GSM (Global System for Mobile communication) works by digitizing and compressing voice data, which is then transmitted as a digital signal over radio waves. These radio waves are received by nearby cell towers, which then route the signal to the intended recipient via a network of switches. This system allows for mobile phones to communicate with each other regardless of their location, as long as they are within range of a cellular network.
A 250 g ball travels at a velocity of 40 m/s. Its momentum = mv where m is mass in kg and v is velocity in m/s mv = 250/1000 x 40 10 kg m/s
The work done can be calculated using the formula: work = force x distance. Since the force required to lift the rock is equal to its weight (w = m x g), where m = mass and g = acceleration due to gravity, the force will be 5 kg x 9.8 m/s^2 ≈ 49 N. Therefore, the work done is equal to 49 N x 2 m = 98 Joules.
To determine the mass of an object that weighs 30N, you need to use the formula F = m * g, where F is the weight, m is the mass, and g is the acceleration due to gravity (approximately 9.81 m/s^2). So, mass (m) = weight (F) / g, which gives: m = 30N / 9.81 m/s^2 ≈ 3.06 kg.
For an object moved along a vertical line near Earth's surface, the work required is given by: Work = m g Δh Where m is the object's mass (3.08 kg in this case), g is the acceleration due to gravity near Earth's surface (9.81 m/s2) and Δh is the change in the object's height (10.3 m in this case).
Final kinetic energy will be equal to (Initial kinetic energy) plus (work that you do to turn it around).KE = 1/2 m V2Initial KE = 1/2 (0.026) (13)2 with 'V' pointing left.Final KE = 1/2 (0.026) (49)2 with 'V' pointing right.You have to supply the difference = 1/2 (0.026) (62)2 = 49.972 kg-m2/s2 = 49.972 newton-m= 49.972 joules750 J537.5 J
The value of s minus the sum of t and g, minus the sum of m and x, is s - (t g) - (m x).
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