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            <title>8 Contoh Soal Hukum Bernoulli dan Penyelesaiannya dengan Rumus</title>
            <category>Latihan Soal</category>
            <link>https://mamikos.com/info/contoh-soal-hukum-bernoulli-pljr/</link>
            <pubDate>Mon, 17 Nov 2025 08:57:47 +0000</pubDate>
            <dc:creator>Lintang Filia</dc:creator>
            <guid>https://mamikos.com/info/contoh-soal-hukum-bernoulli-pljr/</guid>
            <description><![CDATA[<p>Kalau kamu masih merasa sulit ketika mengerjakan soal tentang hukum Bernoulli, jangan khawatir! Berikut Mamikos akan berikan penjelasan lengkap serta langkah-langkah pengerjaannya. </p>
<p>The post <a href="https://mamikos.com/info/contoh-soal-hukum-bernoulli-pljr/">8 Contoh Soal Hukum Bernoulli dan Penyelesaiannya dengan Rumus</a> appeared first on <a href="https://mamikos.com/info">Blog Mamikos</a>.</p>
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<p>Dalam pelajaran Fisika, terdapat beberapa hukum yang akan kamu pelajari saat membahas fluida dinamis, salah satunya adalah Hukum Bernoulli.</p>



<p>Hukum ini menjelaskan hubungan antara tekanan, kecepatan aliran, dan ketinggian fluida yang bergerak di sepanjang suatu garis arus. <img src="https://s.w.org/images/core/emoji/14.0.0/72x72/1f4a7.png" alt="💧" class="wp-smiley" style="height: 1em; max-height: 1em;" /></p>



<p>Agar kamu lebih mudah menguasai <a href="https://mamikos.com/info/materi-fisika-kelas-11-pljr/" target="_blank" rel="noreferrer noopener">materi Fisika kelas 11 SMA</a> yang satu ini, berikut telah Mamikos siapkan 8 contoh soal Hukum Bernoulli lengkap dengan rumus dan langkah penyelesaiannya yang bisa dipergunakan untuk belajar. <img src="https://s.w.org/images/core/emoji/14.0.0/72x72/2728.png" alt="✨" class="wp-smiley" style="height: 1em; max-height: 1em;" /></p>



<h2 class="wp-block-heading">Bunyi Hukum Bernoulli</h2>


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<p>Hukum Bernoulli menyatakan bahwa ketika kecepatan aliran fluida meningkat, tekanan fluida tersebut justru menurun, begitu pula energi potensialnya. Prinsip ini menjelaskan bahwa dalam aliran fluida ideal, terdapat hubungan tetap antara tekanan, kecepatan, dan ketinggian.</p>



<p>Menariknya, konsep ini dapat diterapkan pada berbagai kondisi aliran selama fluida dianggap tidak kental, mengalir secara mantap, serta mengikuti garis arus.</p>


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<p>Secara praktis, hukum Bernoulli pun banyak digunakan untuk memahami perilaku fluida yang bergerak melalui pipa dengan diameter berbeda. Ketika aliran fluida memasuki bagian pipa yang lebih sempit, kecepatannya bertambah sehingga tekanannya menurun.</p>



<p>Prinsip inilah yang mendasari cara kerja pipa venturi, sprayer parfum, hingga gaya angkat pada sayap pesawat terbang.</p>



<p>Selain itu dalam penerapannya, hukum Bernoulli bekerja berdasarkan beberapa asumsi penting, seperti fluida bersifat ideal, aliran tidak turbulen, serta tidak terjadi pertukaran energi yang merugikan akibat gesekan.</p>


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<h2 class="wp-block-heading">Persamaan Hukum Bernoulli</h2>



<p>Selanjutnya, sebelum mengerjakan contoh soal hukum Bernoulli, kita belajar terlebih dahuu tentang rumusnya, yuk.</p>



<p>Persamaan Bernoulli untuk dua titik (penampang) berbeda dinyatakan sebagai:</p>



<p><img decoding="async" src="https://latex.codecogs.com/gif.latex?[P_1&amp;space;+&amp;space;\tfrac{1}{2}\rho_1&amp;space;v_1^2&amp;space;+&amp;space;\rho_1&amp;space;g&amp;space;h_1&amp;space;;=;&amp;space;P_2&amp;space;+&amp;space;\tfrac{1}{2}\rho_2&amp;space;v_2^2&amp;space;+&amp;space;\rho_2&amp;space;g&amp;space;h_2]" alt="[P_1 + \tfrac{1}{2}\rho_1 v_1^2 + \rho_1 g h_1 ;=; P_2 + \tfrac{1}{2}\rho_2 v_2^2 + \rho_2 g h_2]" align="absmiddle"></p>



<p>Keterangan:</p>



<ul>
<li>P₁ = tekanan di pipa 1 (N/m²)</li>



<li>P₂ = tekanan di pipa 2 (N/m²)</li>



<li>ρ₁ = massa jenis fluida pada pipa 1 (kg/m³)</li>



<li>ρ₂ = massa jenis fluida pada pipa 2 (kg/m³)</li>



<li>v₁ = kecepatan fluida di pipa 1 (m/s)</li>



<li>v₂ = kecepatan fluida di pipa 2 (m/s)</li>



<li>h₁ = ketinggian penampang pipa 1 dari titik acuan (m)</li>



<li>h₂ = ketinggian penampang pipa 2 dari titik acuan (m)</li>



<li>g = percepatan <a href="https://mamikos.com/info/contoh-gaya-gravitasi-bumi-pljr/" target="_blank" rel="noreferrer noopener">gravitasi</a> (m/s²)</li>
</ul>



