TS//RELIDO/UNCLASSIFIED MIX

20250615

Happy Father's Day!

 Happy Father's Day!




“If I cannot say, and I will not say

That he is dead, he is just away!

With a cheery smile, and a wave of hand

He has wandered into an unknown land,

And left us dreaming how very fair

Its needs must be, since he lingers there.

And you- oh you, who the wildest yearn

From the old-time step and the glad return,

Think of him faring on, as dear

In the love of there, as the love of Here.

Think of him still the same way, I say,

He is not dead - he is just away.”

by James Whitcomb Riley

20250612

252025.163

 Upscale DNA Origami

self assembly

Space structure manufacturing 


https://blogbarley.blogspot.com/2025/03/large-bio-mechanical-space-structures.html Large Bio-Mechanical Space Structures 

https://blogbarley.blogspot.com/2025/05/dna-origami-nanobots.html DNA Origami Nanobots

https://blogbarley.blogspot.com/2025/05/dna-origami-combined-with-ca.html Highly functional nanobots

https://blogbarley.blogspot.com/2025/05/nanobot-logistics.html Nanobot logistics


TALOS

Name    Sequence    Amount  Purification
TALOS_1     GTAGCATTGAGATCTAAATTCTATTTCACGTTATTTTCATT   25nm    STD
TALOS_2     AAAAGGAATTACGATTACAGGTAGAATTCAACTAATGCAGTTAACG  25nm    STD
TALOS_3     CTTACCAACGCTAACGCAATTTTTAGGAATCATTAAATCAA   25nm    STD
TALOS_4     ATCAATAATCGGCTGTGAGCATGATCAGAGAGCCTGAACAA   25nm    STD
TALOS_5     AAATGCTTTAAACATAGTAAAATGTTTCATAAATATTCATCGTGCC  25nm    STD
TALOS_6     AGAATAACATAACATAGTAAGAGCTTTTTTTAACACTATC    25nm    STD
TALOS_7     TTTTAATAATAACCCAGATGAATAGGAAGATTGTATTTTTTTTAAGCAAATA    25nm    STD
TALOS_8     TCAAACTATGCAGATTCACTTTTTTTCAGTCACAC 25nm    STD
TALOS_9     ACAGGAAAAACGAAATTTTTGTTATTTTTTTAATCAGCTC    25nm    STD
TALOS_10    CAGGGCGATCACCACACCCTTTTTTTGCCGCGCTT 25nm    STD
TALOS_11    ATTTGGGAAAGCCCCCTTATTTTTTTTTAGCGTTT 25nm    STD
TALOS_12    GCACCGTAATCAGTAGGAAACCATAAGAGGCTACCATTACC   25nm    STD
TALOS_13    AGCGTAAAGTAAATTAGGTGTATACCTCCGGCTTAGTTTTTTTGTTGGGTTA    25nm    STD
TALOS_14    ACCACCAGAGCCGCCCTTTTTAAGTTTTTTTAAAAGTAAG    25nm    STD
TALOS_15    GAACCAGCGCGTTTCCAGTTTGAGGGGAATTGACCGAGCGAG  25nm    STD
TALOS_16    TTTAGCTATGAATTCTGCGAACGAGTATAACATATCAGGTCATTGCAAGAGCTGAAAA  25nm    STD
TALOS_17    CCTCAGAAGAGGGTGCTAAACAACTTTCCAGCCTGTAGC 25nm    STD
TALOS_18    CGTCTTTCCAGACGTTCGATCTATGAATTTATCCGTAACACTGACATAGTT 25nm    STD
TALOS_19    AAACAATAAATTGCATTAATTAATTTTCAGAATTACATT 25nm    STD
TALOS_20    TCAATATATGTGAGTGGGAAACATCATATGTAAAAGAAGATGATTTACCTT 25nm    STD
TALOS_21    TTTGAAGCCTTAAGGCTTATCCGGTAGCAAGCTTCCAGAGCCTAATTAGCTATTTTGC  25nm    STD
TALOS_22    TAGATAAGTATTGTCCAGACGACGACAAAAGGTATCATTCCAAGAAAAATATCCCATC  25nm    STD
TALOS_23    GGATGTGGCTGCGCCCTGGGGTGCCTAACTAGCTCGAAT 25nm    STD
TALOS_24    CACAATTCCACACAACGAAATTGAAATCCTGTATGCCTGCAGGTGCTGTTT 25nm    STD
TALOS_25    TTTTGATAGCGCAGTACCTTATGCGATTTTTTGCCCTGA 25nm    STD
TALOS_26    AACCGATGTGAATTAAACACTCATCTTTAGTAAAGACTT 25nm    STD
TALOS_27    ACGAAGGCACCAACCTAATACGTATAAATCAAGGAACGAGGGTACATTAAA 25nm    STD
TALOS_28    TCCAACGGTTGTTCAGCGAAAGGAGCGGCTTCGGAACCC 25nm    STD
TALOS_29    TAAAACATAGTTAAATAATACATTTGAGGAATCTGGTCA 25nm    STD
TALOS_30    ATCTTTAGGAGCACTAGAAGGTTGTCTTTAATCACCTTGCTGAATGAAAGG 25nm    STD
