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Symmetry | Free Full-Text | Position Dependent Planck's Constant in a Frequency-Conserving Schrödinger Equation
![The value of Planck's constant is 6.63 × 10^-34Js . The speed of light 3 × 10^17 nm s^-1 . Which value is closest to the wavelength in nanometer of a quantum of light with frequency of 6 × 10^15s^-1 ? The value of Planck's constant is 6.63 × 10^-34Js . The speed of light 3 × 10^17 nm s^-1 . Which value is closest to the wavelength in nanometer of a quantum of light with frequency of 6 × 10^15s^-1 ?](https://i.ytimg.com/vi/uIOjH-45TOY/mqdefault.jpg)
The value of Planck's constant is 6.63 × 10^-34Js . The speed of light 3 × 10^17 nm s^-1 . Which value is closest to the wavelength in nanometer of a quantum of light with frequency of 6 × 10^15s^-1 ?
The value of Plank's constant is 6.63 × 10 34 Js. The speed of light is 3 × 1017 nm s 1 . Which value is closest with frequency of 6 × 1015 s 1 ?A. 25B. 75C. 10D. 50
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![Given: The mass of electron is 9.11 × 10^(–31)Kg Planck constant is 6.626 × 10^(–34)Js, the uncertainty involved in the measurement of velocity within a distance of 0.1Å is:- Given: The mass of electron is 9.11 × 10^(–31)Kg Planck constant is 6.626 × 10^(–34)Js, the uncertainty involved in the measurement of velocity within a distance of 0.1Å is:-](https://d10lpgp6xz60nq.cloudfront.net/web-thumb/74865140_web.png)
Given: The mass of electron is 9.11 × 10^(–31)Kg Planck constant is 6.626 × 10^(–34)Js, the uncertainty involved in the measurement of velocity within a distance of 0.1Å is:-
![SOLVED:The dimensions of Planck's constant are the same as that of (a) linear impulse (b) work (c) linear momentum (d) angular momentum SOLVED:The dimensions of Planck's constant are the same as that of (a) linear impulse (b) work (c) linear momentum (d) angular momentum](https://cdn.numerade.com/previews/7f244c76-4e80-459b-80e9-2ce1358af35a.gif)
SOLVED:The dimensions of Planck's constant are the same as that of (a) linear impulse (b) work (c) linear momentum (d) angular momentum
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![The value of Planck's constant is `6.63 xx 10^(-34)Js`. The speed of light is `3xx10^(17)nm s^ - YouTube The value of Planck's constant is `6.63 xx 10^(-34)Js`. The speed of light is `3xx10^(17)nm s^ - YouTube](https://i.ytimg.com/vi/-C0FanMz4rk/maxresdefault.jpg)
The value of Planck's constant is `6.63 xx 10^(-34)Js`. The speed of light is `3xx10^(17)nm s^ - YouTube
![Planck's constant (h), speed of light in vacuum (c) and Newton's gravitational constant (G) are three fundamental constants. Which of the following combinations of these has the dimension of length? Planck's constant (h), speed of light in vacuum (c) and Newton's gravitational constant (G) are three fundamental constants. Which of the following combinations of these has the dimension of length?](https://i.ytimg.com/vi/fS3MrNcnolA/maxresdefault.jpg)
Planck's constant (h), speed of light in vacuum (c) and Newton's gravitational constant (G) are three fundamental constants. Which of the following combinations of these has the dimension of length?
![The value of Planck\'s constant is `6.63 xx 10^-34 Js`. The speed of light is `3 xx 10^(17)nms^(-1)` - YouTube The value of Planck\'s constant is `6.63 xx 10^-34 Js`. The speed of light is `3 xx 10^(17)nms^(-1)` - YouTube](https://i.ytimg.com/vi/ZClMh80-yqE/maxresdefault.jpg)
The value of Planck\'s constant is `6.63 xx 10^-34 Js`. The speed of light is `3 xx 10^(17)nms^(-1)` - YouTube
![Using the graph shown in fig for stopping potential vs the incident frequency of photons, calculate Planck's constant. Using the graph shown in fig for stopping potential vs the incident frequency of photons, calculate Planck's constant.](https://d10lpgp6xz60nq.cloudfront.net/physics_images/PR_XII_V02_C07_S01_002_Q01.png)
Using the graph shown in fig for stopping potential vs the incident frequency of photons, calculate Planck's constant.
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![The values of Planck's constant is 6.63 × 10^-34 Js. The velocity of light is 3.0 × 10^8 ms^-1 . Which value is closest to the wavelength in nanometres of a quantum of light which frequency of 8 × 10^15s^-1 ? The values of Planck's constant is 6.63 × 10^-34 Js. The velocity of light is 3.0 × 10^8 ms^-1 . Which value is closest to the wavelength in nanometres of a quantum of light which frequency of 8 × 10^15s^-1 ?](https://dwes9vv9u0550.cloudfront.net/images/3974449/8fd5b070-1316-4309-88ea-08f18eb9e5f1.jpg)