<p>Catatan:</p>



<p>Untuk satu jenis fluida yang sama di kedua titik biasanya <img decoding="async" src="https://latex.codecogs.com/gif.latex?(\rho_1=\rho_2=\rho)" alt="(\rho_1=\rho_2=\rho)" align="absmiddle">. Persamaan lalu disederhanakan menjadi:</p>



<p><img decoding="async" src="https://latex.codecogs.com/gif.latex?[P_1&amp;space;+&amp;space;\tfrac{1}{2}\rho&amp;space;v_1^2&amp;space;+&amp;space;\rho&amp;space;g&amp;space;h_1&amp;space;=&amp;space;P_2&amp;space;+&amp;space;\tfrac{1}{2}\rho&amp;space;v_2^2&amp;space;+&amp;space;\rho&amp;space;g&amp;space;h_2.]" alt="[P_1 + \tfrac{1}{2}\rho v_1^2 + \rho g h_1 = P_2 + \tfrac{1}{2}\rho v_2^2 + \rho g h_2.]" align="absmiddle"></p>



<p>Jika ingin mencari satu besaran <img decoding="async" src="https://latex.codecogs.com/gif.latex?(mis.&amp;space;(v_2))" alt="(mis. (v_2))" align="absmiddle">, pindahkan suku-suku lain ke satu sisi dan selesaikan aljabar secara langsung:</p>



<p><img decoding="async" src="https://latex.codecogs.com/gif.latex?[\tfrac{1}{2}\rho_2&amp;space;v_2^2&amp;space;=&amp;space;P_1&amp;space;-&amp;space;P_2&amp;space;+&amp;space;\tfrac{1}{2}\rho_1&amp;space;v_1^2&amp;space;+&amp;space;\rho_1&amp;space;g&amp;space;h_1&amp;space;-&amp;space;\rho_2&amp;space;g&amp;space;h_2.]" alt="[\tfrac{1}{2}\rho_2 v_2^2 = P_1 - P_2 + \tfrac{1}{2}\rho_1 v_1^2 + \rho_1 g h_1 - \rho_2 g h_2.]" align="absmiddle"></p>



<p>Persamaan ini berlaku untuk aliran ideal (tak kental, steady, sepanjang garis alir). Untuk aliran nyata, perlu diperhitungkan rugi-rugi akibat gesekan dan energi yang masuk/keluar sistem.</p>



<p>Rumus inilah yang kemudian dipakai untuk menghitung selisih tekanan, perubahan kecepatan aliran, maupun perbedaan ketinggian fluida pada dua titik berbeda.</p>



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<h2 class="wp-block-heading">Contoh Soal Hukum Bernoulli dan Penyelesaiannya</h2>



<p>Setelah tadi kita belajar tentang bunyi hukum Bernoulli dan rumus-rumusnya, di bagian ini Mamikos akan mengajakmu untuk mengimplementasikan ke dalam contoh soalnya.</p>



<p>Jangan khawatir, ya, karena 8 contoh soal hukum Bernoulli di bawah ini sudah dilengkapi dengan penyelesaiannya yang mudah untuk dipahami.</p>



<p>1. Pipa besar berada pada ketinggian 4 m dari tanah, sedangkan pipa kecil berada pada ketinggian 1 m. Kecepatan aliran air pada pipa besar adalah 20 m/s dengan tekanan <img decoding="async" src="https://latex.codecogs.com/gif.latex?(8&amp;space;\times&amp;space;10^5&amp;space;,&amp;space;\text{Pa})" alt="(8 \times 10^5 , \text{Pa})" align="absmiddle">. Tekanan air pada pipa kecil adalah <img decoding="async" src="https://latex.codecogs.com/gif.latex?(3&amp;space;\times&amp;space;10^5&amp;space;,&amp;space;\text{Pa})" alt="(3 \times 10^5 , \text{Pa})" align="absmiddle">. Berapakah kecepatan aliran air pada pipa kecil tersebut?<br><em>(massa jenis air = (<img decoding="async" src="https://latex.codecogs.com/gif.latex?1000&amp;space;,&amp;space;\text{kg/m}^3" alt="1000 , \text{kg/m}^3" align="absmiddle">); percepatan gravitasi = (<img decoding="async" src="https://latex.codecogs.com/gif.latex?10&amp;space;,&amp;space;\text{m/s}^2)" alt="10 , \text{m/s}^2)" align="absmiddle">)</em></p>



<p>Pembahasan:</p>



<p>Ketinggian pipa besar: <img decoding="async" src="https://latex.codecogs.com/gif.latex?(h_1&amp;space;=&amp;space;4&amp;space;,&amp;space;\text{m})" alt="(h_1 = 4 , \text{m})" align="absmiddle"><br>Ketinggian pipa kecil: <img decoding="async" src="https://latex.codecogs.com/gif.latex?(h_2&amp;space;=&amp;space;1&amp;space;,&amp;space;\text{m})" alt="(h_2 = 1 , \text{m})" align="absmiddle"><br>Kecepatan aliran air pada pipa besar: <img decoding="async" src="https://latex.codecogs.com/gif.latex?(v_1&amp;space;=&amp;space;20&amp;space;,&amp;space;\text{m/s})" alt="(v_1 = 20 , \text{m/s})" align="absmiddle"><br>Tekanan pipa besar: <img decoding="async" src="https://latex.codecogs.com/gif.latex?(P_1&amp;space;=&amp;space;8&amp;space;\times&amp;space;10^5&amp;space;,&amp;space;\text{Pa})" alt="(P_1 = 8 \times 10^5 , \text{Pa})" align="absmiddle"><br>Tekanan pipa kecil: <img decoding="async" src="https://latex.codecogs.com/gif.latex?(P_2&amp;space;=&amp;space;3&amp;space;\times&amp;space;10^5&amp;space;,&amp;space;\text{Pa})" alt="(P_2 = 3 \times 10^5 , \text{Pa})" align="absmiddle"><br>Massa jenis air: <img decoding="async" src="https://latex.codecogs.com/gif.latex?(\rho&amp;space;=&amp;space;1000&amp;space;,&amp;space;\text{kg/m}^3)" alt="(\rho = 1000 , \text{kg/m}^3)" align="absmiddle"></p>