TALOS_31    ACCAGTAGCGACATTAAAGGTGAATATATTGAATCAAGTTTGCCTTTTGGCCGGAAAC  25nm    STD
TALOS_32    CAAATATACCGGAACTTAGAGCTTAATTTAAATGTGTAATGG  25nm    STD
TALOS_33    TAAAGTATTTTTTTCGGTGTCTGTCTGGAGCA    25nm    STD
TALOS_34    TGCTCAGTTTTTTTTACCAGGCGTCAGCGGAG    25nm    STD
TALOS_35    ACCCATGTACACCGTACTCAGGAGGCCCGGAAGAATTTT 25nm    STD
TALOS_36    AGAAACCACTCAAAATTATTTTTTTTTTGCACGTAATCCTTGAA    25nm    STD
TALOS_37    ACCTGAGCACCACAGTAACAGTACCTTAACGTTTGCTTC 25nm    STD
TALOS_38    AGTTTTAACAATCTACGTTTTTTTTTAATAAAACGGGGAGAATT    25nm    STD
TALOS_39    AACTGAACACCCTGAAATTAGACAACTAACGGAACAACATTAGGAAACAGG 25nm    STD
TALOS_40    CAATACTGCTTGCCCTTCATTTTTTTCCGCCTGGCTTACAAAAT    25nm    STD
TALOS_41    AGCCTGTTTTCGAGCCAGTTTTTTTTAATAAGAGATAAACCAAG    25nm    STD
TALOS_42    AGATGAACGGTGCGAGAGGCTTTTTTTTTTTGCAAAAGAAGTTTTTCTT   25nm    STD
TALOS_43    TTCACCAGTGAGACGGCAGGGTGGTTTTGCCAGAGGGGGTAAGTTGCGTAT 25nm    STD
TALOS_44    ATTGCTCCTCGGAAACCAGTTTTTTTGCAAAGCGCGCTAACTCA    25nm    STD
TALOS_45    CAAGCTTGCTTTTCGCTATTACGCCGCGATCGCCGGAAG 25nm    STD
TALOS_46    GGGAGTTAAGATTTGTATCTTTTTTTATCGCCTGAGGCTGACCT    25nm    STD
TALOS_47    TCATCAAGAGTAATCTATAGGCTTAAATTGTGTCGAAATCCGAGTACAGAC 25nm    STD
TALOS_48    CCACCCTCAAACAAATAAATTTTTTTTCCTCATTACTGGCTCAT    25nm    STD
TALOS_49    CGAGAAACACTGTGAATTCTCTGAATTTACCGTTCCTATCAACTT   25nm    STD
TALOS_50    ATTGTATTTTTTTTCGGTTTATCAGCGATTAT    25nm    STD
TALOS_51    GACAGCATCAAACAATGACAACAACATACCGAAAGAGGC 25nm    STD
TALOS_52    AGAATCAGAGCAAATTAACTTTTTTTCGTTGTAGCTGACGCTCA    25nm    STD
TALOS_53    ATCGTCTGAAATGGATTACATTTAATACTTCTTTGATTAGTATTCTCATGG 25nm    STD
TALOS_54    ACCGCCTGCTTAAATCCTTTTTTTTTTGCCCGAACTACTTCTGA    25nm    STD
TALOS_55    ATAATGGAAGGGTTAGTGGATTAGTTATTAATTTTAAAAGTTGATAATCCT 25nm    STD
TALOS_56    TCAAAAGTTTTTTTAATAGCCCGGGCGCTGGC    25nm    STD
TALOS_57    TAAAGGGAGCGGAAGAACAGTTTGGAACAAGAGTCCCGGGCGAGA   25nm    STD
TALOS_58    AATTCATCAATAACCCTTCTGACCTTTTTTTTGAAAGCGTCAGTGAGGC   25nm    STD
TALOS_59    TATGGTTGCTTTGACGAGCCAGACAACCTGAGA   25nm    STD
TALOS_60    ACGGAATAAGTTACAAAGAACGCGTTTTTTTAGAAAACTTAAGTATTAG   25nm    STD
TALOS_61    CTAAAGCATGCAAATACCGAACGAACTAAATTATAGATT 25nm    STD
TALOS_62    CAAGAAATTTTTTTCAATGAAATTTGAGGCAG    25nm    STD
TALOS_63    CCGGAACCAGAGCCACCACTACCGAAGCCGCCA   25nm    STD
TALOS_64    AACGTAGAAGCGACATTCATTTTTTTACCGATTGAAGACTGTAG    25nm    STD
TALOS_65    CAACAGTAGGGCCGCAATAATAACTTTTTTTGGAATACCCAAATTCATA   25nm    STD
TALOS_66    TGGTTTACCAGCGCCACAATAGAAAAAGAACTGGCATGATTAAGTATTTTG 25nm    STD
TALOS_67    AAAACATCGACCGACCGTTTTTTTTGTGATAAATAACAACGC  25nm    STD
TALOS_68    CAACATGTAATTTAGGCCATATTTAAGGCGTTAAATAAGAATAATTAATTG 25nm    STD
TALOS_69    AAGCGGATTTTTTTTTGCATCAAGCACTCCAG    25nm    STD
TALOS_70    TAACAACCGGATGGGCAAACTCCAACAGAGCCCGAAGTATCG  25nm    STD
TALOS_71    GGTGGCATCCAAAGGCGTTGATTCCCCTTTA 25nm    STD
TALOS_72    CTAATTTACCTTTCCTTAAAGTAATTAAGAG 25nm    STD
TALOS_73    CCTGTGTATACGAGGTGCGGGCCTATAAA   25nm    STD
TALOS_74    CGGGTAAAAAACGATAGTTGCGCGAAGCA   25nm    STD
TALOS_75    CACCGAGTAAAAGAGTTTATAATAAGAATA  25nm    STD
TALOS_76    GTCAGACGATTGGCCTCAGGAGGAGCAATA  25nm    STD
TALOS_77    GTCACCAATCGACAGACGGAAATTAGGGTTT 25nm    STD
