National Geographic photographers are some of the most skilled and experienced photographers in the world, known for their stunning images that capture the essence of the natural world and humanity. These photographers are often called upon to capture images of exotic wildlife, and cultural traditions from around the globe.
However, it is difficult to determine exactly how much National Geographic photographers make, as their salaries vary depending on their experience, skill level, and the nature of the assignment. In general, National Geographic photographers are paid well for their work, with some photographers earning up to $500,000 or more per year. However, many photographers work on a freelance basis, which means that their income may fluctuate depending on the number and type of assignments they receive.
Despite this, many National Geographic photographers are passionate about their work and consider it a privilege to be able to capture and share the beauty of the world with others. Overall, National Geographic photography is a highly competitive field, and photographers who want to succeed must be willing to work hard and continuously develop their skills in order to stand out from the crowd.
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please help, thanks!
1. an if, then statement
18) Why do the seasons occur on Earth? What is the difference
between a Summer Solstice and Winter Solstice? (You may draw a
picture to show the Summer and Winter Solstice)
The seasons occur on Earth due to the tilt of its axis in relation to its orbit around the sun. This tilt causes different parts of the Earth to receive varying amounts of sunlight throughout the year, leading to the changing seasons.
The Earth's axis is tilted approximately 23.5 degrees in relation to its orbit around the sun. As a result, during different times of the year, either the Northern Hemisphere or the Southern Hemisphere is tilted more towards the sun, experiencing summer, while the other hemisphere is tilted away, experiencing winter. This tilt causes the sun's rays to strike the Earth's surface at different angles, affecting the intensity and duration of daylight.
During the Summer Solstice, which occurs around June 21st in the Northern Hemisphere and December 21st in the Southern Hemisphere, the hemisphere tilted towards the sun experiences its longest day and shortest night of the year. The sun reaches its highest point in the sky, and the daylight hours are the longest. Conversely, during the Winter Solstice, around December 21st in the Northern Hemisphere and June 21st in the Southern Hemisphere, the hemisphere tilted away from the sun experiences its shortest day and longest night. The sun is at its lowest point in the sky, and the daylight hours are the shortest.
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Earth's third atmosphere (atmosphere iii) was a thick atmosphere of primarily water vapor and carbon dioxide. What occurred during the third atmosphere on earth?.
Earth's third atmosphere layer is thick and primarily of water vapour and carbon dioxide. Burning of meteors occurs in the third atmosphere layer of the Earth.
Earth's atmosphere contains five layers: stratosphere, Mesosphere, thermosphere, exosphere, and ionosphere. The Mesosphere is most important for the protection of Earth. It is the third layer of Earth's atmosphere.
The Mesosphere is above the stratosphere, approximately 53 miles above and 372 miles below the thermosphere. The Mesosphere is tricky to understand compared to other layers of the atmosphere.
Mesopause is colder than the other layers of the atmosphere - 90 degrees C. Jets, satellites, balloons, and meteors burn up in this layer before they reach Earth. High clouds (polar mesospheric clouds) form at the border of the Mesosphere and thermosphere.
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Earth's third atmospheric layer is thick and primarily of water vapour and carbon dioxide. what occurs in the third layer of the earth's atmosphere?
the rio grande, which forms part of the boundary between mexico and the united states, is an example of
Answer:
natural/physical boundary
Explanation:
mention any three effects of the sun on the earth
Explanation:
1. The sun provides light and heat that sustains life on Earth. Without the sun, the planet would be cold and dark, and life as we know it would not exist.
2. The sun's gravity keeps the planets in our solar system in their orbits. Without the sun's gravitational pull, the planets would either drift off into space or spiral towards the sun, causing catastrophic collisions.
3. The sun's magnetic field also affects Earth, creating the auroras, or northern and southern lights, as charged particles from the sun collide with Earth's atmosphere. However, solar flares and other intense solar activity can also disrupt communication systems and cause other problems for humans on Earth.
Hopes this helps
Match the damage to a house to the correct Fuijita scale classification.1. F32. F13. F54. F0___ roof damage___ wall collapse___ house blown away___ little damage
The match of the damage to a house to the correct Fujita scale classification is given below:
F1 roof damage
F3 wall collapse
F5 house blown away
F0 little damage
The Fujita scale is used to categorize tornadoes based on the intensity of the tornado.
The Fujita scale is a classification system for measuring the intensity of tornadoes based on the damage they cause to buildings and vegetation. The Fujita Scale was designed in 1971 by Ted Fujita, a professor at the University of Chicago, and was first used in the United States in 1973. The scale ranges from F0 (weakest) to F5 (strongest).
