Answer:
1500 meters
Explanation:
You use KHDMDCM. So, the K is km, so you move the decimal point 3 places to the right. So, you'd add 2 zeroes to get 1500 meters.
5 Disadvantages of lowland
Answer:
natural disasters..and such
Explanation:
If you live by the shore on lowland, you may have your house or buisness or whatever flood. Hurricanes will absolutely demolish you. Soil erosion may occur. Resulting in plain pollution, plain population is the highest. Many plants can't grow.
The 5 Disadvantages of lowlands are
Soil erosionReduced activities of humanbarrier to communicationSome plants can't be grown like coffee.High chances of diseasesWhat is lowland?The regions that are between mountains and are impacted by both geological activities that take place on a downhill slope and the connections between people that occur in these regions are called Lowland.
Lowland rivers typically have waters that are more muddy, warm, slow-moving, and have fine sediment beds. Additionally, these traits favor invertebrate species with a wide range of thermotolerance.
The topography of New York is extremely varied in terms of features. The majority of the landscape in New York is made up of farmland, forests, rivers, mountains, and lakes.
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How are woman oppressed in the development of countries?
Answer:
On average, women make up about 43 percent of the agricultural labour force in developing countries.
Explanation:
Hope this helps
if a volcanic eruption is predicted for your area, what is the best course of action? group of answer choices]
Answer:
Evaluate
Explanation:
If there's a prediction of a deadly volcano, the best action is to flee to a safer place to decrease the chance of harm.
Name the stable island that has been called a "minicontinent" having novolcanoes and few earthquakes.
The stable island that has been called a "minicontinent" is the island of Madagascar. It has been described as such due to its large size and unique ecosystem, which includes a high number of endemic species. Despite its size, Madagascar experiences relatively few earthquakes and has no active volcanoes.
The stable island that has been called a "minicontinent" with no volcanoes and few earthquakes is the island of Madagascar. Madagascar is located off the southeastern coast of Africa in the Indian Ocean. It is the fourth largest island in the world and has a diverse range of ecosystems and unique wildlife.
Madagascar is characterized by its stable tectonic setting, with no active volcanoes and a relatively low occurrence of earthquakes compared to regions along tectonic plate boundaries. The island has been geologically stable for millions of years, leading to the development of its distinct flora and fauna, including lemurs and other endemic species.
The term "minicontinent" is sometimes used to describe Madagascar due to its large size, isolation, and remarkable biodiversity. It has a unique blend of African, Asian, and Indian Ocean influences, making it a fascinating and ecologically significant region.
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Deforestation in the Amazon peaked in _____. Since then, deforestation has been __________. A. 1975 . . . decreasing B. 1984 . . . increasing C. 2004 . . . decreasing D. 2010 . . . increasing
Answer:
c
Explanation:pls mark brainlist
Answer:
c
Explanation:
In countries that are in stage 2 of the demographic transition, an increase in doubling time would be most likely to occur as a direct result of
A.
increased immigration.
B.
decreased CDR.
C.
increased dependency ratios.
D.
decreased CBR.
E.
increased sanitation.
Answer:
A)
Explanation:
The correct answer is:
D. decreased CBR
Scientists from many disciplines are involved in ____ change research, including geologists, ecologists, oceanographers, and climatologists.
Scientists from many disciplines are involved in climate change research, including geologists, ecologists, oceanographers, and climatologists.
These scientists contribute their expertise and knowledge from their respective fields to study various aspects of climate change, such as changes in Earth's geology, ecosystems, oceans, and climate systems.
By collaborating and integrating findings from multiple disciplines, scientists can better understand the complexities of climate change and its impacts on the planet.
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A smog front is most often associated with which wind system?
a. monsoon
b. chinook
c. Santa Ana
d. mountain breeze
e. sea breeze
A smog front is most often associated with the Santa Ana wind system. A smog front, also known as a pollution front, is a line or boundary formed by a strong and stagnant air mass carrying high levels of particulate matter and ozone toward a region that normally has cleaner air.
