They cannot be the same size. The red star must be larger. Red stars are cooler that blue stars and so radiate less energy for a given amount of surface area. In order to radiate the same amount of energy as a blue star, the red star must therefore have a larger surface area.
The process required to allow a gravitationally-collapsing gas cloud to continue collapsing is radiative cooling. Radiative cooling removes thermal energy from the gas cloud, facilitating further collapse under the influence of gravity.
When a cloud is white that means it will be sunny and it must rain.
Primary and secondary consumers cannot harvest energy from the sun. These consumers must eat producers to gain the sun's energy indirectly.
The second largest planet in our solar system is Saturn, after Jupiter. In the entire universe, there may be planets larger than Jupiter, but due to current technological limitations, we have not yet detected any such planets beyond our solar system.
Alright, it is mainly the force of gravity. This is because if there was no gravity, you do not heat energy to fire the rocket up.
They're hotter than the background (about 5 degrees Kelvin) , they must radiate.
White uses the most energy to display. This is because most monitors use the RGB pixel (Red Green Blue). To display the color white, the monitor must turn on all three pixels, thus consuming the most energy.
To move an electron from the ground state to an excited state, it requires an input of energy. It should be equal to the energy difference between the two levels. This energy comes from collision with other molecules and atoms.
The process required to allow a gravitationally-collapsing gas cloud to continue collapsing is radiative cooling. Radiative cooling removes thermal energy from the gas cloud, facilitating further collapse under the influence of gravity.
There is only one number and so it, 0.4, must be the largest.
Let's start with a basic concept. The color of light is determined by its frequency. And higher frequency light has more energy than lower frequency light. As regards electrons shifting energy levels, when an electron wants to move to a lower energy level, it must radiate energy to do this. And the energy it radiates will be exactly the "right amount" for that electron to go to that lower energy leve. The greater the difference in the starting and finishing energy levels, the more energy the electron will have to radiate away. And this will determine what the energy of the photon will have to be. It will determine its frequency, and, therefore, its color.
When you have kinetic energy, you must have a mass and a velocity since kinetic energy is half the product of the mass and the square of the velocity.
(When you indicate 'white' one must assume the D colour. There may be larger stones in the world, but this is the largest graded with a D colour.) Apparently, it is the DeBeers Centenary Diamond, described as weighing in at 273.85 carats (54.77 g). It is a D colour stone, and is internally and externally flawless. Read more, below.
if we reach the speed of light our mass start converting into energy according to the mass energy relation when a particle accelerated it must radiate energy. and therefore the mass convert into energy as the velocity increase . relative mass (at velocity =v)=mass/1-v(power2)/c(power2) relative mass is present mass of object at tht velocity. then mass at (rest present mass )c (power2) why it is impossible for a particle too have a speed of light
If the dog is living and all living things use energy, then the dog must use energy. They must continually replenish the energy that they spend through the consumption of food.
If the dog is living and all living things use energy, then the dog must use energy. They must continually replenish the energy that they spend through the consumption of food.
you MUST BE WHITE