@ohusallim: 기름 안튀고 알아서 구워주는 롤팬! 요거 지금 신상컬러로 공구합니다~ 가격도 전컬러 공구가보다 훨씬 저렴하게 진행중이오 구매는 프로필 하단에 링크 ㄱ ㄱ ㄱ 🫵🏻 #오후살림 #셀프인테리어 #살림 #살림꿀팁 #삼겹살 #자동회전롤팬

오후살림
오후살림
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Region: KR
Tuesday 14 November 2023 06:32:10 GMT
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user8p4zkpi6yc
かんじ :
고기구워먹을사람들은 걍 브라텐 사셈 ㅇㅅㅇ 삶의질 달라짐
2023-11-14 12:04:23
39
mathcool7
이응 :
설거지 엄청힘들고 2주에한번사용해보니 1년도 못쓰겟던데
2023-11-15 10:25:42
4
kimgoonso99
김곤마 :
설거지 귀찬아서 한번쓰고 처박아둠 당근 내놔도 안팔림
2023-11-16 09:51:06
1
ojh8602
ojh8602 :
뚜껑 닫으면 고기 비린내 나던대
2023-11-14 12:04:38
14
joboba.ju.c
ㅡ.ㅡ :
저는 통돌이 팬쓰면 이상하게 고기잡냄새가 안빠지더라구요 그래서 별루ㅠㅠ
2023-11-14 09:55:15
14
userdsk3u0wish
Mercedes :
목소리 귀여워 ☺️☺️☺️☺️😇😇😇
2023-11-14 10:24:59
1
bj_seoyi
❄️눈꽃_설화❄️ :
올👏👏👏👏갖고프다👍
2023-11-15 12:12:13
1
30940097033
user7142384532176 :
군인말고 맛다시 먹는분 처음봅니다ㅎㅎ😳
2023-11-16 13:01:27
1
kimjinhofrank
김진호☆FRANK :
굽는게아니라 튀기는듯....아이고
2023-11-14 13:48:07
1
user4223415152566
user4223415152566 :
통돌이 나왔때 한번 쓰고 창고행 돌릴때 건전지 넣는거 은근히 귀찮음.
2023-11-14 07:12:10
0
user4169414657061
user4169414657061 :
이분은 맨날 마지막에 잘샀다 그러는데...사는거마다 항상 뭔가 2%부족함...
2023-11-14 14:16:56
2
hellozzung
쪙 :
컬러 예쁘네염
2023-11-14 06:36:15
3
dyhqtvvo4ki8
뻐꾹남 :
고기기름 나오기전에는 고기찜 볶음밥은 밥이 덩어리 뭉처있네요
2023-11-15 16:16:52
1
yootooy00
Whathlyulm :
고기 기름이 더 살찌기앤 최적화인대 참기름을 넣어?
2023-11-18 06:25:03
1
leesoohyeong6
콩이 :
단점도 있겠지만 제목처럼 기름이 안튀는게 매력이겠네요 집에서 고기굽고 바닥에 기름 몇방울만 튀어도 총체적 난국인데 ㅋㅋ
2023-11-14 11:33:00
1
6k2gnk
현재생활백수 :
삼겹살 튀김?
2023-11-16 13:09:54
1
alexk2020
주식야옹이 :
뚜엉 닫지마 ㅜ.ㅜ 굽는게 아니라 쪄지는거야 ㅜ.ㅜ
2023-11-14 13:33:15
6
fighting407
화팅~^^ :
굽는제미가. 맛도. 좋 칭
2023-11-14 10:15:33
3
dy7mloifh8ca
무니 :
저래 먹음 삼굽 맛없음
2023-11-14 10:13:01
18
eunjiny
구찌갱 :
저거 카레 해먹기 좋겠어요
2023-11-14 07:33:45
12
movie_land77
MOVIE-LAND :
왠만하면 먹고 싶고 그런데 이건... 별루 안땡기네
2023-11-14 14:29:04
7
user2040811818679
user2040811818679 :
얼마예요
2025-09-09 12:24:13
0
user6397066116838
희동이입니당 :
고기 굽는데 얼마나 걸려요?!
2025-05-15 08:31:16
0
usersckif8xbsw
찌닝찌닝♡ :
공구는 다시안하시나요??
