Answer:
d
Explanation:
What do both the Senate and the House of Representatives require of people running for election?
They must be at least 30 years old.
They must be a resident of a US state.
They must have experience in state government.
They must have lived in the US as a citizen for 10 years.
Answer:
Option 1 and Option 2
Explanation:
They must be 30 years of age and live in a US state. I would also say the last option could have been correct except its a year off. You have to be a U.S. citizen for at least 9 years not 10 years.
(have a great day!)
Answer:
B
Explanation:
How do California Sea Lions pick their mate?
Answer:
California sea lions have a polygynous breeding pattern. From May to August, males establish territories and try to attract females with which to mate. Females are free to move in between territories, and are not coerced by males.
Compared to an inland location of the same elevation and latitude, a coastal location is likely to have
A) warmer summers and cooler winters
B) cooler summers and warmer winters
C) warmer summers and warmer winters
D) cooler summers and cooler winters
A coastal location is likely to have warmer winters and cooler summers compared to an inland location of the same elevation and latitude(B).
The ocean has a moderating effect on temperature, causing coastal areas to have milder temperatures than inland areas. In the summer, the land heats up faster than the ocean, causing warm air to rise and cooler air to flow in from the ocean, resulting in cooler temperatures.
In the winter, the opposite occurs, where the land cools down faster than the ocean, causing warm air to flow in from the ocean and increasing temperatures. This results in warmer winters and cooler summers in coastal locations compared to inland locations at the same elevation and latitude.
Therefore, option A is incorrect, and option B is the correct answer. Coastal locations tend to have a more moderate climate, which can be beneficial for agriculture and other activities that are sensitive to temperature changes.
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which of these was used by alfred wegener as evidence that earth’s continental landmasses had drifted apart over time?
Fossil was used by alfred wegener as evidence that earth’s continental landmasses had drifted apart over time.
German scientist Alfred Wegener (1880–1930) was an expert in climatology and meteorology. When he disagreed with the theory that the Bering Land Bridge was constructed by isostasy and that similar land bridges once connected the continents, he began to question widely held beliefs in 1910 [1]. He offered a theory that the continents were once linked and then drifted apart after analyzing the scientific literature. He didn't have the exact mechanism figured out, but his theory was supported by a ton of data.
The first piece of evidence presented by Wegener was the similarity of some continents' coasts to jigsaw puzzle pieces. On the first world maps, people saw parallels between the coastlines of South America and Africa, and some speculated that the continents had been torn apart [3]. In 1858, Antonio Snider-Pellegrini conducted basic research on continental separation and fossil matching.
In addition, Wegener gathered data by comparing comparable rocks, mountains, fossils, and glacial deposits from different oceans. For instance, the fossilized remains of the extinct aquatic reptile Mesosaurus were discovered on the different shores of South America and Africa. In Africa, India, and Antarctica, Lystrosaurus fossils were discovered. He emphasized that because they were land animals, they could not have swum the entire ocean.
To know more In addition, Wegener gathered data by comparing comparable rocks, mountains, fossils, and glacial deposits from different oceans. For instance, the fossilized remains of the extinct aquatic reptile Mesosaurus were discovered on the different shores of South America and Africa. In Africa, India, and Antarctica, Lystrosaurus fossils were discovered. He emphasized that because they were land animals, they could not have swum the entire ocean.
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GEOGRAPHY SS3
b. Discuss two (2) factors affecting denudation (1 mark)
Answer:
Anthropogenic (human) activity:- including agriculture, damming, mining, and deforestation;
Biosphere:-via animals, plants, and microorganisms contributing to chemical and physical weathering;
of Canada is unsettled.
Due to its cold climate, over
A. 14
B. 1/2
C. 2/3
D. 2/5
Please select the best answer from the choices provided
A
B
Ο Ο Ο Ο
Hurry
Answer:
B/ 1/2 is correct
Answer:
1/2
Explanation:
Which of the following is not a characteristic of a desert ecosystem? dry and hot covers one-half of the earth dry and cold few plants grow here
Answer:
B.) Covers one-half of the earth
Explanation:
The desert doesn't cover one-half of the earth. In fact, true deserts only cover about 14 percent of the world's land area.
