Compare commits

..

2 Commits

Author SHA1 Message Date
johnruina fba8eb990e 2026-09-11 20:34:48: Viruses 2026-09-11 20:34:49 -04:00
johnruina d612a58298 vault backup: 2026-09-10 01:15:21 2026-09-10 01:15:21 -04:00
9 changed files with 131 additions and 186 deletions
+89 -186
View File
@@ -1,205 +1,105 @@
{ {
"main": { "main": {
"id": "1d60a9785f69aac9", "id": "14e3fd988d4c6907",
"type": "split", "type": "split",
"children": [ "children": [
{ {
"id": "9449342f35f00ac4", "id": "afdb20ea5624f6c9",
"type": "tabs", "type": "tabs",
"dimension": 50.161812297734635,
"children": [ "children": [
{ {
"id": "470a0ec0619cc58a", "id": "41376d46a88f5cac",
"type": "leaf", "type": "leaf",
"state": { "state": {
"type": "markdown", "type": "markdown",
"state": { "state": {
"file": "Physics/Fluids/Fluid and Conservation Laws.md", "file": "chemistry/polyatomic ions.md",
"mode": "source", "mode": "source",
"source": false "source": false
}, },
"icon": "lucide-file", "icon": "lucide-file",
"title": "Fluid and Conservation Laws" "title": "polyatomic ions"
} }
}, },
{ {
"id": "ca462f3fa811b1ff", "id": "62887f0135acbc04",
"type": "leaf", "type": "leaf",
"state": { "state": {
"type": "markdown", "type": "markdown",
"state": { "state": {
"file": "Literacy/Buzzwords.md", "file": "physics/Thermodynamics/Thermal Energy Transfer and Equilibrium.md",
"mode": "source", "mode": "source",
"source": false "source": false
}, },
"icon": "lucide-file", "icon": "lucide-file",
"title": "Buzzwords" "title": "Thermal Energy Transfer and Equilibrium"
} }
}, },
{ {
"id": "64f0df5c090ab314", "id": "d202485ac5d02beb",
"type": "leaf", "type": "leaf",
"state": { "state": {
"type": "markdown", "type": "markdown",
"state": { "state": {
"file": "Physics/Electric Force, Field, and Potential/Electric Charge and Electric Force.md", "file": "biology/G11 Pre-AP Biology/Viruses.md",
"mode": "source", "mode": "source",
"source": false "source": false
}, },
"icon": "lucide-file", "icon": "lucide-file",
"title": "Electric Charge and Electric Force" "title": "Viruses"
} }
}, },
{ {
"id": "e8b85bce384dd481", "id": "8edfc72c6f42ca07",
"type": "leaf", "type": "leaf",
"state": { "state": {
"type": "markdown", "type": "markdown",
"state": { "state": {
"file": "Physics/Electric Force, Field, and Potential/The Process of Charging.md", "file": "literacy/fallacies.md",
"mode": "source", "mode": "source",
"source": false "source": false
}, },
"icon": "lucide-file", "icon": "lucide-file",
"title": "The Process of Charging" "title": "fallacies"
} }
}, },
{ {
"id": "c6bb88be45cee350", "id": "325d8c3c1a0cb17b",
"type": "leaf", "type": "leaf",
"state": { "state": {
"type": "markdown", "type": "markdown",
"state": { "state": {
"file": "Physics/Electric Force, Field, and Potential/Electric Fields.md", "file": "biology/G11 Pre-AP Biology/G11 Pre-AP Biology.md",
"mode": "source", "mode": "source",
"source": false "source": false
}, },
"icon": "lucide-file", "icon": "lucide-file",
"title": "Electric Fields" "title": "G11 Pre-AP Biology"
} }
}, },
{ {
"id": "ec4a5d04f2fafcf0", "id": "e628701901d5a399",
"type": "leaf", "type": "leaf",
"state": { "state": {
"type": "markdown", "type": "markdown",
"state": { "state": {
"file": "Physics/Electric Force, Field, and Potential/Electric Potential Energy.md", "file": "physics/Electric Force, Field, and Potential/Electric Force, Field, and Potential.md",
"mode": "source", "mode": "source",
"source": false "source": false
}, },
"icon": "lucide-file", "icon": "lucide-file",
"title": "Electric Potential Energy" "title": "Electric Force, Field, and Potential"
}
},
{
"id": "ba47f28ef24dbb2d",