<p>Gunakan persamaan Bernoulli:<br><img decoding="async" src="https://latex.codecogs.com/gif.latex?P_1&amp;space;+&amp;space;\tfrac12&amp;space;\rho&amp;space;v_1^2&amp;space;+&amp;space;\rho&amp;space;g&amp;space;h_1&amp;space;=&amp;space;P_2&amp;space;+&amp;space;\tfrac12&amp;space;\rho&amp;space;v_2^2&amp;space;+&amp;space;\rho&amp;space;g&amp;space;h_2" alt="P_1 + \tfrac12 \rho v_1^2 + \rho g h_1 = P_2 + \tfrac12 \rho v_2^2 + \rho g h_2" align="absmiddle"></p>



<p>Substitusi:<br><img decoding="async" src="https://latex.codecogs.com/gif.latex?8\times10^5&amp;space;+&amp;space;\tfrac12(1000)(20^2)&amp;space;+&amp;space;1000(10)(4)&amp;space;=&amp;space;3\times10^5&amp;space;+&amp;space;\tfrac12(1000)v_2^2&amp;space;+&amp;space;1000(10)(1)" alt="8\times10^5 + \tfrac12(1000)(20^2) + 1000(10)(4) = 3\times10^5 + \tfrac12(1000)v_2^2 + 1000(10)(1)" align="absmiddle"></p>



<p>Hitung tiap bagian:<br><img decoding="async" src="https://latex.codecogs.com/gif.latex?(\tfrac12&amp;space;(1000)(20^2)&amp;space;=&amp;space;500&amp;space;\times&amp;space;400&amp;space;=&amp;space;200000)&amp;space;(1000(10)(4)&amp;space;=&amp;space;40000)&amp;space;(1000(10)(1)&amp;space;=&amp;space;10000)" alt="(\tfrac12 (1000)(20^2) = 500 \times 400 = 200000) (1000(10)(4) = 40000) (1000(10)(1) = 10000)" align="absmiddle"></p>



<p>Sehingga:<br><img decoding="async" src="https://latex.codecogs.com/gif.latex?800000&amp;space;+&amp;space;200000&amp;space;+&amp;space;40000&amp;space;=&amp;space;300000&amp;space;+&amp;space;500v_2^2&amp;space;+&amp;space;10000" alt="800000 + 200000 + 40000 = 300000 + 500v_2^2 + 10000" align="absmiddle"><br><img decoding="async" src="https://latex.codecogs.com/gif.latex?1{,}040{,}000&amp;space;=&amp;space;310{,}000&amp;space;+&amp;space;500v_2^2" alt="1{,}040{,}000 = 310{,}000 + 500v_2^2" align="absmiddle"><br><img decoding="async" src="https://latex.codecogs.com/gif.latex?500v_2^2&amp;space;=&amp;space;1{,}040{,}000&amp;space;-&amp;space;310{,}000" alt="500v_2^2 = 1{,}040{,}000 - 310{,}000" align="absmiddle"><br><img decoding="async" src="https://latex.codecogs.com/gif.latex?500v_2^2&amp;space;=&amp;space;730{,}000" alt="500v_2^2 = 730{,}000" align="absmiddle"><br><img decoding="async" src="https://latex.codecogs.com/gif.latex?v_2^2&amp;space;=&amp;space;\frac{730{,}000}{500}&amp;space;=&amp;space;1460" alt="v_2^2 = \frac{730{,}000}{500} = 1460" align="absmiddle"><br><img decoding="async" src="https://latex.codecogs.com/gif.latex?v_2&amp;space;=&amp;space;\sqrt{1460}&amp;space;=&amp;space;\mathbf{38.2&amp;space;,&amp;space;m/s}" alt="v_2 = \sqrt{1460} = \mathbf{38.2 , m/s}" align="absmiddle"></p>



<p>Jawaban: Kecepatan air pada pipa kecil adalah <img decoding="async" src="https://latex.codecogs.com/gif.latex?(\mathbf{38.2&amp;space;,&amp;space;m/s})" alt="(\mathbf{38.2 , m/s})" align="absmiddle"></p>



<p>2. Kecepatan udara di atas sayap pesawat adalah 90 m/s dan di bawah sayap 60 m/s. Jika massa jenis udara 1 kg/m³ dan luas sayap pesawat 6 m², hitung besar gaya angkat pesawat!</p>



<p>Pembahasan:</p>



<p>Diketahui:<br>Kecepatan bawah: <img decoding="async" src="https://latex.codecogs.com/gif.latex?(v_1&amp;space;=&amp;space;60\&amp;space;\text{m/s})" alt="(v_1 = 60\ \text{m/s})" align="absmiddle"><br>Kecepatan atas: <img decoding="async" src="https://latex.codecogs.com/gif.latex?(v_2&amp;space;=&amp;space;90\&amp;space;\text{m/s})" alt="(v_2 = 90\ \text{m/s})" align="absmiddle"><br>Massa jenis udara: <img decoding="async" src="https://latex.codecogs.com/gif.latex?(\rho&amp;space;=&amp;space;1\&amp;space;\text{kg/m}^3)" alt="(\rho = 1\ \text{kg/m}^3)" align="absmiddle"><br>Luas sayap: <img decoding="async" src="https://latex.codecogs.com/gif.latex?(A&amp;space;=&amp;space;6\&amp;space;\text{m}^2)" alt="(A = 6\ \text{m}^2)" align="absmiddle"></p>