This might be a little late but I hope it helps. :)
According to the concentric zone model, a city develops in a series of
A. corridors
B. rings
C. nodes
D. sectors
According to the concentric zone model, a city develops in a series of B. rings.
The concentric zone model is a theoretical framework proposed by sociologist Ernest Burgess in 1925 to explain the spatial organization and growth of cities. According to this model, cities are structured in a series of concentric rings or zones, each characterized by different land uses and socioeconomic characteristics.
The central idea of the concentric zone model is that cities expand outward from a central core, with new development occurring in rings or zones around the central area. The model suggests that the innermost ring, known as the central business district (CBD), is the commercial and administrative hub of the city. It is typically characterized by high-density commercial activities, such as offices, retail establishments, and government buildings.
Moving outward from the CBD, the concentric rings represent different zones with varying land uses and socioeconomic characteristics. The second ring, called the transitional zone, often experiences a mix of commercial, industrial, and residential land uses. This area is commonly associated with a deteriorating urban environment and can be characterized by social and economic challenges.
As the city expands further outward, subsequent rings represent different types of residential areas. These rings are often categorized based on socioeconomic status, with higher-income neighborhoods found in the outer rings, known as the commuter or suburban zones.
The concentric zone model suggests that cities grow in a radial pattern, with new development spreading outward from the central core. However, it is important to note that this model is a simplified representation and does not capture the complexities and variations found in real-world urban development.
While the concentric zone model has been criticized for oversimplifying urban dynamics, it has provided a valuable framework for understanding the historical growth patterns and spatial organization of cities. It has influenced urban planning and development theories, contributing to discussions on urban sprawl, segregation, and the impacts of land use on social and economic dynamics within cities.
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Select the statement that correctly identifies the fault type produced at each tectonic plate boundaries.
a. Normal faults are most common at divergent plate boundaries, reverse faults are most common at convergent plate boundaries, and strike-slip faults are most common at transform plate boundaries.
b. Normal faults are most common at convergent plate boundaries, reverse faults are most common at divergent plate boundaries, and strike-slip faults are most common at transform plate boundaries.
c. Normal faults are most common at transform plate boundaries, reverse faults are most common at convergent plate boundaries, and strike-slip faults are most common at divergent plate boundaries.
d. Normal faults are most common at divergent plate boundaries, reverse faults are most common at transform plate boundaries, and strike-slip faults are most common at convergent plate boundaries.
The correct statement that identifies the fault type produced at each tectonic plate boundary is option a.
Normal faults are most common at divergent plate boundaries, reverse faults are most common at convergent plate boundaries, and strike-slip faults are most common at transform plate boundaries.
At divergent plate boundaries, where two plates are moving away from each other, normal faults are most common. These faults occur when the hanging wall drops down relative to the footwall, due to tensional stresses caused by the plates pulling apart.
At convergent plate boundaries, where two plates are moving towards each other, reverse faults are most common. These faults occur when the hanging wall moves up relative to the footwall, due to compressional stresses caused by the plates pushing together.
At transform plate boundaries, where two plates are sliding past each other, strike-slip faults are most common. These faults occur when the two sides of the fault move horizontally past each other, due to shearing stresses caused by the plates moving in opposite directions.
Option a is the correct answer.
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Millions of years ago, the area pictured was the site of a mountain range. Today, a few plateaus are all that remain. What can be said about the remaining rock forms?
A.
Only the weakest portions of the rock remain.
B.
Due to a lack of rainfall in the area, rain is not a factor in the erosion process.
C.
The rock has been worn down due to continental drift.
D.
The remaining forms consist of the hardest rock.
Answer:
Pls rate Brainliest and See Explanation
Explanation:
C
Answer: C
Explanation:
Trends in U. S. And Canadian agriculture during the past two decades include: a. Stabilized yields. B. Federal incentives to expand acreage. C. Decreasing numbers of farmers. D. Decreasing average farm size
Trends in U.S. and Canadian agriculture over the past two decades include stabilized yields, decreasing numbers of farmers, and decreasing average farm size. Federal incentives to expand acreage are not mentioned as one of the trends.