"type": "leaf",
"state": {
"type": "markdown",
"state": {
"file": "Physics/Electric Force, Field, and Potential/Electric Potential.md",
"mode": "source",
"source": false
},
"icon": "lucide-file",
"title": "Electric Potential"
}
},
{
"id": "8516ca5e0d9ad990",
"type": "leaf",
"state": {
"type": "markdown",
"state": {
"file": "Physics/Electric Force, Field, and Potential/Capacitors.md",
"mode": "source",
"source": false
},
"icon": "lucide-file",
"title": "Capacitors"
}
},
{
"id": "d0249b0f23e5502e",
"type": "leaf",
"state": {
"type": "markdown",
"state": {
"file": "Physics/Electric Force, Field, and Potential/Conservation of Electric Energy.md",
"mode": "source",
"source": false
},
"icon": "lucide-file",
"title": "Conservation of Electric Energy"
}
},
{
"id": "f291c41ea15dc87f",
"type": "leaf",
"state": {
"type": "markdown",
"state": {
"file": "Physics/Torque and Rotational Dynamics/Connecting Linear and Rotational Motion.md",
"mode": "source",
"source": false
},
"icon": "lucide-file",
"title": "Connecting Linear and Rotational Motion"
}
},
{
"id": "aa28f30a11c35bff",
"type": "leaf",
"state": {
"type": "markdown",
"state": {
"file": "Physics/Electric Force, Field, and Potential/Capacitors.md",
"mode": "source",
"source": false
},
"icon": "lucide-file",
"title": "Capacitors"
}
},
{
"id": "0cf859e0a62de9b5",
"type": "leaf",
"state": {
"type": "markdown",
"state": {
"file": "Physics/Thermodynamics/Kinetic Theory of Temperature and Pressure.md",
"mode": "source",
"source": false
},
"icon": "lucide-file",
"title": "Kinetic Theory of Temperature and Pressure"
}
},
{
"id": "cecd41bd1ed89a81",
"type": "leaf",
"state": {
"type": "markdown",
"state": {
"file": "Physics/Thermodynamics/Ideal Gas Law.md",
"mode": "source",
"source": false
},
"icon": "lucide-file",
"title": "Ideal Gas Law"
} }
} }
], ],
"currentTab": 10 "currentTab": 2
}, },
{ {
"id": "25da4f0a48a8e7cd", "id": "73603821459935d0",
"type": "tabs", "type": "tabs",
"dimension": 49.838187702265365,
"children": [ "children": [
{ {
"id": "2a2c61d4f4ddce12", "id": "4113f5c6ad4fc2b2",
"type": "leaf", "type": "leaf",
"pinned": true, "pinned": true,
"state": { "state": {
@@ -216,15 +116,15 @@
"direction": "vertical" "direction": "vertical"
}, },
"left": { "left": {
"id": "8ee099bb473a4f17", "id": "19b49cd4c3759a9a",
"type": "split", "type": "split",
"children": [ "children": [
{ {
"id": "d7378f1095090234", "id": "2e293f6e16891a3c",
"type": "tabs", "type": "tabs",
"children": [ "children": [
{ {
"id": "713a2ea9096a5d46", "id": "85385ac3fdc16167",
"type": "leaf", "type": "leaf",
"state": { "state": {
"type": "file-explorer", "type": "file-explorer",
@@ -239,7 +139,7 @@
} }
}, },
{ {
"id": "fb224541f09f4cda", "id": "f5a4ddad0de631f7",
"type": "leaf", "type": "leaf",
"state": { "state": {
"type": "search", "type": "search",
@@ -256,7 +156,7 @@
} }
}, },
{ {
"id": "69e0d96b02da1e42", "id": "047575a510f168a2",
"type": "leaf", "type": "leaf",
"state": { "state": {
"type": "bookmarks", "type": "bookmarks",
@@ -269,22 +169,23 @@
} }
], ],
"direction": "horizontal", "direction": "horizontal",
"width": 331.5 "width": 300
}, },
"right": { "right": {
"id": "e96076b6c37da0cc", "id": "d7adab66dcffbce9",
"type": "split", "type": "split",
"children": [ "children": [
{ {
"id": "f7651d30e9565d20", "id": "abb8d4c5f9274c80",
"type": "tabs", "type": "tabs",
"children": [ "children": [
{ {
"id": "ee135818d6c8b392", "id": "fbdabe4afce5f930",
"type": "leaf", "type": "leaf",
"state": { "state": {
"type": "backlink", "type": "backlink",
"state": { "state": {
"file": "chemistry/chemical reactions.md",
"collapseAll": false, "collapseAll": false,
