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exis [7]
3 years ago
8

Wolf spiders carry their young on their backs. How does this help in their survival?

Physics
2 answers:
Goshia [24]3 years ago
8 0
It intimidates other spider because it makes them look bigger than they really are.
alina1380 [7]3 years ago
3 0

Answer: It provides care to the young.

Wolf spiders are unique members of the spider species. They are unique in the sense they carry their young ones on the back after hatching of the eggs. The egg sac of these spiders remains attached at the spinnerets which are present in the end of the abdomen. After hatch the spiderlings climb up the back and remain their for several weeks until they develop large enough to disperse themselves.  

Therefore, It provides care to the young. is the correct option which reflects the fact that wolf spiders help their young ones for survival.

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If a 950 kg car has 30,400 J of kinetic energy, how fast is it moving?
abruzzese [7]
Hello

The kinetic energy K of a moving object is:
K= \frac{1}{2} m v^2
where m is the mass and v the velocity of the object.
Using this formula, we can calculate v for this problem:
v= \sqrt{ \frac{2E}{m} }= \sqrt{ \frac{2\cdot30400~J}{950~Kg} }  = 8~m/s
6 0
3 years ago
Which of the following elements is an alkali metal?
Scrat [10]
It is b. sodium because it is in group 1

6 0
3 years ago
Water enters a cylindrical tank through two pipes at rates of 250 and 100 gal/min. If the level of the water in the tank remains
tester [92]

Answer:

The total amount of water that enters the tank is:

250 gal/min + 100 gal/min = 350gal/min.

Then, if the level of the water remains constant, this means that the water leaves the tank at a rate of 350gal/min.

We know that the diameter of the pipe is 8 inches, then the area of the pipe is:

A = pi*(d/2)^2 = 3.14*(4in)^2 = 50.24in^2

now, the flow can be calculated as:

Q = v*A = (velocity*area)

if we want to write our velocity in inches per minute, then we need to write the entering flow in cubic inches:

1 gallon = 231 in^3

then:

350gal/min = (350*231) in^3/min = 80,850 in^3/min.

Then the water that leaves the tank must be the same amoun, we have:

Q = 80,850 in^3/min. = v*A = v*50.24in^2

v =  (80,850in^3/min)/50.24in^2 = 1609.3 in/min.

The velocity of the flow leaving the tank is 1609.3 in/min.

3 0
4 years ago
Martha (50 kg) is attracted to Stewart (70 Kg) who sits 4 m away. What is the gravitational attraction between them? G=6.67 x 10
kodGreya [7K]

Answer:

1.46× 10^-8 N

Explanation:

F=Gm₁m₂/r²

F=(6.67×10⁻¹¹ × 50× 70)/(4)²

F=1.46× 10^-8 N

Hope, this helps you.

8 0
3 years ago
C is correct just an FYI
belka [17]

Answer:

Huh?

Explanation:

3 0
3 years ago
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