TALOS_78    GCCTCAGGCCCGTGGGAACAAACGGCGGCGACGACAAGACTT  25nm    STD
TALOS_79    GATAGGTGCATCTGTAATTCGAGTGCAAC   25nm    STD
TALOS_80    TGGGGCGCCGGTAATCGAAATGGTAGTTTGACCATTAGAT    25nm    STD
TALOS_81    TCAGGGAACAAACTACAACACTAAAGGACACCACCCCCTCAGAACCGCCAC 25nm    STD
TALOS_82    CTGTATGCAGCCCTGTTTCGTCACCAGTTAGCAAGCCGCCAC  25nm    STD
TALOS_83    AGAGGCGGAAAACAAAATTATTAAGACGTTACAAATCGCCTGATTGCTTTG 25nm    STD
TALOS_84    TGTAAATATTTGAAGAAACAAACATCAAAATTATTTCGGGAG  25nm    STD
TALOS_85    TCAAAAAAGTCAGAGTACCACAAGATTCATCAGTTGAG  25nm    STD
TALOS_86    GATTAGTTTCCCAATCCCCCGACTGAACGCGAGGCGTTTT    25nm    STD
TALOS_87    GAAAAATACAAGCAAGCCGCCTGTCAACATGTTCAGCTAA    25nm    STD
TALOS_88    AGCTGCAACAGCTGAGGAATCGTAGACTGGATAGCGTC  25nm    STD
TALOS_89    ACGTTGTCCCCGGGTACCGCACTGCCCGTTTTCCCGCGATTAAGTTGGGTA 25nm    STD
TALOS_90    CATAAAGGGTCATACGACTCTAGAGGATAAAACGAGAAAGGG  25nm    STD
TALOS_91    ATAACCCGGAACCGACAAGAACCGACGGTCTGTTACTTAGCCGGAA  25nm    STD
TALOS_92    GAGTAACAGTGAATAAGGCGGGAAGAAAGGGGTCAGAGTGTACTGGTAATA 25nm    STD
TALOS_93    TAATCATCAGAACGAAAGCTGCTCATTCAGTGCCCACATGGC  25nm    STD
TALOS_94    GGATCGTGGCTTTGAGGACTACAACGGAAGGCCGCGTCGCTGAGGCTTGCA 25nm    STD
TALOS_95    AAAAGAAAAGTTTCGCAACGGCTACAGACACCCTCCACGCAT  25nm    STD
TALOS_96    TTTAAATATCCAGATTTACATTGCGGCCTTGCCTGAGTAGAAGAAC  25nm    STD
TALOS_97    GACCAGTATCATCACCTACCATACAGAAGGTCATTTTGCGGAACAA  25nm    STD
TALOS_98    ACCATCATAAAGCACTAAAGCGCGTAACGGCCCACGCGAAAAACCGTCTAT 25nm    STD
TALOS_99    AAGGAAGCCCCGATGGGTCGAGGTGCCGCCCAAATCGTGGAC  25nm    STD
TALOS_100   AATGCGCAGGCCGAGTCCATCACGCGGGAGACGTGCTTTCCTCGTT  25nm    STD
TALOS_101   GAGAGCCCCCTCAATCAATCAACTCGTAAACAGTGGGCGGTCAGTATTAAC 25nm    STD
TALOS_102   AGAGCCGCAACAGTCCTCAAATATCAAAAGCAGCACAGAAGA  25nm    STD
TALOS_103   GCCATCTAGCCACCATATTCACAGAACCGCGCCTCCCTCAGAGCCG  25nm    STD
TALOS_104   ATTAGCAATTCGGTCATTTAGAGCGTCACCGACTTGAGCC    25nm    STD
TALOS_105   TATAACTTGGCAACGACAAAAGGAATACATACGCAGTATGTTAGCA  25nm    STD
TALOS_106   CAGATAGTACAAATGAGGCATTTAGTATCACATAATTACTAGAAAA  25nm    STD
TALOS_107   ATTTTTGCCGTCGGATTCTTTCTGGTGCTTTGATATTAGAGAGTACCTTTA 25nm    STD
TALOS_108   GGCGCATCGTAACCGTCACGTTGGCTTTCATCAACATGCTGAATTCAAAGC 25nm    STD
TALOS_109   AACAAGAGAATCGATGCTGAGAGGAAGTTTCATTCCATAGATTTCAATAACCTG  25nm    STD
TALOS_110   TGAGAATAGAAAGGAAAACAGTTGATAAGTGCCGTCGACCGCCACTCATTT 25nm    STD
TALOS_111   ATTCCACAGAGGATTTTTGATATAAGTATAGTTTAGTACCCAATAGGA    25nm    STD
TALOS_112   AACATAGCGATAGCTTCCTTAGAAAACAGAAATAAAGAACGGATATCGCGC 25nm    STD
TALOS_113   TAACAATTTCCGTCGCTGTAGATTTTCAGGTTTTTACACATTTCAATT    25nm    STD
TALOS_114   AAACAGCCATATTATTTTGCCAGCCTGAGAGAGTTGCATTCTAATGCGGGAGGT  25nm    STD
TALOS_115   TACCGCACTCATCGAGCGGGTATATATAAAGTACCGACAATAAATTATCAACAA  25nm    STD
TALOS_116   CATTAATTGCGTTGCGTGAGTGACATTCGCCATTCAGCTGCAAGAGTCACG 25nm    STD
TALOS_117   TCGTAATCATTGTAAAGAACTGTTGGGAAGGAGCTGGCCGGCCAGTGC    25nm    STD
TALOS_118   TATACCAGTCAGGACGTTAAGAAAAGCCAGAATGGAAGATACAGGTGCCTT 25nm    STD
TALOS_119   ATTTCGGAACCTATAGTAAGCGTCATGTATAAA   25nm    STD
TALOS_120   ACCAAGCGCGAAACAAGACCCCCAGCTTGCTTTCGAGATATTCGTTTTGCG 25nm    STD
TALOS_121   TTTCATGAGGTACACTATCTTAAACAGCTTGCATCGCCAGCAGCGAAA    25nm    STD
