@thaotho445: tỷ lệ 1 ăn 7 #đôitien #viral #xuhuongtiktok

user05877617292
user05877617292
Open In TikTok:
Region: VN
Saturday 20 June 2026 00:07:08 GMT
1141
9
4
2

Music

Download

Comments

nguyn.ba18
Nguyễn Bìa :
Thật ko bạn
2026-06-23 23:35:24
1
khang535456
thang Khang :
cách đổi
2026-06-20 10:15:08
0
To see more videos from user @thaotho445, please go to the Tikwm homepage.

Other Videos

*CELLULAR RESPIRATION*👇  *1.* Glycolysis occurs in:   A) Mitochondria   B) Cytoplasm   C) Nucleus   D) ER *2.* Net gain of ATP in glycolysis per glucose:   A) 2   B) 4   C) 36   D) 38 *3.* First enzyme of glycolysis:   A) Hexokinase   B) PFK   C) Aldolase   D) Enolase *4.* Rate limiting enzyme of glycolysis:   A) Hexokinase   B) Phosphofructokinase   C) Pyruvate kinase   D) Triose phosphate isomerase *5.* End product of glycolysis in aerobic condition:   A) Lactate   B) Pyruvate   C) Acetyl-CoA   D) Ethanol *6.* End product of glycolysis in anaerobic condition in muscle:   A) Pyruvate   B) Lactate   C) Acetyl-CoA   D) CO2 *7.* How many NADH are produced in glycolysis per glucose?   A) 1   B) 2   C) 3   D) 4 *8.* Substrate level phosphorylation in glycolysis occurs at:   A) Step 1 & 3   B) Step 7 & 10   C) Step 2 & 8   D) Step 4 & 9 *9.* Glycolysis can occur:   A) Only with O2   B) Only without O2   C) With or without O2   D) None *10.* 6-carbon sugar is split into 2x3-carbon molecules by:   A) Hexokinase   B) Aldolase   C) Enolase   D) Kinase *Krebs Cycle / TCA Cycle* *11.* Krebs cycle takes place in:   A) Cytoplasm   B) Mitochondrial matrix   C) Inner membrane   D) Outer membrane *12.* Entry molecule into Krebs cycle:   A) Pyruvate   B) Acetyl-CoA   C) Oxaloacetate   D) Citrate *13.* Enzyme that converts pyruvate to Acetyl-CoA:   A) Pyruvate carboxylase   B) Pyruvate dehydrogenase complex   C) Citrate synthase   D) Aconitase *14.* First product of Krebs cycle:   A) Citrate   B) Isocitrate   C) α-ketoglutarate   D) Succinate *15.* CO2 released per glucose in Krebs cycle:   A) 2   B) 4   C) 6   D) 8 *16.* ATP produced directly in Krebs cycle per glucose:   A) 1   B) 2   C) 3   D) 4 *17.* NADH produced per glucose in Krebs cycle:   A) 4   B) 6   C) 8   D) 10 *18.* FADH2 produced per glucose in Krebs cycle:   A) 1   B) 2   C) 3   D) 4 *19.* Enzyme that produces FADH2 in Krebs cycle:   A) Isocitrate DH   B) α-KG DH   C) Succinate DH   D) Malate DH *20.* Krebs cycle is also called:   A) Calvin cycle   B) C4 cycle   C) TCA cycle   D) HMP pathway *ETC & Oxidative Phosphorylation* *21.* ETC is located in:   A) Matrix   B) Inner mitochondrial membrane   C) Outer membrane   D) Cytoplasm *22.* Final electron acceptor in ETC:   A) NAD+   B) FAD   C) O2   D) H2O *23.* Most ATP in cellular respiration comes from:   A) Glycolysis   B) Krebs cycle   C) ETC   D) All equal *24.* Complex I of ETC:   A) Cytochrome c oxidase   B) NADH dehydrogenase   C) Cytochrome c reductase   D) ATP synthase *25.* Complex IV of ETC:   A) NADH dehydrogenase   B) Cytochrome c reductase   C) Cytochrome c oxidase   D) ATP synthase *26.* Chemiosmotic theory was proposed by:   A) Krebs   B) Peter Mitchell   C) Calvin   D) Pasteur *27.* Proton gradient is formed across:   A) Outer mitochondrial membrane   B) Inner mitochondrial membrane   C) Matrix   D) Intermembrane space *28.* Total ATP from 1 glucose in aerobic respiration:   A) 2   B) 4   C) 30-38   D) 50 *29.* Cyanide blocks which complex?   A) Complex I   B) Complex II   C) Complex III   D) Complex IV