"extraContext": false, "extraContext": false,
"sortOrder": "alphabetical", "sortOrder": "alphabetical",
@@ -294,24 +195,25 @@
"unlinkedCollapsed": true "unlinkedCollapsed": true
}, },
"icon": "links-coming-in", "icon": "links-coming-in",
"title": "Backlinks" "title": "Backlinks for chemical reactions"
} }
}, },
{ {
"id": "9d9896c2b88ffecf", "id": "f814b5bbfa3764c5",
"type": "leaf", "type": "leaf",
"state": { "state": {
"type": "outgoing-link", "type": "outgoing-link",
"state": { "state": {
"file": "chemistry/chemical reactions.md",
"linksCollapsed": false, "linksCollapsed": false,
"unlinkedCollapsed": true "unlinkedCollapsed": true
}, },
"icon": "links-going-out", "icon": "links-going-out",
"title": "Outgoing links" "title": "Outgoing links from chemical reactions"
} }
}, },
{ {
"id": "bdf9798b4aa2a890", "id": "154e2efca20c3f30",
"type": "leaf", "type": "leaf",
"state": { "state": {
"type": "tag", "type": "tag",
@@ -326,7 +228,7 @@
} }
}, },
{ {
"id": "ffe9bfad7660d2a1", "id": "1a115061a16528f5",
"type": "leaf", "type": "leaf",
"state": { "state": {
"type": "all-properties", "type": "all-properties",
@@ -340,17 +242,18 @@
} }
}, },
{ {
"id": "2641f0e649856341", "id": "9b98b23e8032b9bf",
"type": "leaf", "type": "leaf",
"state": { "state": {
"type": "outline", "type": "outline",
"state": { "state": {
"file": "chemistry/chemical reactions.md",
"followCursor": false, "followCursor": false,
"showSearch": false, "showSearch": false,
"searchQuery": "" "searchQuery": ""
}, },
"icon": "lucide-list", "icon": "lucide-list",
"title": "Outline" "title": "Outline of chemical reactions"
} }
} }
] ]
@@ -364,65 +267,65 @@
"hiddenItems": { "hiddenItems": {
"templater-obsidian:Templater": false, "templater-obsidian:Templater": false,
"obsidian-kanban:Create new board": false, "obsidian-kanban:Create new board": false,
"obsidian-git:Open Git source control": false,
"switcher:Open quick switcher": false, "switcher:Open quick switcher": false,
"graph:Open graph view": false,
"canvas:Create new canvas": false, "canvas:Create new canvas": false,
"daily-notes:Open today's daily note": false, "daily-notes:Open today's daily note": false,
"templates:Insert template": false, "templates:Insert template": false,
"command-palette:Open command palette": false, "command-palette:Open command palette": false,
"bases:Create new base": false,
"audio-recorder:Start/stop recording": false, "audio-recorder:Start/stop recording": false,
"graph:Open graph view": false, "bases:Create new base": false,
"obsidian-excalidraw-plugin:New drawing": false "obsidian-excalidraw-plugin:New drawing": false,
"obsidian-git:Open Git source control": false
} }
}, },
"active": "713a2ea9096a5d46", "active": "d202485ac5d02beb",
"lastOpenFiles": [ "lastOpenFiles": [
"Physics/Thermodynamics/First Law of Thermodynamics.md", "Pasted image 20260911203414.png",
"Physics/Electric Force, Field, and Potential/Capacitors.md", "Pasted image 20260911112321.png",
"Physics/quantum mechanics.md", "Excalidraw/Drawing 2026-09-11 11.12.13.excalidraw.md",
"Physics/Electric Circuits/Electric Circuits.md", "Pasted Image 20260911112001_579.png",
"Physics/Torque and Rotational Dynamics/Connecting Linear and Rotational Motion.md", "biology/Biology AP Exam Tips.md",
"Physics/plancks constant.md", "Assets/Pasted image 20260911111837.png",
"Physics/Physics AP Exam Tips.md", "biology/G11 Pre-AP Biology/Viruses.md",
"Physics/Electric Force, Field, and Potential/Electric Potential Energy.md", "physics/Thermodynamics/Ideal Gas Law.md",
"Untitled", "biology/G11 Pre-AP Biology/G11 Pre-AP Biology.md",
