1. Dr. Anna Mani, often referred to as the "Weather Woman of India," was a pioneering meteorologist and physicist. She made significant contributions to the field of meteorology, particularly in developing weather instruments and forecasting techniques. Her work helped improve India's weather observatiRead more

    Dr. Anna Mani, often referred to as the “Weather Woman of India,” was a pioneering meteorologist and physicist. She made significant contributions to the field of meteorology, particularly in developing weather instruments and forecasting techniques. Her work helped improve India’s weather observation and forecasting capabilities. Anna Mani’s dedication and expertise laid the foundation for advancements in meteorological science in the country. Her legacy continues to inspire future generations in the fields of science and technology, particularly women in STEM.

    For more CBSE Class 6 Science Curiosity Chapter 7 Temperature and its Measurement Extra Questions & Answer:

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  2. No, maximum and minimum temperatures do not remain constant during these days. They fluctuate daily due to several influencing factors, such as changes in weather patterns, geographical location, and time of day. Typically, maximum temperatures occur in the afternoon, while minimum temperatures areRead more

    No, maximum and minimum temperatures do not remain constant during these days. They fluctuate daily due to several influencing factors, such as changes in weather patterns, geographical location, and time of day. Typically, maximum temperatures occur in the afternoon, while minimum temperatures are recorded during the early morning. Seasonal variations also play a role, as different times of year can significantly affect temperature ranges. Understanding these fluctuations is crucial for accurate weather forecasting and planning daily activities accordingly.

    For more CBSE Class 6 Science Curiosity Chapter 7 Temperature and its Measurement Extra Questions & Answer:

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  3. The differences in the recorded temperatures can be attributed to several factors. Measurement inaccuracies might occur due to improper use of thermometers or differences in calibration. Environmental conditions, such as air pressure and surrounding temperature, can also affect boiling point readingRead more

    The differences in the recorded temperatures can be attributed to several factors. Measurement inaccuracies might occur due to improper use of thermometers or differences in calibration. Environmental conditions, such as air pressure and surrounding temperature, can also affect boiling point readings. Additionally, variations in timing—how long each student left their thermometer in the boiling water—could influence the accuracy of their measurements. Furthermore, factors like thermometer placement and water agitation can cause slight variations. These elements illustrate the importance of consistency and precision in experimental setups, as small changes can lead to noticeable differences in scientific measurements.

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  4. The temperatures recorded by the students range from 97.8°C (Phiban) to 98.1°C (Bandarisha), with Shemphang and Kloi both at 98.0°C and Onestar at 97.9°C. This shows a close clustering around the expected boiling point of water, which is typically 100°C at sea level. Phiban's lower reading indicatesRead more

    The temperatures recorded by the students range from 97.8°C (Phiban) to 98.1°C (Bandarisha), with Shemphang and Kloi both at 98.0°C and Onestar at 97.9°C. This shows a close clustering around the expected boiling point of water, which is typically 100°C at sea level. Phiban’s lower reading indicates a potential error, while the others are relatively consistent. These minor differences suggest variability in measurement accuracy, though they are generally in line with expected results. Such small discrepancies highlight the importance of precise techniques in scientific experiments, especially when measuring temperature.

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  5. Ice generally has a temperature of 0°C (32°F) at the melting point, where it transitions from solid to liquid. In contrast, boiling water reaches a temperature of 100°C (212°F) at sea level, where it changes from liquid to gas. These temperatures are critical reference points in thermodynamics and pRead more

    Ice generally has a temperature of 0°C (32°F) at the melting point, where it transitions from solid to liquid. In contrast, boiling water reaches a temperature of 100°C (212°F) at sea level, where it changes from liquid to gas. These temperatures are critical reference points in thermodynamics and play significant roles in various scientific experiments and applications. Understanding these values helps in studying phase changes, energy transfer, and the behavior of materials under different thermal conditions.

    For more CBSE Class 6 Science Curiosity Chapter 7 Temperature and its Measurement Extra Questions & Answer:

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