Math, asked by newyear16, 4 months ago

plzzz don't spam....​

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Answers

Answered by BrainlyEmpire
6

{\mathfrak{\underline{\purple{\:\:\: Given:-\:\:\:}}}} \\ \\

\:\:\:\:\bullet\:\:\:\sf{Angle \ of \ projection = 30^{\circ} }

\:\:\:\:\bullet\:\:\:\sf{Initial \ velocity \ of \ projectile = 28 \: m/s^{-1} }

\\

{\mathfrak{\underline{\red{\:\:\:To \:Find:-\:\:\:}}}} \\ \\

\:\:\:\:\bullet\:\:\:\sf{Height_{\:(max)}\: reached\: by \:the \:projectile }

\\

{\mathfrak{\underline{\pink{\:\:\: Calculation:-\:\:\:}}}} \\ \\

☯ As we know that,

\\

\dashrightarrow\:\: \sf{ H = \dfrac{u^2\;sin^2\theta}{2\;g} }

\\

\dashrightarrow\:\: \sf{H = \dfrac{(28)^2\;sin^2 30^{\circ}}{2\;(9.8)}  }

\\

\dashrightarrow\:\: \sf{H = \dfrac{784 \times \;sin^230^{\circ}}{19.6}  }

\\

\dashrightarrow\:\: \sf{  H = \dfrac{784}{19.6}\times sin^2 30^{\circ}}

\\

\dashrightarrow\:\: \sf{  H = \dfrac{784}{19.6}\times \bigg(\dfrac{1}{2}\bigg)^2 }

\\

\dashrightarrow\:\: \sf{  H = \dfrac{784}{19.6}\times \dfrac{1}{4} }

\\

\dashrightarrow\:\: {\boxed{\sf{H=10\:m  }}}

Answered by BabeHeart
99

Answer:

  \:  \:  \:  \:  \:  \:  \:  \:  \:  \:  \:  \:  \:  \:  \:  \:  \: \huge\bf \: \: {gíven}

❥\sf{Angle \ of \ projection = 30^{\circ} }

❥\sf{Initial \ velocity \ of \ projectile = 28 \: m/s^{-1} }

\\

━━━━━━━━━━━━━━━

 \:  \:  \:  \:  \:  \:  \:  \:  \:  \:  \:  \:  \:  \bf{To  \: find :- }

❥\sf{Height_{\:(max)}\: reached\: by \:the \:projectile }

\\

━━━━━━━━━━━━━━━

 \:  \:  \:  \:  \:  \:  \:  \:  \:  \:  \:   \bf{Calculation:-}

❥ As we know that,

\\

\dashrightarrow\:\: \sf{ H = \dfrac{u^2\;sin^2\theta}{2\;g} }

\\

\dashrightarrow\:\: \sf{H = \dfrac{(28)^2\;sin^2 30^{\circ}}{2\;(9.8)}  }

\\

\dashrightarrow\:\: \sf{H = \dfrac{784 \times \;sin^230^{\circ}}{19.6}  }

\\

\dashrightarrow\:\: \sf{  H = \dfrac{784}{19.6}\times sin^2 30^{\circ}}

\\

\dashrightarrow\:\: \sf{  H = \dfrac{784}{19.6}\times \bigg(\dfrac{1}{2}\bigg)^2 }

\\

\dashrightarrow\:\: \sf{  H = \dfrac{784}{19.6}\times \dfrac{1}{4} }

\\

\dashrightarrow\:\: {\boxed{\sf{H=10\:m  }}}

━━━━━━━━━━━━━━━━━━━━━━

━━━━━━━━━━━━━━━━━━━━━━

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