1. Temperature is a fundamental physical property indicating the thermal state of a substance, reflecting the intensity of heat present. It measures the average kinetic energy of particles within a material, where higher temperatures mean particles are more energetic and move faster, and lower temperatRead more

    Temperature is a fundamental physical property indicating the thermal state of a substance, reflecting the intensity of heat present. It measures the average kinetic energy of particles within a material, where higher temperatures mean particles are more energetic and move faster, and lower temperatures indicate slower particle motion. Temperature influences phase changes, reaction rates, and energy transfer. It’s measured using scales like Celsius, Fahrenheit, or Kelvin, utilizing devices like thermometers and infrared sensors.

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  2. Temperature is commonly measured using three primary units: Celsius (°C), Fahrenheit (°F), and Kelvin (K). The Celsius scale is prevalent in most countries, with 0°C as water's freezing point and 100°C as its boiling point. Fahrenheit, mainly used in the United States, sets water's freezing and boilRead more

    Temperature is commonly measured using three primary units: Celsius (°C), Fahrenheit (°F), and Kelvin (K). The Celsius scale is prevalent in most countries, with 0°C as water’s freezing point and 100°C as its boiling point. Fahrenheit, mainly used in the United States, sets water’s freezing and boiling points at 32°F and 212°F, respectively. The Kelvin scale, used in scientific research, begins at absolute zero (0 K), the point where all molecular motion theoretically ceases.

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  3. Temperature is measured using various devices, including liquid-in-glass thermometers, digital thermometers, and infrared sensors. Liquid-in-glass thermometers rely on the expansion of liquids such as mercury or alcohol to indicate temperature on a calibrated scale. Digital thermometers use electronRead more

    Temperature is measured using various devices, including liquid-in-glass thermometers, digital thermometers, and infrared sensors. Liquid-in-glass thermometers rely on the expansion of liquids such as mercury or alcohol to indicate temperature on a calibrated scale. Digital thermometers use electronic sensors, such as thermistors or thermocouples, to detect and display temperature electronically. Infrared thermometers gauge the thermal radiation emitted by objects, enabling contactless temperature measurement, useful in situations where direct contact is impractical or unsafe.

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  4. The Celsius scale, developed by Swedish astronomer Anders Celsius, is a temperature scale used globally, except in the United States. It defines the freezing point of water as 0°C and the boiling point as 100°C under standard atmospheric pressure. This scale is linear, meaning each degree representsRead more

    The Celsius scale, developed by Swedish astronomer Anders Celsius, is a temperature scale used globally, except in the United States. It defines the freezing point of water as 0°C and the boiling point as 100°C under standard atmospheric pressure. This scale is linear, meaning each degree represents the same temperature difference. The Celsius scale is essential in scientific research, education, and everyday applications, providing a straightforward and consistent method for measuring temperature across diverse environments.

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  5. The Fahrenheit scale, created by Daniel Gabriel Fahrenheit in the 18th century, measures temperature with water freezing at 32°F and boiling at 212°F under standard atmospheric pressure. This scale is primarily used in the United States and a few Caribbean nations. It offers finer temperature gradatRead more

    The Fahrenheit scale, created by Daniel Gabriel Fahrenheit in the 18th century, measures temperature with water freezing at 32°F and boiling at 212°F under standard atmospheric pressure. This scale is primarily used in the United States and a few Caribbean nations. It offers finer temperature gradations, making it useful for everyday applications like weather forecasting and cooking. Although the Fahrenheit scale is less commonly used in scientific contexts, it remains integral to daily life in these regions.

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