The wavelength required to remove one electron from lithium atom should be determined. Concept Introduction: Atomic Number : Atomic number of the element is equal to the number of protons present in the nucleus of the element which is denoted by symbol Z . The superscript presents on the left side of the symbol of the element. First ionization energy: The ionization energy is the minimum energy required to remove the electron from an isolated atom which is in the gaseous state results to give gaseous ion with one positive charge. atom ( g ) → ion with positive charge ( g ) + electron Cation: Removal of electron from the atom results to form positively charged ion called cation. The net charge present in the element denotes the presence or absence of electrons in the element. In periodic table the horizontal rows are called periods and the vertical column are called group. Plank-Einstein Equation: The energy is conversed property since it can neither be created nor be destroyed but can be transformed. The energy of the photon is obtained by using the following relation E = hν h → Planck's constant = 6 .63 × 10 -34 J .s ν → frequency of the photon Wavelength: The distance between the two continuous maximum displacements present in wave or the two continuous minimum displacements present in a wave exhibited by the photons is called wavelength. The wavelength of the photon is inversely proportional to its frequency. The relationship between them is given by the following formula, (wavelength)λ = (velocity of light)c (frequency)ν Frequency: It denotes the number of waves passes in given amount of time. To determine: The wavelength in nm for first ionization of lithium atom.
The wavelength required to remove one electron from lithium atom should be determined. Concept Introduction: Atomic Number : Atomic number of the element is equal to the number of protons present in the nucleus of the element which is denoted by symbol Z . The superscript presents on the left side of the symbol of the element. First ionization energy: The ionization energy is the minimum energy required to remove the electron from an isolated atom which is in the gaseous state results to give gaseous ion with one positive charge. atom ( g ) → ion with positive charge ( g ) + electron Cation: Removal of electron from the atom results to form positively charged ion called cation. The net charge present in the element denotes the presence or absence of electrons in the element. In periodic table the horizontal rows are called periods and the vertical column are called group. Plank-Einstein Equation: The energy is conversed property since it can neither be created nor be destroyed but can be transformed. The energy of the photon is obtained by using the following relation E = hν h → Planck's constant = 6 .63 × 10 -34 J .s ν → frequency of the photon Wavelength: The distance between the two continuous maximum displacements present in wave or the two continuous minimum displacements present in a wave exhibited by the photons is called wavelength. The wavelength of the photon is inversely proportional to its frequency. The relationship between them is given by the following formula, (wavelength)λ = (velocity of light)c (frequency)ν Frequency: It denotes the number of waves passes in given amount of time. To determine: The wavelength in nm for first ionization of lithium atom.
Solution Summary: The author explains that the wavelength required to remove one electron from a lithium atom should be determined.
Interpretation: The wavelength required to remove one electron from lithium atom should be determined.
Concept Introduction:
Atomic Number: Atomic number of the element is equal to the number of protons present in the nucleus of the element which is denoted by symbol Z. The superscript presents on the left side of the symbol of the element.
First ionization energy:
The ionization energy is the minimum energy required to remove the electron from an isolated atom which is in the gaseous state results to give gaseous ion with one positive charge.
atom(g)→ion with positive charge(g) + electron
Cation: Removal of electron from the atom results to form positively charged ion called cation.
The net charge present in the element denotes the presence or absence of electrons in the element.
In periodic table the horizontal rows are called periods and the vertical column are called group.
Plank-Einstein Equation: The energy is conversed property since it can neither be created nor be destroyed but can be transformed. The energy of the photon is obtained by using the following relation
Wavelength: The distance between the two continuous maximum displacements present in wave or the two continuous minimum displacements present in a wave exhibited by the photons is called wavelength. The wavelength of the photon is inversely proportional to its frequency. The relationship between them is given by the following formula,
(wavelength)λ=(velocity of light)c(frequency)ν
Frequency: It denotes the number of waves passes in given amount of time.
To determine: The wavelength in nm for first ionization of lithium atom.
Speaking of composite materials, indicate the correct option:(A). Composite materials can only be: metal-polymer or polymer-polymer.(B). Composite materials can be made up of particles, but not fibers or sheets.(C). When the reinforcing particles are uniformly distributed in a composite material, there may be a greater tendency for it to have isotropic properties.(D). None of the above is correct.
If we are talking about viscoelastic modulus or viscoelastic relaxation modulus in polymers, indicate the correct option.(A). It reports the variation of elastic behavior as a function of time.(B). It is only useful for defining its glass transition temperature.(C). It only allows us to define the polymer degradation temperature.(D). Neither option is correct.
When natural light falls perpendicularly on a material A, it has a reflectivity of 0.813%. Indicate the value of the refractive index.
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