A time when glaciers are more widespread is called a glacial period; a time when glaciers are melting and retreating is called a inter-glacial period.
An ice age is a long time period (millions to a huge number of years) when global temperatures are generally cold and enormous region of the Earth are covered by mainland ice sheets and snow capped glaciers. Inside an ice age are different more limited term times of hotter temperatures when glaciers retreat (called interglacials or interglacial cycles) and colder temperatures when glaciers advance (called glacials or icy cycles).
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A time when glaciers are more widespread is called a glacial period; a time when glaciers are melting and retreating is called a inter-glacial period.
An ice age is a long time period (millions to a huge number of years) when global temperatures are generally cold and enormous region of the Earth are covered by mainland ice sheets and snow capped glaciers. Inside an ice age are different more limited term times of hotter temperatures when glaciers retreat (called interglacials or interglacial cycles) and colder temperatures when glaciers advance (called glacials or icy cycles).
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Which of the following is an example of a natural boundary also serving as a political boundary?
Group of answer choices
the Rocky Mountains dividing the Western United States from the Midwestern United States
the Rio Grande creating the boundary between Texas and Mexico
the 37ºN latitude serving as the Southern Boundary of Colorado
Highway 610 separating inner Houston from outer Houston
Answer:
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In 1–2 sentences, estimate Kraków’s mathematical location and describe its geographic situation.
Answer:
Mathematically, Kraków's location is 50° 03' 41" N 19° 56' 18" E. It has about 326.85 km² in Poland.
Explanation:
Krakow is a city located in southern Poland, has 326.85 km², being one of the largest cities in the country. In addition, it is one of the oldest cities, being the capital until 1795, and is still known today as the residential site of the kings of Poland. Its historical importance is remarkable that it was even named by UNESCO as a world heritage site, one of the most beautiful and most complete in all of Europe.
What causes juice to mold?
Juice can mold when it is exposed to air and moisture. Mold spores are present in the air and can land on the surface of the juice, where they can grow and reproduce. If the juice is not stored properly, it can become contaminated with bacteria, which can also cause it to mold.
Absorption of nutrients from food occurs in the stomach.
TRUE
FALSE
14. In what country are the highest peaks of the Andes located?
Chile
Bolivia
Paraguay
Argentina
Argentina is the right answer.
Answer:
Argentina
Explanation:
The Andes highest peak, Mount Aconcagua, is located in Argentina.
How are landforms an advantage and disadvantage?
Answer:
landforms can be a disadvantage for example if you live in a rainy area and not modernized with sewer systems and theres a river nearby and the river could overflow and flood your home destroying it and possibly drowning people who are stuck and a advantage could be again a river where you can fish and transportation
Say i like BEANS PLWAS
Answer:
i like beans
Explanation:
y r we saying this
what mountain building event, which occurred about 35-55 million years ago, created the front ranges and foothills of the rocky mountains?
The Laramide orogeny mountain-building event, which occurred about 35-55 million years ago, created the front ranges and foothills of the rocky mountains.
A mountain is an increased portion of the Earth's crust, generally with steep facets that display considerable exposed bedrock. even though definitions vary, a mountain may vary from a plateau in having a limited summit region, and is generally better than a hill, normally rising at the least 300 metres above the encompassing land.
Maximum geologists classify a mountain as a landform that rises as a minimum 1,000 toes (300 meters) or more above its surrounding area. A mountain range is a series or chain of mountains which are near together.
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o The differences between physical and chemical weathering
Answer:
Physical, or mechanical, weathering happens when rock is broken through the force of another substance on the rock such as ice, running water, wind, rapid heating/cooling, or plant growth. Chemical weathering occurs when reactions between rock and another substance dissolve the rock, causing parts of it to fall away.
Explanation:
In addition to the amount of insolation received, what other factors influence patterns of SST in the ocean
Answer:
-ocean currents
-the upwelling of cold water
-adjacent landmasses
A change in Earth's total insolation would be caused by_
O A. sunspots
O B. precession
O C. Earth's tilt
O D. Earth's revolution
Answer:
A. Sunspots
Explanation:
Sunspots are areas in the sun that has a magnetic field is about 2 thousand times stronger than Earth's. Also is much higher than anywhere else on the Sun.