"Physics/Electric Circuits", "physics/Electric Force, Field, and Potential/Electric Force, Field, and Potential.md",
"Physics/Electric Force, Field, and Potential/Electric Force, Field, and Potential.md", "Excalidraw",
"Physics/Electric Force, Field, and Potential/Electric Fields.md", "literacy/fallacies.md",
"Physics/Electric Force, Field, and Potential/Electric Charge and Electric Force.md", "biology/G11 Pre-AP Biology",
"Physics/Electric Force, Field, and Potential/Conservation of Electric Energy.md", "literacy/literacy.md",
"Physics/Electric Force, Field, and Potential/Electric Potential.md", "literacy/buzzwords.md",
"Physics/Electric Force, Field, and Potential/The Process of Charging.md", "physics/Thermodynamics/Specific Heat and Thermal Conductivity.md",
"Physics/Thermodynamics/Specific Heat and Thermal Conductivity 1.md", "physics/Thermodynamics/Specific Heat and Thermal Conductivity 1.md",
"Physics/Thermodynamics/Specific Heat and Thermal Conductivity.md", "physics/Electric Force, Field, and Potential/The Process of Charging.md",
"Physics/Electric Force, Field, and Potential", "physics/Electric Force, Field, and Potential/Electric Potential.md",
"Physics/Thermodynamics/Thermal Energy Transfer and Equilibrium.md", "physics/Electric Force, Field, and Potential/Electric Potential Energy.md",
"New Text Document.txt", "physics/Electric Force, Field, and Potential/Electric Fields.md",
"Physics/Work Energy and Power/physics.md", "physics/Electric Force, Field, and Potential/Electric Charge and Electric Force.md",
"Physics/Thermodynamics/Entropy and Second Law of Thermodynamics.md", "physics/Electric Force, Field, and Potential/Conservation of Electric Energy.md",
"Physics/Thermodynamics/Ideal Gas Law.md", "physics/Electric Force, Field, and Potential/Capacitors.md",
"Physics/Thermodynamics/Kinetic Theory of Temperature and Pressure.md", "physics/Electric Circuits/Electric Circuits.md",
"Physics/Fluids/Fluid and Conservation Laws.md", "physics/Electric Circuits",
"Physics/Fluids/Fluids.md", "Electric Charge and Electric Force.md",
"Physics/Oscillations/Frequency and Period of SHM.md", "physics/Thermodynamics/Entropy and Second Law of Thermodynamics.md",
"Physics/Torque and Rotational Dynamics/Newton's Second Law in Rotational Form.md", "physics/Electric Force, Field, and Potential",
"Tasks.md", "physics/Thermodynamics/Thermal Energy Transfer and Equilibrium.md",
"Physics/Thermodynamics", "Specific Heat and Thermal Conductivity.md",
"Physics/Fluids", "physics/Thermodynamics/First Law of Thermodynamics.md",
"Physics/Oscillations", "physics/Thermodynamics/Kinetic Theory of Temperature and Pressure.md",
"Physics/Torque and Rotational Dynamics", "physics/Thermodynamics",
"physics/Oscillations",
"physics/Fluids",
"physics/Torque and Rotational Dynamics",
"physics/Linear Momentum",
"Assets/Pasted image 20260819112153.png", "Assets/Pasted image 20260819112153.png",
"Physics/Linear Momentum", "physics/Work Energy and Power",
"Biology/Cellular Energetics",
"Pasted image 20260817125829.png",
"Assets/Pasted image 20260817123835.png", "Assets/Pasted image 20260817123835.png",
"Assets/Pasted image 20260817121113.png",
"Assets/Pasted image 20260817121129.png", "Assets/Pasted image 20260817121129.png",
"Pasted image 20260817121102.png", "Assets/Pasted image 20260817121113.png",
"Assets/Pasted image 20260817102835.png",
"Assets/Pasted image 20260817103921.png", "Assets/Pasted image 20260817103921.png",
"Assets/Pasted image 20260816081041.png", "Assets/Pasted image 20260817102835.png",
"Assets/Pasted image 20260816073410.png" "Assets/Pasted image 20260816081041.png"
] ]
} }
Binary file not shown.