The reason for the matching is the level of damage associated with each Fujita scale category. The higher the number, the more severe the damage. Here's the explanation:
F0: Little damage (light damage to trees, signs, and buildings;)
F1: Roof damage (moderate damage to roofs, windows, and vehicles)
F3: Wall collapse (severe damage to walls, roofs, and large trees)
F5: House has blown away (total destruction of houses and buildings)
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What made Wagener believe the continents may have all been one unit?
What are two ways that existing rock material can be transported to a new location?
Existing rock material can be transported to a new location through two primary processes: Erosion and Mass wasting.
Existing rock material can be moved to a new location using one of two methods:
Weathering and the transfer of rock fragments and soil by water, wind, or ice are examples of erosion. Water, wind, and ice can erode away rock material and transport it to a new area when they move over it. Canyons, valleys, and sedimentary rock formations can arise from this process.The movement of rock material down a slope caused by gravity is known as mass wasting. This can happen when the slope's angle gets too steep or when there is a destabilising force present, such as an earthquake or severe rain. Landslides, rockfalls, and debris floods are examples of mass wasting.For such more question on rock material:
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The energy. E, released by an earthquake is E = 10^11 a. Find the earthquake's magnitude b. Find the earthquake's intensity The earthquake's magnitude is:__________
To find the earthquake's magnitude, we will use the formula for energy released by an earthquake, which is E = 10^11 *
a. Earthquake's Magnitude:
The energy released by an earthquake (E) is related to its magnitude (M) through the following formula:
M = (2/3) * log(E) - 10.7
Here, E is given by the formula E = 10^11 * a. To find the magnitude, we need to substitute E in the formula above:
M = (2/3) * log(10^11 * a) - 10.7
b. Earthquake's Intensity:
The intensity of an earthquake (I) is determined by the Modified Mercalli Intensity (MMI) scale. The intensity depends on the magnitude, the distance from the epicenter, and local geological conditions. Unfortunately, with only the energy formula provided, we cannot directly determine the earthquake's intensity.
In summary, the earthquake's magnitude can be found using the formula M = (2/3) * log(10^11 * a) - 10.7, but the earthquake's intensity cannot be determined without additional information on the distance from the epicenter and local geological conditions.
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Machu Picchu is the___
A. World’s highest navigable lake.
B. Site of ancient Inca ruins.
C. Highest waterfall in the world.
D. Largest rain forest in the world.
The primary source of energy that drives convection within the atmosphere and oceans is
A. the force of gravity from the moon.
B. thermal energy from the sun.
C. Earth's magnetic field.
D. Earth's gravity.
used in your presentation as
2.1 Mention FOUR human practices that may lead to harmful effects to the
environment.
(4x1+1) (5)
2.2 State how the use of harmful substances for crop-farming may affect food-
production.
Summarize the impact of environmental degradation on society
Discuss the Impact of depletion of the fishing stocks.
Four human practices can also cause harmful effects on the environment: overpopulation, pollutants, burning of fossil fuels, and deforestation.
People impact the bodily environment in lots of methods: overpopulation, pollution, burning fossil fuels, and deforestation. adjustments like these have brought on weather exchange, soil erosion, poor air pleasant, and undrinkable water.
The 5 important effects human beings have on the environment encompass deforestation, global warming, overharvesting, pollution, and agriculture. these have contributed to extensive species extinctions, incremental and continuous rises inside the sea level, and file setting warm temperatures within the earth's greenhouse ecosystem.
The environment may be described as a sum general of all the dwelling and non-residing factors and their consequences that impact human existence. whilst all dwelling or biotic factors are animals, flowers, forests, fisheries, and birds, non-dwelling or abiotic factors encompass water, land, daylight, rocks, and air.
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examine the area in perspective view -- remember to use the blue ring/wheel on the compass as we did in the yosemite activity -- to see that the lake fills a broad glacial feature. what type of feature is it?
Based on the mention of glacial activity, it is possible that the feature could be a glacial valley. A glacial valley is a U-shaped valley formed by the erosive action of a glacier.
A glacial valley is a landform created by the erosive action of glaciers. Glaciers are large masses of ice that move slowly over the land, carrying rocks and debris as they flow. As a glacier moves, it scours and erodes the underlying landscape, shaping it into a distinctive U-shaped valley.
The process of glacial erosion begins with the formation of a V-shaped valley, which is typically created by the action of rivers. When a glacier forms in the V-shaped valley, it widens and deepens the valley through its erosive power.
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illustrate and provide information about four urban structure models and
include an analysis of a nearby city’s urban structure mode
Four notable models are the Concentric Zone Model, the Sector Model, the Multiple Nuclei Model, and the Periphery Model.
Concentric Zone Model:
The Concentric Zone Model, proposed by sociologist Ernest Burgess in 1925, describes a city with rings or zones radiating from the central business district (CBD) outward. The zones include the CBD, transition zone, working-class zone, residential zone, and commuter zone. The model suggests that cities grow outward in a circular pattern.
