Quantum Mechanical Model

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From this App you can learn :Identify that matter and energy are not different entities and both light(energy) and matter have dual nature.Calculate the wavelength and momentum of moving bodies using de Broglie wave equation.Discuss the diffraction and scattering experiments by Davisson and Germer that prove the wave nature of matter.Understand the uncertainty phenomenon and how it limits our knowledge of properties of quantum particles.Depict the electron location within an atom by analyzing electron density diagrams and radial probability distribution plots.Describe the size, shape and orientation of an atomic orbital by using quantum numbers.More details please visit https://www.simply.science.com/"simply.science.com" hosts concept oriented content in Maths & Sciencesspecially designed for K-6 to K-12 grades. "Simplyscience enablesstudents to enjoy learning with application oriented, visually richcontent which is simple and easy to understand. The content is aligned tobest practices of learning and teaching.Students can develop strong basics, critical thinking and problemsolving skills to do well in school and beyond. Teachers can use Simplyscience as areference material to be more creative in designing engaging learningexperiences. Parents also can actively participate in their childsdevelopment through Simplyscience".This topic covers under Chemistry subject as a part of the Structure Of Matter topicand this topic contains following sub topics Quantum Mechanical ModelSchrodinger Wave FunctionAtomic orbitals representationHeisenbergs Uncertainty PrincipleQuantum numbers