\n \n \n \n model czaszowy,\n \n \n \n \n \n Aminokwasy bia\xc5\x82kowe,\n \n \n \n \n \n model pr\xc4\x99cikowo-kulkowy,\n \n \n \n \n \n metan,\n \n \n \n \n \n etan,\n \n \n \n \n \n eten,\n \n \n \n \n \n propan,\n \n \n \n \n \n 3dphoto,\n \n \n \n \n \n 3dmovie,\n \n \n \n \n \n model cz\xc4\x85steczki,\n \n \n \n \n \n Wyposa\xc5\xbcenie laboratorium,\n \n \n \n \n Hybrydyzacja sp3,\n \n \n \n Hybrydyzacja sp2,\n \n \n \n Hybrydyzacja sp,\n \n \n \n etyn,\n \n \n \n propen,\n \n \n \n propyn,\n \n \n \n hybrydyzacja orbitali atomowych,\n \n \n \n kwasy,\n \n \n \n Chlorowod\xc3\xb3r,\n \n \n \n Kwas borowy,\n \n \n \n Kwas siarkowy(VI),\n \n \n \n Kwas azotowy(V),\n \n \n \n energia j\xc4\x85drowa,\n \n \n \n reaktor j\xc4\x85drowy,\n \n \n \n bomba nuklearna,\n \n \n \n Piramida kwadratowa,\n \n \n \n Oktaedr,\n \n \n \n Bipiramida trygonalna,\n \n \n \n Bisfenoid,\n \n \n \n Kwadrat,\n \n \n \n Cz\xc4\x85steczka o kszta\xc5\x82cie litery T,\n \n \n \n Tetraedr,\n \n \n \n Piramida trygonalna,\n \n \n \n Budowa k\xc4\x85towa cz\xc4\x85steczki wody,\n \n \n \n Kszta\xc5\x82t liniowy,\n \n \n \n kszta\xc5\x82ty cz\xc4\x85steczek i jon\xc3\xb3w,\n \n \n \n Prolina,\n \n \n \n Seryna,\n \n \n \n Treonina,\n \n \n \n Tryptofan,\n \n \n \n Tyrozyna,\n \n \n \n Walina,\n \n \n \n zwi\xc4\x85zki organiczne,\n \n \n \n cz\xc4\x85steczka DNA,\n \n \n \n Komplementarno\xc5\x9b\xc4\x87 zasad,\n \n \n \n guanina,\n \n \n \n cytozyna,\n \n \n \n adenina,\n \n \n \n tymina,\n \n \n \n biuret,\n \n \n \n Eter dimetylowy,\n \n \n \n Mocznik,\n \n \n \n Chloroform,\n \n \n \n Kwas acetylosalicylowy,\n \n \n \n aspiryna,\n \n \n \n Aminy,\n \n \n \n aminokwasy,\n \n \n \n metyloamina,\n \n \n \n glicyna,\n \n \n \n fenyloalanina,\n \n \n \n Kwasy karboksylowe,\n \n \n \n kwas mr\xc3\xb3wkowy,\n \n \n \n kwas octowy,\n \n \n \n kwas stearynowy,\n \n \n \n model atomu,\n \n \n \n budowa atomu,\n \n \n \n model j\xc4\x85dra uranu-238,\n \n \n \n atom azotu,\n \n \n \n atom w\xc4\x99gla,\n \n \n \n model Bhora,\n \n \n \n prot,\n \n \n \n deuter,\n \n \n \n tryt,\n \n \n \n atom wodoru,\n \n \n \n alkohole,\n \n \n \n metanol,\n \n \n \n etanol glikol,\n \n \n \n glicerol,\n \n \n \n ksylitol,\n \n \n \n Witaminy,\n \n \n \n Retinol,\n \n \n \n witamina A1,\n \n \n \n Ryboflawina,\n \n \n \n witamina B2,\n \n \n \n Niacyna,\n \n \n \n witamina B3,\n \n \n \n Cholina,\n \n \n \n witamina B4,\n \n \n \n Kwas pantotenowy,\n \n \n \n witamina B5,\n \n \n \n Pirydoksyna,\n \n \n \n witamina B6,\n \n \n \n Biotyna,\n \n \n \n witamina B7,\n \n \n \n Kwas foliowy,\n \n \n \n witamina B9,\n \n \n \n Cyjanokobalamina,\n \n \n \n witamina B12,\n \n \n \n Kwas askorbinowy,\n \n \n \n witamina C,\n \n \n \n Cholekalcyferol,\n \n \n \n witamina D,\n \n \n \n Alfa-tokoferol,\n \n \n \n witamina E,\n \n \n \n ropa naftowa,\n \n \n \n platforma wiertnicza,\n \n \n \n rafineria,\n \n \n \n zbiornikowiec,\n \n \n \n statek obs\xc5\x82uguj\xc4\x85cy platformy wiertnicze,\n \n \n \n Katalizatory,\n \n \n \n reakcje katalityczne,\n \n \n \n Reaktor katalityczny,\n \n \n \n Otrzymywanie amoniaku,\n \n \n \n metoda Habera i Boscha,\n \n \n \n Elektroujemno\xc5\x9b\xc4\x87 pierwiastk\xc3\xb3w chemicznych,\n \n \n \n UK\xc5\x81AD OKRESOWY PIERWIASTK\xc3\x93W CHEMICZNYCH,\n \n \n \n METALE I NIEMETALE W UK\xc5\x81ADZIE OKRESOWYM PIERWIASTK\xc3\x93W,\n \n \n \n Aldehydy,\n \n \n \n ketony,\n \n \n \n estry,\n \n \n \n formaldehyd,\n \n \n \n aceton,\n \n \n \n etanian metylu,\n \n \n \n octanu metylu,\n \n \n \n Alanina,\n \n \n \n Arginina,\n \n \n \n Asparagina,\n \n \n \n Kwas asparaginowy,\n \n \n \n Cysteina,\n \n \n \n Kwas glutaminowy,\n \n \n \n Glutamina,\n \n \n \n model cz\xc4\x85steczki wody,\n \n \n \n Struktura krystaliczna lodu,\n \n \n \n Obieg wody w przyrodzie,\n \n \n \n dysocjacja wody,\n \n \n \n Model cz\xc4\x85steczki nadtlenku wodoru,\n \n \n \n H2O,\n \n \n \n Spalanie,\n \n \n \n reakcja chemiczna,\n \n \n \n Reakcja spalania w\xc4\x99gla,\n \n \n \n Reakcja spalania siarki,\n \n \n \n Reakcja spalania metanu,\n \n \n \n warunki niedoboru tlenu,\n \n \n \n p\xc3\xb3\xc5\x82spalanie,\n \n \n \n spalanie ca\xc5\x82kowite,\n \n \n \n spalanie pentanu,\n \n \n \n Izomeria,\n \n \n \n Chiralno\xc5\x9b\xc4\x87,\n \n \n \n Izomeria optyczna,\n \n \n \n (R)-bromochlorofluorometan,\n \n \n \n (S)-bromochlorofluorometan,\n \n \n \n Cykloheksan,\n \n \n \n konformacja krzes\xc5\x82owa,\n \n \n \n Peptydy,\n \n \n \n Enzymy,\n \n \n \n glicyloglicyna,\n \n \n \n Gly\xe2\x80\x93Gly,\n \n \n \n Kompleks anhydrazy w\xc4\x99glanowej z inhibitorem,\n \n \n \n acetazolamid,\n \n \n \n Trombina,\n \n \n \n hirudyna,\n \n \n \n Statyw laboratoryjny,\n \n \n \n Palnik Bunsena,\n \n \n \n Waga laboratoryjna,\n \n \n \n Wyci\xc4\x85g laboratoryjny,\n \n \n \n Prysznic bezpiecze\xc5\x84stwa,\n \n \n \n myjka do oczu,\n \n \n \n Zestaw do destylacji,\n \n \n \n Prob\xc3\xb3wki w statywie,\n \n \n \n Zlewka,\n \n \n \n Kolba sto\xc5\xbckowa,\n \n \n \n Kolba p\xc5\x82askodenna,\n \n \n \n Lejek,\n \n \n \n Cylinder miarowy,\n \n \n \n Kolby miarowe,\n \n \n \n Pipeta automatyczna,\n \n \n \n Pipeta z pompk\xc4\x85,\n \n \n \n Biureta,\n \n \n \n Szalki Petriego,\n \n \n \n Tygiel,\n \n \n \n Mo\xc5\xbadzierz,\n \n \n \n model 3D,\n \n \n \n acetylen,\n \n \n \n butan,\n \n \n \n pentan,\n \n \n \n oktan,\n \n \n \n ikozan,\n \n \n \n Cz\xc4\x85steczki pierwiastk\xc3\xb3w chemicznych,\n \n \n \n wod\xc3\xb3r,\n \n \n \n chlor,\n \n \n \n brom,\n \n \n \n jod,\n \n \n \n azot,\n \n \n \n tlen,\n \n \n \n argon,\n \n \n \n Glicyna,\n \n \n \n Histydyna,\n \n \n \n Izoleucyna,\n \n \n \n Leucyna,\n \n \n \n Lizyna,\n \n \n \n Metionina,\n \n \n \n Fenyloalanina,\n \n \n \n Wi\xc4\x85zanie kowalencyjne spolaryzowane,\n \n \n \n cz\xc4\x85steczka metanu,\n \n \n \n cz\xc4\x85steczka amoniaku,\n \n \n \n cz\xc4\x85steczka fluorowodoru,\n \n \n \n cz\xc4\x85steczka wody,\n \n \n \n cz\xc4\x85steczka chloru,\n \n \n \n Wi\xc4\x85zanie kowalencyjne,\n \n \n \n Wi\xc4\x85zania wodorowe w wodzie,\n \n \n \n Wi\xc4\x85zania wodorowe w amoniaku,\n \n \n \n Powstawanie wi\xc4\x85zania \xcf\x83,\n \n \n \n Powstawanie wi\xc4\x85zania \xcf\x80,\n \n \n \n reakcje chemiczne,\n \n \n \n Elektroliza wody,\n \n \n \n reakcja rozk\xc5\x82adu wody,\n \n \n \n Zestaw do elektrolizy,\n \n \n \n Reakcja syntezy wody,\n \n \n \n spalania wodoru,\n \n \n \n Reakcja kondensacji glicyny,\n \n \n \n Hydroliza sacharozy,\n \n \n \n Estryfikacja,\n \n \n \n Odmiany alotropowe w\xc4\x99gla,\n \n \n \n Nanorurka w\xc4\x99glowa,\n \n \n \n Grafit,\n \n \n \n Fuleren,\n \n \n \n Grafen,\n \n \n \n Lonsdaleit,\n \n \n \n Diament,\n \n \n \n sole,\n \n \n \n Siarczan(VI) miedzi(II),\n \n \n \n W\xc4\x99glan sodu,\n \n \n \n W\xc4\x99glan wapnia,\n \n \n \n Manganian(VII) potasu,\n \n \n \n Chlorek amonu,\n \n \n \n Siarczan(VI) amonu,\n \n \n \n Chromian(VI) potasu,\n \n \n \n Cukry,\n \n \n \n glukoza,\n \n \n \n fruktoza,\n \n \n \n sacharoza,\n \n \n \n Zwi\xc4\x85zki aromatyczne,\n \n \n \n benzen,\n \n \n \n chlorobenzen,\n \n \n \n toluen,\n \n \n \n fenol,\n \n \n \n anilina,\n \n \n \n kwas benzoesowy,\n \n \n \n benzoesan sodu\n \n \n
\n