It is most often related to Santa Ana wind systems. This wind system is also known as the Santana, Santa Anas, or Santa Ana Winds, and is a weather phenomenon that is caused by strong, dry air from the high-pressure area over the Great Basin spreading over the low-pressure area of Southern California. These winds can cause high temperatures, drought conditions, wildfires, and an increased risk of smog pollution.The smog front occurs when the air from the high-pressure region, which is typically above the Mojave Desert, descends and warms up. The air then compresses and heats up as it flows through the mountains into Southern California. This can lead to high temperatures and low humidity, as well as an increase in particulate matter and ozone levels, resulting in a smog front.
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Why is China called a Republic?
Answer:
It considered itself
Explanation:
This state considered itself to be the continuing sole legitimate ruler of all of China, referring to the communist government or "regime" as illegitimate, a so-called "People's Republic of China" (PRC) declared in Beijing (Peking) by Mao Zedong in 1949, as "mainland China", "Communist China, or "Red China".
China was see considered to be the continuing solo legitimate ruler of all China so that is why it is called republic
Which instrument measures the speed at which precipitation is moving toward or away from an antenna?
The instrument that measures the speed at which precipitation is moving toward or away from an antenna is called a Doppler radar.
Doppler radar is an advanced weather monitoring tool that uses the Doppler effect to determine the velocity of objects in motion, such as raindrops or snowflakes. It works by emitting radio waves towards the target, and then measuring the frequency shift of the waves that bounce back after interacting with the precipitation particles. This frequency shift provides information about the speed and direction of the precipitation.
The Doppler effect occurs because when precipitation particles are moving towards the radar antenna, the frequency of the reflected waves increases, while it decreases when the particles are moving away. By analyzing these frequency changes, meteorologists can calculate the velocity of the precipitation relative to the radar.
Doppler radar is crucial for weather forecasting and monitoring because it provides valuable data on the movement and intensity of precipitation. It helps meteorologists track severe weather phenomena such as thunderstorms, tornadoes, and hurricanes. By understanding the speed and direction of precipitation, forecasters can issue more accurate and timely weather predictions, improving public safety and allowing for better preparedness.
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The city of Chicago has a latitude (42 N) within which part of the global circulation?
A) subtropical high
B) trade winds
C) westerlies
D) polar easterlies
E) antitrade winds
The city of Chicago, with a latitude of 42°N, falls within the part of the global circulation called the Westerlies. Thus, option C is correct.
The westerlies are the predominant winds with a high pressure that blows from the western part to the eastern part of Chicago. The city is located in the middle latitudes of both hemispheres. Thus, the pressure of the wind is generally high at lower altitudes.
The westerlies are the prevailing winds that flow in the middle latitudes between 30 and 60 degrees latitude above the ground surface that blow from the west toward the east. This flow of winds is responsible for the weather patterns and changes in climatic conditions.
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10. What is the outermost region of the Earth?
upper mantle
lower mantle
crust
outer core
Answer:
crust
Explanation:
Answer: Crust
Explanation: Earth's crust is Earth's thin outer shell of rock, regarding for less than 1% of Earth's radius and volume. It is the top component of the lithosphere, a division of Earth's layers that includes the crust and the upper part of the mantle.
Which layer is between the mesosphere and the inner core?