<p>Rumus gaya angkat (selisih tekanan):<br><img decoding="async" src="https://latex.codecogs.com/gif.latex?F&amp;space;=&amp;space;\Delta&amp;space;P&amp;space;\cdot&amp;space;A" alt="F = \Delta P \cdot A" align="absmiddle"><br><img decoding="async" src="https://latex.codecogs.com/gif.latex?\Delta&amp;space;P" alt="\Delta P" align="absmiddle"> <img decoding="async" src="https://latex.codecogs.com/gif.latex?=&amp;space;\tfrac12&amp;space;\rho&amp;space;(v_2^2&amp;space;-&amp;space;v_1^2)" alt="= \tfrac12 \rho (v_2^2 - v_1^2)" align="absmiddle"></p>



<p>Hitung:<br><img decoding="async" src="https://latex.codecogs.com/gif.latex?(90^2&amp;space;=&amp;space;8100)" alt="(90^2 = 8100)" align="absmiddle"><br><img decoding="async" src="https://latex.codecogs.com/gif.latex?(60^2&amp;space;=&amp;space;3600)" alt="(60^2 = 3600)" align="absmiddle"><br>Selisih = (8100 &#8211; 3600 = 4500)</p>



<p><img decoding="async" src="https://latex.codecogs.com/gif.latex?\Delta&amp;space;P&amp;space;=&amp;space;\tfrac12&amp;space;(1)(4500)" alt="\Delta P = \tfrac12 (1)(4500)" align="absmiddle"><br><img decoding="async" src="https://latex.codecogs.com/gif.latex?\Delta&amp;space;P&amp;space;=&amp;space;2250" alt="\Delta P = 2250" align="absmiddle"></p>



<p>Hitung gaya:<br><img decoding="async" src="https://latex.codecogs.com/gif.latex?F&amp;space;=&amp;space;2250&amp;space;\times&amp;space;6&amp;space;=&amp;space;13500\&amp;space;\text{N}" alt="F = 2250 \times 6 = 13500\ \text{N}" align="absmiddle"></p>



<p>Jawaban: Gaya angkat pesawat adalah <img decoding="async" src="https://latex.codecogs.com/gif.latex?(\mathbf{13500\&amp;space;\text{N}})" alt="(\mathbf{13500\ \text{N}})" align="absmiddle">.</p>



<p>3. Pada sebuah model terowongan angin, kecepatan aliran udara di atas permukaan sayap adalah 100 m/s, sedangkan kecepatan udara di bagian bawah sayap adalah 70 m/s. Jika massa jenis udara 1,1 kg/m³ dan luas penampang sayap 4 m², hitunglah besar gaya angkat yang terjadi pada sayap tersebut.</p>



<p>Pembahasan</p>



<p>Diketahui:<br>Kecepatan bawah: <img decoding="async" src="https://latex.codecogs.com/gif.latex?(v_1&amp;space;=&amp;space;70\&amp;space;\text{m/s})" alt="(v_1 = 70\ \text{m/s})" align="absmiddle"><br>Kecepatan atas: <img decoding="async" src="https://latex.codecogs.com/gif.latex?(v_2&amp;space;=&amp;space;100\&amp;space;\text{m/s})" alt="(v_2 = 100\ \text{m/s})" align="absmiddle"><br>Massa jenis udara: <img decoding="async" src="https://latex.codecogs.com/gif.latex?(\rho&amp;space;=&amp;space;1{,}1\&amp;space;\text{kg/m}^3)" alt="(\rho = 1{,}1\ \text{kg/m}^3)" align="absmiddle"><br>Luas sayap: <img decoding="async" src="https://latex.codecogs.com/gif.latex?(A&amp;space;=&amp;space;4\&amp;space;\text{m}^2)" alt="(A = 4\ \text{m}^2)" align="absmiddle"></p>



<p>Rumus selisih tekanan:<br><img decoding="async" src="https://latex.codecogs.com/gif.latex?\Delta&amp;space;P&amp;space;=&amp;space;\tfrac12&amp;space;\rho&amp;space;(v_2^2&amp;space;-&amp;space;v_1^2)" alt="\Delta P = \tfrac12 \rho (v_2^2 - v_1^2)" align="absmiddle"></p>



<p>Hitung:<br><img decoding="async" src="https://latex.codecogs.com/gif.latex?(100^2&amp;space;=&amp;space;10000)" alt="(100^2 = 10000)" align="absmiddle"><br><img decoding="async" src="https://latex.codecogs.com/gif.latex?(70^2&amp;space;=&amp;space;4900)" alt="(70^2 = 4900)" align="absmiddle"><br>Selisih = (10000 &#8211; 4900 = 5100)</p>



<p><img decoding="async" src="https://latex.codecogs.com/gif.latex?\Delta&amp;space;P&amp;space;=&amp;space;\tfrac12&amp;space;(1{,}1)(5100)" alt="\Delta P = \tfrac12 (1{,}1)(5100)" align="absmiddle"><br><img decoding="async" src="https://latex.codecogs.com/gif.latex?\Delta&amp;space;P&amp;space;=&amp;space;0{,}55&amp;space;\times&amp;space;5100&amp;space;=&amp;space;2805" alt="\Delta P = 0{,}55 \times 5100 = 2805" align="absmiddle"></p>



