Question

A) When the brick block is at rest on the ground, the gravitational force in the...

A) When the brick block is at rest on the ground, the gravitational force in the direction is balanced by the normal force. Based on premise (5) of the procedure, what happens to the values ​​of the forces acting on the block when it is in the pool of water? B) Is the brick block lighter or heavier in the water?

Homework Answers

Know the answer?
Your Answer:

Post as a guest

Your Name:

What's your source?

Earn Coins

Coins can be redeemed for fabulous gifts.

Not the answer you're looking for?
Ask your own homework help question
Similar Questions
the 20kg block starts from rest at point a, slides down the plane through the pool....
the 20kg block starts from rest at point a, slides down the plane through the pool. the friction forces acting to the block are 20N on the plane and 60N on the water. find the speed of the block when it travels 20M on the water
Some common types of forces that you will be dealing with include the gravitational force (weight),...
Some common types of forces that you will be dealing with include the gravitational force (weight), the force of tension, the force of friction, and the normal force. It is sometimes convenient to classify forces as either “contact forces” between two objects that are touching or as “long-range forces” between two objects that are some distance apart. Contact forces include tension, friction, and the normal force. Long-range forces include gravity and electromagnetic forces. Note that such a distinction is useful...
Two objects attract each other with a gravitational force of magnitude 9.30 10-9 N when separated...
Two objects attract each other with a gravitational force of magnitude 9.30 10-9 N when separated by 20.0 cm. If the total mass of the objects is 5.08 kg, what is the mass of each? heavier mass? lighter mass?
Two objects attract each other with a gravitational force of magnitude 1.01 * 10^-8 N when...
Two objects attract each other with a gravitational force of magnitude 1.01 * 10^-8 N when separated by 19.2 cm. If the total mass of the two objects is 5.13 kg, what is the mass of each? heavier mass = ? lighter mass = ? kg
Two objects attract each other with a gravitational force of magnitude 0.96 ✕ 10-8 N when...
Two objects attract each other with a gravitational force of magnitude 0.96 ✕ 10-8 N when separated by 19.3 cm. If the total mass of the two objects is 5.06 kg, what is the mass of each? kg (heavier mass) kg (lighter mass)
Two objects attract each other with a gravitational force of magnitude 9.30  10-9 N when separated by...
Two objects attract each other with a gravitational force of magnitude 9.30  10-9 N when separated by 19.0 cm. If the total mass of the objects is 5.09 kg, what is the mass of each? heavier mass ____kg lighter mass ____kg
Two objects attract each other with a gravitational force of magnitude 9.50 10-9 N when separated...
Two objects attract each other with a gravitational force of magnitude 9.50 10-9 N when separated by 19.7 cm. If the total mass of the objects is 5.06 kg, what is the mass of each? heavier mass kg lighter mass kg
The scenario is as follows: A 502 g block (.502 kg) is sitting at rest on...
The scenario is as follows: A 502 g block (.502 kg) is sitting at rest on a scale. The scale reads 502 g. Identify the forces acting on the block: Is the block in equilibrium? How do you know? Identify the forces acting on the scale. Is the scale in equilibrium? How do you know?   First draw a free body diagram for the block. Here you consider the block as your system of interest. Everything else is external.  Then draw a...
A 2.50 kg block rests on an incline. When the angle of the incline is increased...
A 2.50 kg block rests on an incline. When the angle of the incline is increased to 300 above the horizontal the block starts to move. a. Draw a free body diagram.   Find the following: b The Normal force acting on the block. c. The frictional force acting on the block. d. The minimum coefficient of friction for the block to remain at rest on the incline.  
A 200 Kg block has three forces applied to it at the same time: F1 =...
A 200 Kg block has three forces applied to it at the same time: F1 = 30.0 N force at 40.0 degrees, F2 =150 N force at 95.0 degrees, & F3 = 75.0 N force at 206.0 degrees. (Angles measured counterclockwise from positive x-direction) There is no gravitational force. a. Find the x & y components of the net force on the block b. Find the magnitutude and direction of the net force. c. The block was initially at rest;...