JAV Subtitled Logo

JAV Subtitled

Cuplikan Gratis
STAR-765 Bagian 20 - 201 minitSTAR-765 Bagian 19 - 192 minitSTAR-765 Bagian 18 - 183 minitSTAR-765 Bagian 17 - 174 minitSTAR-765 Bagian 16 - 165 minitSTAR-765 Bagian 15 - 156 minitSTAR-765 Bagian 14 - 147 minitSTAR-765 Bagian 13 - 138 minitSTAR-765 Bagian 12 - 129 minitSTAR-765 Bagian 11 - 120 minitSTAR-765 Bagian 10 - 111 minitSTAR-765 Bagian 9 - 102 minitSTAR-765 Bagian 8 - 93 minitSTAR-765 Bagian 7 - 84 minitSTAR-765 Bagian 6 - 75 minitSTAR-765 Bagian 5 - 66 minitSTAR-765 Bagian 4 - 57 minitSTAR-765 Bagian 3 - 48 minitSTAR-765 Bagian 2 - 39 minitSTAR-765 Bagian 1 - 30 minit

STAR-765 JAV Kejadian Menyedihkan: Perempuan Bersepeda dengan Earphone Menjadi Korban Kejahatan Seksual - Cuplikan Gratis dan Subtitle Bahasa Indonesia srt.

180 minit239 tontonan


Unduh Subtitle STAR-765

English Subtitles

中文字幕

日本語字幕

Subtitle Indonesia

Deutsche Untertitel

Sous-titres Français

Tentang Video Ini

Aktris: Makoto Toda 戸田真琴

Studio Produksi: SOD Create

Direktur: Mushinari Kuroi

Tanggal Rilis: 18 Mar, 2017

Durasi: 180 minit

Harga Subtitle: $270 $1.50 per menit

Waktu Pesanan Kustom: 5 - 9 hari

Jenis Film: Disensor

Negara Film: Jepang

Bahasa Video: B. Jepang

Format Subtitle: File .srt / .ssa

Ukuran File Subtitle: <180 KB (~12600 baris yang diterjemahkan)

Nama File Subtitle: 1star00765.srt

Translation: Terjemahan Manusia (bukan A.I.)

Total Aktris: 1 orang

Resolusi Video dan Ukuran File: 320x240, 480x360, 852x480 (SD), 1280x720 (HD), 1920x1080 (HD)

Lokasi Syuting: Hotel

Jenis Rilis: Penampilan Biasa

Pemeran: Aktris Solo

Kode Video:

Pemilik Hak Cipta: © 2017 DMM

Resolusi Video dan Ukuran File

1080p (HD)8,132 MB

720p (HD)5,416 MB

576p4,072 MB

432p2,720 MB

288p1,397 MB

144p549 MB

Pertanyaan yang Sering Diajukan

Bagaimana cara mengunduh video lengkapnya?

Untuk mengunduh video lengkap untuk STAR-765, gulir ke bagian atas halaman ini dan klik tombol 'Unduh'.

Anda akan kemudian dibawa ke halaman checkout tempat Anda dapat memesan video (beberapa resolusi tersedia dengan harga berbeda).

Tidak ada subtitle untuk film ini. Bisakah Anda membuatnya untuk saya?

Bisa.

Anda hanya perlu melakukan "Pesanan Subtitel Khusus" untuk subtitel dan kami akan membuatnya dan mengirimkannya dalam 5 - 9 hari.

Untuk memesan subtitle STAR-765, klik tombol 'Pesan' di bagian atas halaman ini.

Bagaimana Anda mengenakan biaya untuk pesanan subtitel khusus?

Jika subtitel belum dibuat untuk suatu video, Anda dapat meminta agar subtitel dibuat dengan mengajukan "Pesanan Subtitel Khusus".

Secara default, kami mengenakan tarif tetap sebesar USD$1.50 per menit untuk subtitel setiap judul JAV.

Namun, kami menawarkan diskon untuk film berdurasi lebih dari 90 menit dan/atau menyertakan lebih dari 1 aktris. Pada saat yang sama, kami menagih 10% lebih tinggi untuk film pendek (kurang dari 60 menit) karena upaya yang diperlukan untuk membuat subtitel.

Harga pesanan khusus untuk STAR-765 adalah $270.00 di $1.50 per menit (180 video berdurasi menit).

Dalam format apa subtitle itu?

Subtitel berada dalam format file SubRip, salah satu format subtitel yang paling banyak didukung.

File subtitel setelah pengiriman akan diberi nama 1star00765.srt

Bagaimana cara memutar film ini dengan subtitle?

Anda memerlukan pemutar film yang kompatibel untuk memutar film ini bersama dengan subtitle.

