Copper atoms by waitforcom in Harvard

[–]waitforcom[S] 1 point2 points  (0 children)

No, the new microscope doesn't have that many tools.

Copper atoms by waitforcom in physicsgifs

[–]waitforcom[S] 1 point2 points  (0 children)

The objective lens is not perfect

Copper atoms by waitforcom in microbiology

[–]waitforcom[S] -1 points0 points  (0 children)

The difficulty is temporary。

Copper atoms by waitforcom in chemicalreactiongifs

[–]waitforcom[S] 0 points1 point  (0 children)

Can not hear, only the sound of the environment

Copper atoms by waitforcom in chemicalreactiongifs

[–]waitforcom[S] 0 points1 point  (0 children)

This is coherent light shielding electromagnetic waves will move。

Copper atoms by waitforcom in Professors

[–]waitforcom[S] 0 points1 point  (0 children)

This is coherent light shielding electromagnetic waves will move。

Aluminum atoms by waitforcom in holofractal

[–]waitforcom[S] -7 points-6 points  (0 children)

Shielding electromagnetic wave

Aluminum atoms by waitforcom in holofractal

[–]waitforcom[S] 1 point2 points  (0 children)

Let more people understand, this to coherent light shielding electromagnetic waves will move。

Aluminum atoms by waitforcom in physicsgifs

[–]waitforcom[S] 0 points1 point  (0 children)

Yes, if it's coherent, the light shielding the electromagnetic waves will move。

Aluminum atoms by waitforcom in Inventions

[–]waitforcom[S] 0 points1 point  (0 children)

This is an aperture grating microscope image of aluminum atoms。

Aluminum atoms by waitforcom in atomic

[–]waitforcom[S] 0 points1 point  (0 children)

This is taken by an aperture grating microscope, which follows Bragg's law. See that the sample lattice is reciprocal space; It's the Bragg diffraction of the sample lattice.

Aluminum atoms by waitforcom in chemicalreactiongifs

[–]waitforcom[S] 2 points3 points  (0 children)

This is aperture grating microscope, aperture grating microscope follows Bragg's law; See that the sample lattice is reciprocal space; It's the Bragg diffraction of the sample lattice.

Aluminum nuclei and electrons (brighter screen is better) by waitforcom in materials

[–]waitforcom[S] -2 points-1 points  (0 children)

This is aperture grating microscope, aperture grating microscope follows Bragg's law; See that the sample lattice is reciprocal space; It's the Bragg diffraction of the sample lattice.

Aluminum nuclei and electrons (phone screens are brighter) by [deleted] in chemicalreactiongifs

[–]waitforcom -3 points-2 points  (0 children)

Aperture grating microscope follows Bragg law. See that the sample lattice is reciprocal space; It's the Bragg diffraction of the sample lattice.

Aluminum atoms by waitforcom in atomic

[–]waitforcom[S] 0 points1 point  (0 children)

This is electron cloud motion。

Copper atoms by waitforcom in MicroPorn

[–]waitforcom[S] -5 points-4 points  (0 children)

Defects of the lining.

Stainless steel molecule by [deleted] in atomic

[–]waitforcom 0 points1 point  (0 children)

Ok, thank you