Answer:
Long term changes in the climate of the environment
Explanation:
Climate change refers to long-term alterations in temperature patterns, precipitation levels, wind patterns, and other aspects of the Earth's climate system. It is primarily caused by human activities, particularly the emission of greenhouse gases such as carbon dioxide (CO2) and methane (CH4) into the atmosphere.
Here are some key points related to climate change:
Causes: The primary cause of climate change is the burning of fossil fuels (coal, oil, and natural gas) for energy production, transportation, and industrial processes. Deforestation, agricultural practices, and land-use changes also contribute to greenhouse gas emissions.
Greenhouse Effect: Greenhouse gases trap heat in the Earth's atmosphere, preventing it from escaping into space. This leads to a gradual increase in global temperatures, known as global warming. This warming effect is called the greenhouse effect and is essential for sustaining life on Earth. However, human activities have intensified this effect, resulting in significant climate change.
Impacts: Climate change has wide-ranging impacts on the environment, ecosystems, and human societies. These include rising global temperatures, more frequent and severe heatwaves, changes in precipitation patterns, sea-level rise, melting glaciers and ice caps, increased frequency of extreme weather events (such as hurricanes and floods), shifts in plant and animal habitats, and threats to biodiversity.
Mitigation: Mitigation refers to efforts aimed at reducing greenhouse gas emissions to prevent or minimize the severity of climate change. This involves transitioning to cleaner and renewable energy sources, improving energy efficiency, promoting sustainable land-use practices, and adopting greener transportation options.
/ask Assume that a given country has the following population data. Total midyear population is 90,000,000; male population is 45%; total live birth is 3%; total death is 2%; infant mortality rate is 1%; adult population is 70% and life birth in age group 25-29 is 150,000 and women population in age group 25-29 is 800,000. Based on this data answer the given question.Find crude birth rate (CBR)?Find crude death rate (CDR)?Find sex ratio?Find ADR (Young and Old dependent)?Find IMR?Age specific fertility ratio (ASFR) in age group 25-29?Find natural increase rate (NI
The number of live births per 1,000 people in a population of 2.7 is known as the crude birth rate. The number of fatalities per 1,000 people in a particular year is the crude mortality rate.
Given
Crude Birth Rate (CBR): Total live births / Total midyear population) x 1,000
CBR =(3% of 90,000,000) / 90,000,000) x 1,000
CBR = (0.03 x 90,000,000) / 90,000,000) x 1,000
CBR = 2.7
Crude Death Rate (CDR): (Total deaths / Total midyear population) x 1,000
CDR = (2% of 90,000,000) / 90,000,000) x 1,000
CDR = (0.02 x 90,000,000) / 90,000,000) x 1,000
CDR = 2.0
Sex Ratio: The sex ratio is the number of males per 100 females in a given population.
Number of males = (Male population percentage / 100) x Total midyear population
Number of males = (45% / 100) x 90,000,000
Number of males = 0.45 x 90,000,000
Number of males = 40,500,000
Sex ratio = (Number of males / Number of females) x 100
Sex ratio = (40,500,000 / (90,000,000 - 40,500,000)) x 100
Sex ratio = (40,500,000 / 49,500,000) x 100
Sex ratio = 81.82
Therefore, the sex ratio is approximately 81.82 males per 100 females.
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Explain how the illustrated landscape with negatively impact on infrastructure development on the river rejuvenation
The illustrated landscape can negatively impact infrastructure development on river rejuvenation because it is not conducive to building structures that are resilient and sustainable. It is not possible to build a strong infrastructure in a landscape that is constantly changing and unstable due to factors such as erosion, flooding, and landslides.
This can lead to the failure of infrastructure projects and wasted resources. The illustrated landscape may have steep slopes that are prone to erosion, and this can lead to sedimentation in the river. Sedimentation can affect the flow of the river, and this can lead to flooding and other problems. The sedimentation can also clog up the infrastructure such as bridges and dams, leading to the collapse of these structures.
The vegetation on the landscape can also be a problem for infrastructure development. Trees and other plants can interfere with the construction of roads and other structures. They can also cause problems such as landslides and soil erosion. Vegetation can also affect the flow of water in the river and this can lead to flooding and other problems.
Overall, the illustrated landscape can negatively impact infrastructure development on river rejuvenation due to the instability of the landscape. It is essential to develop a resilient and sustainable infrastructure that can withstand the challenges posed by the landscape. This requires careful planning, and a deep understanding of the landscape and its unique features.
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Step 1: Formulate the hypothesis/problem statement • Formulate your own hypothesis based on a problem you have identified, for example: What impact does load shedding have on Durban
Formulate the hypothesis/problem statement for "What impact does load shedding have on Durban".
