A block of mass m moving due east at speed v collides with and sticks to a block of mass 2m that is moving at the same speed v but in a direction 45.0° north of east. Find the direction in which the two blocks move after the collision.
Q: As shown in the figure, a billiard ball with mass m, is initially at rest on a horizontal,…
A:
Q: Two cars collide at an icy intersection and stick together afterward. The first car has a mass of…
A:
Q: A boy of mass 48.5 kg is initially on a skateboard of mass 2.00 kg, moving at a speed of 10.1 m/s.…
A:
Q: tersection and stick together afterward. The first car has a mass of 1200 kg and was approaching at…
A: We know that the two cars collide at an icy intersection and stick together afterward, it means the…
Q: Two cars collide at an icy intersection and stick together afterward. The first car has a mass of…
A: mass of car 1 , m1 = 1500 kg speed of 1 , u1 = - 9 m/s j^ mass of car 2 , m2 = 700 kg velocity of 2…
Q: Two cars collide at an icy intersection and stick together afterward. The first car has a mass of…
A:
Q: Two cars collide at an icy intersection and stick together afterward. The first car has a mass of…
A: (a) According to the conservation of momentum, exerted on the cars in west direction,…
Q: Two manned satellites approaching one another at a relative speed of 0.250 m/s intend to dock. The…
A:
Q: Two manned satellites approaching one another at a relative speed of 0.350 m/s intend to dock. The…
A:
Q: Two cars collide at an icy intersection and stick together afterward. The first car has a mass of…
A:
Q: Two cars collide at an icy intersection and stick together afterward. The first car has a mass of…
A: (a) conservation of momentum in the West-direction
Q: Two manned satellites approaching one another at a relative speed of 0.250 m/s intend to dock. The…
A: Given information: Here, m1 and m2 are the mass of the two satellites and u1 is the relative speed…
Q: An unstable nucleus of mass 1.7 x 10-26 kg, initially at rest at the origin of a coordinate system,…
A: Use the conservation of momentum to solve for the velocity of the third particle.…
Q: A billiard ball moving at 5.70 m/s strikes a stationary ball of the same mass. After the collision,…
A: Given data The initial velocity of the first ball is: U1 = 5.70 m/s The initial velocity of the…
Q: As shown in the figure, a metal ball with mass m, is initially at rest on a horizontal, frictionless…
A: The total linear momentum of the system is conserved in the collision. Thus Pi = Pf Where Pi = Total…
Q: In the figure, two particles are launched from the origin of the coordinate system at time t 0.…
A: Centre of mass of system of particles is the point representing the mean position of the matter in…
Q: Two cars collide at an icy intersection and stick together afterward. The first car has a mass of…
A:
Q: Two cars collide at an icy intersection and stick together afterward. The first car has a mass of…
A:
Q: Two manned satellites approaching one another at a relative speed of 0.450 m/s intend to dock. The…
A: Apply law of conservation of momentum
Q: Two cars collide at an icy intersection and stick together afterward. The first car has a mass of…
A: m1=1100 kgm2=750 kkgv1=4.0 m/s (due south)v2=20.0 m/s (due west)
Q: A fisherman throws a 6.40 kg fish he's caught back into the water at 10.0 m/s. Assuming the throw…
A: By Conservation of Momentum (M1 + M2 ) V = M3V3 (26 kg + 45 kg) V = ( 6.4 kg) (10 m/s) V= 0.901 m/s.
