✅Mole Concept Handwritten Notes✅
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ᴶᴼᴵᴺ ᴬᴺᴰ ˢᴴᴬᴿᴱ ᵂᴵᵀᴴ ʸᴼᵁᴿ ᶠᴿᴵᴱᴺᴰˢ
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ᴶᴼᴵᴺ ᴬᴺᴰ ˢᴴᴬᴿᴱ ᵂᴵᵀᴴ ʸᴼᵁᴿ ᶠᴿᴵᴱᴺᴰˢ
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✌️IMP OF PLANT KINGDOM✌️
👉Isogamous sexual reproduction in algae- Ulothrix (flagellated)
Spirogyra (non-flagellated)
👉Anisogamous sexual reproduction in algae- Udorina
👉Oogamous sexual reproduction in algae- Volvox, Fucus
👉Algin- Brown Algae
👉Carragreen - Red Algae
👉Agar- Gelidium, Gracilaria
(Red algae)
👉Motile asexual spores in algae- Zoospores
👉Laminarin, Mannitol- Complex carbohydrates of Brown algae
👉Fucoxanthin- Brown Algae
👉Phycoerythrin- Red Algae
👉Floridean Starch Found in Red algae, similar to amylopectin and glycogen
👉The main plant body is a gametophyte- Bryophytes
👉Peat- Sphagnum
👉Microphylls- Selaginella
👉Macrophylls- Fern
👉Heterosporous pteridophytes- Selaginella
Salvinia
👉Vascular plants without seeds- Pteridophytes
👉Mycorrhiza- Pinus
(symbiotic association with fungi in the roots)
👉Coralloid roots- Cycas
(nitrogen-fixing cyanobacteria in the roots)
👉The tallest gymnosperm- Sequoia (redwood tree)
Microscopic angiosperm Wolffia
👉Parallel venation- Monocotyledons
👉Reticulate venation- Dicotyledons
👉The cells of embryo sac are- Haploid
👉Algae showing haplo-diplontic life cycle- Ectocarpus, Polysiphonia, Kelps
👉Algae showing the diplontic life cycle- Fucus
👉Zygotic meiosis- Haplontic life cycle
👉Isogamous sexual reproduction in algae- Ulothrix (flagellated)
Spirogyra (non-flagellated)
👉Anisogamous sexual reproduction in algae- Udorina
👉Oogamous sexual reproduction in algae- Volvox, Fucus
👉Algin- Brown Algae
👉Carragreen - Red Algae
👉Agar- Gelidium, Gracilaria
(Red algae)
👉Motile asexual spores in algae- Zoospores
👉Laminarin, Mannitol- Complex carbohydrates of Brown algae
👉Fucoxanthin- Brown Algae
👉Phycoerythrin- Red Algae
👉Floridean Starch Found in Red algae, similar to amylopectin and glycogen
👉The main plant body is a gametophyte- Bryophytes
👉Peat- Sphagnum
👉Microphylls- Selaginella
👉Macrophylls- Fern
👉Heterosporous pteridophytes- Selaginella
Salvinia
👉Vascular plants without seeds- Pteridophytes
👉Mycorrhiza- Pinus
(symbiotic association with fungi in the roots)
👉Coralloid roots- Cycas
(nitrogen-fixing cyanobacteria in the roots)
👉The tallest gymnosperm- Sequoia (redwood tree)
Microscopic angiosperm Wolffia
👉Parallel venation- Monocotyledons
👉Reticulate venation- Dicotyledons
👉The cells of embryo sac are- Haploid
👉Algae showing haplo-diplontic life cycle- Ectocarpus, Polysiphonia, Kelps
👉Algae showing the diplontic life cycle- Fucus
👉Zygotic meiosis- Haplontic life cycle
🎯3. Formulas related to Power
💥P = Fv
💥P = E/t
💥P = n(mgh/t)
💥P = Fd/t
💥P = mv²/2t
🎯4. Formulas related to distance, displacement, velocity and accelration
📝d = vt
📝d = at²
📝d = (vf + vi/2) ×t
📝d = 5t² (for distance in 'n' seconds)
📝d = 5(2tn - 1) (for distance in 'nth' second)
📝d = 1/2 mv²/F
📝d = vit + 5t²
📝d = v × underroot 2H/g
📝d = vt = x°wt = x°2pi/T × t = x°2pift
📝x = x° Sin wt
📝x = x° Sin (underroot k/m) t
vf = vi + at
