Find the kinetic energy of a bullet of mass 5.00 g traveling at a speed of 305 m/s. Find
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- Evaluate the kinetic energy of a unit weight, in meters, flowing at 4 m/s?A bullet leaves a rifle with a muzzle velocity of 521 m/s. While accelerating through the barrel of the riffle, the bullet moves a distance of 0.840 m. Determine the acceleration of the bullet (assume a uniform acceleration). 1.26x m/s^2 2.16x m/s^2 1.62x m/s^2 O 2.61x m/s^2A 25 g mass bullet was fired at the wall. The bullet's speed upon hitting the wall is 350 m/s. What is the average force (in Newton) if the bullet penetrates 10 cm?
- A projectile is travelling in an air of pressure 10.1043 N/cm? at 10°C at a speed of 1500 km/hour. Determine the Mach number and the Mach angle. Take k = 1.4 and R = 287 J/kg°K.A projectile travels in air of pressure 10.1043 N/cm at 10°C at a speed of 1500 km/hour. Find the Mach number and the Mach angle. Take k = 1.4 and R = 287 J/kg°K.What is special about the horizontal direction velocity of a projectile? The horizontal direction velocity varies with time. The horizontal direction velocity is constant. The horizontal direction velocity is zero.
- A glycerin with a mass of 850 kg has a volume of 0.69 m3. Find the glycerin's specific gravity. A No Answer among the choices (в) 0.59 c) 1.23 D 1.67 0.97A 2-kg metal ball is moving at a speed of 6 m/s. Calculate the force needed to stop the ball in time of 7x10-4s.A car having a mass of 1000 kg is traveling at 100 kph. Calculate its kinetic energy. v = 100 kph m = 1000 kg
- A D B E 10 cm 40 cm 40 cm 10 cm Two uniform rods AB and CE, each of weight 20 N and length 1 m, are welded to each other at their midpoints. Knowing that this assembly has an angular velocity of constant magnitude w = 8 rad/s, determine the kinetic energy of the assembly.A bullet is shot at a speed of 2 km/s as shown. If the bullet hits the surface 45 second after being fired , calculate R in meters.1. Find the center of gravity for the system shown in figure 1. 2 Calculate the moment of inertia of each body about its center of mass (about z axis). 3. Calculate the moment of inertia of the system about point A (about z axis) which is shown in figure 1. Note 1: The material used in this system is AISI 1023 carbon steel, and all dimensions is in inch. Note 2: symbol X in the dimension shown in figure 1 is the average =2+5+1/3=2.6 I think it's complicated; try your best expert.