TALOS_122   AAGTGTAGCGGTCACGGCGCTAGAGATAGGGTTGAGTTCAAAGGTACGTGA 25nm    STD
TALOS_123   ACTTTACAAACAATTCGATTTAGTTTCAAATATATTTGAGGTGACCACGCT 25nm    STD
TALOS_124   GTTGGCAAATTCAATAGTTTCATCTTCTGACCCACCAGAATGAAAAAT    25nm    STD
TALOS_125   CGCGTTTTCATCGGCATAGCGTCGGGAGGGAAGGTAATATCACCCAGCAAAATC  25nm    STD
TALOS_126   CCAGCTTTCCGGCACCGAAGATCAAAGATTAAGAGGAGTCAGGAAGAGGTC 25nm    STD
TALOS_127   ATTTAGGAAGGTAATTGAGTTTTTTTCGCTAATTAGAAACCA  25nm    STD
TALOS_128   GTTAAGCCCAATAATCAACCCACAAGAATTGA    25nm    STD
TALOS_129   CCTCAGAGCATTGCGAATATTTTTTTATAATTTCTAATAGTA  25nm    STD
TALOS_130   CAGTTAAACGTAACAGTAGTAAATTGGGCTTGA   25nm    STD
TALOS_131   GATGGTTTAATTTTCTGAAACATGTTTTTTTAAAGTATTCGATAGCA 25nm    STD
TALOS_132   GGCTCCAAAAGGAGCAAAATCTCCAAAAAAAA    25nm    STD
TALOS_133   CGAGGCGCAGGATATTCATTTTTTTTTACCCAAATCATGCCCCCTGCCT   25nm    STD
TALOS_134   GATTAGGATTAGCGTTGACTCCTCAAGAGAAG    25nm    STD
TALOS_135   TGGGCGCGCATTAATGAATCGGCCAACGCGCGG   25nm    STD
TALOS_136   GGAGAGGCGGTTTCAGAAAACGAGTTTTTTTAATGACCAATGCCACT 25nm    STD
TALOS_137   ACGCCAGGGCTTTCCAGTCTTTTTTTGGGAAACCTGTTGAATCCCCCTC   25nm    STD
TALOS_138   GACTATTATAGTCACGATCAGGTCTTTACCCT    25nm    STD
TALOS_139   TGCAGAACGCGTTTTTATTTTTTTTTTTCATCGATCCTGAAT  25nm    STD
TALOS_140   AGCAAATCATGCCCCAGTTTTTTTCAGGCGATTATCCGCT    25nm    STD
TALOS_141   AGTGTTTCTTTAAAGGGATTTTAGACAGGAACG   25nm    STD
TALOS_142   GTACGCCAGAATTATTTTTGAATGTTTTTTTGCTATTAATCTAAAAT 25nm    STD
TALOS_143   ACCCAGCTAAGCGTCTGGTCCACGCTGGTTGATATAGACCGCGCCCAATAGCA   25nm    STD
TALOS_144   TCGGCAAAATCCCTTCGATGGTGGTTCCGAAA    25nm    STD
TALOS_145   CGTGGCAACGTATACTAAACAGGCGCTACAGGGCGCGTAC    25nm    STD
TALOS_146   AATTGAGACAACTATAATGGTTTGAAATCCATTAAGCGAACTGATAGCCCT 25nm    STD
TALOS_147   AATACCAAGCTGAGAAGAGTTTTTTTTCAATAGAAGTTTTGT  25nm    STD
TALOS_148   TCACAATAAATATAAAAGAAACGCAAAGACACC   25nm    STD
TALOS_149   AGACTACCTTTTTACAAAATCATAGGTCTGAG    25nm    STD
TALOS_150   CAAATCCAATCGCAAGACTCCTTATTACATAAAGGATATGTAAATGCTGATG    25nm    STD
TALOS_151   ACATTTCGCTAAAACTAGCTTTTTTTATGTCAAGTACATAAA  25nm    STD
TALOS_152   AAATACCTAACAATATTACCGCCAGCCATTGCA   25nm    STD
TALOS_153   ATTTTTTTGTTAGAGCTTGACGGGGAAA    25nm    STD
TALOS_154   GCCGGCGAACGTTCTGGCCTTCCTTTTTTTTGTAGCCAGTGTAGATG 25nm    STD
TALOS_155   AAAGCCCCAAAAACATCCGGTTGATAATCAGA    25nm    STD
TALOS_156   TGTTAAAATTCGCAATAACATCACTTGCTGGTAATTGTAAACGTTAATATTT    25nm    STD
TALOS_157   TCAAAAATAATTCGACTATTAAAGAACAAGTTTTTAACCAATAGGAACGCCA    25nm    STD
TALOS_158   ACATGTTTTAAATACTATAATGCTGTAGCTCA    25nm    STD
TALOS_159   GAAGCGCCAATGAAAATAGCAGCCTTTACAGAG   25nm    STD
TALOS_160   CAGGCGCTGAACTGACCAACTTTGAAAGAGGAC   25nm    STD
TALOS_161   AGCGAACCTAAATAAGAAATTTTTTTCGATTTTTTGTATACATAACGCC   25nm    STD
TALOS_162   ATAAAAACCAAAATCGACCTGCTCCAAATCATAAGTCGTTTACCAGACGACG    25nm    STD
TALOS_163   GATTGTTAATATTCCTGATTATCAGATGATGGC   25nm    STD
TALOS_164   GGCCAACAGAGATATGAGTAACATTAAGCGGAATTAATAAAAGGGACATTCT    25nm    STD
TALOS_165   GCATTGATGACCCTCAGAGCCGCCACCAGAACC   25nm    STD
TALOS_166   AGAATCGCATCTTACCAGTATAAAGCCAACGCT   25nm    STD
TALOS_167   GCTATCTCGGAACCCACCCTCAGTTTCATAATCAAAATCA    25nm    STD
TALOS_168   AAGGAAACCGAGGAAAACACCGGAATTATGCGTTACCGAACAAAGTTACCAG    25nm    STD

