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Quadro: Molecolare di erbicida di benfluralin. rendering 3d. gli atomi

Quadro Molecolare di erbicida di Benfluralin. Rendering 3D. Gli atomi sono rappresentati come sfere con codifica a colori convenzionali: idrogeno (bianco), carbonio (grigio), ossigeno (rosso), azoto (azzurro
Quadro:
Molecolare di erbicida di Benfluralin. Rendering 3D. Gli atomi sono rappresentati come sfere con codifica a colori convenzionali: idrogeno (bianco), carbonio (grigio), ossigeno (rosso), azoto (azzurro.
Autore: ©
Numero della foto:
#91904616
Altri argomenti:
inibizione, erbicida, ferro, azoto, atomico, composto, idrogeno, ossigeno, carbonio
Visualizzazione del prodotto
Simile
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Acetochlor herbicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red), chlorine (green).
Acetochlor herbicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red), chlorine (green).
Acetochlor herbicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red), chlorine (green).
Adrenochrome molecule. Oxidation product of adrenaline. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red).
Adrenochrome molecule. Oxidation product of adrenaline. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red).
Adrenochrome molecule. Oxidation product of adrenaline. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red).
Adrenolutin molecule. Oxidation product of adrenalin. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red).
Adrenolutin molecule. Oxidation product of adrenalin. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red).
Adrenolutin molecule. Oxidation product of adrenalin. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red).
Atrazine broadleaf herbicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), chlorine (green).
Atrazine broadleaf herbicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), chlorine (green).
Atrazine broadleaf herbicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), chlorine (green).
Bentazon herbicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red), sulfur (yellow).
Bentazon herbicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red), sulfur (yellow).
Bentazon herbicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red), sulfur (yellow).
Benzovindiflupyr fungicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red), etc
Benzovindiflupyr fungicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red), etc
Benzovindiflupyr fungicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red), etc
Bixafen fungicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red), etc
Bixafen fungicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red), etc
Bixafen fungicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red), etc
Clomazone herbicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red), chlorine (green).
Clomazone herbicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red), chlorine (green).
Clomazone herbicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red), chlorine (green).
Cyproconazole fungicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red), chlorine (green).
Cyhalothrin insecticide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red), etc
Cyhalothrin insecticide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red), etc
Cyhalothrin insecticide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red), etc
Cyproconazole fungicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red), chlorine (green).
Cyproconazole fungicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red), chlorine (green).
Difenoconazole fungicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red), chlorine (green).
Difenoconazole fungicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red), chlorine (green).
Difenoconazole fungicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red), chlorine (green).
Diflufenican herbicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red), fluorine (light green).
Diflufenican herbicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red), fluorine (light green).
Diflufenican herbicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red), fluorine (light green).
Ethenone or ketene molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), oxygen (red).
Ethenone or ketene molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), oxygen (red).
Ethenone or ketene molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), oxygen (red).
Florasulam herbicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red), etc
Florasulam herbicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red), etc
Florasulam herbicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red), etc
Flufenacet herbicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red), sulfur (yellow), etc
Flufenacet herbicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red), sulfur (yellow), etc
Fluopyram fungicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red), etc
Fluxapyroxad fungicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red), fluorine (light green).
Flufenacet herbicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red), sulfur (yellow), etc
Fluopyram fungicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red), etc
Fluopyram fungicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red), etc
Fluxapyroxad fungicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red), fluorine (light green).
Fluxapyroxad fungicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red), fluorine (light green).
Fomesafen herbicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red), chlorine (green), etc
Fomesafen herbicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red), chlorine (green), etc
Fomesafen herbicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red), chlorine (green), etc
Imazamox herbicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red).
Imazamox herbicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red).
Imazamox herbicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red).
Iodosulfuron herbicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red), etc
Iodosulfuron herbicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red), etc
Iodosulfuron herbicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red), etc
Isoxaflutole herbicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red), etc
Isoxaflutole herbicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red), etc
Isoxaflutole herbicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red), etc
Mesotrione herbicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red), sulfur (yellow).
Mesotrione herbicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red), sulfur (yellow).
Mesotrione herbicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red), sulfur (yellow).
Penoxsulam herbicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red), sulfur (yellow), etc
Penoxsulam herbicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red), sulfur (yellow), etc
Pinoxaden herbicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red).
Penoxsulam herbicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red), sulfur (yellow), etc
Pinoxaden herbicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red).
Pinoxaden herbicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red).
Prothioconazole fungicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red), chlorine (green), etc
Prothioconazole fungicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red), chlorine (green), etc
Prothioconazole fungicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red), chlorine (green), etc
Pyraclostrobin fungicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red), chlorine (green).
Pyraclostrobin fungicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red), chlorine (green).
Pyraclostrobin fungicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red), chlorine (green).
Pyroxsulam herbicide molecule. 3D rendering. Atoms are represented as spheres with conventional color coding: hydrogen (white), carbon (grey), nitrogen (blue), oxygen (red), sulfur (yellow), etc
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Materiali

Quadri su tela

I nostri quadri sono prodotti su tele artistiche di alta qualità CANVAS, montate su un telaio di pino massello. I bordi laterali della tela sono stampati. Il quadro è pronto per essere appeso al muro subito dopo il disimballaggio.

  • ✓ Tela artistica CANVAS
  • ✓ Alta qualità
  • ✓ Cornice esterna in pino

Grammatura della tela: 300 g/m2
Disposizioni disponibili: Quadri in uno o più parti (costituiti da due, tre, quattro o cinque parti)
Metodo di pulizia: un panno umido
Il set include: un quadro (tela stampata montata su cornice), ganci e chiodi


Quadro in cornice

I nostri quadri sono prodotti su tele artistiche di alta qualità CANVAS, montate su un telaio di pino massello. In questa versione, il quadro viene anche incorniciato in legno all’esterno, con la scelta di due colori (nero o marrone). Le cornici esterne sono disponibili in varie dimensioni. Il quadro è pronto per essere appeso al muro subito dopo la consegna.

