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Kazakhstan, Kyrgyzstan, Tajikistan, Turkmenistan, Uzbekistan, Austria, Germany, Hungary, Liechtenstein, Poland, Slovakia, Switzerland, The Czech Republic, Chad, Central African Republic, Cameroon, Equatorial Guinea, Gabon, The Republic of Congo , The Democratic Republic of the Congo, The Democratic Republic of Sao Tome and Principe, Belize, Costa Rica, Guatemala, Honduras, Nicaragua, Panama, Salvador, China, Hong Kong-China, Japan, Mongolia, Macao-China, North Korea, South Korea, Taiwan-China, Belarus, Estonia, Kosovo, Latvia, Lithuania, Moldova, Russia, Ukraine, Burundi, Djibouti, Ethiopia, Eritrea, Kenya, Mayotte, Mauritius, Rwanda, Reunion, Somalia, Seychelles, South Sudan, Tanzania, Uganda, Aland Islands, Bonaire,SaintEustatiusAndSaba, Denmark, Finland, Faroe Islands, Iceland, Norway, Sweden, Algeria, Egypt, Libya, Morocco, Sudan, Tunisia, Antigua and Barbuda, Anguilla, Aruba, Bahamas, Barbados, Bermuda, Canada, Cuba, Commonwealth of Dominica, Cayman Islands, Dominican, Grenada, Greenland, Guadeloupe, Haiti, Jamaica, Jersey, Mexico, Martinique, Montserrat, Puerto Rico, Saint Kitts and Nevis, Saint Lucia, Saint Vincent and the Grenadines, Saint Pierre And Miquelon, Sint Maarten, Trinidad and Tobago, United States, United States Minor Outlying Islands, U.S.Virgin Islands, Australia, American Samoa, Cocos Islands, Fiji, French Polynesia, Guam, Kiribati, Micronesia, Marshall Islands, New Zealand, Nauru, Niue, Northern Mariana Islands, New Caledonia, Papua New Guinea, Palau, Solomon Islands, Samoa, Tuvalu, Tonga, The Cook Islands, Tokelau, Vanuatu, Wallis And Futuna, Brunei, Cambodia, East Timor, Indonesia, Laos, Myanmar, Malaysia, Philippines, Singapore, Thailand, Vietnam, Bhutan, Bangladesh, India, Maldives, Nepal, Pakistan, Sri Lanka, Andorra, Albania, Bulgaria, Bosnia and Herzegovina, Croatia, French Southern Territories, Greece, Italy, Malta, Macedonia, Montenegro, Portugal, Romania, Spain, San Marino, Slovenia, Serbia, Vatican, Angola, Botswana, Comoros, Lesotho, Malawi, Mozambique, Madagascar, Namibia, South Africa, Swaziland, Saint Helena, Zambia, Zimbabwe, Argentina, Brazil, Colombia, Chile, Curacao, Ecuador, Falkland Islands, French Guiana, Guyana, Llívia, Peru, Paraguay, Suriname, Uruguay, Venezuela, Azerbaijan, Armenia, Afghanistan, Bahrain, Cyprus, Georgia, Iran, Iraq, Israel, Jordan, Kuwait, Lebanon, Oman, Qatar, Syria, State of Palestine, Saudi Arabia, Turkey, United Arab Emirates, Yemen, Belgium, France, Guernsey, Ireland, Isle Of Man, Luxembourg, Monaco, Netherlands, United Kingdom, Burkina Faso, Benin, Cape Verde, Côte d'Ivoire, Gambia, Guinea, Guinea-Bissau, Ghana, Liberia, Mauritania, Mali, Niger, Nigeria, Senegal, Sierra Leone, Togo, Western SaharaHigh - energy Conversion
One of the most important features of solar panels is their ability to efficiently convert solar energy into electrical energy. The conversion efficiency of monocrystalline silicon solar panels is relatively high. Currently, the conversion efficiency of monocrystalline silicon cells in the laboratory can reach about 26%, and the conversion efficiency of mass - produced monocrystalline silicon cells can also reach 20 - 24%. This means that under the same lighting conditions, they can generate more electrical energy than some other solar panels with lower conversion efficiencies. For example, in a sunny environment, an efficient monocrystalline silicon solar panel can make fuller use of sunlight and provide more available electricity for households or industrial facilities.
Good Stability
High - quality solar panels exhibit good stability in performance. They can work continuously and stably under different environmental conditions (such as temperature changes, changes in light intensity, etc.). Generally speaking, within the normal service life, the attenuation rate of their power - generation efficiency is relatively slow. Taking crystalline silicon solar cells as an example, during a 25 - year service life, the power attenuation can generally be controlled within 20%. This stability enables solar panels to be used as a reliable long - term energy supply solution. For example, when applied to the power supply system of communication base stations in remote areas, it can ensure that the base stations can stably obtain electricity during years of operation.
Long Service Life
Solar panels usually have a long service life. Under normal circumstances, qualified solar panels can be used for about 25 - 30 years. This is because the chemical properties of silicon, the main material, are relatively stable and can resist the erosion of various chemical substances and physical damage in the long - term outdoor environment. For example, the solar panels installed on the roof can still work normally after years of being exposed to wind, rain, and sunlight, providing electricity for households.
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