Asthenosphere
Crust
Lithosphere
Outer Core
. . . ╰──╮╭┈─ ◌ೄ◌ྀ ˊˎ. . . ╰──╮╭┈─ ◌ೄ◌ྀ ˊˎ༊*·˚☄. *. ⋆
₊˚ ଘ Answer:
\(\textit{Option D. outer core}\)
Explanation:
\(\huge \text{what is the outer core?}\)
The outer core is the outer layer of the core that is made of liquid iron and nickel.\(\huge \text{what is the outer core made of?}\)
The outer core is mostly composed of liquid iron and nickel.\(\huge \text{what is the inner core?}\)
The inner core is the deepest and hottest layer of our planet.\(\huge \text{what is the inner core made of?}\)
The inner core is also composed of mostly iron and nickelTherefore, the answer is Option D. outer core
\(\huge \text{hope this helps! :)}\)
\(\huge \text{-InLovewithNature-}\)
Mineral "B" i a tranparent, primatic mineral with no cleavage (but exhibiting conchoidal fracture). It hardne i 7. 0, which i too hard to treak. It ma i 11. 18 g, and it volume i 4. 3 cm3. What i it pecific gravity?
Answer:
To calculate the specific gravity of mineral "B", we need to divide its density by the density of water (1 g/cm3).
First, let's calculate the density of the mineral:
Density = mass/volume = 11.18 g / 4.3 cm3 = 2.59 g/cm3
Next, let's calculate the specific gravity:
Specific gravity = density of mineral / density of water = 2.59 g/cm3 / 1 g/cm3 = 2.59
So, the specific gravity of mineral "B" is 2.59.
6 quais são as capacidades físicas?
How do local and global wide differ?
Answer:
Global variables are declared outside any function, and they can be accessed (used) on any function in the program. Local variables are declared inside a function, and can be used only inside that function.
Explanation:
What are the disadvantages of the congestion charge
Answer:
1. the cost of collecting charge are much higher than petrol tax.
2. it requires sophisticated technology and chasing up drivers who don't pay or try to avoid.
A road was cut through a hilly area exposing the rock face. Which rock unit is the youngest? A. Limestone B. Sandstone C. Basalt D. Shale E. Granite
Answer:
B. Sandstone
Explanation:
The youngest rock unit is the one that is on top of the others. In this case, the rock that is exposed at the top of the road cut through the hilly area is the youngest. This would be Sandstone.
How is Earth's outer layer similar to a cracked hard-boiled egg
When supercooled raindrops freeze on contact with solid objects, ________ forms.
sleet
rime
glaze
hail
When supercooled raindrops freeze on contact with solid objects, Glaze forms.
What is Glaze?
A smooth, transparent, homogeneous ice coating known as glaze or glaze ice forms when freezing rain or drizzle strikes a surface. It is also known as glazed frost. It resembles clear ice, which develops from water droplets that have been extremely chilled. When precipitation occurs in warm air above and falls to the ground at temperatures below freezing in the winter, it happens rather frequently in temperate climates. Due to their inability to handle the weight of the ice, plants might experience severe consequences from large-scale glazing from freezing rain.
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When supercooled raindrops freeze on contact with solid objects, glaze forms.
What is glaze?
When freezing rain or drizzle hits a surface, glaze or glaze ice—a smooth, transparent, uniform ice coating—is created. Glazed frost is another name for it. It resembles clear ice, which forms from very cooled water droplets. In temperate climates, precipitation frequently occurs in warm air above and falls to the ground at temperatures below freezing throughout the winter. Large-scale glazing from freezing rain may have negative effects on plants since they can't withstand the weight of the ice.
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What five places do plants store food?
Answer:
fruits, stems, roots, leaves, flowers and seeds
Which part of the world has the same latitude as europe
Answer:
the United States and Canada has the same latitudes as Europe.
Explanation:
The map shows the physical and manmade elements of the Merritt Island National Wildlife Refuge including multiple picnic areas, visitor centers, roads, as well as names of islands and bodies of water. The Merritt Island National Wildlife Refuge is a series of barrier islands and bodies of water from the Atlantic Ocean to the inland coast of Florida.
Public Domain
Based on this map, what are the major ecological threats to plants and animals within the Merritt Island National Wildlife Refuge?
