Determine the eccentricity for r=100,000 km, V= 35.3 km/s, and y=10° at Jupiter.
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Q: Q/ Find the force Q ? 150N 35 SON
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Q: Table R(Q) im(A) 100 0.030 200 0.005 330 0.006 100 0.019 200 0.005 3. Using Kirchhoff's Rules,…
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Q: What is the acceleration of g
A: Answer 14.62 m/s2
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Q: 1. Three blocks (m;=1.0 kg, m2=2.0 kg, m3=3.0 kg) are on a surface with a friction coefficient of…
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Q: 92=-2.09 91=+q d d 93= -3.09 94 = -4.09
A: Given that:q1=q=+2.5 μC=2.5×10-6 Cq2=-2.0qq3=-3.0qq4=-4.0qThe distance is: d=34 cm=0.34 m To…
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Q: A rough plane curved round has a radius of 10 m. What is the speed at which a car can take a turn ?
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Q: A block accelerates down a frictionless ramp at an angle θ=26º. Determine the acceleration.
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Q: A block weighing 200N is supported by three as shown. Find tension T2. 60° T2 T3 w Select one: а.…
A: weight of block = 200 N
Q: The circuit in the figure below has been connected for a long time. Let R, = 8.20 Q and R,= 5.40 0.…
A: Given,R1=8.20 ohmR2=5.40 ohmV=10VC=1 μF
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- In the figure, find an expression for the acceleration of m₁. The pulleys are massless and frictionless. Hint: Think carefully about the acceleration constraint. (Figure 1) Express your answer in terms of some or all of the variables m₁, m₂, and the free-fall acceleration g.6. Consider Newton's second Law F = mà. Solve for m.The second image has background info used to help solve the practice problem.
- A cart ( m=2012 g) is moving horizontally due to a horizontal tension force applied by a string. If the object moves with an acceleration of 2.4 m/s2. Find the tension applied by the string ( in units of N). Select one: O A. 4829 O B. 482.9 OC. 0.483 D. 48.29 E. 4.83Q3 please help me with the answer and full solution4. Carriage B is loaded with box A as shown in the figure. Find the acceleration of caravan B and box A. 4.รถเลื่อน B บรรทุกกล่อง A มาดังรูป ให้หาความเร่งของรถเลื่อน B และกล่อง A 14,=0.5 H₂=0.4 B 30 kg 100kg P 70N LL r