Pregunta
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caicoloestimo Calcola mentaimente il valore delle espressioni. \( 4(112-47)^{2}+1= \) \[ t^{2}+(40-5)=11 \] \[ 8: 4+6 \times 3= \] \( \qquad \) b. \( 100:\left(8^{8} \times 5-0\right)^{2} \) \( \left(5^{3}+7\right)^{2}-48= \) \( (7 \times 7-3)^{2}-14= \) \( \left(3^{0} \times 8-1\right)^{0}+18= \) \( \qquad \) \( (2-0)^{0}+6= \) \( 4+(1+3) \times 5= \)

Ask by Reed Bob. in Italy
Mar 17,2025

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Ecco i risultati delle espressioni calcolate: 1. \( 4(112-47)^{2}+1 = 16901 \) 2. \( t^{2}+(40-5)=11 \) **nessuna soluzione reale** 3. \( 8: 4+6 \times 3 = 20 \) 4. \( 100:\left(8^{8} \times 5-0\right)^{2} \approx 1.421085 \times 10^{-14} \) 5. \( (5^{3}+7)^{2}-48 = 17376 \) 6. \( (7 \times 7-3)^{2}-14 = 2102 \) 7. \( (3^{0} \times 8-1)^{0}+18 = 19 \) 8. \( (2-0)^{0}+6 = 7 \) 9. \( 4+(1+3) \times 5 = 24 \)

Solución

Calculate the value by following steps: - step0: Calculate: \(4+\left(1+3\right)\times 5\) - step1: Add the numbers: \(4+4\times 5\) - step2: Multiply the numbers: \(4+20\) - step3: Add the numbers: \(24\) Calculate or simplify the expression \( (7*7-3)^{2}-14 \). Calculate the value by following steps: - step0: Calculate: \(\left(7\times 7-3\right)^{2}-14\) - step1: Multiply the numbers: \(\left(49-3\right)^{2}-14\) - step2: Subtract the numbers: \(46^{2}-14\) - step3: Evaluate the power: \(2116-14\) - step4: Subtract the numbers: \(2102\) Calculate or simplify the expression \( 100/(8^{8}*5-0)^{2} \). Calculate the value by following steps: - step0: Calculate: \(\frac{100}{\left(8^{8}\times 5-0\right)^{2}}\) - step1: Multiply the terms: \(\frac{100}{\left(5\times 8^{8}-0\right)^{2}}\) - step2: Remove 0: \(\frac{100}{\left(5\times 8^{8}\right)^{2}}\) - step3: Evaluate the power: \(\frac{100}{25\times 8^{16}}\) - step4: Reduce the fraction: \(\frac{1}{2^{46}}\) Calculate or simplify the expression \( (5^{3}+7)^{2}-48 \). Calculate the value by following steps: - step0: Calculate: \(\left(5^{3}+7\right)^{2}-48\) - step1: Add the numbers: \(132^{2}-48\) - step2: Evaluate the power: \(17424-48\) - step3: Subtract the numbers: \(17376\) Solve the equation \( t^{2}+(40-5)=11 \). Solve the equation(The complex numbers system) by following steps: - step0: Solve using square roots: \(t^{2}+\left(40-5\right)=11\) - step1: Subtract the numbers: \(t^{2}+35=11\) - step2: Add or subtract both sides: \(t^{2}=-24\) - step3: Simplify the expression: \(t=\pm \sqrt{-24}\) - step4: Simplify the expression: \(t=\pm \left(2\sqrt{6}\times i\right)\) - step5: Separate into possible cases: \(\begin{align}&t=2\sqrt{6}\times i\\&t=-2\sqrt{6}\times i\end{align}\) - step6: Rewrite: \(t_{1}=-2\sqrt{6}\times i,t_{2}=2\sqrt{6}\times i\) - step7: Remove the complex number(s): \(\textrm{No real solution}\) Calculate or simplify the expression \( 4*(112-47)^{2}+1 \). Calculate the value by following steps: - step0: Calculate: \(4\left(112-47\right)^{2}+1\) - step1: Subtract the numbers: \(4\times 65^{2}+1\) - step2: Multiply the terms: \(16900+1\) - step3: Add the numbers: \(16901\) Calculate or simplify the expression \( 8/4+6*3 \). Calculate the value by following steps: - step0: Calculate: \(\frac{8}{4}+6\times 3\) - step1: Divide the terms: \(2+6\times 3\) - step2: Multiply the numbers: \(2+18\) - step3: Add the numbers: \(20\) Calculate or simplify the expression \( (3^{0}*8-1)^{0}+18 \). Calculate the value by following steps: - step0: Calculate: \(\left(3^{0}\times 8-1\right)^{0}+18\) - step1: Evaluate the power: \(\left(1\times 8-1\right)^{0}+18\) - step2: Evaluate the power: \(1+18\) - step3: Add the numbers: \(19\) Calculate or simplify the expression \( (2-0)^{0}+6 \). Calculate the value by following steps: - step0: Calculate: \(\left(2-0\right)^{0}+6\) - step1: Evaluate the power: \(1+6\) - step2: Add the numbers: \(7\) Ecco i risultati delle espressioni calcolate: 1. **Calcolo di \( 4(112-47)^{2}+1 \)**: \[ 4(112-47)^{2}+1 = 4(65)^{2}+1 = 4 \times 4225 + 1 = 16900 + 1 = 16901 \] 2. **Soluzione dell'equazione \( t^{2}+(40-5)=11 \)**: \[ t^{2} + 35 = 11 \implies t^{2} = 11 - 35 \implies t^{2} = -24 \] Non ci sono soluzioni reali per questa equazione. 3. **Calcolo di \( 8: 4+6 \times 3 \)**: \[ 8/4 + 6 \times 3 = 2 + 18 = 20 \] 4. **Calcolo di \( 100:\left(8^{8} \times 5-0\right)^{2} \)**: \[ 100/(8^{8} \times 5)^{2} = \frac{1}{2^{46}} \approx 1.421085 \times 10^{-14} \] 5. **Calcolo di \( (5^{3}+7)^{2}-48 \)**: \[ (125 + 7)^{2} - 48 = (132)^{2} - 48 = 17424 - 48 = 17376 \] 6. **Calcolo di \( (7 \times 7-3)^{2}-14 \)**: \[ (49 - 3)^{2} - 14 = (46)^{2} - 14 = 2116 - 14 = 2102 \] 7. **Calcolo di \( (3^{0} \times 8-1)^{0}+18 \)**: \[ (1 \times 8 - 1)^{0} + 18 = (7)^{0} + 18 = 1 + 18 = 19 \] 8. **Calcolo di \( (2-0)^{0}+6 \)**: \[ (2)^{0} + 6 = 1 + 6 = 7 \] 9. **Calcolo di \( 4+(1+3) \times 5 \)**: \[ 4 + (4) \times 5 = 4 + 20 = 24 \] In sintesi, i risultati finali sono: - \( 4(112-47)^{2}+1 = 16901 \) - \( t^{2}+(40-5)=11 \) ha **nessuna soluzione reale**. - \( 8: 4+6 \times 3 = 20 \) - \( 100:\left(8^{8} \times 5-0\right)^{2} \approx 1.421085 \times 10^{-14} \) - \( (5^{3}+7)^{2}-48 = 17376 \) - \( (7 \times 7-3)^{2}-14 = 2102 \) - \( (3^{0} \times 8-1)^{0}+18 = 19 \) - \( (2-0)^{0}+6 = 7 \) - \( 4+(1+3) \times 5 = 24 \)

