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HUKUM NEWTON TENTANG GERAK
HUKUM I NEWTON
HUKUM II NEWTON
HUKUM III NEWTON
GAYA TOTAL YANG BEKERJA PADA SUATU BENDA
SAMA DENGAN NOL
Σ F = 0
PERCEPATAN YANG DITIMBULKAN OLEH GAYA TOTAL
YANG BEKERJA PADA SEBUAH BENDA DENGAN MASSA m
BERBANDING LURUS DENGAN GAYA TOTAL DAN
BERBANDING TERBALIK DENGAN MASSA BENDA
Σ F
a = ------
m
Σ F = m . a
GAYA AKSI DAN REAKSI SAMA BESARNYA , TETAPI
BERLAWANAN ARAH DAN BEKERJA PADA DUA
BENDA YANG BERBEDA
FAKSI = - FREAKSI
H@rnov Putrov
APLIKASI HUKUM NEWTON TENTANG GERAK
H@rnov Putrov
H@rnov Putrov
H@rnov Putrov
H@rnov Putrov
H@rnov Putrov
APLIKASI HUKUM NEWTON TENTANG GERAK
m
F
m
F
θ
θ
θ
F
KASUS 1 KASUS 2
KASUS 3
KASUS 4
m
m
H@rnov Putrov
APLIKASI HUKUM NEWTON TENTANG GERAK
F
m1 m2 m3
F
m1
θ
KASUS 5
KASUS 7
m2
m1
m2
m3
KASUS 6
H@rnov Putrov
APLIKASI HUKUM NEWTON TENTANG GERAK
θ β
m1
m1
m2
KASUS 8 KASUS 9
KASUS 10
m2
m1
m2
H@rnov Putrov
m
F
Σ F = m . a
Σ F
a = ------
m
LICIN
KASUS 1
H@rnov Putrov
m
F
Σ F = m . a
F . Cos θ
a = --------------
m
θ
F . Cos θ = m . a
LICIN
KASUS 2
H@rnov Putrov
θ
W . Sin θ
N = W . Cos θ
Σ F = m . a
W . Sin θ = m . a
m . g . Sin θ = m . a
a = g . Sin θ
LICIN
KASUS 3
H@rnov Putrov
θ
W . Sin θ
N = W . Cos θ
Σ F = m . a
F - W . Sin θ = m . a
F - m . g . Sin θ = m . a
F - m . g . Sin θ
a = ------------------------
m
F LICIN
KASUS 4
H@rnov Putrov
F
m1 m2 m3
TB1 TB2 TA
2
TA
3
Σ F = m . a
F + TA2 + TB1 - TA3 - TB2 = ( m3 + m2 + m1 )
a
F
a = ------------------------
( m3 + m2 + m1 )
LICIN
KASUS 5
H@rnov Putrov
F
m1
m2
m3
F12
Σ F = m . a
F + F21 + F32 - F12 - F23 = ( m3 + m2 + m1 ) a
F21 F23
F32
F
a = ------------------------
( m3 + m2 + m1 )
LICIN
KASUS 6
H@rnov Putrov
m1
m2
F
θ
T
T
m1
Σ F = m1 . a
T - W . Sin θ = m1 . a
T - m1 . g . Sin θ = m1 . a
m2
Σ F = m2 . a
F - T = m2 . a
T = F - m2 . a
T = m1 . a + m1 . g . Sin θ
F - m2 . a = m1 . a + m1 . g . Sin θ
F - m1 . g . Sin θ = m1 . a + m2 . a
F - m1 . g . Sin θ
a = ------------------------
( m1 + m2 )
LICIN
KASUS 7
H@rnov Putrov
T T
θ β
m1
m2
m2 > m1
W1 . Sin θ W2 . Sin β
m1
Σ F = m1 . a
T - W1 . Sin θ = m1 . a
T - m1 . g . Sin θ = m1 . a
T = m1 . a + m1 . g . Sin θ
m2
Σ F = m2 . a
W2 . Sin β - T = m2 . a
m2 . g . Sin β - T = m2 . a
T = m2 . g . Sin β - m2 . a
m2 . g . Sin β - m2 . a = m1 . a + m1 . g . Sin θ
m2 . g . Sin β - m1 . g . Sin θ = m1 . a + m2 . a
m2 . g . Sin β - m1 . g . Sin θ
a = --------------------------------------------
( m1 + m2 )
LICIN
KASUS 8
H@rnov Putrov
T
T
W2
m2
m1 m2 > m1
m1
Σ F = m1 . a
T = m1 . a
m2
Σ F = m2 . a
W2 - T = m2 . a
T = m2 . g - m2 . a
m2 . g - T = m2 . a
m2 . g - m2 . a = m1 . a
m1 . a + m2 . a = m2 . g
m2 . g
a = ------------------------
( m1 + m2 )
LICIN
KASUS 9
H@rnov Putrov
m2 > m1
T
T
W2
W1
m1
m2
m1
Σ F = m1 . a
T - W1 = m1 . a
T = m1 . a + W1
T = m1 . a + m1 . g
m2
Σ F = m2 . a
W2 - T = m2 . a
T = m2 . g - m2 . a
m2 . g - T = m2 . a
m2 . g - m2 . a = m1 . a + m1 . g
Σ F = m2 . a
W2 - T = m2 . a
Σ F = m2 . a
m2 . a + m1 . a = m2 . g - m1 . g
m2 . g - m1 . g
a = ------------------------
( m1 + m2 )
( m2 - m1 ) g
a = ------------------------
( m1 + m2 )
LICIN
KASUS 10
H@rnov Putrov

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HUKUM NEWTON.pptx