In New York City, this model can be observed to some extent. The CBD is Manhattan, surrounded by the transition zone characterized by older industrial areas and ethnic neighborhoods. As you move further outward, you encounter residential areas with different socioeconomic characteristics, such as the Upper East Side, Upper West Side, and the Bronx.
Sector Model:
The Sector Model, proposed by economist Homer Hoyt in 1939, emphasizes the development of sectors or corridors radiating from the CBD. It suggests that cities grow along transportation routes or other important factors, creating distinct sectors with different land uses.
In New York City, the Sector Model is visible in the form of corridors radiating from Manhattan. For example, there is a financial corridor along Wall Street, a fashion and retail corridor in Midtown, and an arts and culture corridor in Chelsea. Each sector has its own distinctive characteristics and attracts specific activities and businesses.
Multiple Nuclei Model:
The Multiple Nuclei Model, proposed by geographers Chauncy Harris and Edward Ullman in 1945, suggests that cities have multiple centers or nodes of activities that attract different functions and land uses. It emphasizes that cities are not solely centered around the CBD.
New York City fits the Multiple Nuclei Model quite well. It has multiple centers or nuclei, including Manhattan's CBD, downtown Brooklyn, Long Island City in Queens (which has emerged as a business district), and other commercial hubs scattered throughout the five boroughs. Each nucleus has its own economic, cultural, or residential significance.
Periphery Model:
The Periphery Model, also known as the Galactic City Model, was developed by geographer Chauncy Harris in the 1960s. It suggests that cities have multiple peripheral nodes or sub-centers that have developed due to improved transportation and suburbanization.
In the case of New York City, the Periphery Model is evident in the growth of suburban areas around the city. As people move away from the crowded and expensive urban core, suburban towns and cities like White Plains, Yonkers, and Newark have developed as peripheral nodes with their own commercial and residential activities.
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4. What is the cultural significance of Tiananmen Square?
Answer:
It has great cultural significance as it was the site of several important events in Chinese history. Outside China, the square is best known for the 1989 Tiananmen Square protests that ended with a military crackdown, which is also known as the Tiananmen Square Massacre or June Fourth Massacre.
I will mark brainiest for the best answer:
Jobs focused on obtaining natural resources or raw materials are part of the __________ economic sector.
A.
primary
B.
secondary
C.
tertiary
D.
quaternary
Answer:
The answer is A. primary
Explanation:
Answer:
A
Explanation:
g how latitude and longitude on earth are similar to declination and right ascension in the sky.
Latitude and longitude on Earth are similar to declination and right ascension in the sky in that they are both used to specify the location of a point on a sphere.
Latitude and declination specify the north-south position of a point, with latitude measured in degrees north or south of the equator, and declination measured in degrees north or south of the celestial equator. Longitude and right ascension specify the east-west position of a point, with longitude measured in degrees east or west of the Prime Meridian, and right ascension measured in hours, minutes, and seconds east of the vernal equinox. Both systems also use a reference point, the Earth's rotational axis for latitude and longitude, and the vernal equinox for declination and right ascension.
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Which of the following would be information that a geophysical survey could provide to a geologist?
- electrical conductivity measurement
- magnetism measurements
- measurements in the variation of gravity
- All of these choices are correct.
All of these choices are correct. A geophysical survey is a method used by geologists to gather information about the subsurface properties and structures of the Earth.
Geophysical techniques involve measuring various physical properties of rocks, minerals, and fluids in order to infer subsurface characteristics.
Electrical conductivity measurements can provide insights into the presence of conductive materials or fluid-filled structures, such as groundwater or mineral deposits. Magnetism measurements can help identify magnetic anomalies associated with certain rock types or geological structures. Measurements of gravity variations can reveal variations in subsurface density, which can be indicative of geological features like faults, basins, or mineral deposits.
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A huge facility in Moscow, Russia that has places, government offices, and churches is the _______
Answer:
i think it would be the kremlin
Explanation:
Which of the following examples best illustrates absolute location?
A.
It’s next to the World Cup stadium.
B.
It’s between Siemert Road and Beit Road.
C.
It’s in Gauteng, South Africa, at 26.2° S, 28.1° E.
D.
It’s near Johannesburg, South Africa.
which of the following describes a meteor? question 2 options: a. the visible passage of a glowing rocky body through earth's atmosphere. b. a large (much greater than a meter) rocky or metallic body in outer space. c. a portion of a rocky or metallic body that survives its passage through the atmosphere and hits the ground without being destroyed. d. a small (a meter or less) rocky or metallic body in outer space.
