@prof_anwar_djakboub: “الرياضيات صعيبة؟ 🤔 ولا إحنا تعلمناها بطريقة صعيبة؟ أغلب التلاميذ يشوفوا المعادلات مجرد أرقام ورموز… لكن في الحقيقة هي موجودة في حياتنا اليومية. 👀 في هذا الفيديو شرحت معادلة من الدرجة الأولى باستعمال الميزان، حتى تشوف بعينك لماذا ننقل الحدود ولماذا تتغير الإشارة، بدل ما تحفظ القاعدة بدون فهم. إذا فهمت الرياضيات بهذه الطريقة، راح تكتشف أنها منطق وليست حفظًا. 🧠⚖️ اكتب في التعليقات: شنو أكثر درس تحسّه بعيد عن الواقع؟ ويمكن يكون الفيديو الجاي عليه. 👇 #رياضيات #بكالوريا2027 #بكالوريا #تعليم #دروس_رياضيات

الأستاذ أنور جقبوب
الأستاذ أنور جقبوب
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Region: DZ
Thursday 23 July 2026 10:28:22 GMT
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sabihadh
Aouaouche nefissa :
x+1=18/3..... x+1=6......x=6-1 x=5
2026-07-23 20:31:00
0
abdou.sediri7
Abdou sediri سيديري :
18/3=6 6-1=5 x=5
2026-07-24 02:13:59
2
benmoussa197
موسى بن طويل :
3x+3=18 3×=18-3 3×=15 3×5=15
2026-07-23 19:51:34
1
mohamednacer32
Moħamad Nacer :
18/3=6 1+x=6 x=5
2026-07-23 16:20:15
1
ridafouad7
ridafouad :
اسم البرنامج من فضلك
2026-07-23 19:07:51
1
amouni.amouni7
amouni amouni :
2026-07-23 18:50:31
1
newben711
prof_Newar.maths :
هي فالاصل الرياضيات بعيدة عن الواقع الذي نعرفه 💯
2026-07-23 20:02:46
1
ali_worlds
Ali Alex :
الرياضيات الرقمية هي الواقع العملي احسنت
2026-07-24 10:36:34
0
user3842098797842
user3842098797842 :
خصني أستاذ كيما أنت، كنت أنا في منصب خير من لي راني فيه، ولربما كنت دكتور في كاش مادة علمية😄 بارك الله فيكم
2026-07-24 12:23:37
1
the_professor029
TheProff :
بارك الله فيك
2026-07-23 22:07:48
0
user8412787037063
العمدة :
الطريقة هي تنشر وتدير 18 من جيهة والجيهة الاخرى 3x+3 أيا توازن بالايكس حتى الميزان يكش التوازن تاعه
2026-07-23 10:59:49
0
adel.ghomri8
Adel Ghomri :
نجد قيمة x لتحقق لنا المساواة هدا كل مافي الأمر
2026-07-23 21:49:31
0
abdelhaninbenyoun
حمد الغامدي :
بارك الله فيك كثر خيرك
2026-07-23 22:50:25
0
safidine467
sa fi81 :
بارك الله فيك استاذ بالتوفيق ان شاء الله
2026-07-23 23:08:06
0
saiifo2006
Allex :
نعتبرو x+1 كيس نحطو في الميزان 3 اكياس وزنهم يعطينا 18 يعني الكيس الواحد وزنو 6 ومبعد نحو 1 من الكيس يبقى 5 يعني اكس يساوي 5
2026-07-23 17:49:48
0
mohamed_laid
Mohamed_Laid :
والله نعرف الطريقة الثانية بصح عجزت نكتب
2026-07-23 21:18:10
0
user3039556871051
user3039556871051 :
ماهو البرنامج الذي استعملتهم لتمثيل المعادلة
2026-07-23 21:27:34
0
user3039556871051
user3039556871051 :
نقسم الطرفين على 3 ثم نحذف من كل طرف وحدة
2026-07-23 21:27:09
0
rvg_djamel
RVG DJAMEL :
طريقة 2 نقوم بنشر ثم نحذف 3 من طرفين 3x= 15
2026-07-23 19:33:17
1
abdelkarimm8
Abdelkarim 🇩🇿🇩🇿 :
عن طريق النشر
2026-07-23 19:29:14
0
maranoora2019
Marénoor :
ماستر 2 الكترونيك وشفت الطريقة تاعك عجبتني يعطيك الصحة
2026-07-24 16:52:49
0
ninarose76
افكار انيس :
الله يرحم والديك
2026-07-24 21:56:12
0
hamidhamidoumouhande
HAKIM ALOUI :
عندي 100 الف × 0 وين راحت لمياتلف ديالي 💪
2026-07-24 11:02:00
0
intrepideyoucef.a
intrepideYoucef Amrani :
,6=x+1 لي x=53× =18,أي 3×6=18,
2026-07-23 19:58:49
0
zbibite
DoR WahRaN DoR :
عندي غي سؤال واحد على الرياضيات : الأعداد المركبة في الحياة اليومية وين نلقاها ؟ و شا نحل بيها ؟
2026-07-23 22:35:10
0
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Other Videos