Q: A hobo of mass m1 stands on a railway flatcar with mass m2. Both hobo and car are initially at rest,…
A:
Q: Two manned satellites approaching one another at a relative speed of 0.300 m/s intend to dock. The…
A:
Q: Two manned satellites approaching one another at a relative speed of 0.350 m/s intend to dock. The…
A:
Q: Mass 1 strikes Mass 2 while moving in the positive-x direction, which is initially at rest. After…
A:
Q: Two cars collide at an icy intersection and stick together afterward. The first car has a mass of…
A: Solution:According to the conservation of momentum we have:The momentum in west direction to be:m1v1…
Q: Two cars collide at an icy intersection and stick together afterward. The first car has a mass of…
A: Given data: The mass of the fast car m1=1300 kg The mass of the second car m2=750 kg The velocity of…
Q: Two manned satellites approaching one another at a relative speed of 0.400 m/s intend to dock. The…
A: Given values - u1=0.400 msm1=2.50×103u2=0ms (second satellite is initially at rest)m2=7.50×103 kg…
Q: A billiard ball moving at 5.80 m/s strikes a stationary ball of the same mass. After the collision,…
A: Let the mass of each billiard ball = m Initial velocity of first billiard ball (u) = 5.80 m/s…
Q: Two manned satellites approaching one another at a relative speed of 0.150 m/s intend to dock. The…
A:
Q: Two cars collide at an icy intersection and stick together afterward. The first car has a mass of…
A:
Q: A block of mass m moving at speed v collides with another block of mass 2 m at rest. The lighter…
A:
Q: Two cars collide at an icy intersection and stick together afterward. The first car has a mass of…
A: Let x axis represents the west direction and y axis represents the south direction. According to law…
Q: A billiard ball moving at 5.45 m/s strikes a stationary ball of the same mass. After the collision,…
A: Given: Initial velocity of ball 1 is u1=5.45 m/s Initial velocity of ball 2 is u2=0 m/s Final…
Q: As shown in the figure, a billiard ball with mass m, is initially at rest on a horizontal,…
A:
Q: Two cars collide at an icy intersection and stick together afterward. The first car has a mass of…
A:
A block of mass m moving due east at speed v collides with
and sticks to a block of mass 2m that is moving at the same speed v but
in a direction 45.0° north of east. Find the direction in which the two
blocks move after the collision.
Trending now
This is a popular solution!
Step by step
Solved in 2 steps
- A tabletop gamer has designed a game that requires three dice to be thrown onto a tray with a measurement grid. To add an extra degree of randomness, the coordinates of the center of mass of the three dice are used as well. The masses of the three dice are 11.10 g, 13.70 g, and 17.30 g, and their respective coordinates after one particular throw are (0.2810 m,−0.2330 m), (−0.1910 m,0.2890 m), and (−0.4790 m,−0.2210 m). What are the resulting coordinates of the center of mass of the dice, xcm and ycm? xcm = ? m ycm = ? mTwo manned satellites approaching one another at a relative speed of 0.300 m/s intend to dock. The first has a mass of 2.50 ✕ 103 kg, and the second a mass of 7.50 ✕ 103 kg. If the two satellites collide elastically rather than dock, what is their final relative velocity? Adopt the reference frame in which the second satellite is initially at rest and assume that the positive direction is directed from the second satellite towards the first satellite.Two cars collide at an icy intersection and stick together afterward. The first car has a mass of 1650 kg and was approaching at 9.00 m/s due south. The second car has a mass of 750 kg and was approaching at 15.0 m/s due west.(a) Calculate the final velocity of the cars. (Note that since both cars have an initial velocity, you cannot use the equations for conservation of momentum along the x-axis and y-axis; instead, you must look for other simplifying aspects..)Magnitude m/sDirection ° (counterclockwise from west is positive)(b) How much kinetic energy is lost in the collision? (This energy goes into deformation of the cars.) J
- Two cars collide at an icy intersection and stick together afterward. The first car has a mass of 1750 kg and was approaching at 7.00 m/s due south. The second car has a mass of 900 kg and was approaching at 19.0 m/s due west. (a)Calculate the final velocity (magnitude in m/s and direction in degrees counterclockwise from the west) of the cars. (Note that since both cars have an initial velocity, you cannot use the equations for conservation of momentum along the x-axis and y-axis; instead, you must look for other simplifying aspects.) magnitude _______________ m/s direction ° _________________ counterclockwise from west (b)How much kinetic energy (in J) is lost in the collision? (This energy goes into deformation of the cars.) ________________________ JTwo cars collide at an icy intersection and stick together afterward. The first car has a mass of 1200 kg and is approaching at 8.5 m/s due south. The second car has a mass of 550 kg and is approaching at 15 m/s due west. (a) Calculate the magnitude of the final velocity, in meters per second, of the cars. (b) Calculate the direction of the final velocity, in degrees south of west, of the cars. (c) What is the change in kinetic energy, in joules, for the collision? (This energy goes into the deformation of the cars.)Two cars collide at an icy intersection and stick together afterward. The first car has a mass of 1050 kg and was approaching at 4.00 m/s due south. The second car has a mass of 900 kg and was approaching at 22.0 m/s due west. (a) Calculate the final velocity (magnitude in m/s and direction in degrees counterclockwise from the west) of the cars. (Note that since both cars have an initial velocity, you cannot use the equations for conservation of momentum along the x-axis and y-axis; instead, you must look for other simplifying aspects.) magnitude m/s direction ° counterclockwise from west (b) How much kinetic energy (in J) is lost in the collision? (This energy goes into deformation of the cars.)
