Aspen Leaves, Telluride, Colorado, photo Nature's colorful masterpiece - behold the breathtaking Aspen leaves in Telluride, Colorado.
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Aspen Leaves, Telluride, Colorado, photo Nature's colorful masterpiece - behold the breathtaking Aspen leaves in Telluride, Colorado.
Golden Aspens As Seen From Aspen Peak View from Aspen Peak, high above Santa Fe at the top near the upper end of the chair lift at Santa Fe Ski. #AspenPeak #SantaFeSki #AutumnAspen #AspenAutumn #HighAboveSantaFe #11250Feet #NewMexicoTrue #NewMexico #LandOfEnchantment #SantaFeNM https://www.instagram.com/p/CGMrCOJFDIl/?igshid=1n71lx0kec5dk
Part of the mountain as viewed from Aspen Peak at Santa Fe Ski. #Mountainside #AspenPeak #SantaFeSki #AspenAutumn #AutumnAspen #SantaFe #NewMexico #LandOfEnchantment https://www.instagram.com/p/B3f9fscAj8W/?igshid=1n9i9p7fnxrmz
View from Aspen Peak, high above Santa Fe at the top near the upper end of the chair lift at Santa Fe Ski. #AspenPeak #SantaFeSki #AutumnAspen #AspenAutumn #HighAboveSantaFe #11250Feet https://www.instagram.com/p/B3f8_hrg31n/?igshid=19boopfmtastp
Aspens alongside the Santa Fe Ski chair lift. “Aspen trees are all native to cold regions with cool summers, in the north of the Northern Hemisphere, extending south at high-altitude areas such as mountains or high plains. They are all medium-sized deciduous trees reaching 15–30 m (49–98 ft) tall. In North America, it is referred to as Quaking Aspen or Trembling Aspen because the leaves "quake" or tremble in the wind. This is due to their flattened petioles which reduces aerodynamic drag on the trunk and branches. Aspens typically grow in environments that are otherwise dominated by coniferous tree species, and which are often lacking other large deciduous tree species. Aspens have evolved several adaptations that aid their survival in such environments. One is the flattened leaf petiole, which reduces aerodynamic drag during high winds and decreases the likelihood of trunk or branch damage. Dropping leaves in the winter (like most but not all other deciduous plants) also helps to prevent damage from heavy winter snow. Additionally, the bark is photosynthetic, meaning that growth is still possible after the leaves have been dropped. The bark also contains lenticels that serve as pores for gas exchange (similar to the stomata on leaves). Aspens are also aided by the rhizomatic nature of their root systems. Most aspens grow in large clonal colonies, derived from a single seedling, and spread by means of root suckers; new stems in the colony may appear at up to 30–40 m (98–131 ft) from the parent tree. Each individual tree can live for 40–150 years above ground, but the root system of the colony is long-lived. In some cases, this is for thousands of years, sending up new trunks as the older trunks die off above ground. For this reason, it is considered to be an indicator of ancient woodlands. One such colony in Utah, given the nickname of "Pando", is estimated to be 80,000 years old,[3] making it possibly the oldest living colony of aspens. Some aspen colonies become very large with time, spreading about 1 m (3.3 ft) per year, eventually covering many hectares. #Aspens #SantaFe #SantaFeSki #Autumn #AspenAutumn https://www.instagram.com/p/B3f8AQ4ANAl/?igshid=zb6ch3mqb5u6