  • 1. HUKUM NEWTON TENTANG GERAK HUKUM I NEWTON HUKUM II NEWTON HUKUM III NEWTON GAYA TOTAL YANG BEKERJA PADA SUATU BENDA SAMA DENGAN NOL Σ F = 0 PERCEPATAN YANG DITIMBULKAN OLEH GAYA TOTAL YANG BEKERJA PADA SEBUAH BENDA DENGAN MASSA m BERBANDING LURUS DENGAN GAYA TOTAL DAN BERBANDING TERBALIK DENGAN MASSA BENDA Σ F a = ------ m Σ F = m . a GAYA AKSI DAN REAKSI SAMA BESARNYA , TETAPI BERLAWANAN ARAH DAN BEKERJA PADA DUA BENDA YANG BERBEDA FAKSI = - FREAKSI H@rnov Putrov
  • 2. APLIKASI HUKUM NEWTON TENTANG GERAK H@rnov Putrov
  • 7. APLIKASI HUKUM NEWTON TENTANG GERAK m F m F θ θ θ F KASUS 1 KASUS 2 KASUS 3 KASUS 4 m m H@rnov Putrov
  • 8. APLIKASI HUKUM NEWTON TENTANG GERAK F m1 m2 m3 F m1 θ KASUS 5 KASUS 7 m2 m1 m2 m3 KASUS 6 H@rnov Putrov
  • 9. APLIKASI HUKUM NEWTON TENTANG GERAK θ β m1 m1 m2 KASUS 8 KASUS 9 KASUS 10 m2 m1 m2 H@rnov Putrov
  • 10. m F Σ F = m . a Σ F a = ------ m LICIN KASUS 1 H@rnov Putrov
  • 11. m F Σ F = m . a F . Cos θ a = -------------- m θ F . Cos θ = m . a LICIN KASUS 2 H@rnov Putrov
  • 12. θ W . Sin θ N = W . Cos θ Σ F = m . a W . Sin θ = m . a m . g . Sin θ = m . a a = g . Sin θ LICIN KASUS 3 H@rnov Putrov
  • 13. θ W . Sin θ N = W . Cos θ Σ F = m . a F - W . Sin θ = m . a F - m . g . Sin θ = m . a F - m . g . Sin θ a = ------------------------ m F LICIN KASUS 4 H@rnov Putrov
  • 14. F m1 m2 m3 TB1 TB2 TA 2 TA 3 Σ F = m . a F + TA2 + TB1 - TA3 - TB2 = ( m3 + m2 + m1 ) a F a = ------------------------ ( m3 + m2 + m1 ) LICIN KASUS 5 H@rnov Putrov
  • 15. F m1 m2 m3 F12 Σ F = m . a F + F21 + F32 - F12 - F23 = ( m3 + m2 + m1 ) a F21 F23 F32 F a = ------------------------ ( m3 + m2 + m1 ) LICIN KASUS 6 H@rnov Putrov
  • 16. m1 m2 F θ T T m1 Σ F = m1 . a T - W . Sin θ = m1 . a T - m1 . g . Sin θ = m1 . a m2 Σ F = m2 . a F - T = m2 . a T = F - m2 . a T = m1 . a + m1 . g . Sin θ F - m2 . a = m1 . a + m1 . g . Sin θ F - m1 . g . Sin θ = m1 . a + m2 . a F - m1 . g . Sin θ a = ------------------------ ( m1 + m2 ) LICIN KASUS 7 H@rnov Putrov
  • 17. T T θ β m1 m2 m2 > m1 W1 . Sin θ W2 . Sin β m1 Σ F = m1 . a T - W1 . Sin θ = m1 . a T - m1 . g . Sin θ = m1 . a T = m1 . a + m1 . g . Sin θ m2 Σ F = m2 . a W2 . Sin β - T = m2 . a m2 . g . Sin β - T = m2 . a T = m2 . g . Sin β - m2 . a m2 . g . Sin β - m2 . a = m1 . a + m1 . g . Sin θ m2 . g . Sin β - m1 . g . Sin θ = m1 . a + m2 . a m2 . g . Sin β - m1 . g . Sin θ a = -------------------------------------------- ( m1 + m2 ) LICIN KASUS 8 H@rnov Putrov
  • 18. T T W2 m2 m1 m2 > m1 m1 Σ F = m1 . a T = m1 . a m2 Σ F = m2 . a W2 - T = m2 . a T = m2 . g - m2 . a m2 . g - T = m2 . a m2 . g - m2 . a = m1 . a m1 . a + m2 . a = m2 . g m2 . g a = ------------------------ ( m1 + m2 ) LICIN KASUS 9 H@rnov Putrov
  • 19. m2 > m1 T T W2 W1 m1 m2 m1 Σ F = m1 . a T - W1 = m1 . a T = m1 . a + W1 T = m1 . a + m1 . g m2 Σ F = m2 . a W2 - T = m2 . a T = m2 . g - m2 . a m2 . g - T = m2 . a m2 . g - m2 . a = m1 . a + m1 . g Σ F = m2 . a W2 - T = m2 . a Σ F = m2 . a m2 . a + m1 . a = m2 . g - m1 . g m2 . g - m1 . g a = ------------------------ ( m1 + m2 ) ( m2 - m1 ) g a = ------------------------ ( m1 + m2 ) LICIN KASUS 10 H@rnov Putrov