Which of the following statements regarding the White Light Active Reg...
- Context: The 125th anniversary of Kodaikanal Solar Observatory (KSO) was celebrated recently on April 1, 2024, by the Indian Institute of Astrophysics (IIA)
- Instruments at KoSO:
- Initially focused on sunspots, prominences, and solar radiation. Advanced instruments include the H-alpha telescope and the White Light Active Region Monitor (WARM)
- Option A is incorrect because the White Light Active Region Monitor (WARM) is not used for studying cosmic microwave background radiation; instead, it is focused on solar observations.
- Option B is incorrect because WARM does not utilize ultraviolet light for monitoring solar activity. Instead, it primarily relies on white light observations.
- Option C is incorrect because WARM is not a space-based telescope for observing distant galaxies. Its focus is on studying solar active regions.
- Option D is the correct answer because it accurately describes the purpose and function of the White Light Active Region Monitor (WARM). WARM is specifically deployed to track and study solar active regions using white light observations, providing valuable insights into solar activity and phenomena such as sunspots and solar flares.
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Which of the following statements regarding the White Light Active Reg...
Overview of WARM:
The White Light Active Region Monitor (WARM) is a scientific instrument used for tracking and studying solar active regions. It is specifically designed to observe the Sun using white light observations.
Functionality of WARM:
WARM is deployed to monitor solar activity by capturing images of the Sun in white light. By observing sunspots, flares, and other phenomena in white light, researchers can study the dynamics and evolution of solar active regions.
Importance of WARM:
Studying solar active regions is crucial for understanding solar behavior and its impact on space weather. Solar flares and eruptions from active regions can affect communication systems, satellites, and power grids on Earth.
Applications of WARM:
WARM's observations provide valuable data for researchers studying solar physics, space weather, and solar-terrestrial interactions. By monitoring changes in active regions over time, scientists can improve their understanding of solar processes and their effects on Earth.
Conclusion:
In conclusion, the White Light Active Region Monitor (WARM) plays a significant role in tracking and studying solar active regions using white light observations. Its contributions to solar research are invaluable for advancing our knowledge of the Sun and its influence on our planet.