18 Jul 2024
17 Jul 2024
Quantum Field
Limitations of science:
Quantum Field Theory
- Quantum Chemistry
Advances in Quantum Chemistry (Book series)
- nuclear chemistry
- also overlaps greatly with theoretical chemistry, physical chemistry and chemical physics.
But no, quantum fields do not interact with matter. Quantum fields are matter. In a quantum field theory, what we perceive as particles are excitations of the quantum field itself.
The simplest “practical” quantum field theory is quantum electromagnetism. In it, two fields exist: the electromagnetic field and the “electron field”.
These two fields continuously interact with each other, energy and momentum are transferred, and excitations are created or destroyed.
So for instance, what we picture intuitively as an electron absorbing a photon is, in quantum electrodynamics,
a specific interaction between the electromagnetic field and the electron field,
in which the electromagnetic field loses one excitation quantum,
and the electron field gains its energy, momentum and angular momentum.
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1) Relationship between mathematics and physics
3) List of unsolved problems in physics
- International Association of Mathematical Physics
- Notable publications in mathematical physics
- List of mathematical physics journals
The Journal of Mathematical Physics
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elements of any field.( Mathematics )
tensor fields or a tensor field is a generalization of a scalar field or vector field that assigns,
2) Relativity priority dispute
3) Criticism of the theory of relativity
- Timeline of gravitational physics and relativity
- Timeline of black hole physics
- Timeline of special relativity and the speed of light
- Introduction to general relativity.
- Contributors to general relativity.👬
- All tests of general relativity
- Physical theories modified by general relativity
- Frame fields in general relativity.
FORMULAS BANK
- Names of large numbers
- Names of small numbers
- Number sense
- Orders of magnitude (acceleration)
- Orders of magnitude (area)
- Orders of magnitude (bit rate)
- Orders of magnitude (current)
- Orders of magnitude (data)
- Orders of magnitude (energy)
- Orders of magnitude (force)
- Orders of magnitude (frequency)
- Orders of magnitude (illuminance)
- Orders of magnitude (length)
- Orders of magnitude (mass)
- Orders of magnitude (numbers)
- Orders of magnitude (power)
- Orders of magnitude (pressure)
- Orders of magnitude (radiation)
- Orders of magnitude (speed)
- Orders of magnitude (temperature)
- Orders of magnitude (time)
- Orders of magnitude (voltage)
- Orders of magnitude (volume)
- Scientific notation
Human Longevity
Human
CHON comprises 99% of its atoms.
Fully 87% of human body atoms are either hydrogen or oxygen.
Astronomy Resources
- Supergalactic coordinate system – coordinate system
16 Jul 2024
System science
OUTER SPACE STUDIES
- Orders of magnitude (length) – Comparison of a wide range of lengths
- light years
- Orders of magnitude (time) – Comparison of a wide range of timescales
- Outline of astronomy
- Lists of astronomical objects
- Outline of space science – Overview of and topical guide to space science
- Glossary of astronomy – List of definitions of terms and concepts commonly used in the study of astronomy
- Universe
- Observable universe
- Extragalactic astronomy
- superclusters,
- List of superclusters
- List of galaxy groups and clusters
- List of open clusters
- List of globular clusters
- Timeline of knowledge about galaxies, clusters of galaxies, and large-scale structure
- galactic astronomy.
- Galaxy formation and evolution
- Galaxy
- Galaxy groups and clusters
- Galaxy cluster
- Galaxy filament
- Galaxy group
- origin of galaxy clusters
- and superclusters.
- Outline of galaxies
- Timeline of knowledge about galaxies, clusters of galaxies, and large-scale structure
- List of nearest galaxies
- List of largest galaxies
- Low surface brightness galaxy
- ASTROPHYSICS: Applying the laws of physics in space
- ASTROMETRY: Mapping celestial bodies
- ASTROGEOLOGY: Examining rocks, terrain, and material in space
- ASTROBIOLOGY: Searching for life outside Earth
- 1)ASTROPHYSICS – How the laws of physics apply to stars and celestial bodies.
