study of previous climates), allow researchers to recreate climatic conditions over a longer period of Earth's history. Proxy measurements are the only way for scientists to identify climatic patterns prior to the establishment of reliable global climate records in the 1880s. Many different geologic contexts have been used to study a huge number of climate proxies. Species composition of sub-fossil pollen in lake sediment or foraminifera in ocean sediments, temperature profiles of boreholes, stable isotope readings from ice cores, growth rates in tree rings, stable isotopes and mineralogy of corals, and carbonate speleothems are a few examples of proxies.
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2. Describe the site (at least two site factors), situation and mathematical location of your home Tulsa, Oklahoma?
Tulsa is situated in a largely forested area of rolling hills in the northeastern corner of Oklahoma, between the edge of the Great Plains and the foot of the Ozark Mountains.
What state is Tulsa located in?The second-largest city in Oklahoma and the nation's 47th most populous city are both located in Tulsa. 413,066 people were counted in the population in 2020. The Tulsa Metropolitan Area, home to 1,023,988 people, has it as its primary municipality.Tulsa used to be referred to as the world's oil capital. It is situated near the meeting point of the Cherokee, Muscogee, and Osage tribal nations. It now offers a great fusion of African American and Native American history and culture, as well as a mix of Midwestern and Southern charm.Tulsa is situated at an altitude of 700 feet (210 m) above sea level and has the geographic coordinates 36°7′53′′N 95°56′14′′W (36.131294, 95.937332).Learn more about Tulsa refer to ;
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Which of these events is caused by warming of water in the water cycle?
Answer: More rain and flooding. With more evaporation we get more precipitation which in the turns water vapors into rain.
Explanation:
make a screen capture showing the geographic location of the ip address associated with perdu in earth
To get hints about the IP address's location, use the 'traceroute' tool. The identities of the routers that packets from your host to the destination host pass through could provide information about the ultimate location's geographic route.
End users are not provided with a way to connect to an actual physical location or the computer connected to an IP address. If you need to report abuse coming from a person hiding behind an IP address, get in touch with your neighborhood police or the ISP in charge of that IP address. Using one of the various internet IP lookup tools is the quickest and easiest approach to start learning someone's IP address. There are tools to enter an IP address and search on websites like WhatIsMyIPAddress.com and WhatIsMyIP.com.
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measurements of a stream taken over 5 years indicate that its velocity decreased. the stream's decreased velocity was most likely caused by? 1) a decrease in gradient
2) a decrease in transpiration
3) an increase in atmospheric transparency
4) an increase in atmospheric surface winds
Probably due to a decline in gradient, the stream's velocity was reduced.
The speed of the water in a stream is known as stream velocity. The units are time and distance (e.g., meters per second or feet per second). Due to friction, stream velocity is highest in the middle of the stream, close to the surface, and is lowest along the stream bed and banks.
Water flows downhill in streams as a result of gravity. The entire amount of silt (stuff other than water) that a stream can carry is measured as its capacity. The ability of a stream to carry a specific particle size is known as stream competence. In terms of calculating stream capacity and competency, streams broadly refer to all channelized water movement, including significant riverine water flow.
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Which of the following statements accurately explains why subsequent boundaries are the most common type of boundary? (AP Human Geography Question)a. The process of establishing them happens before people settle in the areab. The process of establishing them does not take cultural differences into accountc. The process of establishing them is lengthy and related to territorialityd. The process of establishing them connects to previously set boundariese. The process of establishing them correlate to the devolution of territories
Subsequent boundaries are the most common type of boundary because they are established as territories are divided and subdivided over time.
This process of devolution typically happens through colonization, war, and political negotiation. When a territory is divided, new boundaries are established to separate the newly formed territories.
The new boundaries are then added to the existing ones, creating a complex network of boundaries that reflect the historical and political processes that shaped the region. This process of devolution is the main reason why subsequent boundaries are the most common type of boundary.
They do not happen before people settle in the area, they do not take cultural differences into account, they are not necessarily lengthy, and they do not connect to previously set boundaries.
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Which of the following best states the relationship between erosion and deposition?
a. Erosion is the removal of sediments by gravity, water, ice, or wind; deposition is the accumulation of sediments in low-lying areas due to the action of gravity, water, ice, or wind.
b. When the energy transporting sediments diminishes, the sediments settle in a low-lying area; therefore, deposition always follows erosion
c. The river is eroding the sediments; deposition will happen when the river slows and the sediments settle on the riverbed.
d. As the glacier moves across the land, it leaves behind rocks and sediments of all shapes and sizes.
When the energy transporting sediments diminishes, the sediments settle in a low-lying area; therefore, deposition always follows erosion.
In that they are both organic processes involving the impact of water, ice, and wind, erosion and deposition have much in common. Both of these entail the transfer of dirt or rock fragments from one location to another.
There is a cyclical link between weathering, erosion, and deposition, and they are all components of the same general cycles of landform change.
In order to change existing landforms and produce new ones, the complimentary acts of erosion and deposition work through the geomorphic processes of wind, flowing water, and ice. Rock will frequently erode after it has broken down or undergone weathering.
When an eroding force, such as gravity, ice, water, waves, or wind, exhausts its energy and is unable to continue carrying its load of eroded material, deposition takes place.
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seismic waves that bounce off a boundary between two different materials are said to be , whereas seismic waves that cross the boundary and are bent are said to be .
The study of earthquakes and seismic waves that travel through and around the Earth is known as seismology. A scientist who investigates earthquakes and seismic waves is known as a seismologist.
An earthquake (also known as a quake, tremor, or temblor) is the shaking of the Earth's surface caused by a sudden release of energy in the Earth's lithosphere, which produces seismic waves. Earthquakes can range in intensity from those that are so minor that they are not felt to those that are powerful enough to propel objects and people into the air, damage critical infrastructure, and devastate entire cities.
When materials suddenly move within the Earth, such when they slip along a fault during an earthquake, seismic waves are produced. Seismic waves can also be produced by volcanic eruptions, explosions, landslides, avalanches, and even swiftly flowing rivers. Seismometers can record seismic waves as they pass through and around the Earth.
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Which part of the city is this type of economic growth usually seen in?
Economic growth – measured as an increase in people's real income – means that the ratio between people's income and the prices of what they can buy is increasing goods.
What is the meaning of Economic Growth?Economic growth is the rise or improvement in the market value of the commodities and services generated by an economy within a given fiscal year, adjusted for inflation. Traditionally, statisticians have calculated growth as a percentage rate of real gross domestic product, or real GDP.
Growth in the economy boosts state capacity as well as the availability of public goods. The capacity and resources required to deliver the services and goods that their population requires, such as healthcare, education, social protection, and fundamental public services, are gained when economies grow and states can tax that revenue.
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which map best represents the global prevailing surface wind patterns responsible for generating atlantic ocean currents?
The map that best represents the global prevailing surface wind patterns responsible for generating Atlantic Ocean currents is called the "Prevailing Westerlies Map."
The prevailing Westerlies Map map shows the prevailing westerly winds that blow from the west to the east across the mid-latitudes of the Earth, which drive the ocean currents in the Atlantic Ocean.
These winds are caused by the difference in temperature between the cold polar air and warm tropical air, and they help to push warm water from the tropics toward the poles and cold water from the poles toward the equator. This creates a number of ocean currents, such as the Gulf Stream, which has a significant impact on the climate of the North Atlantic region.
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