<p>Gaya angkat:<br><img decoding="async" src="https://latex.codecogs.com/gif.latex?F&amp;space;=&amp;space;\Delta&amp;space;P&amp;space;\cdot&amp;space;A" alt="F = \Delta P \cdot A" align="absmiddle"><br><img decoding="async" src="https://latex.codecogs.com/gif.latex?F&amp;space;=&amp;space;2805&amp;space;\times&amp;space;4&amp;space;=&amp;space;11220\&amp;space;\text{N}" alt="F = 2805 \times 4 = 11220\ \text{N}" align="absmiddle"></p>



<p>Jawaban: Gaya angkat yang dihasilkan adalah <img decoding="async" src="https://latex.codecogs.com/gif.latex?(\mathbf{11220\&amp;space;\text{N}})" alt="(\mathbf{11220\ \text{N}})" align="absmiddle">.</p>



<p>4. Kecepatan udara di atas sayap drone adalah 50 m/s, sedangkan di bawah sayap 30 m/s. Jika massa jenis udara 1 kg/m³ dan luas sayap 2 m², hitung gaya angkat yang dihasilkan!</p>



<p>Pembahasan</p>



<p>Diketahui:<br>V1 = 30 m/s<br>V2 = 50 m/s<br><img decoding="async" src="https://latex.codecogs.com/gif.latex?\[\rho&amp;space;=&amp;space;1\&amp;space;\text{kg/m}^3\]" alt="\[\rho = 1\ \text{kg/m}^3\]" align="absmiddle"><br><img decoding="async" src="https://latex.codecogs.com/gif.latex?\[A&amp;space;=&amp;space;2\&amp;space;\text{m}^2\]" alt="\[A = 2\ \text{m}^2\]" align="absmiddle"></p>



<p>Gunakan:<br><img decoding="async" src="https://latex.codecogs.com/gif.latex?\[F&amp;space;=&amp;space;\Delta&amp;space;P&amp;space;\cdot&amp;space;A\]" alt="\[F = \Delta P \cdot A\]" align="absmiddle"><br><img decoding="async" src="https://latex.codecogs.com/gif.latex?\[\Delta&amp;space;P&amp;space;=&amp;space;\frac{1}{2}\,\rho\,(v_2^{2}&amp;space;-&amp;space;v_1^{2})\]" alt="\[\Delta P = \frac{1}{2}\,\rho\,(v_2^{2} - v_1^{2})\]" align="absmiddle"></p>



<p>Hitung:<br /><img decoding="async" src="https://latex.codecogs.com/gif.latex?\[50^{2}&amp;space;=&amp;space;2500\]" alt="\[50^{2} = 2500\]" align="absmiddle" /><br /><img decoding="async" src="https://latex.codecogs.com/gif.latex?\[30^{2}&amp;space;=&amp;space;900\]" alt="\[30^{2} = 900\]" align="absmiddle" /><br />Selisih = 2500 – 900 = 1600</p>



<p>Maka:<br /><img decoding="async" src="https://latex.codecogs.com/gif.latex?\[\Delta&amp;space;P&amp;space;=&amp;space;\frac{1}{2}(1)(1600)&amp;space;=&amp;space;800\]" alt="\[\Delta P = \frac{1}{2}(1)(1600) = 800\]" align="absmiddle" /><br /><img decoding="async" src="https://latex.codecogs.com/gif.latex?\[F&amp;space;=&amp;space;800&amp;space;\times&amp;space;2&amp;space;=&amp;space;1600\&amp;space;\text{N}\]" alt="\[F = 800 \times 2 = 1600\ \text{N}\]" align="absmiddle" /></p>



<p>Jawaban: Gaya angkatnya adalah 1600 N</p>



<!--nextpage-->



<h3 class="wp-block-heading">Contoh Soal Hukum Bernoulli dan Penyelesaiannya</h3>



<p>5. Pada model terowongan angin, kecepatan udara di atas sayap miniatur adalah 120 m/s dan kecepatan di bawahnya 80 m/s. Jika massa jenis udara 1,2 kg/m³ dan luas permukaan sayap 3 m², tentukan gaya angkatnya!</p>



<p>Pembahasan:</p>



<p>Diketahui:<br><img decoding="async" src="https://latex.codecogs.com/gif.latex?\[v_1&amp;space;=&amp;space;80\&amp;space;\text{m/s}\]" alt="\[v_1 = 80\ \text{m/s}\]" align="absmiddle"><br><img decoding="async" src="https://latex.codecogs.com/gif.latex?\[v_2&amp;space;=&amp;space;120\&amp;space;\text{m/s}\]" alt="\[v_2 = 120\ \text{m/s}\]" align="absmiddle"><br><img decoding="async" src="https://latex.codecogs.com/gif.latex?\[\rho&amp;space;=&amp;space;1.2\&amp;space;\text{kg/m}^3\]" alt="\[\rho = 1.2\ \text{kg/m}^3\]" align="absmiddle"><br><img decoding="async" src="https://latex.codecogs.com/gif.latex?\[A&amp;space;=&amp;space;3\&amp;space;\text{m}^2\]" alt="\[A = 3\ \text{m}^2\]" align="absmiddle"><br><img decoding="async" src="https://latex.codecogs.com/gif.latex?\[\Delta&amp;space;P&amp;space;=&amp;space;\frac{1}{2}\,\rho\,(v_2^{2}&amp;space;-&amp;space;v_1^{2})\]" alt="\[\Delta P = \frac{1}{2}\,\rho\,(v_2^{2} - v_1^{2})\]" align="absmiddle"></p>



<p>Hitung:<br><img decoding="async" src="https://latex.codecogs.com/gif.latex?\[120^{2}&amp;space;=&amp;space;14400\]" alt="\[120^{2} = 14400\]" align="absmiddle"><br><img decoding="async" src="https://latex.codecogs.com/gif.latex?\[80^{2}&amp;space;=&amp;space;6400\]" alt="\[80^{2} = 6400\]" align="absmiddle"><br><img decoding="async" src="https://latex.codecogs.com/gif.latex?\[\text{Selisih}&amp;space;=&amp;space;14400&amp;space;-&amp;space;6400&amp;space;=&amp;space;8000\]" alt="\[\text{Selisih} = 14400 - 6400 = 8000\]" align="absmiddle"></p>



