Blurting method is lowkey good

Prøphet

Prøphet

natural selection playing out in a godless way.
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1: biomolecules

Amino acid - polypeptide - protein

peptide bonds hold them together

structural, transport , metabolism, protection, enzymes speed up reactions fast enough to sustain life

primary: covalent

secondary, alpha helix / beta pleated: hydrogen

sugars: monosaccharides glucose fructose - disaccharides - polysaccharides starch cellulose glycogen

glycogen more loose with branches for animals short term

starches less branches tighter long term

cellulose coiled super tight makes up cell walls in plants

1 carbon 2 hydrogen 1 oxygen

lipids

fats oils waxes steroids all non polar

messengers, structure, heat retention, long term energy

saturated = carbon chain satured with hydrogens

unsaturated = carbon chain unsatured of hydrogen usually due to carbon double bonds

phospholipids polar head non polar tail make up plasma membranes 1 glycerol 2 fatty acids 1 phosphate head

cholest test est same skeleton different functional group r and always 4 fused c rings

lipids never form polymers

waxes waterproof

amino group of proteins nitrogenous

acidic group carboxyl cooh

denatured = shape lost, proteins shape = function, chaperone folds others, prion misfolded

denaturation by ph reversible, by heat irreversible

nucleic acids

nucleotides: adenine-thymine or uracil in rna, cytosine guanine

either 2 rings or 1 ring

atp adenoisine triphosphate energy stored in bond between 2nd and 3rd phosphate released when broken

dehydration = h2o removed, usually oh and h, from 2 monomers or polymers allowing atoms behind to bond
hydrolysis = h2o added to break apart bond

DNA->RNA->RIBOSOMES/ROUGH ER->GA->DESTINATION

Rna carries out DNA instructions
 
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Chemistry?
 
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cool thread, looksmax.org beats.
 
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Rough er proteins

smooth er lipids

chloroplasts have thylakoids and stroma liquid
mitochondrion have Cristal and matrix liquid

both prokaryotes that became symbiotic in eukaryotes, endosymbiotic, only organelles to have their own dna and ribosomes

ribosomes line rough er and cytoplasm

nucleolus around nucleus

nuclear pores 5 proteins

rna tells ribosomes to make proteins which are sent via vesicles into ga to be modified and then shipped out in vesicles again

vacuole = storage

lysosomes destroy, lysis = destruction, peroxisomes produce h2o2 in the process of reactions, both must be protected from rest of cell

cytoskeleton: intermediate are the horizontal struts, actin smallest mesh around membrane, microtubules long spoke highway for vesicles

mitochondrion produce atp

chloroplasts produce sugar food and water

solar energy + co2 + h2o = c6h12o6 glucose + o2

c6h12o6 + o2 = co2 + h2o + atp
 
polar - charged, nonpolar- non charged

polar hydrophilic nonpolar hydrophobic

valence shell wants to get to 8 or 0

covalent electron in outer shell shared ionic electron in outer shell taken

ionic creates cations + anions - due to proton electron imbalance resulting

nacl na+ cl-

crystals due to efficient matrix resulting from charges

h2o is covalent but as a polar molecule hydrogens are delta negative and oxygen delta positive due to electrons spending more time orbiting oxygen because of its size atomic number 6 vs 1

because hydrogen are partial negative attract partial positives like other oxygens in a group of h2os (hydrogen bonding)

h2o cohesive to self adhesive to matter, solid less dense than liquid due to hydrogen bonding from partial charges, 7ph

acids GIVE hydrogen bases GIVE hydroxides

isotope = different # neutrons than protons

electrons no weight
 
1: biomolecules

Amino acid - polypeptide - protein

peptide bonds hold them together

structural, transport , metabolism, protection, enzymes speed up reactions fast enough to sustain life

primary: covalent

secondary, alpha helix / beta pleated: hydrogen

sugars: monosaccharides glucose fructose - disaccharides - polysaccharides starch cellulose glycogen

glycogen more loose with branches for animals short term

starches less branches tighter long term

cellulose coiled super tight makes up cell walls in plants

1 carbon 2 hydrogen 1 oxygen

lipids

fats oils waxes steroids all non polar

messengers, structure, heat retention, long term energy

saturated = carbon chain satured with hydrogens

unsaturated = carbon chain unsatured of hydrogen usually due to carbon double bonds

phospholipids polar head non polar tail make up plasma membranes 1 glycerol 2 fatty acids 1 phosphate head

cholest test est same skeleton different functional group r and always 4 fused c rings

lipids never form polymers

waxes waterproof

amino group of proteins nitrogenous

acidic group carboxyl cooh

denatured = shape lost, proteins shape = function, chaperone folds others, prion misfolded

denaturation by ph reversible, by heat irreversible

nucleic acids

nucleotides: adenine-thymine or uracil in rna, cytosine guanine

either 2 rings or 1 ring

atp adenoisine triphosphate energy stored in bond between 2nd and 3rd phosphate released when broken

dehydration = h2o removed, usually oh and h, from 2 monomers or polymers allowing atoms behind to bond
hydrolysis = h2o added to break apart bond

DNA->RNA->RIBOSOMES/ROUGH ER->GA->DESTINATION

Rna carries out DNA instructions
Blurting is so good mirin
 
Christian Bale Oooo GIF
 
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