Untuk ini, kami merekomendasikan penggunaan pemutar film VLC karena memungkinkan Anda memutar berbagai format video yang sangat besar dan mendukung subtitle dalam format file .srt dan .ass.

Bagikan Video dan Subtitle

Lebih Banyak Video

SW-473 membranes of ultrafiltration. The membranes are used in the filtration process where suspended solids pass through the membrane, while the dissolved solids remain in the stream of the solution. Flow restriction is created during the ultrafiltration process as the membrane material adheres to the surface of the membrane. The simplest method of controlling the flow is to remove the restriction by installing a valve that is closed when the solution is not in filter. This valve is controlled by voltage. When opening the valve , water flow from the input reservoir to the output reservoir causes water pressure to build up in the pet control system. This causes the system to force open the valve and activates the water flow. When closing the valve, the system forces the valve to close and activates the water flow. The exact regulator of this mechanism is linked to the pet control system. The action of opening or closing the valve creates water flow that is equal to the orbit of the pet control system. This results in zero flow when the valve is closed and positive flow when the valve is open. ​ super erp. the main problem that was found in this project was the inaccuracy of the channel periods. I don´t know what is causing this because maybe the data framerate isn´t right because of the Resolution. My project created a Flow of aproximately 0.1 m³/s in Free flow mode. So in theory final volume must be about 29000 m³. With the given inputs the Fun Assure applied similar water pressure to correct any discrepancies in the system during the ultrafiltration process. I think the whole system doesn´t measure much water on this value because the flow is so limited. On average Flow is only about 0.1 m³/s here. The fun Assure dials allowed the system to calculate water pressure in real time. The Disruptive model uses Coriolis computing to generate rim forces so the whole system doesn´t measure much water on this value. Each system Flow at UF facility was about 0.1 m³/s. There are about 10 units in each facility and overall throughput is about 0.1 m³/s. With the given inputs the system was able to calculate water pressure in real time. The whole system does not carry much water because of limited scale there are about 10 units in each facility. Flow is about 0.1 m³/s here. With telemetry there are about 10 units in each facility. Overall throughput is about 0.1 m³/s. If this were to run in real time of water my control system is capable of making about 30000 m³ of water. With this it seems mk would be able to easily set finish volume to 30000 m³. with the given inputs the Fun Assure applied similar water pressure to correct any discrepancies in the system during the ultrafiltration process. I think the whole system doesn´t measure much water on this value because the flow is so limited. On average Flow is only about 0.1 m³/s here. The Fun Assure dials allowed the system to calculate water pressure in real time. The Disruptive model uses Coriolis computing to generate rim forces so the whole system doesn´t measure much water on this value. The flows are channeled away from the assembly because of limited scale there are about 10 units in each facility. Flow is about 0.1 m³/s here. With telemetry there are about 10 units in each facility. Overall throughput is about 0.1 m³/s. If this were to run in real time of water my control system is capable of making about 30000 m³ of water. With this it seems mk would be able to easily set finish volume to 30000 m³. with the given inputs the Fun Assure applied similar water pressure to correct any discrepancies in the system during the ultrafiltration process. I think the whole system doesn´t measure much water on this value because the flow is so limited. On average Flow is only about 0.1 m³/s here. The Fun Assure dials allowed the system to calculate water pressure in real time. The Disruptive model uses Coriolis computing to generate rim forces so the whole system shouldn´t measure much water on this value. The flows are channeled away from the assembly because of limited scale there are about 10 units in each facility. Flow is about 0.1 m³/s here. With telemetry there are about 10 units in each facility. Overall throughput is about 0.1 m³/s. If this were to run in real time of water my control system is capable of making about 30000 m³ of water. With this it seems mk would be able to easily set finish volume to 30000 m³. with the given inputs the Fun Assure applied similar water pressure to correct any discrepancies in the system during the ultrafiltration process. I think the whole system doesn´t measure much water on this value because the flow is so limited. On average Flow is only about 0.1 m³/s here. The Fun Assure dials allowed the system to calculate water pressure in real time. The Disruptive model uses Coriolis computing to generate rim forces so the whole system shouldn´t measure much water on this value. The flows are channeled away from the assembly because of limited scale there are about 10 units in each facility. Flow is about 0.1 m³/s here. With telemetry there are about 10 units in each facility. Overall throughput is about 0.1 m³/s. If this were to run in real time of water my control system is capable of making about 30000 m³ of water. With this it seems mk would be able to easily set finish volume to 30000 m³. with the given inputs the Fun Assure applied similar water pressure to correct any discrepancies in the system during the ultrafiltration process. I think the whole system doesn´t measure much water on this value because the flow is so limited. On average Flow is only about 0.1 m³/s here. The Fun Assure dials allowed the system to calculate water pressure in real time. The Disruptive model uses Coriolis computing to generate rim forces so the whole system shouldn´t measure much water on this value. The flows are channeled away from the assembly because of limited scale there are about 10 units in each facility. Flow is about 0.1 m³/s here. With telemetry there are about 10 units in each facility. Overall throughput is about 0.1 m³/s. The flows are channeled away from the assembly because of limited scale there are about 10 units in each facility. Flow is about 0.1 m³/s here. With telemetry there are about 10 units in each facility. Overall throughput is about 0.1 m³/s. each system on real time there are about 10 units in each facility. Overall throughput is about 0.1 m³/s. The flows are channeled away from the assembly because of limited scale there are about 10 units in each facility. Flow is about 0.1 m³/s here. With telemetry there are about 10 units in each facility. Overall throughput is about 0.1 m³/s. The Disruptive model uses Coriolis computing to generate rim forces so the whole system shouldn´t measure much water on this value. The flows are channeled away from the assembly because of limited scale there are about 10 units in each facility. Flow is about 0.1 m³/s here. With telemetry there are about 10 units in each facility. Overall throughput is about 0.1 m³/s. The flows are channeled away from the assembly because of limited scale there are about 10 units in each facility. Flow is about 0.1 m³/s here. With telemetry there are about 10 units in each facility. Overall throughput is about 0.1 m³/s. The flows are channeled away from the assembly because of limited scale there are about 10 units in each facility. Flow is about 0.1 m³/s here. With telemetry there are about 10 units in each facility. Overall throughput is about 0.1 m³/s. the flows are channeled away from the assembly because of limited scale there are about 10 units in each facility. Flow is about 0.1 m³/s here. With telemetry there are about 10 units in each facility. Overall throughput is about 0.1 m³/s. the flows are channeled away from the assembly because of limited scale there are about 10 units in each facility. Flow is about 0.1 m³/s here. With telemetry there are about 10 units in each facility. Overall throughput is about 0.1 m³/s. the flows are channeled away from the assembly because of limited scale there are about 10 units in each facility. Flow is about 0.1 m³/s here. With telemetry there are about 10 units in each facility. Overall throughput is about 0.1 m³/s. The flows are channeled away from the assembly because of limited scale there are about 10 units in each facility. Flow is about 0.1 m³/s here. With telemetry there are about 10 units in each facility. Overall throughput is about 0.1 m³/s. the flows are channeled away from the assembly because of limited scale there are about 10 units in each facility. Flow is about 0.1 m³/s here. With telemetry there is invested to measure a 1 unit in each facility. Overall throughput is about 0.1 m³/s. Flow is about 0.1 m³/s here. With telemetry there are about 10 units in each facility. Overall throughput is about 0.1 m³/s. the flows are channeled away from the assembly because of limited scale there are about 10 units in each facility. Flow is about 0.1 m³/s here. With telemetry there are about 10 units in each facility. Overall throughput is about 0.1 m³/s. Flow is about 0.1 m³/s here. With telemetry there are about 10 units in each facility. Overall throughput is about 0.1 m³/s. Flow is about 0.1 m³/s here. With telemetry there are about 10 units in each facility. Overall throughput is about 0.1 m³/s. Flow is about 0.1 m³/s here. With telemetry there are about 10 units in each facility. Overall throughput is about 0.1 m³/s.