- 2)COSMOLOGY – How the universe was created, evolved, and its ultimate fate.
- 3)SPECTROSCOPY – How light reflects, absorbs, and transfers between matter.
- 4)PHOTOMETRY – How luminous astronomical objects are in space based on electromagnetic radiation.
- 5)HELIOPHYSICS – How the sun’s constant and dynamic radiation affects its surroundings in space.
- 6)HELIOSEISMOLOGY – How the interior structure and dynamics of stars are composed by observing waves from their surface.
- 7)ASTEROSEISMOLOGY – How to study the internal structure of stars by observing their oscillations.
- 8)ASTROMETRY – How celestial bodies are positioned and move in space.
- 9)PLANETOLOGY – How planets form in the solar systems including their composition and dynamics in history.
- 10)EXOPLANETOLOGY – How many and where planets exist outside our solar system.
- 11)ASTROGEOLOGY – How geology relates to celestial bodies like moons, asteroids, meteorites and comets.
- Asteroseismology - is the study of oscillations in stars.
- Helioseismology - is the study of the structure and dynamics of the Sun through its oscillations.
- 12)AREOLOGY – How geology is composed on Mars.
- 13)SELENOGRAPHY – How physical features on the moon formed such as lunar maria, craters, and mountain ranges.
- 14)EXOGEOLOGY – How geology relates to celestial bodies like moons, asteroids, meteorites, and comets.
- 15)ASTROBIOLOGY -How life (including extraterrestrials) in the universe evolved, originated, and what will be its fate.
- 16)EXOBIOLOGY – How likely and where is life in space.
- 17) ASTROCHEMISTRY – How to study substances in celestial bodies, stars, and interstellar space.
- Anthropic principle – Hypothesis about sapient life and the universe
- Cosmography – Science that maps the universe
- Chronology of the universe – History and future of the universe
- Ultimate fate of the universe – Theories about the end of the universe
- Why there is anything at all
15 Jul 2024
🌿 THE UNIVERSE 🤗
More generally, astronomy studies everything that originates beyond Earth's atmosphere.
Meteorite classification
Asteroid spectral types
Category:Asteroid spectral classes
Stellar classification
Atomic and molecular astrophysics
Celestial sphere
Astronomical coordinate systems
International Celestial Reference System and its realizations
🌿 THE EARTH 🌍
- Solar irradiance
- Radiative flux
- Effect of Sun angle on climate
- Atmospheric refraction
- atmospheric particulate matter,
- Earth rotation, ΔT
- Geocentric orbit.
- ECEF
- ECI (coordinates)
- geocentric coordinates.
- Local tangent plane coordinates
- Sphericity of the Earth
- Equatorial bulge
- geocentric coordinate systems
- Geodetic coordinates
- Planetary coordinate system
- Reference frame
- Planetary phase
- geologic map
- surface weather analyses
- Cyclogenesis
- Explosive cyclogenesis
- Cyclolysis
- sequence stratigraphy
- Cratonic sequence – Very large-scale lithostratographic sequence
- Cyclostratigraphy – Study of astronomically forced climate cycles within sedimentary successions
- Biostratigraphy
- Chronostratigraphy
14 Jul 2024
core study
12 Jul 2024
Metallic radius
As you can see, metallic radius is defined as one-half of the distance between the nuclei of two atoms in crystal or between two adjacent metal ions in the metallic lattice.
Metallic radii:
- decrease across the period due to increase in the effective nuclear charge.
- increase down the group due to increase in principal quantum number.
Points to Remember:
- The distance of each atom will be same because group of atoms are from the same metal.
- Metallic Radii decrease across the period because of increase in the effective nuclear charge.
- Metallic Radius increases down the group because new shell is added.
- Metallic radii are always biggest for the highest coordination number.