*CELLULAR RESPIRATION*👇 *1.* Glycolysis occurs in: A) Mitochondria B) Cytoplasm C) Nucleus D) ER *2.* Net gain of ATP in glycolysis per glucose: A) 2 B) 4 C) 36 D) 38 *3.* First enzyme of glycolysis: A) Hexokinase B) PFK C) Aldolase D) Enolase *4.* Rate limiting enzyme of glycolysis: A) Hexokinase B) Phosphofructokinase C) Pyruvate kinase D) Triose phosphate isomerase *5.* End product of glycolysis in aerobic condition: A) Lactate B) Pyruvate C) Acetyl-CoA D) Ethanol *6.* End product of glycolysis in anaerobic condition in muscle: A) Pyruvate B) Lactate C) Acetyl-CoA D) CO2 *7.* How many NADH are produced in glycolysis per glucose? A) 1 B) 2 C) 3 D) 4 *8.* Substrate level phosphorylation in glycolysis occurs at: A) Step 1 & 3 B) Step 7 & 10 C) Step 2 & 8 D) Step 4 & 9 *9.* Glycolysis can occur: A) Only with O2 B) Only without O2 C) With or without O2 D) None *10.* 6-carbon sugar is split into 2x3-carbon molecules by: A) Hexokinase B) Aldolase C) Enolase D) Kinase *Krebs Cycle / TCA Cycle* *11.* Krebs cycle takes place in: A) Cytoplasm B) Mitochondrial matrix C) Inner membrane D) Outer membrane *12.* Entry molecule into Krebs cycle: A) Pyruvate B) Acetyl-CoA C) Oxaloacetate D) Citrate *13.* Enzyme that converts pyruvate to Acetyl-CoA: A) Pyruvate carboxylase B) Pyruvate dehydrogenase complex C) Citrate synthase D) Aconitase *14.* First product of Krebs cycle: A) Citrate B) Isocitrate C) α-ketoglutarate D) Succinate *15.* CO2 released per glucose in Krebs cycle: A) 2 B) 4 C) 6 D) 8 *16.* ATP produced directly in Krebs cycle per glucose: A) 1 B) 2 C) 3 D) 4 *17.* NADH produced per glucose in Krebs cycle: A) 4 B) 6 C) 8 D) 10 *18.* FADH2 produced per glucose in Krebs cycle: A) 1 B) 2 C) 3 D) 4 *19.* Enzyme that produces FADH2 in Krebs cycle: A) Isocitrate DH B) α-KG DH C) Succinate DH D) Malate DH *20.* Krebs cycle is also called: A) Calvin cycle B) C4 cycle C) TCA cycle D) HMP pathway *ETC & Oxidative Phosphorylation* *21.* ETC is located in: A) Matrix B) Inner mitochondrial membrane C) Outer membrane D) Cytoplasm *22.* Final electron acceptor in ETC: A) NAD+ B) FAD C) O2 D) H2O *23.* Most ATP in cellular respiration comes from: A) Glycolysis B) Krebs cycle C) ETC D) All equal *24.* Complex I of ETC: A) Cytochrome c oxidase B) NADH dehydrogenase C) Cytochrome c reductase D) ATP synthase *25.* Complex IV of ETC: A) NADH dehydrogenase B) Cytochrome c reductase C) Cytochrome c oxidase D) ATP synthase *26.* Chemiosmotic theory was proposed by: A) Krebs B) Peter Mitchell C) Calvin D) Pasteur *27.* Proton gradient is formed across: A) Outer mitochondrial membrane B) Inner mitochondrial membrane C) Matrix D) Intermembrane space *28.* Total ATP from 1 glucose in aerobic respiration: A) 2 B) 4 C) 30-38 D) 50 *29.* Cyanide blocks which complex? A) Complex I B) Complex II C) Complex III D) Complex IV

About