<p><img decoding="async" src="https://latex.codecogs.com/gif.latex?\[\Delta&amp;space;P&amp;space;=&amp;space;\frac{1}{2}(1.2)(8000)\]" alt="\[\Delta P = \frac{1}{2}(1.2)(8000)\]" align="absmiddle"><br><img decoding="async" src="https://latex.codecogs.com/gif.latex?\[\Delta&amp;space;P&amp;space;=&amp;space;0.6&amp;space;\times&amp;space;8000&amp;space;=&amp;space;4800\]" alt="\[\Delta P = 0.6 \times 8000 = 4800\]" align="absmiddle"><br><img decoding="async" src="https://latex.codecogs.com/gif.latex?\[F&amp;space;=&amp;space;4800&amp;space;\times&amp;space;3&amp;space;=&amp;space;14400\&amp;space;\text{N}\]" alt="\[F = 4800 \times 3 = 14400\ \text{N}\]" align="absmiddle"></p>



<p>Jawaban: Gaya angkatnya adalah 14400 N.</p>



<p>6. Aliran air dalam pipa memiliki ketinggian pipa besar 12 m dan pipa kecil 2 m. Tekanan pada pipa besar adalah <img decoding="async" src="https://latex.codecogs.com/gif.latex?\[&amp;space;9&amp;space;\times&amp;space;10^{5}&amp;space;\]" alt="\[ 9 \times 10^{5} \]" align="absmiddle"> dan pada pipa kecil <img decoding="async" src="https://latex.codecogs.com/gif.latex?\[&amp;space;4&amp;space;\times&amp;space;10^{5}&amp;space;\]" alt="\[ 4 \times 10^{5} \]" align="absmiddle"> Pa.&nbsp;Kecepatan air pada pipa besar adalah 20 m/s. Tentukan kecepatan aliran air pada pipa kecil!</p>



<p><em>(massa jenis air = 1000 kg/m³; g = 10 m/s²)</em></p>



<p>Pembahasan:</p>



<p>Diketahui:<br><img decoding="async" src="https://latex.codecogs.com/gif.latex?\[h_1&amp;space;=&amp;space;12\&amp;space;\text{m}\]" alt="\[h_1 = 12\ \text{m}\]" align="absmiddle"><br><img decoding="async" src="https://latex.codecogs.com/gif.latex?\[h_2&amp;space;=&amp;space;2\&amp;space;\text{m}\]" alt="\[h_2 = 2\ \text{m}\]" align="absmiddle"><br><img decoding="async" src="https://latex.codecogs.com/gif.latex?\[v_1&amp;space;=&amp;space;20\&amp;space;\text{m/s}\]" alt="\[v_1 = 20\ \text{m/s}\]" align="absmiddle"><br><img decoding="async" src="https://latex.codecogs.com/gif.latex?\[P_1&amp;space;=&amp;space;9&amp;space;\times&amp;space;10^{5}\&amp;space;\text{Pa}\]" alt="\[P_1 = 9 \times 10^{5}\ \text{Pa}\]" align="absmiddle"><br><img decoding="async" src="https://latex.codecogs.com/gif.latex?\[P_2&amp;space;=&amp;space;4&amp;space;\times&amp;space;10^{5}\&amp;space;\text{Pa}\]" alt="\[P_2 = 4 \times 10^{5}\ \text{Pa}\]" align="absmiddle"><br><img decoding="async" src="https://latex.codecogs.com/gif.latex?\[\rho&amp;space;=&amp;space;1000\&amp;space;\text{kg/m}^3\]" alt="\[\rho = 1000\ \text{kg/m}^3\]" align="absmiddle"></p>



<p>Gunakan persamaan Bernoulli:<br><img decoding="async" src="https://latex.codecogs.com/gif.latex?\[P_1&amp;space;+&amp;space;\frac{1}{2}\rho&amp;space;v_1^{2}&amp;space;+&amp;space;\rho&amp;space;g&amp;space;h_1=&amp;space;P_2&amp;space;+&amp;space;\frac{1}{2}\rho&amp;space;v_2^{2}&amp;space;+&amp;space;\rho&amp;space;g&amp;space;h_2\]" alt="\[P_1 + \frac{1}{2}\rho v_1^{2} + \rho g h_1= P_2 + \frac{1}{2}\rho v_2^{2} + \rho g h_2\]" align="absmiddle"></p>



<p>Hitung tiap komponen:<br><img decoding="async" src="https://latex.codecogs.com/gif.latex?\[\frac{1}{2}(1000)(20^{2})" alt="\[\frac{1}{2}(1000)(20^{2})" align="absmiddle"><br><img decoding="async" src="https://latex.codecogs.com/gif.latex?=&amp;space;500&amp;space;\times&amp;space;400" alt="= 500 \times 400" align="absmiddle"><br>= 200000\]</p>



<p><img decoding="async" src="https://latex.codecogs.com/gif.latex?\[\rho&amp;space;g&amp;space;h_1&amp;space;=&amp;space;1000(10)(12)&amp;space;=&amp;space;120000\]" alt="\[\rho g h_1 = 1000(10)(12) = 120000\]" align="absmiddle"><br><img decoding="async" src="https://latex.codecogs.com/gif.latex?\[\rho&amp;space;g&amp;space;h_2&amp;space;=&amp;space;1000(10)(2)&amp;space;=&amp;space;20000\]" alt="\[\rho g h_2 = 1000(10)(2) = 20000\]" align="absmiddle"></p>