Group-wise Metallic Radii
Group 1: Alkali Metals
- Atomic Number 3: Li - 152 pm
- Atomic Number 11: Na - 186 pm
- Atomic Number 19: K - 227 pm
- Atomic Number 37: Rb - 248 pm
- Atomic Number 55: Cs - 262 pm
- Atomic Number 87: Fr - 270 pm (estimated)
Group 2: Alkaline Earth Metals
- Atomic Number 4: Be - 112 pm
- Atomic Number 12: Mg - 160 pm
- Atomic Number 20: Ca - 197 pm
- Atomic Number 38: Sr - 215 pm
- Atomic Number 56: Ba - 222 pm
- Atomic Number 88: Ra - 247 pm (estimated)
Group 3-12: Transition Metals
- Atomic Number 22: Ti - 147 pm
- Atomic Number 24: Cr - 140 pm
- Atomic Number 26: Fe - 126 pm
- Atomic Number 27: Co - 125 pm
- Atomic Number 28: Ni - 124 pm
- Atomic Number 29: Cu - 128 pm
- Atomic Number 30: Zn - 139 pm
- Atomic Number 40: Zr - 160 pm
- Atomic Number 42: Mo - 139 pm
- Atomic Number 74: W - 139 pm
- Atomic Number 78: Pt - 139 pm
Group 13: Boron Group
- Atomic Number 5: B (not metallic)
- Atomic Number 13: Al - 143 pm
- Atomic Number 31: Ga - 135 pm
- Atomic Number 49: In - 156 pm
- Atomic Number 81: Tl - 156 pm
Group 14: Carbon Group
- Atomic Number 6: C (not metallic in its common form)
- Atomic Number 14: Si (not metallic in its common form)
- Atomic Number 32: Ge - 122 pm (metalloid)
- Atomic Number 50: Sn - 140 pm
- Atomic Number 82: Pb - 175 pm
Group 15: Nitrogen Group
- Atomic Number 7: N (not metallic)
- Atomic Number 15: P (not metallic)
- Atomic Number 33: As - 120 pm (metalloid)
- Atomic Number 51: Sb - 140 pm
- Atomic Number 83: Bi - 156 pm
Group 16: Chalcogens
- Atomic Number 8: O (not metallic)
- Atomic Number 16: S (not metallic)
- Atomic Number 34: Se (not metallic)
- Atomic Number 52: Te - 140 pm (metalloid)
- Atomic Number 86: Po - 150 pm (metalloid)
Group 17: Halogens
- Atomic Number 9: F (not metallic)
- Atomic Number 17: Cl (not metallic)
- Atomic Number 35: Br (not metallic)
- Atomic Number 53: I (not metallic)
- Atomic Number 85: At (not metallic)
Summary
- Alkali and Alkaline Earth Metals have larger metallic radii due to their larger atomic sizes and single/double valence electrons.
- Transition Metals exhibit varying metallic radii due to their unique electron configurations and bonding characteristics.
- Metalloids (like Ge, As, and Sb) have intermediate metallic properties.
- Nonmetals (like N, O, F) and many elements in Groups 14 to 17 do not have metallic radii as they do not participate in metallic bonding.