U.S. and Canadian agriculture refers to the agricultural sectors in the United States and Canada, respectively. These sectors encompass a wide range of activities involved in the production, processing, and distribution of agricultural products. Both countries have highly developed agricultural systems characterized by large-scale farming operations, advanced technologies, and significant contributions to global food production. The agricultural industries in the U.S. and Canada produce a diverse range of crops, livestock, and agricultural commodities, including grains, fruits, vegetables, dairy products, meat, and poultry.
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given a spherical magma body with a radius r of 2.5 meters and a cubical magma body with sides s that have a length of 4.0 meters, in which body of magma is the magma likely to cool more quickly (assuming all other factors are held constant)?
Based on the information given, the cubical magma body is likely to cool more quickly.
This is because the surface area-to-volume ratio is higher for a cube compared to a sphere. As heat escapes from the surface of the magma body, a higher surface area allows for faster cooling. The cube has six faces with a total surface area of 73.5 square meters while the sphere has a surface area of only 60.5 square meters. Therefore the cube has a higher rate of heat loss: resulting in faster cooling compared to the sphere.
The cubical magma body cools more quickly due to its higher surface area-to-volume ratio.
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750mm of rainfall is considered a good amount of rainfall for year , does the area of Ermelo and surroundings receive adequate rainfall yes or no
Yes, the area of Ermelo and its surroundings receive adequate rainfall. The average annual rainfall in this region is approximately 890mm, which falls within the range of 750-1000mm that is considered good for the year.
This amount of rainfall is sufficient for the plants and crops in the area to grow and thrive. The rainfall is also beneficial for the local wildlife and the overall environment of the region.
The region also experiences some wetter months during the summer and drier months during the winter, which helps to ensure that the area has the right amount of water for its plants and animals. Overall, the area of Ermelo and its surrounding areas receives adequate rainfall and is able to support the local wildlife and vegetation.
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a world map that indicates the region of tropical cyclones
It should be noted that tropical cyclones simply mean low pressure systems which form over warm tropical waters.
What is tropical cyclone?It should be noted that tropical cyclone simply means the intense circular storm which originates over warm tropical oceans.
Tropical cyclones usually form when the temperature of the sea surface is above 26.5°. It will dissipate when it moves over land.
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Which phase describes a lava plateau
Answer:
volcanic material in valleys
Explanation:
Answer:
volcanic material in valleys
Explanation:
or as D
Resources: -
What do you understand by reserve? (In Geography)
Answer:
A resource is that amount of a geologic commodity that exists in both discovered and undiscovered deposits is known as reserves.
Explanation:
a resource is that amount of a geologic commodity that exists in both discovered and undiscovered deposits- by definition then a "best quess" Reserves are that sub group or a resource that have been discovered, have a known size, and can be extracted at a profit.
which of the following geometric features should be avoided if possible in the design of structural components made of new ceramics (three best answers): (a) deep holes, (b) rounded inside corners, (c) rounded outside corners, (d) sharp edges, (e) thick sections, and (f) threads?
The correct option is A, D, and F. The three geometric features that should be avoided if possible in the design of structural components made of new ceramics are deep holes, sharp edges, and threads.
Ceramics refer to a broad category of materials that are composed of inorganic compounds, typically including clay, silica, and various minerals. These materials are transformed through processes like shaping, drying, and firing to create a wide range of products with diverse properties. Ceramics have been utilized by humans for thousands of years due to their durability, versatility, and aesthetic appeal.
Traditional ceramics, such as pottery and porcelain, are known for their ability to withstand high temperatures, making them ideal for cooking vessels and decorative items. Modern ceramics, on the other hand, encompass a vast array of applications, including structural components in aerospace and automotive industries, electrical insulators, biomedical implants, and even advanced electronic devices.
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HELP!!!
I need an answer to these questions.