<p>Substitusi:<br><img decoding="async" src="https://latex.codecogs.com/gif.latex?\[900000&amp;space;+&amp;space;200000&amp;space;+&amp;space;120000" alt="\[900000 + 200000 + 120000" align="absmiddle"><br><img decoding="async" src="https://latex.codecogs.com/gif.latex?=&amp;space;400000&amp;space;+&amp;space;500v_2^{2}&amp;space;+&amp;space;20000\]" alt="= 400000 + 500v_2^{2} + 20000\]" align="absmiddle"></p>



<p><img decoding="async" src="https://latex.codecogs.com/gif.latex?\[1220000&amp;space;=&amp;space;420000&amp;space;+&amp;space;500v_2^{2}\]" alt="\[1220000 = 420000 + 500v_2^{2}\]" align="absmiddle"><br><img decoding="async" src="https://latex.codecogs.com/gif.latex?\[500v_2^{2}&amp;space;=&amp;space;800000\]" alt="\[500v_2^{2} = 800000\]" align="absmiddle"><br><img decoding="async" src="https://latex.codecogs.com/gif.latex?\[v_2^{2}&amp;space;=&amp;space;1600\]" alt="\[v_2^{2} = 1600\]" align="absmiddle"><br><img decoding="async" src="https://latex.codecogs.com/gif.latex?\[v_2&amp;space;=&amp;space;40\&amp;space;\text{m/s}\]" alt="\[v_2 = 40\ \text{m/s}\]" align="absmiddle"></p>



<p>Jawaban: Jadi kecepatan aliran air pada pipa kecil adalah 40 m/s.</p>



<p>7. Pada suatu pesawat kecil, kecepatan udara di atas sayap adalah 100 m/s, sedangkan di bawah sayap 60 m/s. Jika massa jenis udara 1 kg/m³ dan luas sayap 5 m², tentukan besar gaya angkat yang terjadi!</p>



<p>Pembahasan:</p>



<p>Diketahui:<br><img decoding="async" src="https://latex.codecogs.com/gif.latex?\[v_1&amp;space;=&amp;space;60\&amp;space;\text{m/s}\]" alt="\[v_1 = 60\ \text{m/s}\]" align="absmiddle"><br><img decoding="async" src="https://latex.codecogs.com/gif.latex?\[v_2&amp;space;=&amp;space;100\&amp;space;\text{m/s}\]" alt="\[v_2 = 100\ \text{m/s}\]" align="absmiddle"><br><img decoding="async" src="https://latex.codecogs.com/gif.latex?\[\rho&amp;space;=&amp;space;1\&amp;space;\text{kg/m}^3\]" alt="\[\rho = 1\ \text{kg/m}^3\]" align="absmiddle"><br><img decoding="async" src="https://latex.codecogs.com/gif.latex?\[A&amp;space;=&amp;space;5\&amp;space;\text{m}^2\]" alt="\[A = 5\ \text{m}^2\]" align="absmiddle"></p>



<p>Rumus:<br><img decoding="async" src="https://latex.codecogs.com/gif.latex?\[\Delta&amp;space;P&amp;space;=&amp;space;\frac{1}{2}\,\rho\,(v_2^{2}&amp;space;-&amp;space;v_1^{2})\]" alt="\[\Delta P = \frac{1}{2}\,\rho\,(v_2^{2} - v_1^{2})\]" align="absmiddle"></p>



<p>Hitung:<br><img decoding="async" src="https://latex.codecogs.com/gif.latex?\[100^{2}&amp;space;=&amp;space;10000\]" alt="\[100^{2} = 10000\]" align="absmiddle"><br><img decoding="async" src="https://latex.codecogs.com/gif.latex?\[60^{2}&amp;space;=&amp;space;3600\]" alt="\[60^{2} = 3600\]" align="absmiddle"><br><img decoding="async" src="https://latex.codecogs.com/gif.latex?\[\text{Selisih}&amp;space;=&amp;space;10000&amp;space;-&amp;space;3600&amp;space;=&amp;space;6400\]" alt="\[\text{Selisih} = 10000 - 3600 = 6400\]" align="absmiddle"></p>



<p><img decoding="async" src="https://latex.codecogs.com/gif.latex?\[\Delta&amp;space;P&amp;space;=&amp;space;\frac{1}{2}(1)(6400)&amp;space;=&amp;space;3200\]" alt="\[\Delta P = \frac{1}{2}(1)(6400) = 3200\]" align="absmiddle"><br><img decoding="async" src="https://latex.codecogs.com/gif.latex?\[F&amp;space;=&amp;space;\Delta&amp;space;P&amp;space;\cdot&amp;space;A&amp;space;=&amp;space;3200&amp;space;\times&amp;space;5&amp;space;=&amp;space;16000\&amp;space;\text{N}\]" alt="\[F = \Delta P \cdot A = 3200 \times 5 = 16000\ \text{N}\]" align="absmiddle"></p>



<p>Jawaban: Maka besar gaya angkat yang terjadi adalah 16000 N.</p>



<p>8. Pada pipa venturi, kecepatan air di bagian besar adalah 10 m/s dan di bagian sempit 30 m/s. Jika massa jenis air 1000 kg/m³ dan ketinggian pipa sama, tekanan di bagian besar adalah <img decoding="async" src="https://latex.codecogs.com/gif.latex?5x10^5" alt="5x10^5" align="absmiddle">. Tentukan tekanan di bagian sempit!</p>