1) Horsetail spores Like ferns, horsetails (Equisetum) do not produce seeds. They produce spores instead. The spores are produced in a beautiful structure called the strobilus (shown at the start of the video). These small spores (around 0.05 mm) have evolved an amazing adaptation that increases their dispersal and therefore makes it easier for new horsetail plants to expand further away. . The horsetail spores have four appendages (elaters) that quickly deploy or retract depending on the level of environmental humidity (the movement of the spores in the video is played in real time). . Understanding the biomechanics of the walking and jumping of these spores could one day lead to the engineering of self-propelled objects. . For more information about the movement of Equisetum spores: Philippe Marmottant, Alexandre Ponomarenko, Diane Bienaimé. The walk and jump of Equisetum spores. Proceedings of the Royal Society B: Biological Sciences, Royal Society, The, 2013, 280 (1770), pp.20131465. ffhal-00911670 2) Moss spores It is between April-June that when you see moss, you will also see some hair-like structures in the moss. These hair-like structures are the moss sporophytes. . The moss sporophyte is the only diploid part of the moss (the green part of the moss is haploid and is referred to as the gametophyte of the moss). . At the top of the moss sporophyte there is a capsule. In this capsule, the moss will produce spores by meiosis. . Remarkably, some of the spores that the moss will produce will be male spores and some spores that the moss will produce will be female spores. The moss spores will therefore produce either male moss plants or female moss plants (male or female gametophytes). 3) Giant puffball spores It’s incredible to realize the huge number of spores that a giant puffball (Calvatia gigantea) can produce. A single mature puffball, similar in size to the ones shown in this video, can release around 5 trillion spores (yes, trillion with a “T”). Keep in mind that each of these spores is potentially capable of developing into a new puffball under the right conditions. . Scientists calculated this number by carefully slicing the inner tissue of the puffball and estimating the number of spores in different zones of the mushroom. Interestingly, the middle layer of the puffball contained the highest spore density (about 22 billion spores per gram). . When a giant puffball matures and dries out, its outer layer splits open. Wind, rain, or contact with animals then act as dispersal forces, releasing millions of spores at a time into the air. Spores that can travel far before settling, allowing this species of fungus to colonize new areas where it can thrive. . For details on how the spore calculations were made: De-Wei Li. 2011 – Five trillion basidiospores in a fruiting body of Calvatia gigantea. Mycosphere 2(4), 457–462. . For this video I used a Leica ZOOM 200 stereoscope, an Olympus CX31 microscope and an Olympus BX41 microscope at up to 1000x magnification #microscopy #spores #horsetail #moss #puffball
1) Horsetail spores Like ferns, horsetails (Equisetum) do not produce seeds. They produce spores instead. The spores are produced in a beautiful structure called the strobilus (shown at the start of the video). These small spores (around 0.05 mm) have evolved an amazing adaptation that increases their dispersal and therefore makes it easier for new horsetail plants to expand further away. . The horsetail spores have four appendages (elaters) that quickly deploy or retract depending on the level of environmental humidity (the movement of the spores in the video is played in real time). . Understanding the biomechanics of the walking and jumping of these spores could one day lead to the engineering of self-propelled objects. . For more information about the movement of Equisetum spores: Philippe Marmottant, Alexandre Ponomarenko, Diane Bienaimé. The walk and jump of Equisetum spores. Proceedings of the Royal Society B: Biological Sciences, Royal Society, The, 2013, 280 (1770), pp.20131465. ffhal-00911670 2) Moss spores It is between April-June that when you see moss, you will also see some hair-like structures in the moss. These hair-like structures are the moss sporophytes. . The moss sporophyte is the only diploid part of the moss (the green part of the moss is haploid and is referred to as the gametophyte of the moss). . At the top of the moss sporophyte there is a capsule. In this capsule, the moss will produce spores by meiosis. . Remarkably, some of the spores that the moss will produce will be male spores and some spores that the moss will produce will be female spores. The moss spores will therefore produce either male moss plants or female moss plants (male or female gametophytes). 3) Giant puffball spores It’s incredible to realize the huge number of spores that a giant puffball (Calvatia gigantea) can produce. A single mature puffball, similar in size to the ones shown in this video, can release around 5 trillion spores (yes, trillion with a “T”). Keep in mind that each of these spores is potentially capable of developing into a new puffball under the right conditions. . Scientists calculated this number by carefully slicing the inner tissue of the puffball and estimating the number of spores in different zones of the mushroom. Interestingly, the middle layer of the puffball contained the highest spore density (about 22 billion spores per gram). . When a giant puffball matures and dries out, its outer layer splits open. Wind, rain, or contact with animals then act as dispersal forces, releasing millions of spores at a time into the air. Spores that can travel far before settling, allowing this species of fungus to colonize new areas where it can thrive. . For details on how the spore calculations were made: De-Wei Li. 2011 – Five trillion basidiospores in a fruiting body of Calvatia gigantea. Mycosphere 2(4), 457–462. . For this video I used a Leica ZOOM 200 stereoscope, an Olympus CX31 microscope and an Olympus BX41 microscope at up to 1000x magnification #microscopy #spores #horsetail #moss #puffball

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