7. True or false? The Vamoose osprey was found in Cuba on October 25th, 2011?
True False
8. Which type of osprey can be found furthest north?
Vamoose
Behemoth
Thistledown
9. True or false? Ospreys were found in Washington State on September 13th, 2011?
True False
10. Roughly, how many kilometers did the Vamoose osprey travel from Aug. 26th 2011 to September 13th, 2011?
5,000 km
1,000 km
10,000 km
20,000 km
The Vamoose osprey was found in Cuba on October 25th, 2011 is a false statement.
The type of osprey can be found furthest north is Vamoose.Ospreys were found in Washington State on September 13th, 2011 is a false statement.What kind of bird is the Osprey?
This is known to be very special bird. One cannot make a mistake of not recognizing it when viewed at close range.
Its body is made up of white and some dark streaks. The white streaks can be seen on its wings and their tail feathers are said to be mottled black-and-white.
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You are traveling on a two-way street and want to turn left onto a one-way street.Your light is red,but there is no traffic on the one-way street.What action will you take and why?
ANYONE PLEASE HELP ME:(
as you stroll through a moist forest you are most likely to see ___
gametophyte of a moss
As you stroll through a moist forest you are most likely to see the gametophyte of a moss.
What is a gametophyte?The gametophyte is one of the two alternative multicellular stages in the life cycles of plants and algae. It develops from a single-chromosome haploid spore into a polyphonic haploid organism. Gametophyte refers to the sexual stage in the life cycle of plants and algae.
Gametophyte, the sexual phase in the alternation of generations in plants and some algae, is a phenomenon in which the life cycle of the organism goes through two separate stages, one of which produces the other.
The sexual stage in the alternation of plant generations and some algae is called a gametophyte. This stage results in gametes that go through generational alternation. It produces the zygote from which sporophytes develop and is a haploid phase.
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Helpppppp
Purpose
Create a multimedia presentation about a culture region.
Prompt
For this assignment, you will create a multimedia presentation that effectively informs an audience about
a specific culture region. You should include the following in your presentation:
A map of the culture region you are describing
An explanation of the cultural diffusion that occurred to create your culture region; this can be as
a result of internal migration (within the United States) or external migration (from outside the
United States)
A description of the culture region that includes a discussion of at least five elements of cultural
geography (music, food, architecture, etc.)
Information about a specific example of at least one element (e.g., a style of music or type of
artwork), including its history and origin
Summary
In this assignment, you will study your community to identify a culture region. You will find out more
about the culture of people in this region by identifying their cultural practices. Then, you will use what
you have learned to create a multimedia presentation in support of your findings.
Assignment Instructions
Step 1: Review your prompt carefully.
b) Identify a culture region to study. Suggestions include:
(2) Spanish Harlem in New York City
(3) Chinatown communities in San Francisco, Seattle, or New York City
(4) the Amish community of southwestern Pennsylvania
(5) the Arab American community of Dearborn, Michigan
(6) the Laotian Hmong community of California’s Central Valley
(7) the Tejano culture region of South Texas
(8) the African American neighborhoods of Anacostia or Shaw in Washington, DC
c) Ask your teacher for help if you are having trouble choosing a culture region that
interests you.
Step 2: Research your chosen topic.
a) Study your culture region.
b) Identify cultural practices in that region.
c) Research the cultural diffusion that brought your chosen culture to its region.
d) Choose at least one cultural element to study more closely.
e) Find or create a map.
f) Take note of your findings so that you can present them later.
I need something can be any culture
Answer: To convince people to celebrate diversity day your town representatives
This presentation is meant to be delivered orally, and each slide should include relevant images and multimedia to enhance understanding and engagement.
Exploring the Rich Culture of Chinatown in San Francisco
Slide 1: Introduction
Welcome to our multimedia presentation on Chinatown in San Francisco!
Map of San Francisco highlighting the location of Chinatown.
Brief overview of the presentation's content.
Slide 2: Cultural Diffusion
Explanation of the cultural diffusion that led to the creation of Chinatown.
Historical background of Chinese migration to San Francisco during the 19th and 20th centuries.
Reasons for migration, such as the California Gold Rush and building the Transcontinental Railroad.