<p>Pembahasan:</p>



<p>Diketahui:<br><img decoding="async" src="https://latex.codecogs.com/gif.latex?\[v_1&amp;space;=&amp;space;10\&amp;space;\text{m/s}\]" alt="\[v_1 = 10\ \text{m/s}\]" align="absmiddle"><br><img decoding="async" src="https://latex.codecogs.com/gif.latex?\[v_2&amp;space;=&amp;space;30\&amp;space;\text{m/s}\]" alt="\[v_2 = 30\ \text{m/s}\]" align="absmiddle"><br><img decoding="async" src="https://latex.codecogs.com/gif.latex?\[P_1&amp;space;=&amp;space;5&amp;space;\times&amp;space;10^{5}\&amp;space;\text{Pa}\]" alt="\[P_1 = 5 \times 10^{5}\ \text{Pa}\]" align="absmiddle"><br><img decoding="async" src="https://latex.codecogs.com/gif.latex?\[h_1&amp;space;=&amp;space;h_2&amp;space;\quad&amp;space;(\text{ketinggian&amp;space;sama&amp;space;}&amp;space;\rightarrow&amp;space;\text{&amp;space;komponen&amp;space;potensial&amp;space;hilang})\]" alt="\[h_1 = h_2 \quad (\text{ketinggian sama } \rightarrow \text{ komponen potensial hilang})\]" align="absmiddle"><br><img decoding="async" src="https://latex.codecogs.com/gif.latex?\[\rho&amp;space;=&amp;space;1000\&amp;space;\text{kg/m}^3\]" alt="\[\rho = 1000\ \text{kg/m}^3\]" align="absmiddle"></p>



<p>Gunakan Bernoulli:<br><img decoding="async" src="https://latex.codecogs.com/gif.latex?\[P_1&amp;space;+&amp;space;\frac{1}{2}\rho&amp;space;v_1^{2}=P_2&amp;space;+&amp;space;\frac{1}{2}\rho&amp;space;v_2^{2}\]" alt="\[P_1 + \frac{1}{2}\rho v_1^{2}=P_2 + \frac{1}{2}\rho v_2^{2}\]" align="absmiddle"></p>



<p>Hitung:<br><img decoding="async" src="https://latex.codecogs.com/gif.latex?\[\frac{1}{2}(1000)(10^{2})&amp;space;=&amp;space;500&amp;space;\times&amp;space;100&amp;space;=&amp;space;50000\]" alt="\[\frac{1}{2}(1000)(10^{2}) = 500 \times 100 = 50000\]" align="absmiddle"><br><img decoding="async" src="https://latex.codecogs.com/gif.latex?\[\frac{1}{2}(1000)(30^{2})&amp;space;=&amp;space;500&amp;space;\times&amp;space;900&amp;space;=&amp;space;450000\]" alt="\[\frac{1}{2}(1000)(30^{2}) = 500 \times 900 = 450000\]" align="absmiddle"></p>



<p>Substitusi:<br><img decoding="async" src="https://latex.codecogs.com/gif.latex?\[500000&amp;space;+&amp;space;50000&amp;space;=&amp;space;P_2&amp;space;+&amp;space;450000\]" alt="\[500000 + 50000 = P_2 + 450000\]" align="absmiddle"><br><img decoding="async" src="https://latex.codecogs.com/gif.latex?\[550000&amp;space;=&amp;space;P_2&amp;space;+&amp;space;450000\]" alt="\[550000 = P_2 + 450000\]" align="absmiddle"><br><img decoding="async" src="https://latex.codecogs.com/gif.latex?\[P_2&amp;space;=&amp;space;100000\&amp;space;\text{Pa}\]" alt="\[P_2 = 100000\ \text{Pa}\]" align="absmiddle"></p>



<p>Jawaban: Tekanan di bagian sempit tersebut adalah 100000 Pa</p>


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<h2 class="wp-block-heading">Penutup</h2>



<p>Nah, sampai di sini dulu, ya, waktu belajar bersama Mamikos menggunakan contoh soal hukum Bernoulli dan penyelesaiannya lengkap.</p>



<p>Selanjutnya, kalau kamu ingin belajar tentang mapel lain, jangan lupa berkunjung ke blog Mamikos dan dapatkan artikel bermanfaat seputar materi hingga contoh soal. <img src="https://s.w.org/images/core/emoji/14.0.0/72x72/1f33a.png" alt="🌺" class="wp-smiley" style="height: 1em; max-height: 1em;" /></p>


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                    <p class="wp-block-ub-content-toggle-accordion-title ub-content-toggle-title-25cfddc0-57a1-4426-85b2-5734cf294bcd"><strong>Referensi:</strong></p><div class="wp-block-ub-content-toggle-accordion-toggle-wrap right"><span class="wp-block-ub-content-toggle-accordion-state-indicator wp-block-ub-chevron-down"></span>
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<p>Belajar Fluida, Ingat Hukum Bernoulli! [Daring]. Tautan: https://www.quipper.com/id/blog/mapel/fisika/belajar-fluida-ingat-hukum-bernoulli/</p>



<p>Hukum Bernoulli: Bunyi, Rumus, Penerapan, dan Contoh Soal [Daring]. Tautan: https://www.zenius.net/blog/rumus-hukum-bernoulli-dan-contoh-soal/</p>



<p>Hukum Bernoulli: Pengertian, Persamaan, dan Contoh Soal [Daring]. Tautan: https://www.gramedia.com/literasi/hukum-bernoulli/</p>



<p>Soal Bernoulli [Daring]. Tautan: https://id.scribd.com/document/606546728/soal-bernoulli</p>

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</div><p>The post <a href="https://mamikos.com/info/contoh-soal-hukum-bernoulli-pljr/">8 Contoh Soal Hukum Bernoulli dan Penyelesaiannya dengan Rumus</a> appeared first on <a href="https://mamikos.com/info">Blog Mamikos</a>.</p>
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