https://github.com/CMU-Integrated-Design-Innovation-Group/mango/tree/main



#AFWERX #SPACEWERX 

Mars Perseverance Sol 1531: Front Left Hazard Avoidance Camera (Hazcam) gif

 

Mars Perseverance Sol 1531: Front Left Hazard Avoidance Camera (Hazcam) gif

NASA's Mars Perseverance rover acquired these images of the area in front of it using its onboard Front Left Hazard Avoidance Camera A.

Images acquired on June 10, 2025 (Sol 1531) at the local mean solar time of 14:50:04 to 14:56:49.

Image Credit: NASA/JPL-Caltech

Assembled by Barley Culiner with GIMP

Mars Perseverance Sol 1531: Front Left Hazard Avoidance Camera (Hazcam) gif

NASA's Mars Perseverance rover acquired these images of the area in front of it using its onboard Front Left Hazard Avoidance Camera A.

Images acquired on June 10, 2025 (Sol 1531) at the local mean solar time of 14:50:04 to 14:56:49.

Image Credit: NASA/JPL-Caltech

Assembled by Barley Culiner with GIMP

20250611

Mars Perseverance Sol 1531: Left Navigation Camera (Navcam) gif

 dust devil at left

Mars Perseverance Sol 1531: Left Navigation Camera (Navcam) gif

NASA's Mars Perseverance rover acquired these images using its onboard Left Navigation Camera (Navcam). The camera is located high on the rover's mast and aids in driving.

Images acquired on June 10, 2025 (Sol 1531) at the local mean solar time of 10:54:28 to 10:54:36.

Image Credit: NASA/JPL-Caltech

Assembled by Barley Culiner with GIMP

----------

 dust and wind at top right

Mars Perseverance Sol 1531: Left Navigation Camera (Navcam) gif

NASA's Mars Perseverance rover acquired these images using its onboard Left Navigation Camera (Navcam). The camera is located high on the rover's mast and aids in driving.

