Dalton helped by explaining the kinetic molecular theory, continue to this link for the rest of the answer. http://www.dafk.net/what/
Properties of metals as high boiling point, high melting point, malleability, ductility, electrical conductivity, thermal conductivity, lustre are explained by the theory of metallic bonds.
Yes, Chadwick's atomic model did not fully explain the properties of the electron cloud or electron behavior within an atom. It also did not delve into the concept of electron energy levels and their relationship to atomic spectra.
You did not specify but seeing as my course is currently specifying in this field I have at least minimalist credentials in laments... Older models had electrons following an orbit which is frankly not true, modern day electron cloud models show that they are roughly here whereas for instance, the Bohr model shows them following a strict orbit
The electron sea model explains why metals are malleable and good conductors of electricity. In this model, metal atoms donate their outer electrons to form a "sea" of delocalized electrons that are free to move throughout the structure, contributing to the metal's properties.
The discovery of the electron by J.J. Thomson through his cathode ray tube experiment led scientists to question John Dalton's model of the atom. Thomson's observation of negatively charged particles in the cathode ray, along with their behavior under electric and magnetic fields, contradicted Dalton's indivisible and uniformly dense model of the atom. Thomson's model, proposing that atoms contain subatomic particles (electrons), gained favor due to its ability to explain these experimental findings.
Thomsons model (plum pudding model of negatively charged particles in a positive soup) differed from Daltons model. Dalton hypothesised that atoms were indivisible, the word atom comes from the Greek atomos cannot be cut)
A Dalton's model of atom doesn't exist. Dalton principles are not in agreement with the discovery of isotopes and nonstoichiometric compounds.
Fluid-mosaic model
The Fluid Mosaic Model is used to explain the components and properties of the plasma membrane. This model describes the plasma membrane as a dynamic structure composed of a lipid bilayer with embedded proteins that can move and interact within the membrane.
The wave model of light and the particle model of light.
fluid-mosiac modelramon C.Fluid mosaic model
The idea that atoms are indivisible.
see along time ago before dinosaurs walked the earth. the end.
Dalton's theory was irrelevant to the total compensation of of the Atomic Mass.
Change in the phase of matter is just related to the distance between the particles, and hence a change in the amount of attractive forces.
The particle model helps us understand the behavior of matter by representing it as individual particles (atoms or molecules). This model explains how particles move and interact with each other in different states of matter (solid, liquid, gas) based on their energy and arrangement. It provides a fundamental understanding of the structure and properties of different materials.
Explain data model?