2024-11-27 12:57:09
0
dyp0dwkcpwsl
차우차우 🩷 :
밥은 뭉치는데
2023-11-14 10:14:39
0
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#movie #moviescenes #movieclips #movies The Surprising Depth of Pencil Erasers Almost everyone has used one, almost nobody thinks about one. A pencil eraser seems like the simplest tool imaginable: rub it on graphite, and the mistake disappears. But that tiny pink block is a remarkable combination of chemistry, physics, manufacturing, and history. The first pencils had no erasers attached. Writers used breadcrumbs, wax, or soft pieces of bread to lift graphite from paper. This worked because graphite doesn’t chemically bond to paper. Instead, microscopic flakes become lodged between the paper’s fibers. Bread was just sticky enough to pull some of those flakes away. The modern eraser became possible after Europeans encountered natural rubber from South America in the 1700s. In 1770, English engineer Edward Nairne reportedly sold a piece of rubber instead of bread by accident and discovered it worked much better. The material became known as “rubber” because it rubbed out pencil marks. Natural rubber had a huge problem: it spoiled. Heat made it sticky, cold made it brittle, and oxygen slowly degraded it. The breakthrough came in 1839 when Charles Goodyear discovered vulcanization, a process that heats rubber with sulfur. Sulfur forms bridges between long rubber molecules, creating a flexible network that resists melting and cracking. Your eraser owes its existence to molecular architecture invisible to the eye. An eraser doesn’t actually erase anything. Instead, it wins a competition for adhesion. The graphite particles are attracted both to the paper and to the eraser. As you rub, friction warms the surface and slightly softens the eraser. Tiny bits of rubber peel away, grabbing graphite particles more strongly than the paper does. The familiar eraser crumbs are sacrificed material carrying your mistake away. Those crumbs are intentional. A perfect eraser that never shed material would quickly become coated in graphite and simply smear it around. By constantly exposing fresh rubber, the eraser maintains cleaning power. The mess on your desk is evidence that the design is working. Pink erasers are pink largely because of tradition rather than chemistry. Early manufacturers colored them to distinguish them from plain rubber and to hide discoloration caused by impurities. The iconic color stuck, even though modern synthetic materials don’t require it. Not all erasers work the same way. Vinyl erasers are softer and cleaner, making them popular among artists. Kneaded erasers resemble putty. Rather than scraping graphite away, they absorb it and can be reshaped repeatedly. Electric erasers spin at high speed, concentrating friction into tiny areas for precision work. Paper also matters. Rough paper traps graphite deeper between fibers, requiring more abrasion to remove it. Smooth paper lets graphite rest closer to the surface, making marks easier to erase. Pressing harder with a pencil embeds graphite more deeply, explaining why heavy handwriting leaves faint “ghosts” even after erasing. Modern pencils are another misnomer. Their “lead” has never contained lead metal. The core is a mixture of graphite and clay. More clay creates harder pencils that leave lighter marks; more graphite creates softer, darker ones. Because soft pencils deposit more graphite, they are naturally harder to erase completely. Every erased sentence is therefore a microscopic tug-of-war involving polymer chains, mineral crystals, cellulose fibers, heat, friction, and adhesion. One of the simplest objects on a desk quietly demonstrates principles from materials science, mechanical engineering, and chemistry every single time someone changes their mind. That’s an impressive amount of science packed into something most people stop noticing after elementary school. c#polyesteredit bybhbhvyvyvyfyxguctctvyfvygvtctctfrcyttrccecyfxcyrcrctcyfcyfcyfcyfcyfcyfcyfcugctftuctctctctuctctctctvytvytftftftftftfygvgyvygcytctctctctctccygctyfcrctcygvvyfccrecggggggvygugyyvygygyvgvyvygy ygygygyg
#movie #moviescenes #movieclips #movies The Surprising Depth of Pencil Erasers Almost everyone has used one, almost nobody thinks about one. A pencil eraser seems like the simplest tool imaginable: rub it on graphite, and the mistake disappears. But that tiny pink block is a remarkable combination of chemistry, physics, manufacturing, and history. The first pencils had no erasers attached. Writers used breadcrumbs, wax, or soft pieces of bread to lift graphite from paper. This worked because graphite doesn’t chemically bond to paper. Instead, microscopic flakes become lodged between the paper’s fibers. Bread was just sticky enough to pull some of those flakes away. The modern eraser became possible after Europeans encountered natural rubber from South America in the 1700s. In 1770, English engineer Edward Nairne reportedly sold a piece of rubber instead of bread by accident and discovered it worked much better. The material became known as “rubber” because it rubbed out pencil marks. Natural rubber had a huge problem: it spoiled. Heat made it sticky, cold made it brittle, and oxygen slowly degraded it. The breakthrough came in 1839 when Charles Goodyear discovered vulcanization, a process that heats rubber with sulfur. Sulfur forms bridges between long rubber molecules, creating a flexible network that resists melting and cracking. Your eraser owes its existence to molecular architecture invisible to the eye. An eraser doesn’t actually erase anything. Instead, it wins a competition for adhesion. The graphite particles are attracted both to the paper and to the eraser. As you rub, friction warms the surface and slightly softens the eraser. Tiny bits of rubber peel away, grabbing graphite particles more strongly than the paper does. The familiar eraser crumbs are sacrificed material carrying your mistake away. Those crumbs are intentional. A perfect eraser that never shed material would quickly become coated in graphite and simply smear it around. By constantly exposing fresh rubber, the eraser maintains cleaning power. The mess on your desk is evidence that the design is working. Pink erasers are pink largely because of tradition rather than chemistry. Early manufacturers colored them to distinguish them from plain rubber and to hide discoloration caused by impurities. The iconic color stuck, even though modern synthetic materials don’t require it. Not all erasers work the same way. Vinyl erasers are softer and cleaner, making them popular among artists. Kneaded erasers resemble putty. Rather than scraping graphite away, they absorb it and can be reshaped repeatedly. Electric erasers spin at high speed, concentrating friction into tiny areas for precision work. Paper also matters. Rough paper traps graphite deeper between fibers, requiring more abrasion to remove it. Smooth paper lets graphite rest closer to the surface, making marks easier to erase. Pressing harder with a pencil embeds graphite more deeply, explaining why heavy handwriting leaves faint “ghosts” even after erasing. Modern pencils are another misnomer. Their “lead” has never contained lead metal. The core is a mixture of graphite and clay. More clay creates harder pencils that leave lighter marks; more graphite creates softer, darker ones. Because soft pencils deposit more graphite, they are naturally harder to erase completely. Every erased sentence is therefore a microscopic tug-of-war involving polymer chains, mineral crystals, cellulose fibers, heat, friction, and adhesion. One of the simplest objects on a desk quietly demonstrates principles from materials science, mechanical engineering, and chemistry every single time someone changes their mind. That’s an impressive amount of science packed into something most people stop noticing after elementary school. c#polyesteredit bybhbhvyvyvyfyxguctctvyfvygvtctctfrcyttrccecyfxcyrcrctcyfcyfcyfcyfcyfcyfcyfcugctftuctctctctuctctctctvytvytftftftftftfygvgyvygcytctctctctctccygctyfcrctcygvvyfccrecggggggvygugyyvygygyvgvyvygy ygygygyg

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