After

Width:  |  Height:  |  Size: 179 KiB

Binary file not shown.

After

Width:  |  Height:  |  Size: 179 KiB

Binary file not shown.

After

Width:  |  Height:  |  Size: 324 KiB

Binary file not shown.

After

Width:  |  Height:  |  Size: 912 KiB

@@ -0,0 +1 @@
[[biology]]
+38
View File
@@ -0,0 +1,38 @@
[[G11 Pre-AP Biology]]
* Non-living
* Not capable of surviving on its own
* Acellular (Not made of cells)
* No cytoplasm, ribosomes, or membrane bound organelles.
* Doesn't produce energy.
* Essentially structures with genetic material (nucleic acid) and protein coating
* Shapes:
![[Pasted image 20260911203414.png|336]]
* Bacteriophages are complex viruses which attach to bacteria.
* Replicates doesn't reproduce
* Instructs host cell to make copies of virus DNA
# Lytic and Lysogenic Cycles
* Lytic:
* Cycle:
* Virus attaches to host cell (either enters or inserts)
* Tricks host cell to making copies of viral DNA/viral parts
* Host cell assembles new viruses
* Host cell releases new virus (some hosts will lysis)
* Make viruses and then releases them
* Takes pieces of membrane with it
![[Pasted image 20260911112321.png|371]]
# Classification
* Size and shape
* Type of nucleic acid
* Presence/absence of outer envelope
# Diagram
* Tail fiber shapes allow bacteriophages to infect different types of bacteria.
* Protein spike shapes allow it to enter different cells.
* Capsid
* Protective coating
* Nucleic Acid
* DNA or RNA
* Protein Spikes/Glycoprotein
* Allows them to attach and enter different cells
![[Pasted image 20260911111837.png]]
+2
View File
@@ -11,6 +11,7 @@ atrophy - partial/completely wasting away of a part of body
impiety - lack of respect for something considered sacred impiety - lack of respect for something considered sacred
unequivocally - in a way that leaves no doubt unequivocally - in a way that leaves no doubt
magnanimous - great of soul magnanimous - great of soul
luculent - clear/easily understood/light/shining
mildly buzzy buzzwords mildly buzzy buzzwords
@@ -23,6 +24,7 @@ olfactory - part of sensory system used for smells
nebulous - misty/foggy/mysterious nebulous - misty/foggy/mysterious
umbra - dark area umbra - dark area
exergy - useful energy exergy - useful energy
incontrovertibly - undeniably
Archaic Buzzwords: Archaic Buzzwords:
Forsooth - indeed/in truth Forsooth - indeed/in truth
+1
View File
@@ -8,3 +8,4 @@ appeal to hypocrisy/tu quoque - calling out another persons hypocrisy like eg yo
possibiliter ergo probabiliter/appeal to probability - this is likely so it must be true possibiliter ergo probabiliter/appeal to probability - this is likely so it must be true
false dilemma- presenting something as either this or that when there could be more options false dilemma- presenting something as either this or that when there could be more options
straw man - misrepresents opponents argument to make it easier to attack, eg "gmos are bad? so youre saying you like farmers losing money because of bugs?" straw man - misrepresents opponents argument to make it easier to attack, eg "gmos are bad? so youre saying you like farmers losing money because of bugs?"
cherry picking - picks specific parts that support their claim and ignore the countless other things that go against