Give explanation about working of a triode.
Q: is the tranfer or sharing valence electrons different than bonding. If so, how?
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A: There are two MCQ's with bonding between them.
Q: he molecule bromine monofluoride has a dipole moment of 1.42 D and a bond length of 176 pm.…
A: Givenμ=1.42 Dd=176 pm=176×10-12 me=1.6×10-19 C
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Q: The atoms in a conductor have valence electrons that are tightly bound.
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Q: tion (in newtons) between a cation with avalence of +2 and an anion with a valence of -3 , the…
A: Given cation with a valence of +2 and an anion with a valence of -3 , the centers of which are…
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Q: Find the magnitude of the electrostatic force between a Na+ ion and a Cl− ion separated by 0.59 nm.…
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Q: The CO molecule has a dipole moment of 0.480x10-30 C m. Given that its equilibrium bond distance is…
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Q: Cold interstellar molecular clouds often contain the molecule cyanogen (CN), whose first rotational…
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A: Provided for Part A, see Answer. For Part B:Approach and Explanation: Please feel free to reach out…
Q: The characteristic rotational energy, h²18²1, for O₂ is 2.9 × 10-23 J. Calculate the O₂ bond length.…
A: Bond length of O2
Q: A Dipole Having A Moment P = 3ax - 5ay + 10az [NC.M] Is Located At Q(1, 2,-4) In Free Space. Find V…
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A: Sulfur bonds with Beryllium in an ionic bond to create the stable compound Beryllium Sulfide. After…
Give explanation about working of a triode.
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- Solve the equation for transition dipole moment. Please also include how the units end up being Coulomb meters.At the points of the angles of an equilateral triangle with a side length of 30 cm, the electric charges are 2uC, 2 uC, and 3uC, respectively. What is the coulomb force experienced by a 3uC charge? (with pictures) PLEASE HELP SIR, STEP BY STEP, WITH PICTURE, THX.Sketch an FCC unit cell. Indicate the positions and write down the coordinates of all of the tetrahedral and octahedral indices in this structure
- Determine the wavenumbers for the two lowest energy rotational excitations for trans- 3251°F4 H2 if the S-F bond distance is 1.74 Å and the S-H bond distance is 1.34 Å.Compute the magnitude of the electrostatic attraction energy between a silver cation (radius 129 pm) and a sulfide anion (radius 170 pm). Give your answer in al. Note that magnitude means "absolute value" i.e. answer without arithmetic +/- sign.Please don't provide handwriting solution
- Materials with valence electrons fewer than four electrons are generally conductors. Why is it? a. (The answer cannot be found on the other choices.) b. For materials with fewer than three valence electrons, less or insignificant electric field is produced in the conductor. This is the reason why the electric field inside a conductor is zero. c. Originally, these materials have eight valence electrons. Greater than four of these valence electrons became free electrons and fewer than four valence electrons remained. This is why conductors have more free electrons at room temperature. d. Valence electrons in these materials need less energy gap is needed to be overcame to dislodge them from their parent atoms to become free electrons. Hence, conductors have overlapping conduction and valence bands.(a) Find the magnitude of the electrostatic force between a Na+ ion and a Cl− ion separated by 0.55 nm in newtons (b) Would the answer change if the sodium ion were replaced by Li+ and the chloride ion by Br−? explainIt is possible to produce very high magnetic fields over small volumes by special techniques. What would be the resonance frequency of an electron spin in an organic radical in a field of 1.0 kT? How does this frequency compare to typical molecular rotational, vibrational, and electronic energy-level separations?
- Please do number 8.Compute the magnitude of the electrostatic attraction energy between a silver cation (radius 129 pm) and a sulfide anion (radius 170 pm). Give your answer in al.QUESTION 3 For 3-dimensional rotational motion of an electron, the total angular momentum... depends on I and m. has a degeneracy of 21. equals ħ/1(1+ 1). none are correct