To calculate the heat produced by the heating element, multiply the power (1400 watts) by the time it is used. Power (W) = Voltage (V) x Current (A). So, the heat produced will be 1400 watts.
To find the frequency of a wave, you can use the formula: Frequency = Speed / Wavelength. In this case, the speed of the wave is 1400 m/s and the wavelength is 2.5 m. So, the frequency would be 1400 / 2.5 = 560 Hz.
1 liter = 1000 ml. 2 liters = 2000 ml. 2000 ml - 1400 ml = 600 ml You need 600 more milliliters to get 2 liters from 1400 ml.
1400 g = 1.4 kg To convert from g to kg, divide by 1000.
To calculate the work needed to move the shed, you would multiply the force applied (280 N) by the distance moved vertically (5 m). The work done would be 280 N * 5 m = 1400 Joules. This is the amount of energy required to lift the shed to the platform.
Oh, dude, 1 liter is like 1000 milliliters, so 1.4 liters would be 1400 milliliters. That's like basic math, man. So, Tasha will need 1400 milliliters of liquid for her experiment.
1400
Generally the Kanthal alloys are used. <<>> Depending on the temperature range that is needed, the heating element could be composed of; iron-chromium-aluminium, nickel-chromium, nickel-iron or copper-nickel. The maximum temperature range for each alloy is 1400 C, 1250 C, 600 C and 600 C respectively.
200x7=1400 1400/8=175 7/8 of 200 is 175
To interpret ( f(1400)60 ), you first need to understand that it involves evaluating the function ( f ) at the point ( 1400 ) and then multiplying the result by ( 60 ). To set this up, you would first determine the value of ( f(1400) ) based on the definition or equation of the function ( f ). After calculating ( f(1400) ), you would multiply that value by ( 60 ) to obtain the final result.
Bismuth was discovered around the year 1400.
about $1400
not fun
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2900
1400
30% of 1400= 30% * 1400= 0.3 * 1400= 420420
29% of 1400= 29% * 1400= 0.29 * 1400= 406