jupiter
23.5 N
When a plant receives more light energy than its compensation point, it will undergo photosynthesis at a higher rate, leading to increased growth and productivity. However, if the intensity of light exceeds the plant's capacity to use it for photosynthesis, excess energy can cause damage to the plant's cells through processes like photoinhibition or oxidative stress.
The Sun emits significantly more energy than the Earth. The Sun is a star that releases vast amounts of energy through nuclear fusion reactions in its core, while the Earth mainly receives energy from the Sun in the form of sunlight.
The Sun emits significantly more energy than Jupiter. Jupiter is a gas giant planet and does not generate its own energy like the Sun does. The Sun's energy output is the result of nuclear fusion reactions occurring in its core, while Jupiter primarily radiates the energy it receives from the Sun.
Jupiter radiates about 1.6 times more energy than it receives from the Sun. This excess heat is leftover from Jupiter's formation and helps to sustain its atmosphere and powerful weather systems.
It is Jupiter
Yes, Uranus does give off more energy than it receives from the Sun. This excess energy is thought to come from the planet's internal heat leftover from its formation and possibly some ongoing processes like convection in its mantle.
Neptune
They don't. The equator receives more solar energy per area unit than the poles do.
no, Earth gets more energy than it gives off
Neptune is a deep blue gas planet that emits more energy than it receives from the Sun. This excess energy is thought to be generated from the planet's internal heat sources, such as leftover heat from its formation and gravitational energy from its moons.
23.5 N
Yes, an object emitting more radiation than it receives from its surroundings will undergo radiational cooling, as it is losing more energy than it is gaining. This will cause the object's temperature to decrease until it reaches thermal equilibrium with its surroundings.
its is murceryneptune
The light at the equator hits the earth perpendicular to the surface to the earth. The further you are from the equator, the light comes in at an angle closer and closer to parallel. The closer to parallel the light comes in at, the more of it is reflected, so it receives less energy than the perpendicular light at the equator.
When a plant receives more light energy than its compensation point, it will undergo photosynthesis at a higher rate, leading to increased growth and productivity. However, if the intensity of light exceeds the plant's capacity to use it for photosynthesis, excess energy can cause damage to the plant's cells through processes like photoinhibition or oxidative stress.
The Sun emits significantly more energy than the Earth. The Sun is a star that releases vast amounts of energy through nuclear fusion reactions in its core, while the Earth mainly receives energy from the Sun in the form of sunlight.