What is given to the part of the earth where plants and animals live and what are its three parts
An ecosystem is a geographic area where plants, animals, and other organisms, as well as weather and landscapes, work together to form a bubble of life
What are its three parts
The biosphere is the region of the Earth where life can be found, including the soil, water, and air. The lithosphere, hydrosphere, and atmosphere are the names for these three components. The lithosphere is the landmass of the Earth, except for the mantle and core, which are inhospitable to lifeThe biosphere is the region of the earth that encompasses all living organisms: plants, animals and bacteria. ...Dynamic interactions occur between the biotic region (biosphere) and the abiotic regions (atmosphere, lithosphere and hydrosphere) of the earth.Explain how physical features can function as a barrier to human migration and settlement. Provide a specific example in your explanation
Answer:
Often times, geography has a bunch to do with their desire to move. Geographical factors, like climate, impact their decision-making process. ... In the Caribbean, Central America, and South America, two of the main geographical influences on migration have been the availability of natural resources and climate.
Explanation:
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On a weather map, this front, drawn in blue, represents a region where colder air is replacing warmer air: Select one: a. warm front. b. cold front. c. cold-type occluded front. d. warm-type occluded front.
On a weather map, a cold front is represented in blue and it indicates that colder air is moving into a region, replacing warmer air. The correct answer is b. cold front.
As the cold front moves through, it can bring about changes in weather conditions, including cooler temperatures, precipitation, and possibly even thunderstorms.
When a cold air mass pushes into a warmer air mass, a cold front is formed. Weather patterns can be drastically altered by cold fronts. Up to twice as fast as a warm front, they travel quickly.
A cold air mass and a warmer air mass collide during a cold front. The front is driven upward along the warmer, less dense air as a result of this. The moisture starts to condense as the warm air rises, creating clouds and precipitation.
Thus the correct option is b. cold front .
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Which statement best completes the diagram?
Answer:
B
Explanation:
In what ways did Greece's location by the sea and its mountainous land affect its development?
Greece's location on the Mediterranean Sea played a significant role in its development. The sea provided a means of transportation and trade, allowing the Greeks to establish trade routes and commerce with other cultures. This led to the development of city-states such as Athens and Corinth, which became centers of trade and culture.
However, the mountainous terrain of Greece also had an impact on its development. The mountains made communication and travel between regions difficult, leading to the development of small, independent communities. These communities were often isolated from one another and developed their own unique cultures and customs. Additionally, the mountainous terrain limited the amount of available farmland, which meant that Greece could not support a large population. This led to a relatively low population density and a focus on maritime trade and seafaring rather than agriculture.
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Why did the golf of mexico create the perfect conditions for hurricane nate
Answer:
The Gulf of Mexico has somewhat shallow waters and is close to the equator, where temperatures are high. High temperatures and shallow water lead to rapid evaporation of water from the ocean. When the warm, moist air rises up, the air pressure drops, drawing in even more moist air, which leads to powerful winds.
Which continent is home to the world’s longest glacier?.
Answer:
Antarctica
Explanation:
explain the difference between temperatures and physical characterisitics of mafic and felsic lava flows
Mafic lava flow:
Extremely hot temperature (> 950°C)Lower viscosity (flows easily).Felsic lava flow:
Temperatures are around 650°C to 750°C.Higher viscosity (looks thick and gooey).Lava flows are the stream of molten rock that pours out of an erupting vent. Mafic and felsic lava flows are two of the four types of lava based on the silica content.
Felsic lava has high silica content (greater than 63%) which results in more viscous lava. It tends to erupt explosively because of that.Intermediate or andesitic lava has around 52% to 63% silica content. It's less viscous than felsic lava, but has a hotter temperature.Mafic or basaltic lava has lower silica content, around 45% to 52%. It's much less viscous, and can flow for long distances from the vent before it solidifies.Ultramafic lava has silica content lower than 45%.Learn more about lava flows https://brainly.com/question/8808433
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Please use the following information to answer the next question. The burrowing owl is an endangered species in Canada's western provinces. Research data collected in Saskatchewan's Burrowing Owl Recovery Project indicate that the population has declined by 20% per year between 1991 and 1996. In 1996, a population estimate showed that there were 1 600 burrowing owls in the population. If the population continued to decline at the rate it did between 1991 and 1996, the burrowing owl population in 1998 was expected to decrease to 1 024 burrowing owls. What was the per capita growth rate of the burrowing owl population from 1996 to 1998?