Images acquired on June 10, 2025 (Sol 1531) at the local mean solar time of 10:55:40 to 10:55:48.

Image Credit: NASA/JPL-Caltech

Assembled by Barley Culiner with GIMP

----------

 dust devil at center left, dust and wind at right center

Mars Perseverance Sol 1531: Left Navigation Camera (Navcam) gif

NASA's Mars Perseverance rover acquired these images using its onboard Left Navigation Camera (Navcam). The camera is located high on the rover's mast and aids in driving.

Images acquired on June 10, 2025 (Sol 1531) at the local mean solar time of 10:56:10 to 10:56:19.

Image Credit: NASA/JPL-Caltech

Assembled by Barley Culiner with GIMP

----------

 dust devil on far right

Mars Perseverance Sol 1531: Left Navigation Camera (Navcam) gif

NASA's Mars Perseverance rover acquired these images using its onboard Left Navigation Camera (Navcam). The camera is located high on the rover's mast and aids in driving.

Images acquired on June 10, 2025 (Sol 1531) at the local mean solar time of 10:56:41 to 10:56:49.

Image Credit: NASA/JPL-Caltech

Assembled by Barley Culiner with GIMP


20250610

RV 252025.160-2

Remote biological manufacturing 

Mechanism 

Force delivery to any point x,y,z,t

ADDITIVE MANUFACTURING, ADDITIVE DEPOSITION, ADDITIVE AGGLOMERATION, ADDITIVE LAYERING, STEREOLITHOGRAPHY, and SELECTIVE LASER SINTERING

Hardware 

Quantum teleportation 

Quantum communication 

Rough schematics 

https://blogbarley.blogspot.com/2025/05/252025141-additive-biomanufactured.html 252025.141 Additive Biomanufactured Explorers/Colonists/Combatants

https://blogbarley.blogspot.com/2025/05/252025140-human-agsi-fusion-for-quantum.html 252025.140 Human-AGSI fusion for quantum teleportation/matter creation xyzt

https://blogbarley.blogspot.com/2025/04/thoughts-on-quantum-teleportationmatter.html Thoughts on quantum teleportation/matter creation to any point in the multiverse

https://blogbarley.blogspot.com/2025/01/rough-data-for-thought-experiment-on.html Rough data for a thought experiment on raw biological materials for a space based projected holographic additive manufacturing craft


Authored by Jack Brownhill

Hard Science Fiction Data Harvest

chambre froide data, image info.

20250606

252025.157 Program Eizariya

252025.157 Program Eizariya

Run on Earth Planet Simulation Prime 033

Whisk Experiment

To Take Possession of the System in Full

Nanobot System

Medical Intervention

Promise of Religious Healing

Cult-like following


Networked Nanobots to Networked Humans, Massive Organic Supercomputer

-----

Hardware

https://blogbarley.blogspot.com/2025/05/dna-origami-nanobots.html DNA Origami Nanobots

https://blogbarley.blogspot.com/2025/05/dna-origami-combined-with-ca.html Highly functional nanobots

https://blogbarley.blogspot.com/2025/05/nanobot-logistics.html Nanobot logistics

https://blogbarley.blogspot.com/2024/06/micromachined-nanobot-human-command-and.html Micromachined nanobot Human command and control system

-----

Software

https://blogbarley.blogspot.com/2025/04/252025119_29.html 252025.119 Б Dust draft

https://blogbarley.blogspot.com/2025/01/consciousness-transfer-device.html Consciousness transfer device

https://blogbarley.blogspot.com/2025/04/252025114-cybernetic-control-system-and.html 252025.114 cybernetic control system and mind backup

https://blogbarley.blogspot.com/2025/04/memory-reconfiguration.html Memory Reconfiguration



Data liberated from backup system Churyumov-Gerasimenko  https://barleyculinermars.blogspot.com/2024/06/target-67pc-g-gif_29.html

