The Martian Anomalies: A Photographic Search for Intelligent Life on Mars

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The Martian Anomalies: A Photographic Search for Intelligent Life on Mars

The Martian Anomalies: A Photographic Search for Intelligent Life on Mars

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Bott, M. Two methods applicable to computers for evaluating magnetic anomalies due to finite three dimensional bodies. Geophys. Prospect. 11, 292–299 (1963). Lillis, R. J., Frey, H. V. & Manga, M. Rapid decrease in Martian crustal magnetization in the Noachian era: implications for the dynamo and climate of early Mars. G eophys. Res. Lett. https://doi.org/10.1029/2008GL034338 (2008).

Määttänen, A. et al. Mapping the mesospheric CO 2 clouds on Mars: MEx/OMEGA and MEx/HRSC observations and challenges for atmospheric models. Icarus 209, 452–469 (2010). They also do not allow me to ignore the work (in a separate area) of my friend Dr Judy Wood (who has sued NIST’s contractors for fraud) showing that the WTC was destroyed using some kind of directed energy weapon on 9/11. So, come on, how utterly ridiculous is that for a conclusion? Manning, C. E. & Ingebritsen, S. E. Permeability of the continental crust: implications of geothermal data and metamorphic systems. R ev. Geophys. https://doi.org/10.1029/1998RG900002 (1999). Additional point – look at the Avebury and Japan images and links below – do you think the features in Avebury and Japan were created by Plasma Discharge? 🙂Citron, R. I., Manga, M. & Hemingway, D. J. Timing of oceans on Mars from shoreline deformation. Nature https://doi.org/10.1038/nature26144 (2018). The Red Planet was previously suspected to have a liquid core based on measurements of seismic waves. But detecting these changes based on radio signals proved challenging. It took a while for signals to emerge from the noise of the planet’s motions. Mars is also swirling with dust storms, and storms that occurred before and after InSight landed changed the planet’s rotational speed for a while. Its rotation axis also experiences slight changes due to the gravitational forces exerted by its moons, Phobos and Deimos. Laboratoire Atmosphère Milieux Observations Spatiales/Institut Pierre-Simon Laplace (LATMOS/IPSL), Sorbonne Université, Université Paris-Saclay, Université de Versailles Saint-Quentin-en-Yvelines, Centre National de la Recherche Scientifique, Guyancourt, France colored green. Your ignorance knows no bounds! Suggest another university class on remote sensing and imaging. Farmers use thisprocess to identify problems with their crops. False color is used to enhance or reveal a particular thing you are looking for. All matter emits radiation in frequencies of light. One just has to adjust the filters in wavelengths of light to show anything you like. The image on he left most likely was taken with a filter at 490 nanometers.

Slide 3: blue/gray sky versus red sky…..have you ever played with photoshop? It’s nothing more than playing with saturation! It’s not a conspiracy, it’s a matter of enhancing colors to view things in different light (pardon the pun) Gómez-Elvira, J. et al. Curiosity’s rover environmental monitoring station: overview of the first 100 sols. J. Geophys. Res. Planets 119, 1680–1688 (2014). Slide 20: Not sure what that is either. There have been several images taken from both MERs, that reveal unknown items. Maybe just lighting, camera angles??? don’t know. Salvatore, M. R., Mustard, J. F., Wyatt, M. B. & Murchie, S. L. Definitive evidence of Hesperian basalt in Acidalia and Chryse planitiae. J. Geophys. Res. Planets 115, https://doi.org/10.1029/2009JE003519 (2010).Acuna, M. H. et al. Magnetic field of Mars: summary of results from the aerobraking and mapping orbits. J. Geophys Res. Planet. 106, 23403–23417 (2001). Photoshop filtering processes often blend, color-correct or contrast-heighten images in ways that turn single dead pixels into larger, more prominent shapes. In other words, "using a few filters" is exactly what the YouTube user should not have done in trying to clarify the contents of the Curiosity photo. Torrence, C. & Comp, G. P. A practical guide to wavelet analysis. Bull. Am. Met. Soc. 79, 61–78 (1998).

But when I see photos like these one's I have to say exactly what I think. It's common sense that what is been told to the public, isn't actually the truth and that being fully told the truth isn't actually happening. It's pretty obvious that the powers that be aren't gonna be coming forward anytime soon and that the information contained is literally witheld lies! All this is pretty obvious stuff. Parmentier, E. M. & Zuber, M. T. Early evolution of Mars with mantle compositional stratification or hydrothermal crustal cooling. J. Geophys. Res. E Planets https://doi.org/10.1029/2005JE002626 (2007). Larsen, S. E., Jørgensen, H. E. & Landberg, L. et al. Aspects of the atmospheric surface layers on Mars and Earth. Bound. Lay. Meteorol. 105, 451–470 (2002).A group of Anomalies on Mars commonly referred to as the Mars Anomalies have been observed on Mars since the successful fly by of the Mariner 4 Spacecraft a little over 50 years ago which provided some detailed close-up images of the Red Planet providing the first glimpse of the Mars Anomalies. Slide 15: Crater within a crater. Hundreds of them on Mars/Moon/Mercury. What you are seeing is “NOT” a dome but sand dunes, again wind blown, on the bottom of the second crater. Same as slide 14

Luo, H. et al. Natural orthogonal component analysis of daily magnetic variations at the Martian surface: InSight observations. J. Geophys. Res. Planet. https://doi.org/10.1029/2021JE007112 (2022). As you can see, there appears to be no “anomaly”. The caption indicates that the photo was taken at the same time: Mottl, M. J. & Holland, H. D. Chemical exchange during hydrothermal alteration of basalt by seawater-I. Experimental results for major and minor components of seawater. Geochim. Cosmochim. Acta https://doi.org/10.1016/0016-7037(78)90107-2 (1978). Lee, C. et al. Thermal tides in the Martian middle atmosphere as seen by the Mars Climate Sounder. J. Geophys. Res. Planets 114, E03005 (2009).Schulte, M., Blake, D., Hoehler, T. & McCollom, T. Serpentinization and its implications for life on the early Earth and Mars. Astrobiology https://doi.org/10.1089/ast.2006.6.364 (2006). Hahn, B. C., McLennan, S. M. & Klein, E. C. Martian surface heat production and crustal heat flow from Mars Odyssey Gamma-Ray spectrometry. Geophys. Res. Lett. 38, https://doi.org/10.1029/2011GL047435 (2011). Elliott, J. A. Microscale pressure fluctuations measured within the lower atmospheric boundary layer. J. Fluid Mech. 53, 351–383 (1972). Clancy, R. T. & Sandor, B. J. CO 2 ice clouds in the upper atmosphere of Mars. Geophys. Res. Lett. 25, 489–492 (1998).



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