In a covalent bond, valence electrons are shared; in an ionic bond, valence electrons are transferred.
B.
In a covalent bond, valence electrons are transferred; in an ionic bond, valence electrons are shared.
C.
In a covalent bond, outer electron orbitals are shared; in an ionic bond, outer electron orbitals are transferred.
D.
In a covalent bond, outer electron orbitals are transferred; in an ionic bond, outer electron orbitals are shared.
Answer:
Atoms form two types of bonds: ionic bond and covalent bond. In a covalent bond, valence electrons are shared; in an ionic bond, valence electrons are transferred.
Explanation:
Therefore, the answer is A
For this case the main unit is liter.
The first thing you should know is that the liter is a unit of volume.
The difference then between hectoliter and kiloliter is the conversion factor.
For hectoliter we have:
1 hectoliter = 100 liters
For kiloliter we have:
1 kiloliter = 1000 liters
Answer:
The difference between both is the conversion factor:
1 hectoliter = 100 liters
1 kiloliter = 1000 liters
The expression for the bullet's speed vbullet is and the speed of a 9.0 g bullet is v=16.8 m/s
A bullet of mass m is fired into a block of mass m that is at rest. the block, with the bullet embedded, slides distance d across a horizontal surface. the coefficient of kinetic friction is μk.
The initial kinetic energy of the bullet is given by
where
m is the mass of the bullet
v is the initial speed of the bullet
The expression for the bullet's speed vbullet is
where
is the coefficient of kinetic friction
g is the acceleration of gravity
The work done by the force of friction is
where d is the displacement of the block+bullet.
Because the final kinetic energy is zero (the bullet with the block comes at rest), we can write:
And so
By solving for v, the solution for the bullet speed:
The speed of a 9.0 g bullet that, when fired into a 12 kg stationary wood block causes the block to slide 5.4 cm across a wood table. Assume that k=0.20.
We have:
the mass of the bullet, m = 9.0 g = 0.009 kg
the mass of the block, M = 12 kg
the distance covered by the block+bullet, d = 5.4 cm = 0.054 m
the coefficient of friction,
the acceleration of gravity,
By substituting, we got
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