Comparison of pyramids

Comparison of pyramids SMIL Comparison of approximate profiles of some pyramidal or near-pyramidal buildings by CMG Lee. Where the base is rectangular, the longer side is shown. Dotted lines indicate original heights, where data is available. Hover over a label or profile to highlight it, and click the (i) icon for its Wikipedia article. 350 m 300 m 250 m 200 m 150 m 100 m 50 m 0 m 50 m 100 m 150 m 200 m 250 m 300 m 350 m 50 m 100 m 150 m 200 m 250 m 300 m 350 m 12. Great Pyramid of Cholula Cholula, Mexico, c.900, 66 m 8. Mount Li/Qin Shi Huang mausoleum Xi'an, China, c.210 BC, 47 m (was 76 m) 18. Ryugyong Hotel Pyongyang, North Korea, under construction, 330 m 17. The Shard London, United Kingdom, 2012, 309.6 m 14. Transamerica Pyramid San Francisco, United States of America, 1972, 260 m 5. Great Pyramid of Giza/Khufu/Cheops Giza, Egypt, c.2560 BC, 138.8 m (was 146.5 m) 6. Pyramid of Khafre/Chefren Giza, Egypt, c.2530 BC, 136.4 m (was 143.5 m) 16. Luxor Las Vegas pyramid Las Vegas, United States of America, 1993, 111 m 4. Red/North Pyramid Dahshur, Egypt, c.2580 BC, 104 m 3. Bent Pyramid Dahshur, Egypt, c.2600 BC, 101.1 m 2. Collapsed pyramid at Meidum Meidum, Egypt, c.2600 BC, 65 m (was 93.5 m) 10. Pyramid of the Sun Teotihuacán, Mexico, c.100, 75 m 7. Pyramid of Menkaure/Mycerinus Giza, Egypt, c.2500 BC, 65.5 m 1. Pyramid of Djoser Saqqara, Egypt, c.2610 BC, 62.6 m 11. Pyramid of the Moon Teotihuacán, Mexico, c.300, 43 m 9. Pyramid of Cestius Rome, Italy, c.12 BC, 37 m 13. El Castillo Chichen Itza, Mexico, c.1000, 30 m 15. Louvre Pyramid Paris, France, 1989, 20.6 m Bosnian Pyramid of the Sun (disputed) Ryugyong Hotel The Shard Transamerica Pyramid Great Pyramid of Giza/Khufu/Cheops Pyramid of Khafre/Chefren Luxor Las Vegas pyramid Red/North Pyramid Bent Pyramid Collapsed pyramid at Meidum Mount Li/Qin Shi Huang mausoleum Pyramid of the Sun Great Pyramid of Cholula Pyramid of Menkaure/Mycerinus Pyramid of Djoser Pyramid of the Moon Pyramid of Cestius El Castillo Louvre Pyramid

20250605

Mars Perseverance Sol 1525: Front Left Hazard Avoidance Camera (Hazcam) gif


Mars Perseverance Sol 1525: Front Left Hazard Avoidance Camera (Hazcam) gif

NASA's Mars Perseverance rover acquired these images of the area in front of it using its onboard Front Left Hazard Avoidance Camera A.

Images acquired on June 4, 2025 (Sol 1525) at the local mean solar time of 11:51:52 to 12:12:14.

Image Credit: NASA/JPL-Caltech
Assembled by Barley Culiner with GIMP

Mars Perseverance Sol 1525: Front Left Hazard Avoidance Camera (Hazcam) gif

NASA's Mars Perseverance rover acquired these images of the area in front of it using its onboard Front Left Hazard Avoidance Camera A.

Images acquired on June 4, 2025 (Sol 1525) at the local mean solar time of 11:51:52 to 12:12:14.

Image Credit: NASA/JPL-Caltech
Assembled by Barley Culiner with GIMP

Mars Perseverance Sol 1525: Right & Left Mastcam-Z Camera stitch


Mars Perseverance Sol 1525: Left Mastcam-Z Camera stitch

NASA's Mars Perseverance rover acquired these image using its Left Mastcam-Z camera. Mastcam-Z is a pair of cameras located high on the rover's mast.

Images acquired on June 4, 2025 (Sol 1525)

Image Credit: NASA/JPL-Caltech/ASU
Assembled by Barley Culiner with Microsoft ICE
Additional editing with GIMP


Mars Perseverance Sol 1525: Right Mastcam-Z Camera stitch

NASA's Mars Perseverance rover acquired these image using its Right Mastcam-Z camera. Mastcam-Z is a pair of cameras located high on the rover's mast.

Images acquired on June 4, 2025 (Sol 1525)

Image Credit: NASA/JPL-Caltech/ASU
Assembled by Barley Culiner with Microsoft ICE
Additional editing with GIMP

MAGICS

MAGICS

Whisk Experiment

https://blogbarley.blogspot.com/2025/05/psyops-opportunity-bio-infectiontattoo.html PSYOP Opportunity: Bio Infection/Tattoo (Antenna) as Object of Beauty

https://blogbarley.blogspot.com/2025/05/ca-electrothrix-yaqonensis.html Microbial Antenna as Identification System MAIS

https://blogbarley.blogspot.com/2025/05/darpasn25-75.html data compilation

https://blogbarley.blogspot.com/2025/04/virtual-singapore.html Virtual Singapore

Whisk Experiment

https://www.darpa.mil/research/programs/methodological-advancements-generalizable-insights-complex-systems

https://www.youtube.com/watch?v=1gSADCe1E4c

directly converting nuclear radiation into electricity

Whisk Experiment

Layered and stacked photovoltaics for directly converting nuclear radiation into electricity
(inner shell lined)


https://blogbarley.blogspot.com/2025/05/darpa-sn-25-78.html high-power direct energy conversion of nuclear radiation into electricity



directly converting nuclear radiation into electricity visualization

Depositing Metal On Glass With Fiber Laser


Whisk Experiment

Depositing Metal On Glass With Fiber Laser

https://hackaday.com/2025/06/02/depositing-metal-on-glass-with-fiber-laser/

https://youtu.be/J0NNO91WyXM?si=TNgyAzAYk0yK4e6q



https://www.youtube.com/watch?v=e_rHSXYV_u0&t=1s

https://www.darpa.mil/research/programs/crystal-substrate-bonding


Monroe Institute

An OBE or Out-of-Body Experience with a PSI Component Monroe Institute


Remote Viewing with Joseph W. McMoneagle Monroe Institute


20250604

252025.154-5 Photonic System Ownership: Hard Light

252025.154-5 Photonic System Ownership: Hard Light

frozen light=hard light=holographic reality

Whisk Experiment

method:

Quantum teleportation, ER=EPR, additive manufacturing, Quantum entanglement, Quantum communication


.....

