100 degrees Celsius corresponds to the boiling point of water, when water molecules have the highest average kinetic energy in the liquid state before transitioning to gas. At this temperature, the water molecules are moving the fastest, resulting in the largest average kinetic energy among temperatures below the boiling point.
The gaseous state of matter typically has the largest amount of kinetic energy because gas particles move around freely and at high speeds. This movement results in a significant amount of kinetic energy in gases.
Cylinder C contains the largest mass of oxygen as it is at the highest temperature, which means the oxygen molecules have higher average kinetic energy and will have a higher mass. Temperature is directly proportional to the average kinetic energy of gas molecules, so the cylinder at 260 K will have the most massive oxygen molecules.
The kinetic energy of an object is given by the formula KE = 0.5 * m * v^2, where m is the mass and v is the velocity of the object. Since all three are traveling at the same velocity, the object with the largest mass (the dump truck) will have the highest kinetic energy, followed by the sports car, and then the bicycle.
The skin is the body's largest organ and typically the heaviest part of an average adult's body.
perpendicular to the magnetic field direction
The average surface temperature on Charon, which is the largest moon of Pluto, is around -220 degrees Celsius (-364 degrees Fahrenheit). This frigid temperature is due to its distance from the Sun and its lack of a substantial atmosphere to trap heat.
The temperature on Titan is -179.5 degrees Celsius. Titan is the largest moon of Saturn.
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Ganymede, the largest moon of Jupiter, has an average surface temperature of about -171 degrees Celsius (-276 degrees Fahrenheit). This extreme cold is due to its distance from the Sun and lack of a substantial atmosphere to help retain heat.
Charon, Pluto's largest moon, has an average surface temperature of around minus 220 degrees Celsius (minus 364 degrees Fahrenheit). It is extremely cold due to its distance from the Sun and its thin atmosphere that cannot retain heat well.
All planets have very different temperatures at the surface. Mercury's Maximum Temperature 465°C (870°F) Mercury's Minimum Temperature -184°C (-300°F) Venus' Average Temperature 449°C (850°F) Earth's Average Temperature 7.2°C (45°F) Mars's Maximum Temperature 36°C (98°F) Mars's Minimum Temperature -123°C (-190°F) Jupiter's Average Temperature -153°C (-244°F) Saturn's Average Temperature -184°C (-300°F) Uranus' Maximum Temperature -184°C (-300°F) Neptune's Average Temperature -223°C (-370°F)
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The gaseous state of matter typically has the largest amount of kinetic energy because gas particles move around freely and at high speeds. This movement results in a significant amount of kinetic energy in gases.
The largest and coldest satellite in our solar system is Saturn's moon Titan. It has a thick atmosphere primarily composed of nitrogen and is known for its icy surface, with temperatures dropping as low as -290 degrees Fahrenheit (-179 degrees Celsius).
Approximately 73.2 grams of copper sulphate can be dissolved in 50 grams of water at 60 degrees Celsius. This is the maximum amount of copper sulphate that the water can hold in a saturated solution at that temperature.
A change of one unit in Kelvin or Celsius (which are the same) is larger.
It depends on if the reef is tropical or not. Most coral reefs are located in tropical and sub-tropical regions, as corals cannot grow in temperatures lower than about 18 degrees Celsius (64 degrees Fahrenheit). Corals found in cold water such as the Baltic Sea are geological, rather than biological in origin. Similarly, if sea surface temperatures are too high, the coral cannot survive. 31 degrees Celsius (87 degrees F) appears to be about the maximum in which coral can survive without suffering from bleaching. The world's largest coral reef, the Great Barrier Reef, varies between 22 degrees Celsius and 28 degrees Celsius (71 to 82 degrees Fahrenheit), depending on the season and on how far north, or closer to the equatorial zone, one travels.