It is hypothesized that Durban's citizens, companies, and general economic and social well-being are negatively impacted by the frequency and length of load shedding.
The utility company's load shedding, a managed power outage, has turned into a recurrent problem in Durban, according to the problem statement.
Investigating the consequences of load shedding on the city's people, businesses, and the general socioeconomic situation is the goal of the issue statement.
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PLEASE HELP!!!
Spring tides occur twice a month. This is when the sun and moon exert
[ Select ]
pull on ocean waters. Spring tides occur during the
[ Select ]
and
[ Select ]
phases of the moon. The gravitational pulls of the sun and moon
Spring tides occur twice a month. This is when the sun and moon exert a combined gravitational pull on ocean waters. Spring tides occur during the new moon and full moon phases of the moon. The gravitational pulls of the sun and moon combine, resulting in higher high tides and lower low tides during these periods.
What is a spring tide?A spring tide is a type of tide that occurs when the gravitational forces of the sun and the moon align and combine, resulting in particularly high high tides and low low tides.
During a spring tide, the sun, moon, and Earth are in a straight line, with the gravitational pull of both the sun and the moon reinforcing each other.
This alignment causes the ocean waters to be pulled in the same direction, leading to a greater difference between high and low tide levels.
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What is the volume, in cubic feet, of a rectangular prism with a height of 14 feet, a width of 8 feet, and a length of 2 feet?
Answer:
224 cubic feet
Explanation:
The volume V of a rectangular prism with height h=14 feet, width w=8 feet and length l=2 feet is:
[tex]V=l\times w\times h\\V=2\times 8\times 14\\V=224[/tex]
Answer:
To find the volume of a rectangular prism, we need to multiply the length, width, and height of the prism. The formula for the volume of a rectangular prism is V = lwh, where l is the length, w is the width, and h is the height. In this problem, we are given the values of l, w, and h as 2 feet, 8 feet, and 14 feet respectively. Therefore, we can plug these values into the formula and simplify. V = (2 feet)(8 feet)(14 feet) = 224 cubic feet. Hence, the volume of the rectangular prism is 224 cubic feet.
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geomorphology and it's characteristics
Geomorphology is the study of Earth's landforms and the processes that shape them, including their diversity, process-based approach, temporal changes, interdisciplinary nature, spatial analysis, and human interactions.
Geomorphology is the study of Earth's landforms, their formation, and the processes that shape them. It encompasses the investigation of various features such as mountains, valleys, plains, rivers, and glaciers. The characteristics of geomorphology include:
1. Landform diversity: Geomorphology examines the wide range of landforms found on Earth's surface, resulting from geological processes like tectonic activity, erosion, and deposition.
2. Process-based approach: It focuses on understanding the processes that shape landforms, such as weathering, erosion, mass movement, and glacial, and coastal processes.
3. Time and change: Geomorphology recognizes that landforms are not static but evolve and change over time due to external forces, internal processes, and long-term geological cycles.
4. Interdisciplinary nature: Geomorphology integrates principles from geology, geography, hydrology, climatology, and other fields to comprehensively analyze and explain landform development.
5. Spatial analysis: Geomorphologists employ various techniques, including remote sensing, GIS (Geographic Information System), and field observations, to analyze landforms across different scales and spatial patterns.
6. Human interactions: Geomorphology acknowledges the influence of human activities on landforms, including anthropogenic processes like urbanization, deforestation, and land use changes.
By studying these characteristics, geomorphologists gain insights into Earth's dynamic landscapes and contribute to fields such as land management, environmental planning, and hazard assessment.
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data collection of water management in Limpopo
Data collection of water management in Limpopo Water management involves processes used to manage water resources in the region. It is an essential component in the management of water resources that needs to be handled carefully to conserve water resources.
Data collection is an essential component in the management of water resources in Limpopo. In this region, water management includes capturing and storing of water, treatment of water, and its distribution to users. Collection of data on water management involves monitoring and evaluation of the process used in water management.The government of Limpopo has put measures in place to ensure data collection on water management is carried out regularly.
This involves conducting water quality tests on the available water resources such as rivers, streams, and underground water sources. The data collected from the tests is used to determine the water quality, and measures are put in place to ensure that water is treated and distributed to users effectively
.The data collected on water management in Limpopo is used to monitor the quantity of water available, and the measures put in place to manage it. The data is also used to identify the challenges faced in water management and how best to address them. It is used to provide information on the effectiveness of the measures put in place to conserve water resources. In conclusion, data collection is an essential component in water management in Limpopo, and it is necessary to ensure that water resources are conserved for future generations.
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