- (a) A car traveling due east strikes a car traveling due north at an intersection, and the two move together as a unit. A property owner on the southeast corner of the intersection claims that his fence was torn down in the collision. Should he be awarded damages by the insurance company? Defend your answer. (b) Let the eastward-moving car have a mass of 1 300 kg and a speed of 30.0 km/h and the northward-moving car a mass of 1 100 kg and a speed of 20.0 km/h. Find the velocity after the collision. Are the results consistent with your answer to part (a)?Two cars collide at an icy intersection and stick together afterward. The first car has a mass of 1800 kg and was approaching at 5.00 m/s due south. The second car has a mass of 700 kg and was approaching at 21.0 m/s due west.(a) Calculate the final velocity of the cars. (Note that since both cars have an initial velocity, you cannot use the equations for conservation of momentum along the x-axis and y-axis; instead, you must look for other simplifying aspects..)Magnitude m/sDirection ° (counterclockwise from west is positive)(b) How much kinetic energy is lost in the collision? (This energy goes into deformation of the cars.) JA 80.1 kg linebacker (X) is running at 6.71 m/s directly toward the sideline of a football field. He tackles a 91.7 kg running back (O) moving at 9.49 m/s straight toward the goal line, perpendicular to the original direction of the linebacker. As a result of the collision, both players momentarily leave the ground and go out‑of‑bounds at an angle ϕ relative to the sideline, as shown in the diagrams. What is the common speed ?f of the players immediately after their impact? What is the angle ϕ of their motion relative to the sideline?
- Two cars collide at an icy intersection and stick together afterward. The first car has a mass of 1400 kg and was approaching at 9.00 m/s due south. The second car has a mass of 800 kg and was approaching at 22.0 m/s due west.(a) Calculate the final velocity of the cars. (Note that since both cars have an initial velocity, you cannot use the equations for conservation of momentum along the x-axis and y-axis; instead, you must look for other simplifying aspects..)Magnitude ____________ m/sDirection ____________ ° (counterclockwise from west is positive)(b) How much kinetic energy is lost in the collision? (This energy goes into deformation of the cars.) _____________ J(a) A father of mass 65 kg is standing still on a frictionless ice-covered pond when he tosses a 1 kg football to his son with a velocity of 18 m/s. Determine the father's velocity after throwing it. (b)The son of mass 28 kg is standing still on the same frictionless ice-covered pond when he catches the football. Determine the child's velocity after catching it. What's the coefficient of restitution for this case?Two cars collide at an icy intersection and stick together afterward. The first car has a mass of 1050 kg and was approaching at 5.00 m/s due south. The second car has a mass of 900 kg and was approaching at 25.0 m/s due west. (a) Calculate the final velocity of the cars. (Note that since both cars have an initial velocity, you cannot use the equations for conservation of momentum along the x-axis and y-axis; instead, you must look for other simplifying aspects..) magnitude: m/s direction: (degrees) (b) How much kinetic energy is lost in the collision? (This energy goes into deformation of the cars.)