A surge protector rated at 180 joules can absorb and dissipate a limited amount of energy from power surges or spikes. While it offers some level of protection for connected devices, it is considered relatively low compared to higher-rated surge protectors, which can range from 400 joules to several thousand joules. Therefore, for sensitive or high-value electronics, a surge protector with a higher joule rating is recommended for better safety and longevity.
Power is calculated using the formula ( P = \frac{W}{t} ), where ( P ) is power, ( W ) is work, and ( t ) is time. For 180 joules of work done in 2.4 seconds, the power would be ( P = \frac{180 , \text{J}}{2.4 , \text{s}} = 75 , \text{W} ). Therefore, the power required to do 180 joules of work in 2.4 seconds is 75 watts.
1800 joules / 1 minute = 1,800 joules / 60 seconds = 30 joules per second = 30 watts.
The work done by an object is calculated using the formula: work = force x distance. In this case, the work done would be 60N x 3m = 180 Joules. So, the work done by the object would be 180 Joules.
The work done by the mother lifting each baby is given by the formula: work = force x distance. In this case, the force is the weight of each baby (90 N) and the distance is 1 meter. Therefore, the work done for each baby is 90 N x 1 m = 90 joules. Since she has two babies, the total work done by the mother is 90 joules x 2 = 180 joules.
I suggest you use the definition of work (work = force x distance), replace the numbers you know, and solve for force.
Orders of protection.
How much is 180 pounds when you change it to south Africa
Power is calculated using the formula ( P = \frac{W}{t} ), where ( P ) is power, ( W ) is work, and ( t ) is time. Given that 180 J of work is done in 2.4 seconds, the power required is ( P = \frac{180 , \text{J}}{2.4 , \text{s}} = 75 , \text{W} ). Therefore, 75 watts of power is required to do 180 joules of work in 2.4 seconds.
He used a force such that its component in the upward direction was 225 Newtons.
To calculate the mass of an object using gravitational potential energy, you need to know the height (15 meters) and the potential energy (180 joules). The formula for gravitational potential energy is PE = mgh, where m is the mass, g is the acceleration due to gravity (9.8 m/s^2), and h is the height. Rearrange the formula to solve for mass: m = PE / (gh). Plug in the values and calculate the mass of the object.
15% off of 180 = 15315% off of 180= 15% discount applied to 180= 180 - (15% * 180)= 180 - (0.15 * 180)= 180 - 27= 153
180 dollars in pounds