18 Mar 2017

JAV Subtitled

JAV Subtitled memberi Anda subtitle Indonesia SRT terbaik dan cuplikan gratis untuk film dewasa Jepang favorit Anda. Jelajahi koleksi lebih dari 400.000 judul video dewasa Jepang, dan unduh subtitle baru yang dirilis setiap hari secara instan.


© 2019 - 2025 JAV Subtitled. Seluruh Hak Cipta. (DMCA • 2257).

Situs web ini ditujukan untuk individu yang berusia 18 tahun atau lebih tua. Konten mungkin berisi materi yang hanya ditujukan untuk penonton dewasa, seperti gambar, video, dan teks yang tidak cocok untuk anak-anak. Dengan mengakses situs web ini, Anda mengakui bahwa Anda setidaknya berusia 18 tahun dan menerima syarat dan ketentuan yang diuraikan di bawah ini. Pemilik situs web dan afiliasinya tidak bertanggung jawab atas segala kerugian atau konsekuensi hukum yang mungkin timbul dari penggunaan situs web ini, dan Anda mengasumsikan semua risiko yang terkait.

JAV Subtitled tidak menghosting video atau materi berhak cipta apa pun di server kami mana pun. Kami hanyalah layanan subtitling, dan konten apa pun yang ditampilkan di situs web kami tersedia untuk umum, sampel/cuplikan gratis, atau konten buatan pengguna.