The presence of barrier islands
Buildings placed in nearby towns
Changing weather and climate patterns
The access humans have to the park
Answer:
Changing weather and climate patterns
Explanation:
Barrier Islands are more damaged in florida because of more hurricanes and rainfall
Answer:
c
Explanation:
What type of map might represent the population distribution in your state with lighter and darker shading for population density?
political
thematic
physical
choropleth
Answer: choropleth
Explanation:
A choropleth map is simply referred to as a form of thematic map whereby there are some pre-defined areas that are colored so as to represent a particular characteristic in an area.
Since the map represent the population distribution in a state with lighter and darker shading for population density, this is a choropleth map.
Answer:
D
Explanation:
Edge 2021
The atmosphere at very high altitudes in previous work we somewhat arbitrarily considered empty space to start at a height of 50 kilometers above the surface of the earth.
(a) At this altitude, what is the density of the air as compared to the density at sea-level? (Assume that the temperature at this altitude is 7 C, and the mass of one mole of air is 29 g.) The density at 50 km is what?
(b) How many air molecules are there in one cubic centimeter at this altitude?
(c) At what altitude is the air density one-millionth that at sea level? (Assume that the temperature at this altitude is 7 C, and the mass of one mole of air is 29 g.)
(a) To determine the density of the air at 50 kilometers above the surface of the Earth compared to the density at sea level, we can use the exponential decay formula for air density with altitude.
The formula is given as:
ρ = ρ₀ * e^(-h/H)
Where:
ρ is the density at a given altitude,
ρ₀ is the density at sea level,
h is the altitude,
H is the scale height of the atmosphere.
Assuming a temperature of 7°C at 50 kilometers, we can calculate the density at this altitude compared to sea level.
First, let's consider the density at sea level, denoted as ρ₀. The approximate density at sea level is around 1.225 kg/m³.
Now, we can calculate the density at 50 kilometers using the exponential decay formula. The scale height of the atmosphere can vary, but a commonly used value is around 8,500 meters (8.5 km).
Plugging in the values:
ρ₀ = 1.225 kg/m³ (density at sea level)
h = 50 km = 50,000 meters (altitude)
H = 8,500 meters (scale height)
ρ = 1.225 kg/m³ * e^(-50,000 meters / 8,500 meters)
Calculating the density:
ρ ≈ 0.018 kg/m³
Therefore, the density of the air at 50 kilometers above the surface of the Earth is approximately 0.018 kg/m³.
To compare it with the density at sea level, we can calculate the ratio:
Density at 50 km / Density at sea level = 0.018 kg/m³ / 1.225 kg/m³ ≈ 0.0147
So, at 50 kilometers altitude, the air density is approximately 0.0147 times (or about 1.47% of) the density at sea level.
(b) To determine the number of air molecules in one cubic centimeter at 50 kilometers altitude, we can use the ideal gas law and Avogadro's number.
First, let's calculate the number of moles of air in one cubic centimeter at this altitude. The volume of one cubic centimeter is 1 × 10^(-6) m³.
Number of moles of air = (density * volume) / molar mass
Plugging in the values:
density = 0.018 kg/m³
volume = 1 × 10^(-6) m³
molar mass = 29 g/mol = 0.029 kg/mol
Number of moles of air = (0.018 kg/m³ * 1 × 10^(-6) m³) / 0.029 kg/mol
Now we can convert moles to molecules using Avogadro's number, which is approximately 6.022 × 10^23 molecules/mol:
Number of air molecules = number of moles of air * Avogadro's number
Calculating the number of air molecules:
Number of air molecules ≈ ((0.018 kg/m³ * 1 × 10^(-6) m³) / 0.029 kg/mol) * (6.022 × 10^23 molecules/mol)
(c) To find the altitude at which the air density is one-millionth (1/1,000,000) that at sea level, we can use the exponential decay formula for air density with the altitude mentioned earlier:
ρ = ρ₀ * e^(-h/H)
We need to solve for h, the altitude at which the density ρ is one-millionth of the density at sea level ρ₀.