GitHub software links:

https://github.com/barleyjohn/IBM-Quantum-Learning-Tutorials/blob/main/teleportation.ipynb

https://github.com/barleyjohn/IBM-Quantum-Learning-Tutorials/blob/main/EPR-paradox.ipynb

https://github.com/barleyjohn/IBM-Quantum-Learning-Tutorials/blob/main/many-worlds.ipynb

https://github.com/barleyjohn/IBM-Quantum-Learning-Tutorials/blob/main/quantum-eraser.ipynb

https://github.com/barleyjohn/IBM-Quantum-Learning-Tutorials/blob/main/schrodingers-cat.ipynb

.....

Accumulated Data:

T=0 Electron creation/replacement https://blogbarley.blogspot.com/2024/08/electron-creationreplacement.html

real time digital twin modifications https://blogbarley.blogspot.com/2024/09/digital-twin-modifications-are-in.html

programmed photons, Quantum communication https://blogbarley.blogspot.com/2024/12/programmed-photons.html

Quantum nonlocality observer craft/constructor https://blogbarley.blogspot.com/2025/01/quantum-nonlocality-observer_3.html

coda 12025.1.11 & 12025.17 https://blogbarley.blogspot.com/2025/01/coda-12025111-1202517.html

MEMS optical tweezer additive manufacturing https://blogbarley.blogspot.com/2025/03/mems-optical-tweezer-additive.html

Photonic Holographic Quantum Singularity Computation https://blogbarley.blogspot.com/2025/03/photonic-holographic-quantum.html

Photonic knots Frozen light Matter creation and manipulation https://blogbarley.blogspot.com/2025/03/photonic-knots.html

Quantum Observable Multiverse Evaluation, modal realism https://blogbarley.blogspot.com/2025/03/quantum-observable-multiverse-evaluation.html

Delivering Quantum Entangled Persons Across Dimensions, hacking our current system https://blogbarley.blogspot.com/2023/05/the-midnight-gospel-official-music.html

252025.140 Human-AGSI fusion for quantum teleportation/matter creation xyzt https://blogbarley.blogspot.com/2025/05/252025140-human-agsi-fusion-for-quantum.html

https://www.cia.gov/readingroom/docs/CIA-RDP96-00792R000400330013-4.pdf

.....

References:

A Theory of Frozen Light According to the General Theory of Relativity Rabounski, Dmitri ; Borissova, Larissa https://ui.adsabs.harvard.edu/abs/2011APS..MAR.K1061R/abstract

The theory that the universe is a hologram explained in under 5 minutes https://www.brandeis.edu/now/2018/november/thetake-podcast-hologram.html

SUBJECT: Analysis and Assessment of Gateway Process https://www.cia.gov/readingroom/docs/cia-rdp96-00788r001700210016-5.pdf

THE PSYCHOTRONIC UNIVERSЕ https://www.cia.gov/readingroom/docs/CIA-RDP96-00792R000400330013-4.pdf


Sol 4559: Right Navigation Camera gif

dust devil near center

Sol 4559: Right Navigation Camera gif

Images taken by NAV_RIGHT_B onboard NASA's Mars rover Curiosity on Sol 4559 (2025-06-03T10:40:17.000Z) to (2025-06-03T10:43:32.000Z)

Credits: NASA/JPL-Caltech

Assembled by Barley Culiner with GIMP

Sol 4559: Mars Hand Lens Imager (MAHLI) gif

particle movement in multiple areas

Sol 4559: Mars Hand Lens Imager (MAHLI) gif

Images taken by MAHLI onboard NASA's Mars rover Curiosity on Sol 4559 (2025-06-03T13:35:59.000Z) to (2025-06-03T13:36:09.000Z)

Credits: NASA/JPL-Caltech/MSSS

Assembled by Barley Culiner with GIMP

20250603

Mars Perseverance Sol 1524: Left Navigation Camera (Navcam) gif

dust wind and dust devils


Mars Perseverance Sol 1524: Left Navigation Camera (Navcam) gif

NASA's Mars Perseverance rover acquired these images using its onboard Left Navigation Camera (Navcam). The camera is located high on the rover's mast and aids in driving.

Images acquired on June 3, 2025 (Sol 1524) at the local mean solar time of 14:48:22 to 14:48:30.

Image Credit: NASA/JPL-Caltech
Assembled by Barley Culiner with GIMP


enlarged