Microwaves interact with matter at the atomic level by causing the atoms and molecules to vibrate and generate heat through a process called dielectric heating. This occurs when the microwaves' electromagnetic waves match the natural frequency of the molecules, causing them to absorb the energy and increase in temperature.
Physics is the science of matter and energy and of interactions between the two, grouped in traditional fields such as acoustics, optics, mechanics, thermodynamics, and electromagnetism, as well as in modern extensions including atomic and nuclear physics, cryogenics, solid-state physics, particle physics, and plasma physics
Ancient Greeks had two major theories of matter. These were the Atomic theory of matter and the theory of pangenesis.
Enrico Fermi's motivation stemmed from a deep curiosity about the fundamental principles of physics and a desire to understand atomic and subatomic processes. He aimed to explore the nature of matter and energy, leading to groundbreaking work in quantum mechanics and nuclear physics. Fermi was also driven by practical applications, particularly in developing nuclear reactors and advancing the understanding of radioactivity, which had significant implications for both energy production and warfare. His pioneering spirit and commitment to scientific inquiry greatly influenced modern physics.
Classical Physics is the physics which was taught and used before RELATIVITY and QUANTUM MECHANICS were introduced. In Classical physics, masses remain constant when they accelerate and clocks tick in unison wherever they are and at all velocities. But this is not true, especially at very high speeds. Relativity is more accurate and is necessary for the speeds that satellites travel at. Classical mechanics cannot explain the dynamics of sub-atomic particles or how light and other kinds of radiation interact with matter. It is necessary, in explaining the structure of atoms and the nuclear processes, to use Quantum Mechanics which "quantises" energy. For example, if one particle is to pass energy to another particle, it can only be done if an exact amount of energy is available. This amount is a "quantum" and the size of a quantum depends on the wavelength of the radiated energy. Nobody knows why. We understand the laws of Classical Physics - they seem logical. Nobody understands relativity or quantum mechanics. However, the laws are true and so we use them and get the right answers. Why the laws of Modern Physics are with us is beyond our understanding, simply because we are humble three dimensional beings, limited to passage through time in a direction and rate beyond our control. In Modern physics there can be many more dimensions and time may pass at variable rates in different places. That is why we can't understand Modern Physics.
It really doesn't matter what the target was in Hiroshima. Virtually everything was destroyed by the atomic bomb.
physics
"physics"
The study of how matter and energy interact is commonly known as physics.
The study of how matter and energy interact is commonly known as physics.
Microwaves interact with matter by causing molecules within the material to vibrate and generate heat through a process called dielectric heating. The microwaves excite water molecules, fats, and sugars, which leads to the generation of thermal energy that cooks the food. Materials that contain water, such as food, are most affected by microwave radiation.
The scientific study of matter and motion is called physics. Physics seeks to understand the natural world by examining the fundamental properties of matter and energy and how they interact with each other.
Physics is the branch of science that studies matter, energy, space, and time, and how they interact with each other. It tries to answer fundamental questions like: more read:
Microwaves are a type of electromagnetic radiation with wavelengths longer than infrared light but shorter than radio waves. In the field of physics, microwaves are studied for their properties and interactions with matter. They are used in various applications such as communication, cooking, and medical imaging, and play a significant role in understanding the behavior of electromagnetic waves.
the study of how energy and matter interact in the physical world
The science that studies matter and energy is called physics. Physics explores the fundamental principles governing the behavior of the physical world at various scales, from the smallest particles to the largest galaxies.
A. The study of how energy and matter interact in the physical world.
The study of matter and energy and how they interact is called physics. Physics is a branch of science that seeks to understand the fundamental laws and principles that govern the behavior of the physical world.