| Atomic Number | Element | Metallic Radius (pm) |
|---|
| 1 | Hydrogen | 37 |
| 2 | Helium | - |
| 3 | Lithium | 152 |
| 4 | Beryllium | 112 |
| 5 | Boron | 87 |
| 6 | Carbon | 70 |
| 7 | Nitrogen | 65 |
| 8 | Oxygen | 60 |
| 9 | Fluorine | 57 |
| 10 | Neon | - |
| 11 | Sodium | 186 |
| 12 | Magnesium | 160 |
| 13 | Aluminum | 143 |
| 14 | Silicon | 118 |
| 15 | Phosphorus | 110 |
| 16 | Sulfur | 104 |
| 17 | Chlorine | 99 |
| 18 | Argon | - |
| 19 | Potassium | 227 |
| 20 | Calcium | 197 |
| 21 | Scandium | 162 |
| 22 | Titanium | 147 |
| 23 | Vanadium | 141 |
| 24 | Chromium | 139 |
| 25 | Manganese | 139 |
| 26 | Iron | 126 |
| 27 | Cobalt | 125 |
| 28 | Nickel | 124 |
| 29 | Copper | 128 |
| 30 | Zinc | 139 |
| 31 | Gallium | 135 |
| 32 | Germanium | 122 |
| 33 | Arsenic | 118 |
| 34 | Selenium | 116 |
| 35 | Bromine | 114 |
| 36 | Krypton | - |
| 37 | Rubidium | 248 |
| 38 | Strontium | 215 |
| 39 | Yttrium | 180 |
| 40 | Zirconium | 159 |
| 41 | Niobium | 146 |
| 42 | Molybdenum | 139 |
| 43 | Technetium | 134 |
| 44 | Ruthenium | 132 |
| 45 | Rhodium | 134 |
| 46 | Palladium | 139 |
| 47 | Silver | 144 |
| 48 | Cadmium | 148 |
| 49 | Indium | 145 |
| 50 | Tin | 139 |
| 51 | Antimony | 139 |
| 52 | Tellurium | 139 |
| 53 | Iodine | 133 |
| 54 | Xenon | - |
| 55 | Cesium | 262 |
| 56 | Barium | 211 |
| 57 | Lanthanum | 208 |
| 58 | Cerium | 198 |
| 59 | Praseodymium | 196 |
| 60 | Neodymium | 185 |
| 61 | Promethium | 174 |
| 62 | Samarium | 175 |
| 63 | Europium | 188 |
| 64 | Gadolinium | 181 |
| 65 | Terbium | 182 |
| 66 | Dysprosium | 180 |
| 67 | Holmium | 175 |
| 68 | Erbium | 175 |
| 69 | Thulium | 173 |
| 70 | Ytterbium | 172 |
| 71 | Lutetium | 171 |
| 72 | Hafnium | 159 |
| 73 | Tantalum | 146 |
| 74 | Tungsten | 139 |
| 75 | Rhenium | 139 |
| 76 | Osmium | 136 |
| 77 | Iridium | 136 |
| 78 | Platinum | 139 |
| 79 | Gold | 144 |
| 80 | Mercury | 152 |
| 81 | Thallium | 156 |
| 82 | Lead | 175 |
| 83 | Bismuth | 156 |
| 84 | Polonium | 150 |
| 85 | Astatine | 202 |
| 86 | Radon | - |
| 87 | Francium | 270 |
| 88 | Radium | 215 |
| 89 | Actinium | 200 |
| 90 | Thorium | 175 |
| 91 | Protactinium | 165 |
| 92 | Uranium | 156 |
| 93 | Neptunium | 156 |
| 94 | Plutonium | 157 |
| 95 | Americium | 158 |
| 96 | Curium | 157 |
| 97 | Berkelium | 160 |
| 98 | Californium | 163 |
| 99 | Einsteinium | 166 |
| 100 | Fermium | 167 |
| 101 | Mendelevium | 170 |
| 102 | Nobelium | 171 |
| 103 | Lawrencium | 172 |
| 104 | Rutherfordium | 175 |
| 105 | Dubnium | 175 |
| 106 | Seaborgium | 176 |
| 107 | Bohrium | 177 |
| 108 | Hassium | 178 |
| 109 | Meitnerium | 179 |
| 110 | Darmstadtium | 180 |
| 111 | Roentgenium | 181 |
| 112 | Copernicium | 182 |
| 113 | Nihonium | 184 |
| 114 | Flerovium | 185 |
| 115 | Moscovium | 186 |
| 116 | Livermorium | 187 |
| 117 | Tennessine | 188 |
| 118 | Oganesson | 189 |