Earth loses heat energy to outer space mainly by radiation.
Roughly 70% of the solar energy that reaches the outer atmosphere is absorbed by the Earth's surface. The remaining percentage is reflected back into space by clouds, aerosols, and the Earth's surface.
The layer you are referring to is the outer core of the Earth. It is composed mainly of liquid iron and nickel due to intense heat and pressure. The movement of this liquid outer core is responsible for generating the Earth's magnetic field.
The smallest sphere of the Earth is its inner core, which is a solid ball composed mainly of iron and nickel. It is approximately 1,220 kilometers in radius and is surrounded by the outer core, mantle, and crust.
Emeralds are not naturally found in outer space. They are a gemstone that is formed under specific geological conditions on Earth, such as in metamorphic rocks. While there may be some synthetic emeralds created in labs on Earth, natural emeralds would not occur in the vacuum of outer space.
The outer core lies approximately 2,890 to 5,150 kilometers beneath the Earth's surface. It is composed mainly of liquid iron and nickel, which produce the Earth's magnetic field through convective movements.
Radiation is the primary method by which Earth loses energy to outer space. Specifically, the Earth emits longwave infrared radiation into space, which carries away excess heat and helps maintain the planet's energy balance.
When sodium loses that electron, it becomes the sodium ion, Na+
It becomes a positive ion
It becomes a positive ion.
When a magnesium atom loses an electron from its outer energy shell, it forms a positively charged magnesium ion (Mg2+). This ion has a stable electron configuration by achieving a full outer energy level, which is characteristic of noble gases. Magnesium usually loses its two outermost electrons to form this stable ion.
When a sodium atom loses an electron in its outer energy shell, it forms a positively charged sodium ion, typically written as Na+. This makes the sodium ion more stable, as it achieves a full outer energy level and it is more likely to bond with other atoms to form compounds.
it becomes a positive ion. apex
depends. Moving from an inner level to an outer level, the e- absorbs energy. Moving from an outer level to an inner level, the e- loses energy.
The Earths Core, consists mainly of Iron and Nickel.
it becomes a positive ionit becomes a positive ion
It is mainly solid and is located between the outer crust and core.
The outer core is a layer of the Earth located between the mantle and the inner core. It is composed mainly of liquid iron and nickel, which generates the Earth's magnetic field through convective motion.