Slide 3: Overview of Chinatown's Cultural Geography
Five elements of cultural geography in Chinatown:
Food: Renowned restaurants, traditional Chinese dishes, dim sum culture.
Architecture: Iconic pagoda-style buildings, ornate decorations, and Feng Shui principles.
Festivals: Celebrations of Chinese New Year, Dragon Boat Festival, and Mid-Autumn Festival.
Music and Arts: Traditional Chinese music, dance performances, and martial arts.
Language and Literature: Chinese language schools, calligraphy, and Chinese opera.
Slide 4: Chinese Cuisine in Chinatown
In-depth exploration of Chinese food in Chinatown.
Origins of popular dishes like Dim Sum, Peking Duck, and Kung Pao Chicken.
Influence of regional Chinese cuisines, such as Cantonese and Szechuan.
Slide 5: Architectural Wonders of Chinatown
Showcase of Chinatown's unique architecture.
Explanation of traditional Chinese architectural styles.
Influence of Feng Shui principles in the layout and design of buildings.
Slide 6: Vibrant Festivals in Chinatown
Overview of major festivals celebrated in Chinatown.
Chinese New Year: Origins, customs, and significance of the festivities.
Dragon Boat Festival: History and the exciting dragon boat races.
Mid-Autumn Festival: Mooncakes, lanterns, and family reunions.
Slide 7: Art and Music in Chinatown
Introduction to traditional Chinese music and its instruments.
The significance of dance performances and martial arts in Chinese culture.
Influence of Chinese art and calligraphy on the community.
Slide 8: A Closer Look: Chinese Opera
History and origins of Chinese opera.
Explanation of the different opera styles (Peking, Cantonese, etc.).
Importance of Chinese opera as a cultural treasure in Chinatown.
Slide 9: Conclusion
Recap of Chinatown's rich cultural elements: food, architecture, festivals, music, and arts.
Appreciation for the diversity and heritage preserved in Chinatown.
Encouragement to explore and appreciate cultural regions in our own communities.
Slide 10: References
List of sources and references used for the research.
Note: Feel free to add more slides or elaborate further on specific aspects of Chinatown's culture to suit the presentation's length and depth.
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how many countries are there
earth's modern atmosphere . a. is composed of 78 percent nitrogen b. does not filter high-energy ultraviolet rays c. is composed of 80 percent oxygen d. is similar to that found on venus
Earth's modern atmosphere is composed of 78 percent nitrogen.
Around 78% of the gases in the Earth's atmosphere are nitrogen, 21% are oxygen, and 1% are other gases. These gases are located in the atmospheric layers (troposphere, stratosphere, mesosphere, thermosphere, and exosphere), which are distinguished by particular characteristics including temperature and pressure. N2 and O2 make up the majority of the Earth's atmosphere. Carbon dioxide (CO2) and other greenhouse gases in the atmosphere trap solar energy near to the surface. The atmosphere contains large amounts of water vapor, which creates the majority of the planet's clouds.
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The continental divide
Answer:
It was when the continent divided I think
Explanation:
Which type of satellite is useless for meteorologists at 3AM?
a. visible satellite imagery.
b. infrared satellite imagery.
c. water vapor imagery.
Answer:
Hey There!
Your answer is A. VISIBLE SATELLITE IMAGERY
Explanation:
You can guess from the name...
To use this satellite means the SUNLIGHT is needed to fall on an area of Earth which is going to be graphically imaged via the satellite (much like Google Earth, Weather Reports or a GPS)
Obviously when its 3AM it is dark...so using these satellites for meteorological purposes (or anything else really) IS NOT POSSIBLE WITHOUT LIGHT!
I HOPE THIS HELPED WITH YOUR WORK!!
:D
The visible satellite imagery satellite is useless for meteorologists at 3AM. Thus option (a) is correct.
What is Satellite?A satellite is an object in space that orbits or circles around a bigger object. There are two kinds of satellites: natural (such as the moon orbiting the Earth) or artificial (such as the International Space Station orbiting the Earth).
