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Liquadity101

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Merrill
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For the fourth topic of our Crypto Trading Fundamentals Deep Dive, let’s talk #Liquidity101 . Liquidity plays a major role in how smoothly trades are executed. Low liquidity can lead to slippage, poor pricing, or even failed trades — especially during volatile market conditions. 💬 Your post can include: · What is liquidity and how does it affect price execution? · How do you evaluate liquidity before entering a position?  · What strategies do you use to reduce slippage? 👉 Create a post with #Liquidity101 and share your insights to earn Binance points! (Press the “+” on the App homepage and click on Task Center) 🔗 Full campaign details here.#Liquadity101 $BNB
For the fourth topic of our Crypto Trading Fundamentals Deep Dive, let’s talk #Liquidity101 .
Liquidity plays a major role in how smoothly trades are executed. Low liquidity can lead to slippage, poor pricing, or even failed trades — especially during volatile market conditions.
💬 Your post can include:
· What is liquidity and how does it affect price execution?
· How do you evaluate liquidity before entering a position?
 · What strategies do you use to reduce slippage?
👉 Create a post with #Liquidity101 and share your insights to earn Binance points! (Press the “+” on the App homepage and click on Task Center)
🔗 Full campaign details here.#Liquadity101 $BNB
🩸 $TRB — Retest or Rollover? Bears Smell Blood in the Water! 💰 After a brutal rejection at $55.84, $TRB just slipped to $51.11 — and the momentum is cracking. The 4H chart is rolling over with lower highs forming and volume drying up, classic signs of a vertical blow-off top losing steam. The bulls look tired. The bears? Locked and loaded. 🔥 Short Setup — Fade the Hype Timeframe: 4H Play Type: Retest Failure → Breakdown Entry Zone: $51.20 – $52.00 (prime sniper range) TP1: $48.60 (first liquidity pocket) TP2: $45.00 (full fade zone) Stop Loss: $53.00 (tight, no mercy) 🧨 Trigger Condition: Wait for a clean 4H candle close below $50.80 — that’s your signal to strike. 🧠 Why This Works: Price rejected hard off highs = trapped longs. Weak volume = no fuel left for bulls. Lower highs = bearish pressure stacking. This is your "second chance entry" after the pump. Don't chase — let it retest, then hammer it down. 🐻 Greedy Mindset: > "The rally's over. Weak hands are next. Be early, be savage." $TRB {future}(TRBUSDT) #Liquadity101 #CircleIPO #EDGENLiveOnAlpha
🩸 $TRB — Retest or Rollover? Bears Smell Blood in the Water! 💰

After a brutal rejection at $55.84, $TRB just slipped to $51.11 — and the momentum is cracking. The 4H chart is rolling over with lower highs forming and volume drying up, classic signs of a vertical blow-off top losing steam.

The bulls look tired. The bears? Locked and loaded.

🔥 Short Setup — Fade the Hype

Timeframe: 4H
Play Type: Retest Failure → Breakdown

Entry Zone: $51.20 – $52.00 (prime sniper range)

TP1: $48.60 (first liquidity pocket)

TP2: $45.00 (full fade zone)

Stop Loss: $53.00 (tight, no mercy)

🧨 Trigger Condition: Wait for a clean 4H candle close below $50.80 — that’s your signal to strike.

🧠 Why This Works:

Price rejected hard off highs = trapped longs.

Weak volume = no fuel left for bulls.

Lower highs = bearish pressure stacking.

This is your "second chance entry" after the pump. Don't chase — let it retest, then hammer it down.

🐻 Greedy Mindset:

> "The rally's over. Weak hands are next. Be early, be savage."
$TRB
#Liquadity101 #CircleIPO #EDGENLiveOnAlpha
#Liquadity101 To calculate the total number of ions in 10 g of phosphoric acid (H₃PO₄), we'll need to consider its dissociation in water: H₃PO₄ → 3H⁺ + PO₄³⁻ Step 1: Calculate the molar mass of H₃PO₄ Molar mass of H₃PO₄ = 3(1) + 31 + 4(16) = 3 + 31 + 64 = 98 g/mol Step 2: Calculate the number of moles of H₃PO₄ Number of moles = mass / molar mass = 10 g / 98 g/mol ≈ 0.102 mol Step 3: Calculate the number of ions Each molecule of H₃PO₄ dissociates into 4 ions (3H⁺ and 1PO₄³⁻). Total number of ions = number of moles × Avogadro's number × 4 = 0.102 mol × 6.022 × 10²³ molecules/mol × 4 ≈ 2.46 × 10²³ ions So, the total number of ions in 10 g of phosphoric acid is approximately 2.46 × 10²³.
#Liquadity101 To calculate the total number of ions in 10 g of phosphoric acid (H₃PO₄), we'll need to consider its dissociation in water:

H₃PO₄ → 3H⁺ + PO₄³⁻

Step 1: Calculate the molar mass of H₃PO₄
Molar mass of H₃PO₄ = 3(1) + 31 + 4(16) = 3 + 31 + 64 = 98 g/mol

Step 2: Calculate the number of moles of H₃PO₄
Number of moles = mass / molar mass = 10 g / 98 g/mol ≈ 0.102 mol

Step 3: Calculate the number of ions
Each molecule of H₃PO₄ dissociates into 4 ions (3H⁺ and 1PO₄³⁻).

Total number of ions = number of moles × Avogadro's number × 4
= 0.102 mol × 6.022 × 10²³ molecules/mol × 4
≈ 2.46 × 10²³ ions

So, the total number of ions in 10 g of phosphoric acid is approximately 2.46 × 10²³.
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