The per capita growth rate of the burrowing owl population from 1996 to 1998 can be calculated as -12.5% per year.
The population decline rate between 1991 and 1996 was given as 20% per year. If we assume that the population continued to decline at the same rate from 1996 to 1998, we can calculate the per capita growth rate during that period.
To determine the per capita growth rate, we need to calculate the average annual growth rate over the two-year period. Since the population declined by 20% per year, the decline over two years would be 20% × 2 = 40%.
From the population estimate in 1996 of 1,600 burrowing owls, we can calculate the expected population size in 1998 by subtracting the 40% decline from the 1996 population: 1,600 - (40% × 1,600) = 1,024 burrowing owls.
To find the per capita growth rate, we can calculate the percentage change in population size over the two-year period: (1,024 - 1,600) / 1,600 × 100% = -36%.
Dividing this percentage change by the number of years (2) gives us the per capita growth rate per year: -36% / 2 = -18% per year.
Therefore, the per capita growth rate of the burrowing owl population from 1996 to 1998 is -18% per year, or -12.5% per year when rounded.
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The early migration of people from asia into the pacific and indian ocean basins was relatively easy because?
Sixty-five percent of global greenhouse gas emissions are made up of carbon dioxide, while only sixteen percent are made up of methane gas. Which of the following best explains why scientists are increasingly concerned about the effect of methane gas emissions on global climate if they are a relatively small percent of greenhouse gases released?.
The statement that best explains why scientists are increasingly concerned about the effect of methane gas emissions on global climate is that the Methane gas has a higher global warming potential (GWP) than carbon dioxide does, so it can trap more heat in the atmosphere.
What is Global warming?Global warming is also called climatic change because of the existence of heating of Earth's climate system which are primarily due to human activities.
Hence, the scientist are more concern because Methane gas has a higher global warming potential (GWP) than carbon dioxide does, so it can trap more heat in the atmosphere.
In conclusion, the Option C is correct.
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Select all the correct statements about limestone and marble.
Choose one or more:
A) As limestone metamorphoses, calcite turns into quartz—the primary mineral in marble.
B) As limestone metamorphoses into marble, fossils, pore space, and cement disappears.
C) Fossils grow large as limestone metamorphoses into marble.
D) Marble is a uniform mass of interlocking calcite crystals.
E) Limestone is the protolith of marble.
As limestone metamorphoses, calcite turns into quartz—the primary mineral in marble. As limestone metamorphoses into marble, fossils, pore space, and cement disappears. Limestone is the protolith of marble. The correct answer is A, B, and E.
Limestone is primarily composed of the mineral calcite, which is made up of calcium carbonate. When limestone is subjected to high pressure and heat, the calcite can recrystallize and turn into the mineral quartz. Quartz is the primary mineral in marble, which is why marble is often considered a metamorphic version of limestone.
The process of metamorphosis also causes the fossils, pore space, and cement within limestone to disappear. This is because the high pressure and heat causes the minerals to recrystallize and the spaces between them to close.
Limestone is the protolith, or original rock, from which marble is formed. This means that marble is formed from the alteration of limestone through the process of metamorphism.
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What is the greatest fear that Canadians have about their relationship with the United States?
Answer:
that Canada's identity will be lost in the shadow of its larger neighbor
Explanation:
Canada always feared the US might overshadow them; people will forget about their identity
at the poles, freshwater is frozen in ice, making the surrounding water more salty. what do you think happens to the water there?
At the poles, the frozen freshwater in ice makes the surrounding water more salty, causing the denser saltwater to sink to the bottom and driving ocean circulation.
The polar regions are incredibly important to global ocean circulation, as the cold temperatures in the region cause frozen freshwater in the ice to become more saline. This denser saltwater then sinks to the bottom of the ocean, driving the large-scale circulation of the world's oceans.
The freshwater ice at the poles also helps to regulate the global climate, as it reflects the sunlight and prevents heat from getting trapped in the atmosphere. Understanding the importance of the poles to the health of our oceans is key to managing and conserving these fragile and essential ecosystems.
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Utilizing investigative techniques and procedures to evaluate
surface and subsurface geologic conditions..Provide relevant
example
The utilization of investigative techniques and procedures to evaluate surface and subsurface geologic conditions is called Geophysical exploration. It is a process of studying the physical properties of the earth to determine its geological characteristics.
