No. Gravity is a characteristic property of space and mass that exists
whether or not there is any electromagnetic radiation in the neighborhood.
Its cause is unknown.
Is the process by which the atomic nucleus becomes slightly smaller, as a result of the emission of particles, electromagnetic radiation, or both. ELECTROMAGNETIC FORCE is the right answer
Luminescence is the emission of light from a substance not caused by heat. It can be generated through various processes such as fluorescence, phosphorescence, chemiluminescence, or bioluminescence. These processes involve the absorption of energy and subsequent re-emission of light by the substance.
electromagnetic pulse is one of the effects caused by
Heat is the chaotic vibrations of molecules caused by absorption and emission of infrared radiation. Also, if a particle absorbs any wavelength of light then it can transfer some of the energy of the absorption into kinetic energy which generates infrared radation; which we perceive as heat.
Fraunhofer lines in the Sun's electromagnetic spectrum are caused by the absorption of specific wavelengths of light by elements in the Sun's atmosphere. These elements absorb light at certain frequencies, creating dark lines in the spectrum that help scientists identify the composition of the Sun.
An acoustic emission is a physical vibration caused by sudden movement within a material subjected to physical stress.
Earth's tides are caused by the Moon's gravity (in combination with the Sun's).
No!!
Tides on Earth are caused by the gravity of the moon and, to a lesser degree, the sun.
Gravity
The pulling force caused by gravity is called weight. Weight is the measure of the force of gravity acting on an object mass.
Curved motion is typically caused by the presence of a force that is not aligned with the direction of motion. This force can be due to factors such as gravity, electromagnetic forces, or friction. The object experiencing the curved motion will deviate from a straight path and follow a curved trajectory as a result of the applied force.