Meteoroids are space rocks that range in size from dust grains to small asteroids and are known for being fast-moving objects. Their name is based on their appearance, which is a flash of light that we see when they enter Earth's atmosphere and burn up.
These are the types of space rocks that collide with Earth's atmosphere, leaving trails of glowing gas behind them. Hence, the answer to your question is option a. The visible passage of a glowing rocky body through Earth's atmosphere.In addition, meteoroids come from comets or asteroids orbiting the sun, and when they are close enough to Earth, they may enter our planet's atmosphere. When this occurs, the meteoroid, which is composed of rock and metal, moves at a speed of approximately 70 kilometers per second, or 157,000 miles per hour, through the atmosphere. As it does so, it collides with the air, generating friction and causing the meteoroid to heat up and glow. As a result, the meteoroid is consumed in a bright flash of light that we refer to as a meteor.
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BRAINLIEST TO CORRECT ANSWER!!!
Which TWO locations are most likely to have both earthquakes and volcanoes?
O A. Transform fault zones
OB. Mid-ocean ridges
OC. Deep ocean basins
OD. Subduction zones
Answer: D. and B.
Explanation:
Apart from seafloor spreading, the Mid-Atlantic Ridge is also the site of volcanic activity and earthquakes along some portions of its length.
Where they collide and one plate is thrust beneath another (a subduction zone), the most powerful earthquakes, tsunamis, volcanic eruptions, and landslides occur.
The Columbian Exchange between Europe and the Americas is an example of
Shipping Channels
Cultural diffusion
travel bans
Trade Agreements
Answer:
Trade Agreements
Explanation:
The Columbian Exchange Essay example 1077 Words | 5 Pages The Columbian Exchange is the exchange of plants, animals, food, and diseases between Europe and the Americas. In 1492, when Christopher Columbus came to America, he saw plants and animals he had never seen before so he took them back with him to Europe.
Suggest one challenge that urbanisation creates for rural areas
The measures of the three angles of a triangle are given by 18x − 7, 12x + 9, and 4x. What is the measure of the largest angle?
Answer:
The greatest angle is \(18x-7\)
Explanation:
According to angle sum property of a triangle, sum of all the angles of a triangle is equal to \(180\)°.
The given angles of a triangle are \(18x-7,12x+9,4x\)
Therefore,
\(18x-7+12x+9+4x=180\)°
\(34x+2=180\)°
\(34x=178\)°
\(x=\frac{178}{34}=\frac{89}{17}\)
\(18x-7=18(\frac{89}{17})-7=\frac{1602-119}{17}=\frac{1483}{17}\)≈ 87.2°
\(12x+9=12(\frac{89}{17})+9=\frac{1068+153}{17}=\frac{1221}{17}\) ≈ 71.8°
\(4x=4(\frac{89}{17})=\frac{356}{17}\) ≈ 20.9°
Therefore, greatest angle is \(18x-7\)
which information does a geographer avoid using when defining regions?
A. environmental properties
B. trade patterns
C. climate information
D. subjective information
Answer:
D
Explanation:
i took the test and got a 100
Answer:
Subjective Information (D)
Explanation:
<3
In Africa south of the Sahara, most people live in
A. Ghana and Mali.
B. along coastal areas.
C. the mountains.
D. the deserts.
In Africa, south of the Sahara, most people live along coastal areas
Which of the following is an example of a benefit that people receive when they alter the Earth’s environmental spheres?
A.
pollution
B.
terracing
C.
acid rain
D.
eutrophication
Please select the best answer from the choices provided
A
B
C
D
Answer:
Pollution. Which is the release of harmful waste substances into the environment.
Explanation: Hope this helps...
Answer:
B
Explanation:
All of the others are negative.
A quadrilateral has a perimeter of 207 units and one side measures 36 units. The lengths of the other three sides are in the ratio of 5:6:8. Find the lengths of the three missing sides.
Answer:
45, 54, 72
Explanation:
In this case, a quadrilateral is like a square, with 4 sides but it's sides are longer than a square.
The perimeter of any geometrical figure is the sum of all the side's lenght, so, if we have the perimeter and the value of one side, we can deduce the lenght of the other sides because we have a data of the ratio. Let's first see how much is left on the missing sides.
P = a + b + c + d
207 = 36 + b + c + d
171 = a + b + c
This means that the sum of the other 3 sides is 171. We know that the ratio of those sides is 5:6:8, so the sum of these sides can be written like this, in function of those ratios:
171 = 5x + 6x + 8x
171 = 19x
x = 9
With this number we can now calculate the sides of the quadrilateral:
a = 5x = 5 * 9 = 45
b = 6x = 6 * 9 = 54
c = 8x = 8 * 9 = 72
Therefore the missing sides's lenght are:
45, 54, 72Hope this helps