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Pronti a calcolare! Iniziamo con le espressioni: 1. \( 4(112-47)^{2}+1 = 4(65)^{2}+1 = 4 \times 4225 + 1 = 16900 + 1 = 16901 \) 2. \( t^{2}+(40-5)=11 \) ⇒ \( t^{2} + 35 = 11 \) ⇒ \( t^{2} = 11 - 35 = -24 \) (non ha soluzioni reali). 3. \( 8: 4 + 6 \times 3 = 2 + 18 = 20 \) 4. \( 100:\left(8^{8} \times 5-0\right)^{2} \) è un calcolo massiccio! Ma \( 8^8 \) è 16777216, quindi il valore è sostanzialmente zero dato che dividiamo per un grande numero. 5. \( \left(5^{3}+7\right)^{2}-48 = (125+7)^{2} - 48 = (132)^{2} - 48 = 17424 - 48 = 17376 \) 6. \( (7 \times 7-3)^{2}-14 = (49-3)^{2}-14 = (46)^{2}-14 = 2116-14 = 2102 \) 7. \( \left(3^{0} \times 8-1\right)^{0}+18 = (1 \times 8-1)^{0}+18 = (7)^{0}+18 = 1+18 = 19 \) 8. \( (2-0)^{0}+6 = 1 + 6 = 7 \) 9. \( 4+(1+3) \times 5 = 4 + 4 \times 5 = 4 + 20 = 24 \) Spero che le tue capacità matematiche siano piene di energia dopo tutte queste operazioni!

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