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GaryK [48]
3 years ago
9

How many atoms are in a very tiny crystal of table salt (NaCl)?

Physics
1 answer:
Natali5045456 [20]3 years ago
8 0
You would need to know the exact size of the crystal
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A lemming running 3.22 m/s runs off a horizontal cliff. It lands in the water 7.54 m from the base of the cliff. How much time w
LekaFEV [45]

Answer: 2.34s

Explanation:

Given the following :

Horizontal Velocity(V) = 3.22m/s

Horizontal Distance = 7.54m

Therefore, the time spent in the air can be calculated thus:

Using the relation:

Speed = distance / time

3.22m/s = 7.54m / time

Time = 7.54m / 3.22m/s

Time = 2.34s

7 0
3 years ago
1.
Ivanshal [37]
I think it’s 10 kg since 20/2=10
5 0
3 years ago
Read 2 more answers
A hockey player strikes a puck, giving it an initial velocity of 14.0 m/s in the positive x-direction. The puck slows uniformly
Advocard [28]

a) -1.71 m/s^2

b) 7.7 m/s

c) 4.39 s

Explanation:

a)

The acceleration of an object is the rate of change of velocity of an object.

In this problem, the acceleration of the puck can be found using the following suvat equation:

v^2-u^2=2as

where:

v is the final velocity

u is the initial velocity

a is the acceleration

s is the distance travelled

For the puck in this problem:

u = 14.0 m/s

v = 6.50 m/s

s = 45.0 m

So, the acceleration is:

a=\frac{v^2-u^2}{2s}=\frac{6.50^2-14.0^2}{2(45.0)}=-1.71 m/s^2

b)

The velocity of the puck at time t can be found by using another suvat equation:

v=u+at

where

u is the initial velocity

a is the acceleration

t is the time elapsed

v is the final velocity

Here, we have:

u = 14.0 m/s

a=-1.71 m/s^2 (found in part a)

Therefore, the velocity of the puck after t = 3.70 s is:

v=14.0+(-1.71)(3.70)=7.7 m/s

c)

Here we want to find the time taken for the puck to travel a distance of

s = 45.0 m

To solve this part, we can use again the suvat equation:

v=u+at

Where in this case, we use:

u = 14.0 m/s is the initial velocity

v = 6.50 m/s is the final velocity when the puck has travelled 45.0 m (this information is given in the question)

a=-1.71 m/s^2 is the acceleration (found in part a)

Therefore, by re-arranging the equation, we find the time taken to cover 45.0 m:

t=\frac{v-u}{a}=\frac{6.50-14.0}{-1.71}=4.39 s

7 0
3 years ago
A uniform magnetic field B=5.210 T is perpendicular to the plane of the paper (into the page). The current-carrying wire of valu
ehidna [41]

Answer:5.21 N

Explanation:

Given

B=5.210 T

I=2 A

L=0.5 m

Given Wire is perpendicular to Magnetic field

\theta =90^{\circ}

F=IL\times B

F=BIL sin\theta

F=5.210\cdot 2\cdot 0.5 sin(90)

F=5.210 N

as  1 Tesla =1 N/A/m

4 0
3 years ago
What does the frequency of a wave represent?
maksim [4K]

Answer:

B. The number of wave cycles that pass through a specific point within a given time period.

5 0
3 years ago
Read 2 more answers
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