  • ✓ Tela artistica CANVAS
  • ✓ Bordi laterali stampati
  • ✓ Cornice esterna in pino

Grammatura della tela: 300 g/m2
Accessori disponibili: Cornici esterne in legno di due colori a scelta
Metodo di pulizia: Il materiale può essere pulito con un panno umido
Il set include: un quadro (tela stampata montata su telaio), una cornice esterna in legno, ganci e chiodi


Dittico su tela

I nostri quadri sono prodotti su tele artistiche di alta qualità CANVAS, montate su un telaio di pino massello. Il quadro è pronto per essere appeso al muro subito dopo il disimballaggio.

  • ✓ Due parti
  • ✓ Tela artistica CANVAS
  • ✓ Bordi laterali stampati
  • ✓ Cornice esterna in pino

Grammatura della tela: 300 g/m2
Metodo di pulizia: un panno umido
Il set include: un quadro (tela stampata montata su cornice), ganci e chiodi


Trittico su tela

I nostri quadri sono prodotti su tele artistiche di alta qualità CANVAS, montate su un telaio di pino massello. Il quadro è pronto per essere appeso al muro subito dopo il disimballaggio.

  • ✓ Tre parti
  • ✓ Tela artistica CANVAS
  • ✓ Bordi laterali stampati
  • ✓ Cornice esterna in pino

Grammatura della tela: 300 g/m2
Metodo di pulizia: un panno umido
Il set include: un quadro (tela stampata montata su cornice), ganci e chiodi


Tetraptych su tela

I nostri quadri sono prodotti su tele artistiche di alta qualità CANVAS, montate su un telaio di pino massello. Il quadro è pronto per essere appeso al muro subito dopo il disimballaggio.

  • ✓ Quatro parti
  • ✓ Tela artistica CANVAS
  • ✓ Bordi laterali stampati
  • ✓ Cornice esterna in pino

Grammatura della tela: 300 g/m2
Metodo di pulizia: un panno umido
Il set include: un quadro (tela stampata montata su cornice), ganci e chiodi


Pentaptych su tela

I nostri quadri sono prodotti su tele artistiche di alta qualità CANVAS, montate su un telaio di pino massello. Il quadro è pronto per essere appeso al muro subito dopo il disimballaggio.

  • ✓ Cinque parti
  • ✓ Tela artistica CANVAS
  • ✓ Bordi laterali stampati
  • ✓ Cornice esterna in pino

Grammatura della tela: 300 g/m2
Metodo di pulizia: un panno umido
Il set include: un quadro (tela stampata montata su cornice), ganci e chiodi


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Controlla anche
La vitamina A (retinolo), molecola
La vitamina B12 (cianocobalamina) molecola
La vitamina B9 (acido folico), molecola
La vitamina C (acido ascorbico) Molecola
Tabun (GA) molecola
gas mostarda (iprite, bis (2-cloroetil) solfuro) Struttura
Tabun (GA) molecola
trasferire RNA (tRNA) molecola
VX molecola (gas nervino)
Sorbitolo molecola
Artemisinina (Qinghaosu) molecola
VX molecola (gas nervino)
Soman (GD) molecola
Molecole Stevioside
La vitamina B12 (cianocobalamina) molecola
trasferire RNA (tRNA) molecola
Vitamina B6 (piridossina), molecola
Xilitolo molecola
gas mostarda (iprite, bis (2-cloroetil) solfuro) Struttura
La vitamina B12 (cianocobalamina) molecola
Vitamina E (alfa-tocoferolo) molecola
trasferire RNA (tRNA) molecola
La vitamina C (acido ascorbico) Molecola
La vitamina B12 (cianocobalamina) molecola
molecola delta-9-tetraidrocannabinolo
molecola delta-9-tetraidrocannabinolo
Una molecola di vitamina B7 (biotina)
molecola delta-9-tetraidrocannabinolo
molecola delta-9-tetraidrocannabinolo
cellulosa
cellulosa
policaprolattone molecola
policaprolattone molecola
policaprolattone molecola
Xilitolo molecola
cellulosa
Sorbitolo molecola
grafene
grafene
melatonina
bisfenolo A (BPA), molecola
melatonina
creatina
luminol molecola
lineolate metile (biodiesel) molecola
creatina
lineolate metile (biodiesel) molecola
molecola poliestere biodegradabile
molecola poliestere biodegradabile
luminol molecola
molecola poliestere biodegradabile
molecola poliestere biodegradabile
nanotubi di carbonio
dimethyltryptamine
buckminsterfullerene (buckyball, C60)
poliidrossibutirrato (PHB) bioplastica
poliidrossibutirrato (PHB) bioplastica
luminol molecola
dimethyltryptamine
nanotubi di carbonio
lineolate metile (biodiesel) molecola
lineolate metile (biodiesel) molecola
bis (2-etilesile) ftalato (DEHP), molecola
Ubiquitin molecola
Ubiquitin molecola
Ubiquitin molecola
Insulina molecola
Struttura del DNA
L'eroina (diacetilmorfina)
AICA ribonucleotide (acadesina, AICAR, ZMP)
Adenosina monofosfato ciclico (cAMP)
Tetrodotossina (TTX)
struttura trombina
Tetrodotossina (TTX)
Glifosato
Glifosato
Permetrina
Nicotina
Nicotina
Telmisartan
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