📝2as = vf² - vi²
📝2as = (vi + at)² - vi²
📝2as = vf² - (vf - at) ²
📝v = underroot Vfx² + Vfy²
📝v = Power/Force
📝v = 2×K.E/momentum (k.e = 1/2 Pv)
📝v² = 2×Power×time/mass (P = mv²/2t)
v = underroot 2as
v = underroot gr (speed at highest point in a verticle circle)
v = underroot 5gr (speed at lowest point in a verticle circle)
📝v² = 2FS/m
📝v² = 2E/m
📝v² = 2Ve/m
📝v = eBr/m (velocity of particle under action of magnetic force along circular path)
📝v² = Force/Area.Density
📝v = w underroot x°² - x²
📝v = underroot k/m × underroot x°² - x²
📝v = x°w (at mean position where x=0)
📝v = x° underoot k/m
📝v = v° underroot 1 - x²/x°² (for determining ratio b/w inst. Velocity and maxi. Velocity)
📝v= x°2pif = x°2pi/T
📝a = x°w² = x°w.w = vw = v.2pif
Common velocity = m1v1/m1+m2
📝vi² = Rg/Sin2theta
📝v = underoot Tension×length/mass
📝V = 2pi ke²/nh (speed of e- in nth orbit)
📝Vn = V/n
📝v = nh/2pimr (lambda = 2pir and lambda=h/p)
📝ma = kx
📝a = kx/m (SHM)
📝a = - gx/l (Simple pendulum)
📝ac = v²/r
💥P = Fv
💥P = E/t
💥P = n(mgh/t)
💥P = Fd/t
💥P = mv²/2t
🎯4. Formulas related to distance, displacement, velocity and accelration
📝d = vt
📝d = at²
📝d = (vf + vi/2) ×t
📝d = 5t² (for distance in 'n' seconds)
📝d = 5(2tn - 1) (for distance in 'nth' second)
📝d = 1/2 mv²/F
📝d = vit + 5t²
📝d = v × underroot 2H/g
📝d = vt = x°wt = x°2pi/T × t = x°2pift
📝x = x° Sin wt
📝x = x° Sin (underroot k/m) t
vf = vi + at
📝2as = vf² - vi²
📝2as = (vi + at)² - vi²
📝2as = vf² - (vf - at) ²
📝v = underroot Vfx² + Vfy²
📝v = Power/Force
📝v = 2×K.E/momentum (k.e = 1/2 Pv)
📝v² = 2×Power×time/mass (P = mv²/2t)
v = underroot 2as
v = underroot gr (speed at highest point in a verticle circle)
v = underroot 5gr (speed at lowest point in a verticle circle)
📝v² = 2FS/m
📝v² = 2E/m
📝v² = 2Ve/m
📝v = eBr/m (velocity of particle under action of magnetic force along circular path)
📝v² = Force/Area.Density
📝v = w underroot x°² - x²
📝v = underroot k/m × underroot x°² - x²
📝v = x°w (at mean position where x=0)
📝v = x° underoot k/m
📝v = v° underroot 1 - x²/x°² (for determining ratio b/w inst. Velocity and maxi. Velocity)
📝v= x°2pif = x°2pi/T
📝a = x°w² = x°w.w = vw = v.2pif
Common velocity = m1v1/m1+m2
📝vi² = Rg/Sin2theta
📝v = underoot Tension×length/mass
📝V = 2pi ke²/nh (speed of e- in nth orbit)
📝Vn = V/n
📝v = nh/2pimr (lambda = 2pir and lambda=h/p)
📝ma = kx
📝a = kx/m (SHM)
📝a = - gx/l (Simple pendulum)
📝ac = v²/r
Forwarded from NEET IIT JEE CBSE Class 12 Notes (Shubham)
Scientist & Their work 🫠🙌
ᗪᖇOᑭ ᖇEᗩᑕTIOᑎ ᖴOᖇ ᗰOᖇE ❤️
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ᴶᴼᴵᴺ ᴬᴺᴰ ˢᴴᴬᴿᴱ ᵂᴵᵀᴴ ʸᴼᵁᴿ ᶠᴿᴵᴱᴺᴰˢ
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💥 Structure Of Atoms 💥
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ᴶᴼᴵᴺ ᴬᴺᴰ ˢᴴᴬᴿᴱ ᵂᴵᵀᴴ ʸᴼᵁᴿ ᶠᴿᴵᴱᴺᴰˢ
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ᴶᴼᴵᴺ ᴬᴺᴰ ˢᴴᴬᴿᴱ ᵂᴵᵀᴴ ʸᴼᵁᴿ ᶠᴿᴵᴱᴺᴰˢ
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💥 ORGANIC CHEMISTRY REACTIONS 💥
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ᴶᴼᴵᴺ ᴬᴺᴰ ˢᴴᴬᴿᴱ ᵂᴵᵀᴴ ʸᴼᵁᴿ ᶠᴿᴵᴱᴺᴰˢ
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ᴶᴼᴵᴺ ᴬᴺᴰ ˢᴴᴬᴿᴱ ᵂᴵᵀᴴ ʸᴼᵁᴿ ᶠᴿᴵᴱᴺᴰˢ
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