Kirjojen hintavertailu – 12 903 725 kirjaa ja 27 kauppaa

Kirjailija

Ke Wang

Kirjat ja teokset yhdessä paikassa: 4 kirjaa, julkaisuja vuosilta 2014–2023, suosituimpiin kuuluu The Earliest Stages of Massive Clustered Star Formation: Fragmentation of Infrared Dark Clouds. Vertaile teosten hintoja ja tarkista saatavuus suomalaisista kirjakaupoista.

4 kirjaa

Kirjojen julkaisuvuodet: 2014–2023.

All Shoes Come in Twos

All Shoes Come in Twos

Sulan Tang; Ke Wang

Starfish Bay Children's Books
2019
sidottu
All shoes come in twos, but one red shoe becomes separated from its pair. This shoe dearly misses the other shoe and feels so lonely and afraid. When the red shoe meets a greedy, solitary mouse, who has grown used to living alone and has never experienced loneliness, the shoe has an idea Can this mouse help the red shoe find his friend? Along the way, the usually independent mouse comes to understand the feeling that is loneliness.
The Earliest Stages of Massive Clustered Star Formation: Fragmentation of Infrared Dark Clouds
This thesis presents an in-depth, high-resolution observational study on the very beginning of the formation process: the fragmentation of dense molecular clouds known as infrared dark clouds (IRDCs). Using the Submillimeter Array (SMA) and Very Large Array (VLA) radio interferometers, the author has discovered a common picture of hierarchical fragmentation that challenges some of the leading theoretical models and suggests a new, observation-driven understanding of how massive star formation in clustered environments may begin: it is initiated by the hierarchical fragmentation of a dense filament from 10 pc down to 0.01 pc, and the stellar mass buildup is simultaneously fed by hierarchical accretion at similar scales. The new scenario points out the importance of turbulence and filamentary structure, which are now receiving increasing attention and further tests from both observers and theorists.
The Earliest Stages of Massive Clustered Star Formation: Fragmentation of Infrared Dark Clouds
This thesis presents an in-depth, high-resolution observational study on the very beginning of the formation process: the fragmentation of dense molecular clouds known as infrared dark clouds (IRDCs). Using the Submillimeter Array (SMA) and Very Large Array (VLA) radio interferometers, the author has discovered a common picture of hierarchical fragmentation that challenges some of the leading theoretical models and suggests a new, observation-driven understanding of how massive star formation in clustered environments may begin: it is initiated by the hierarchical fragmentation of a dense filament from 10 pc down to 0.01 pc, and the stellar mass buildup is simultaneously fed by hierarchical accretion at similar scales. The new scenario points out the importance of turbulence and filamentary structure, which are now receiving increasing attention and further tests from both observers and theorists.