Geophysical exploration techniques include seismic surveys, magnetic surveys, gravity surveys, electrical surveys, and electromagnetic surveys. These techniques are used to study the physical properties of the earth's interior without drilling. In order to get an accurate interpretation of the subsurface structure and composition of the earth's crust, geophysical methods are often combined with geological, geochemical, and geotechnical data.A relevant example of utilizing investigative techniques and procedures to evaluate surface and subsurface geologic conditions is the use of seismic surveys in the oil and gas industry.
Seismic surveys are used to determine the location, size, and shape of underground oil and gas reservoirs by analyzing the reflection of sound waves off the various layers of rock and sediment. This helps geologists and engineers to make more informed decisions about drilling and production operations.
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The utilization of investigative techniques and procedures to evaluate surface and subsurface geologic conditions is called Geophysical exploration. It is a process of studying the physical properties of the earth to determine its geological characteristics.
Geophysical exploration techniques include seismic surveys, magnetic surveys, gravity surveys, electrical surveys, and electromagnetic surveys. These techniques are used to study the physical properties of the earth's interior without drilling. In order to get an accurate interpretation of the subsurface structure and composition of the earth's crust, geophysical methods are often combined with geological, geochemical, and geotechnical data.A relevant example of utilizing investigative techniques and procedures to evaluate surface and subsurface geologic conditions is the use of seismic surveys in the oil and gas industry.
Seismic surveys are used to determine the location, size, and shape of underground oil and gas reservoirs by analyzing the reflection of sound waves off the various layers of rock and sediment. This helps geologists and engineers to make more informed decisions about drilling and production operations.
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In general, which step of the scientific method generally follows forming a hypothesis?
A. Asking a question
B. Making an observation
C. Conducting an experiment
D. Making a prediction
Never mind, I already submitted my test, the answer is C.
I would say the correct answer is C.
use this specimen to answer the following three questions: what rock family does it belong to? are the pieces well sorted or poorly sorted? what is the name?
This specimen looks like it is a conglomerate rock. Conglomerates are composed of gravel-sized clasts, such as pebbles, cobbles, or boulders, that are cemented together to form a solid rock mass.
The clasts are frequently rounded due to the abrasion they have undergone before becoming incorporated into the sediment. As a result, conglomerates provide valuable information about the origin of the sediment from which they were created.
The clasts in this specimen seem to be well-sorted since they appear to be of comparable size and shape. The pebbles are round and smooth, indicating that they have been well-worn and sorted by water currents. Poorly sorted conglomerates, on the other hand, contain a wide range of clast sizes and shapes, indicating that they were not as well-sorted and may have been deposited in a high-energy environment like a river. Conglomerate rock, based on the specimen, is the rock's name.
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Which substance will the most water flow through and why? (sand, gravel, clay)
Answer:
gravel
Explanation:
because it contains large air spaces thus allowing water to pass through
For bulky cargo from Tokyo, Japan to Antwerp, Belgium, in addition to an all-ocean alternative through the Panama Canal, which of the following could be another viable option to transport this cargo? Select one answer. All ocean around Cape Horn All air from Tokyo to Antwerp, with transshipment point in Denver Air from Tokyo to Los Angeles, rail from Los Angeles to New York and airffrom New York to Antwerp Ocean from Tokyo to Los Angeles, rail from Los Angeles to New York and ocean from New York to Antwerp
One viable option to transport the bulky cargo from Tokyo, Japan to Antwerp, Belgium, in addition to the all-ocean alternative through the Panama Canal, would be to use the route of ocean from Tokyo to Los Angeles, then rail from Los Angeles to New York, and finally ocean from New York to Antwerp.
This option combines both sea and rail transportation, allowing for efficient movement of the cargo across different regions. It takes advantage of the ocean route from Tokyo to Los Angeles, leveraging the existing infrastructure and capacity of maritime shipping.
The rail segment from Los Angeles to New York provides a reliable and cost-effective means of transportation across the vast expanse of the United States.
Finally, the ocean leg from New York to Antwerp allows for seamless delivery to the final destination. This alternative offers flexibility, reliability, and the potential for cost optimization in transporting the bulky cargo from Tokyo to Antwerp.
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