ρ = (1/1,000,000) * ρ₀
Substituting this into the exponential decay formula:
(1/1,000,000) * ρ₀ = ρ₀ * e^(-h/H)
Canceling ρ₀ on both sides:
(1/1,000,000) = e^(-h/H)
To isolate h, we can take the natural logarithm (ln) of both sides:
ln(1/1,000,000) = ln(e^(-h/H))
ln(1/1,000,000) = -h/H
Simplifying further:
h = -H * ln(1/1,000,000)
Using the same values for H (scale height) and solving for h:
H = 8,500 meters (scale height)
h = -8,500 meters * ln(1/1,000,000)
Calculating the altitude:
h ≈ 42,164 meters ≈ 42.2 kilometers
Therefore, the altitude at which the air density is one-millionth (1/1,000,000) that at sea level is approximately 42.2 kilometers above the Earth's surface.
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How does colorado's place in the world affect its population? Conversely, how does the population affect the natural world around them?(How do where people who live here get affected by where they live? Think weather, tourism, crops, etc. - and how the people there affect the land)
ANSWER FAST PLEASEEEE
The population of the Front Range of Colorado, which includes Denver, Colorado Springs, and Fort Collins, increased by nearly 17% over the previous ten years.
In 2021, Colorado's population increased by 27,700. These include births, deaths, emigration to and from the state, as well as population changes.
What is Colorado's significance?Colorado is known as the "Centennial State" because it was admitted as the 38th state in 1876 when the United States turned 100. Colorado features a number of peaks that rise above 14,000 feet and is most strongly linked with the Rocky Mountains.
The word "red" or "ruddy," which describes the color of much of the state's landscape, is how the state got its name.
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PLEASE HELP BY TUESDAY ILL GIVE BRAINLIEST AWARD AND 60 POINTS. EARTHQUAKE QUESTION.
Earthquakes
1. Read the cards and put them in the right order so that they correctly explain
what causes an earthquake. (you can number the statements).
The tectonic plate suddenly moves
As the surface settles back down there will be smaller
earthquakes known as aftershocks.
Energy is released as 'seismic waves' travel along the surface
away from the epicentre (point on the surface above the focus)
The rock breaks along a weak point (fault line) when the
pressure is released. Where the rock breaks is the 'focus'
Tectonic plates are locked together by friction
This is an earthquake. The Earth's surface shakes, causing 'tremors'
Pressure (strain energy) builds up due to movement in the mantle
the picture is clearer i’ll give brainliest award and the 60 points. i need this by tuesday please. thanks.
Answer:
Explanation:
you already answer what do i need to do?
School Question
Describe the three kinds of waves that are produced in an earthquake.
There are three basic types of seismic waves – P-waves, S-waves and surface waves. P-waves and S-waves are sometimes collectively called body waves.
Which of the following does NOT correctly describe Egyptian religion?
The cerebellar hemispheres are separated by a worm- shaped band of cortex called the:____.
The cerebellar hemispheres are separated by a worm-shaped band of cortex called the: Vermis.
The vertebrate brain (cerebrum) is formed by two cerebral hemispheres separated by sulci and longitudinal clefts. Therefore, we can say that the brain is divided into left and right hemispheres. Each of these hemispheres has an outer layer of gray matter called the cerebral cortex supported by an inner layer of white matter. In EU (placental) mammals, the hemispheres are connected by a very large bundle of nerve fibers, the corpus callosum.
Smaller commissures, including anterior commissures, posterior commissures, and fornices, also connect the hemispheres and are present in other vertebrates. These commissures convey information between the two hemispheres to coordinate local functions.
The cerebral hemisphere has its three known poles: the occipital, frontal, and temporal poles. The median sulcus is a prominent fissure that separates the parietal lobe from the frontal lobe and the primary motor cortex from the primary somatosensory cortex.
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