There are dozens upon dozens of natural satellites in the solar system, with almost every planet having at least one moon. Saturn, for example, has at least 53 natural satellites, and between 2004 and 2017, it also had an artificial one — the Cassini spacecraft, which explored the ringed planet and its moons.
Earth observation satellites gather information for reconnaissance, mapping, monitoring the weather, ocean, forest, etc. Space telescopes take advantage of outer space's near perfect vacuum to observe objects with the entire electromagnetic spectrum.
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Please help!!!
What if the ethics of political actions were never considered or were ignored? What would be the consequences?
laxmi saw someone sleeping in the back ward in to negative
Sorry, I dont follow
What?! What do u mean?!?!?
Select three of the following that are sources of salt in the oceans. A. volcanic activity in the oceans B. erosion of land areas by rivers and glaciers C. precipitation from clouds D. wave action along shores E. deep ocean thermal vents F. decayed material from animals
Three of the following sources of salt in the oceans:
erosion of land areas by rivers and glaciersdecayed material from animalsprecipitation from cloudsThus, options 'B', 'C' and 'F' are the correct options.
What are the sources of salt in the oceans?The main sources of ocean salt are seabed openings and rocks on land. Runoff from the land and openings in the seafloor are the two sources of salt in the ocean. The main source of salts dissolved in saltwater is rocks on land. Due to its moderate acidity, rainwater that falls on land erodes rocks.
This causes ions to be released, which are then transported away by streams and rivers and finally into the ocean. The ocean's living things utilize a large portion of the dissolved ions, which are then evacuated from the water. Others are left behind, and as a result, their concentrations grow over time.
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An important and widespread geologic agent in eroding, transporting, and depositing sediment is flowing.
Running water is an important and widespread geologic agent for eroding, depositing sediment, and transporting.
What is running water?Running water can be categorized as the most important geologic agent in eroding, depositing sediment, and transporting, aided with massive waste. Deposition, or stream erosion, may be found in almost every landscape in the world. Stream action and mass wasting are the primary processes of landscape development, despite the fact that other agents such as glaciers, wind, groundwater, and waves can be locally significant in sculpting the land.
In humid areas, running water is a powerful erosion agent. Running water, such as rainfall, rivers, and streams, has continually shaped the earth's surface via erosion and depositional processes. A running river's power is determined by its velocity, or speed, and its mass, or volume.
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H. W2 break even analysis milled tooth bit drilled 2,461 ft of limestone in 150 rotating hours. Other relevant data for this bit is: Trip time (T) = 8 hrs,Bit cost (B) = $3,000, Rig cost = 900 $/hr It is proposed to replace this bit with an insert-type bit costing 8,500. Calculate the rotating time required of the new bit at breakeven cost for equal penetration rates
The rotating time required for the new insert-type bit to reach the breakeven cost for equal penetration rates is 143.89 hours.
To calculate the rotating time required for the new bit at breakeven cost for equal penetration rates, we can use the concept of break-even analysis. Break-even analysis determines the point at which the cost of two alternatives is equal.
1. Calculate the cost of drilling with the milled tooth bit:
Cost of drilling with the milled tooth bit = Trip time cost + Rotating time cost
Trip time cost = Trip time (T) x Rig cost per hour
= 8 hrs x $900/hr
= $7,200
Rotating time cost = Rotating time x Rig cost per hour
= 150 hrs x $900/hr
= $135,000
Total cost of drilling with the milled tooth bit = Trip time cost + Rotating time cost + Bit cost
= $7,200 + $135,000 + $3,000
= $145,200
2. Set up the equation for the break-even point:
Cost of drilling with the milled tooth bit = Cost of drilling with the insert-type bit
$145,200 = Trip time cost + Rotating time x Rig cost per hour + Cost of the insert-type bit
= $7,200 + (Rotating time x $900) + $8,500
3. Rearrange the equation to solve for the rotating time:
Rotating time x $900 = $145,200 - $7,200 - $8,500
Rotating time x $900 = $129,500
Rotating time = $129,500 / $900
= 143.89 hours
Therefore, the rotating time required for the new insert-type bit to reach the breakeven cost for equal penetration rates is approximately 143.89 hours.
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