
Используя карту учебника распределите перечисленные города в порядке возрастания количества
суммарной солнечной радиации которые они получают:Мурманск, Санкт-Петербург, Москва, Нижний Новгород, Омск, Новосибирск, Якутск, Владивосток. ВЫЯВИТЕ ЗАКОНОМЕРНОСТЬ В ИЗМЕНЕНИИ ПОКАЗАТЕЛЯ. КАКИМИ ПРИЧИНАМИ ЕЕ МОЖНО ОБЪЯСНИТЬ? Помогите пж 

Ответы на вопрос

Ответ:
Владивосток, Москва, Санкт- Петербург, Нижний Новгород, Омск, Новосибирск, Мурманск, Якутск.
Объяснение:
Мне кажется, что так.



Cities and Solar Radiation:
To determine the order of the listed cities based on the amount of solar radiation they receive, we can refer to a solar radiation map or data. Unfortunately, as an AI language model, I don't have access to real-time data or the ability to view maps. However, I can provide some general information about the cities and factors that can influence their solar radiation levels.
Factors Affecting Solar Radiation:
The amount of solar radiation a city receives can be influenced by several factors, including latitude, altitude, climate, and geographical location. Here are some key points to consider:
1. Latitude: Cities closer to the equator generally receive more solar radiation compared to those located farther away. This is because the sun's rays strike the Earth more directly near the equator, resulting in higher solar radiation levels.
2. Altitude: Higher altitude locations tend to receive more solar radiation due to reduced atmospheric interference. As altitude increases, the atmosphere becomes thinner, allowing more sunlight to reach the surface.
3. Climate: Cloud cover and atmospheric conditions can affect the amount of solar radiation reaching the surface. Cloudy or overcast conditions can reduce solar radiation levels, while clear skies allow for more direct sunlight.
4. Geographical Location: The geographical features surrounding a city, such as nearby mountains or bodies of water, can also influence solar radiation levels. Mountains can cast shadows and block sunlight, while bodies of water can reflect sunlight, increasing the overall solar radiation.
Conclusion:
Based on the factors mentioned above, it is difficult to determine the exact order of the listed cities in terms of solar radiation without access to specific data or a solar radiation map. However, we can make some general assumptions:
1. Cities located closer to the equator, such as Vladivostok and Yakutsk, may receive relatively higher solar radiation due to their lower latitudes. 2. Cities at higher altitudes, such as Omsk and Novosibirsk, may also receive higher solar radiation levels compared to cities at lower altitudes. 3. Cities located in regions with less cloud cover and clearer skies, such as Moscow and Nizhny Novgorod, may experience higher solar radiation levels compared to cities with more frequent cloud cover.
Please note that these assumptions are based on general knowledge about solar radiation and may not accurately reflect the actual order of the cities mentioned. For precise information, it is recommended to refer to specific solar radiation data or consult a solar energy expert.


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